MS Excel (All parameter fields) Generated: Fri Mar 19 18:12:59 EET 2
Product: LTE BTS
Rel/ver: LN1.0/inc18
MO Class Parameter Id Parameter Name Abbreviated Name 3GPP Name Data Type Status
LNBTS 53084 QCI qci Number proposal
LNBTS 53104 RRC Guard Timer Radio
rrcGuardTimer
Bearer Management Number approved
LNBTS 53115 Handover Cancel Latency
tX2RelocHold
Timer Number proposal
LNCEL 53259 A3 Offset a3Offset Number proposal
LNCEL 53260 A3 Report Amount a3ReportAmount Enumeration proposal
LNCEL 53261 A3 Report Interval a3ReportInterval Enumeration proposal
LNCEL 53262 A3 Time To Trigger a3TimeToTrigger Enumeration proposal
LNCEL 53263 A5 Report Amount a5ReportAmount Enumeration proposal
LNCEL 53264 A5 Report Interval a5ReportInterval Enumeration proposal
LNCEL 53265 A5 Threshold 1 a5Threshold1 Number proposal
LNCEL 53266 A5 Threshold 2 a5Threshold2 Number proposal
LNCEL 53267 A5 Time To Trigger a5TimeToTrigger Enumeration proposal
LNCEL 53279 Cell Reselection Timer
celResTiFHM
Factor High Mobility t-ReselectionEUTRAN-SF-High
Enumeration proposal
LNCEL 53280 Cell Reselection Timer
celResTiFMM
Factor Medium Mobility
t-ReselectionEUTRAN-SF-Medium
Enumeration proposal
LNCEL 53283 Cell Reselection Priority
cellReSelPrio cellReselectionPriority
Number proposal
LNCEL 53285 Cell Reserved For Operator
cellReserve
Use cellReservedForOperatorUse
Enumeration proposal
LNCEL 53298 Cyclic Prefix Length In
cycPrefix
DL And UL cyclic prefix Enumeration proposal
LNCEL 53320 Cell Power Reduce dlCellPwrRed Number proposal
LNCEL 53373 Intra-Frequency Blacklisted
intrFrBCList
Cell List IntraFreqBlacklistedCellList
Structure proposal
LNCEL 53377 Intra-Frequency Neighbouring
intrFrNCList
Cell List IntraFreqNeighbouringCellList
Structure proposal
LNCEL 53379 Cell Reselection Procedure
qOffsetCell
Offset q-OffsetCell Enumeration proposal
LNCEL 53380 Intra Frequency Cell Reselection
intrFrqCelRes
Allowed intraFrequencyReselection
Enumeration proposal
LNCEL 53469 PRACH Cyclic Shift prachCS Number approved
LNCEL 53470 PRACH ConfigurationprachConfIndex
Index prach-ConfigurationIndex
Number proposal
LNCEL 53471 PRACH Frequency Offset
prachFreqOff prach-FrequencyOffset
Number proposal
LNCEL 53472 PRACH High Speed Flag
prachHsFlag Boolean approved
LNCEL 53474 Preamble Transmission
preambTxMax
Maximum preambleTransMax
Enumeration proposal
LNCEL 53486 Cell Reselection Procedure
qHyst Hysteresis Valueq-Hyst Enumeration proposal
LNCEL 53487 Cell Reselection Hysteresis
qHystSfHigh
High Mobility sf-High Enumeration proposal
LNCEL 53488 Cell Reselection Hysteresis
qHystSfMed
Medium Mobilitysf-Medium Enumeration proposal
LNCEL 53490 Min Required RX level
qrxlevminintraF
for intra-freq neighbouring
q-RxLevMin
cells Number proposal
LNCEL 53491 Random Access Backoff
raBackoff FFS Enumeration approved
LNCEL 53499 Number Of Random raNondedPreamb
Access Preambles Enumeration proposal
LNCEL 53512 RACH Root Sequence
rootSeqIndex Number approved
LNCEL 53514 Intra Frequency Measurements
sIntrasearch
Threshold s-IntraSearch Number proposal
LNCEL 53542 Timer T300 t300 t300 Enumeration proposal
LNCEL 53543 Timer T301 t301 t301 Enumeration proposal
LNCEL 53544 Timer T302 t302 t302 Number proposal
LNCEL 53545 Timer T304 Intra LTEt304IntraLte t304 Enumeration proposal
LNCEL 53546 Timer T310 t310 t310 Enumeration proposal
LNCEL 53547 Timer T311 t311 t311 Enumeration proposal
LNCEL 53549 Timer TCRmax tEvalulation t-Evalulation Enumeration proposal
LNCEL 53550 Timer TCRmaxHyst tHystNormal t-HystNormal Enumeration proposal
LNCEL 53555 Cell Reselection Timer
tReselEutr t-ReselectionEUTRAN
Number proposal
LNCEL 53588 Preamble Initial Received
ulpcIniPrePwr
Target Power preambleInitialReceivedTargetPower
Enumeration proposal
ed: Fri Mar 19 18:12:59 EET 2010
Hidden Description Short Description Additional Information
QoS Class Identifier QoS Class Identifier Author: Tillmann Richter (C-Plane); SFS a
This timer is started when an RRC
message for setup, modification or
release of a radio bearer is sent to
the UE. When the timer expires, the RRC guard timer for outgoing radio
corresponding procedure is aborted. bearer requests
This timer is started in the source
eNB when the X2AP: HANDOVER
CANCEL message is sent to the
target eNB and is typically stopped
when the X2AP: HANDOVER
REQUEST ACKNOWLEDGE or
X2AP: HANDOVER PREPARATION
FAILURE message is received.
When the timer expires X2
signalling connections at Source Spare time at source side after sent
eNB shall be closed. Parameter is of X2AP: HANDOVER CANCEL for
vendor specific Inter eNB Handover Author: Mayer Walter (C-Plane); SFS abb
Handover margin for better cell HO.
Used in measurement event type A3
where the event is triggered when
the neighbor cell becomes A3 offset
better than the serving cell. The
actual value is parameter value
multiplied by 0.5 dB. Handover margin for better cell HO. Author: Mayer Walter (C-Plane); SFS abb
Defines the maximum number of Defines the maximum number of
measurement reports that will be measurement reports that will be
sent as long as the specific criteria sent as long as the specific criteria
for the measurement event A3 is for the measurement event A3 is
met. met. Author: Mayer Walter (C-Plane); SFS abb
Defines the interval with which
measurement reports are repeatedly
sent as long as the specific criteria
for the measurement event A3 is
met. Value definitions as stated in
3GPP TS36.331: value MS120
corresponds to 120 ms, MS240 to Defines the interval with which
240 ms and so on, while value MIN1 measurement reports are sent as
corresponds to 1 min, MIN6 to 6 min long as the specific criteria for the
and so on. measurement event A3 is met. Author: Mayer Walter (C-Plane); SFS abb
Time for which the specific criteria
for the measurement event A3 must
be met in order to trigger a
measurement report. Value Time for which the specific criteria
definitions as stated in 3GPP for the measurement event A3 must
TS36.331: value MS0 corresponds be met in order to trigger a
to 0 ms, MS40 to 40 ms and so on. measurement report. Author: Mayer Walter (C-Plane); SFS abb
Defines the maximum number of Defines the maximum number of
measurement reports that will be measurement reports that will be
sent as long as the specific criteria sent as long as the specific criteria
for the measurement event A5 is for the measurement event A5 is
met. met. Author: Mayer Walter (C-Plane); SFS abb
Defines the interval with which
measurement reports are repeatedly
sent as long as the specific criteria
for the measurement event A5 is
met. Value definitions as stated in
3GPP TS36.331: value MS120
corresponds to 120 ms, MS240 to Defines the interval with which
240 ms and so on, while value MIN1 measurement reports are sent as
corresponds to 1 min, MIN6 to 6 min long as the specific criteria for the
and so on. measurement event A5 is met. Author: Mayer Walter (C-Plane); SFS abb
Receive level threshold for serving
cell in A5 event. Used in
measurement event type A5 where
the event is triggered if the serving
cell becomes worse than
a5Threshold1 AND the neighbor cell
becomes better than a5Threshold2.
The actual threshold value is Receive level threshold for serving
parameter value -140 dBm. cell in A5 event. Author: Mayer Walter (C-Plane); SFS abb
Receive level threshold for
neighbour cell in A5 event. Used in
measurement event type A5 where
the event is triggered if the serving
cell becomes worse than
a5Threshold1 AND the neighbor cell
becomes better than a5Threshold2.
The actual threshold value is Receive level threshold for
parameter value -140 dBm. neighbour cell in A5 event. Author: Mayer Walter (C-Plane); SFS abb
Time for which the specific criteria
for the measurement event A5 must
be met in order to trigger a
measurement report. Value Time for which the specific criteria
definitions as stated in 3GPP for the measurement event A5 must
TS36.331: value MS0 corresponds be met in order to trigger a
to 0 ms, MS40 to 40 ms and so on. measurement report. Author: Mayer Walter (C-Plane); SFS abb
The Cell Reselection Timer (t-
ReselectionEUTRAN) is multiplied
with this factor if the UE is in Cell Reselection Timer factor if the
Medium High Mobility state. UE is in High Mobility state.
The Cell Reselection Timer (t-
ReselectionEUTRAN) is multiplied
with this factor if the UE is in Cell Reselection Timer factor if the
Medium Mobility state. UE is in Medium Mobility state.
The Cell Reselection Priority
parameter defines the absolute
priority of the serving layer. 0 means Defines the absolute priority of the
lowest priority. serving layer.
Cell which are 'cell reserved for
operator use' are treated as barred
by 'normal' UE without an USIM
with AC 11 or 15 inserted. UEs with
AC 11 or 15 USIM inserted are
specific operator Ues and thus
allowed to
camp on and access such cells.
Default value not reserved.
Instance Number 1 of this list is
related to the primary PLMN-Id.
The remaining instances are related Indicates if the cell is reserved for
to the further PLMN-Ids. operator use. Author: M. Guessregen (C-Plane)SFS abb
The parameter defines cyclic prefix
configuration/length for OFDM
symbol in downlink and uplink. Cyclic prefix length in downlink and
Parameter is vendor specific uplink Author: Tuomas Hakuli (U-Plane)SFS abb
User can define lower cell output
power by the cell power reduction.
Reduction is set down from a Sets the power reduction from a
antenna maximum TX power. antenna maximum Tx power Author: Marko Saarinen (U-plane);SFS ab
Defines the Intra-Frequency
Blacklisted Cell List. Intra-Frequency Blacklisted Cell List Author: M. Gussregen (C-Plane)SFS abbr
Defines the Intra-Frequency Intra-Frequency Neighbouring Cell
Neighbouring Cell List. List
The parameter defines a cell-
specific offset (in dB) that is used in Defines a cell-specific offset used
the cell reselection procedure. for cell reselection.
Used to control cell reselection on
intra-frequency cells when the
highest ranked cell is barred,
or is considered as barred by the Indicates if intra-frequency cell
UE, as specified in TS 36.304 reselection is allowed or not Author: M. Gussregen (C-Plane)SFS abbr
Preamble cyclic shift defines the
configuration which is used for
preamble generation. The
configuration determines how many
cyclic shifts are needed to generate
preamble. Unrestricted set is
supported.
Configuration also defines the zero Defines the PRACH Cyclic Shift
correlation zone and respective configuration for preamble
maximum cell range. generation
Defines allowed System frame and
sub-frame numbers for random Defines subframes and preamble
access attempts, and the preamble format for random access attempt
format. opportunities. Author: Tuomas Hakuli (U-Plane)SFS abb
First physical resource block
available for PRACH in the UL Defines the location in frequency for
system frequency band. the PRACH transmissions. Author: Tuomas Hakuli (U-Plane)SFS abb
High speed flag for PRACH
preamble generation determines
whether unrestricted or restricted set
has to be used by UE. Unrestricted
set, and thus parameter value false High speed flag for PRACH
is supported. preamble generation
The parameter Preamble
Transmission Maximum defines the
maximum number of random
access transmissions.
Note: The values n50, n100 and Defines the maximum number of
n200 shall not be used. random access transmissions. Author: M. Gussregen (C-Plane)SFS abbr
The Qhyst parameter provides the
hysteresis value in dB for ranking
criteria in the cell reselection
procedure. Parameter is used to Provides the hysteresis value for the
minimize pingpong. cell reselection procedure.
Parameter defines an additional
hysteresis value to be applied in
High Mobility state
to the Cell Reselection Procedure
Hysteresis Value (q-Hyst). Hysteresis value in High Mobility
Value db-6 corresponds to -6dB, db- state applied to the Cell Reselection
4 corresponds to -4dB and so on. Procedure Hysteresis Value. Author: M. Guessregen (C-Plane)SFS abb
Parameter defines an additional
hysteresis value to be applied in
Medium Mobility state
to the Cell Reselection Procedure
Hysteresis Value (q-Hyst). Hysteresis value in Medium Mobility
Value db-6 corresponds to -6dB, db- state applied to the Cell Reselection
4 corresponds to -4dB and so on. Procedure Hysteresis Value. Author: M. Guessregen (C-Plane)SFS abb
Specifies the minimum required Rx
RSRP level for the intra-frequency Indicates the minimum required RX
neighbouring E-UTRA cells. level in the cell (dBm) for intra-
(Qrxlevmin in 36.304) frequency Author: M. Gussregen (C-Plane)SFS abbr
The Random Access Backoff
parameter defines the backoff in
TTIs that should be applied if a Defines the backoff that should be
random access fails. applied if a random access fails. Author: Raimo Karjalainen (U-Plane); SFS
This parameter is used to determine
the total number of non dedicated
RA preambles that UE can select
from (i.e. for contention based RA). Defines the total number of RA
The minimum cannot be zero. Preambles that a UE can select. Author: Raimo Karjalainen (U-Plane); SFS
Preable generation is started from
the Root Sequence which is pointed
by the logical root sequence
number. 64 preambles can be
transmitted in the PRACH frame. If
one root is not enough to generate
all the 64 preambles, then the
concecutive number is selected until
the full set is generated. RACH root
sequence is cell specific information
and neighbouring cells shall have a RACH Root Sequence defines the
different value. RACH root physical root sequence number
sequence is transmitted in system which is used as starting point to
information. generate preamble sequencies Author: Tuomas Hakuli (U-Plane); SFS ab
The Sintrasearch parameter defines
the threshold (in dB) for intra
frequency measurements.
UE can omit measurements of intra-
frequency neighbor cells if serving Defines the threshold (in dB) for
cell is above a certain threshold. intra frequency measurements Author: M. Gussregen (C-Plane)SFS abbr
The Timer T300 supervises the
RRC Connnection Establishment
procedure.
Start: Transmission of
RRCConnectionRequest
Stop: Reception of
RRCConnectionSetup or
RRCConnectionReject message,
cell re-selection and upon abortion
of connection establishment by
upper layers T300 supervises the RRC
At expiry: Perform the actions as Connnection Establishment
specified in 36.331, 5.3.3.6 procedure. Author: M. Guessregen (C-Plane)SFS abb
The Timer T301 supervises the
RRC Connnection Re-Establishment
procedure.
Start: Transmission of
RRCConnectionReestabilshmentRe
quest
Stop: Reception of
RRCConnectionReestablishment or
RRCConnectionReestablishmentRej
ect message as well as when the T301 supervises the RRC
selected cell becomes unsuitable Connnection Establishment
At expiry: Go to RRC_IDLE procedure. Author: M. Guessregen (C-Plane)SFS abb
eNB sends this parameter to UE in
the message RRC CONNECTION
REJECT.
UE will consider access to the cell
as barred for the time specified by T302 suppresses reselection of a
t302. cell for a short while. Author: E.Holzer (C-Plane)SFS abbreviate
The Timer T304 supervises the The Timer T304 supervises the
successful completion of handover successful completion of handover
or cell change or cell change Author: Mayer Walter (C-Plane); SFS abb
The Timer T310 supervises the
recovery from physical layer T310 supervises the recovery from
problems. physical layer problems.
The Timer T311 supervises the
RRC Connnection Re- T311 supervises the RRC
Establishment. Connnection Re-Establishment. Author: M. Gussregen (C-Plane)SFS abbr
Timer TCRmax defines the duration
for evaluating the criteria to enter
mobility states. For idle mode it
corresponds to TCRmax in TS Defines the duration for evaluating
36.304. the criteria to enter mobility states.
The Timer TCRmaxHyst defines the
additional duration for evaluating the
criteria to enter normal mobility Defines the additional duration for
state. For idle mode it corresponds evaluating the criteria to enter
to TCRmaxHyst in TS 36.304. normal mobility state.
The Treselection parameter defines
the cell reselection timer value. It
allows averaging of the target cell
quality before cell reselection is Defines the cell reselection timer
performed. value.
The Preamble Initial Received
Target Power parameter defines the Defines the initial power for Random
initial power for Random Access Access Preamble
Preamble transmission. transmission.(dBm)
Multiplicity Related Functions System information Related Parameters
1 E-RAB Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 System Information Broadcast
1 System Information Broadcast
6 System Information Broadcast
1 Packet Scheduler
1 Power Control
16 System Information Broadcast
16
1 System Information Broadcast
1 Random Access
1 Random Access
ulChBw of LNCEL - null
1 Packet Scheduler, Random Access (public)
1 Random Access
1 System Information Broadcast
1 System Information Broadcast
1 System Information Broadcast
1 System Information Broadcast
1 Random Access
1 System Information Broadcast
1 System Information Broadcast
1 System Information Broadcast
1 Handover Control
1 System Information Broadcast
1
Description of Parameter Relationships Group Classification Interfaces
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
Range: 0,1,2, ulChBw in PRBs - 8, ulChBw in
PRBs -7, ulChBw in PRBs -6
Default value: 1 LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> R
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
no relations EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RAC
Range and Step
1...9, step 1
100...6000 ms, step 100 ms
10...2000 ms, step 10 ms
-30...30 dB, step 1 dB
1r (0), 2r (1), 4r (2), 8r (3), 16r (4), 32r (5), 64r (6), infinity (7)
120ms (0), 240ms (1), 480ms (2), 640ms (3), 1024ms (4), 2048ms (5), 5120ms (6), 10240ms (7), 1min (8), 6min (9), 12min (1
0ms (0), 40ms (1), 64ms (2), 80ms (3), 100ms (4), 128ms (5), 160ms (6), 256ms (7), 320ms (8), 480ms (9), 512ms (10), 640m
1r (0), 2r (1), 4r (2), 8r (3), 16r (4), 32r (5), 64r (6), infinity (7)
120ms (0), 240ms (1), 480ms (2), 640ms (3), 1024ms (4), 2048ms (5), 5120ms (6), 10240ms (7), 1min (8), 6min (9), 12min (1
0...97 dB, step 1 dB
0...97 dB, step 1 dB
0ms (0), 40ms (1), 64ms (2), 80ms (3), 100ms (4), 128ms (5), 160ms (6), 256ms (7), 320ms (8), 480ms (9), 512ms (10), 640m
0.25 (0), 0.5 (1), 0.75 (2), 1 (3)
0.25 (0), 0.5 (1), 0.75 (2), 1 (3)
0...7, step 1
Not Reserved (0), Reserved (1)
normal (0)
0...10 dB, step 0.1 dB
-24 dB (0), -22 dB (1), -20 dB (2), -18 dB (3), -16 dB (4), -14 dB (5), -12 dB (6), -10 dB (7), -8 dB (8), -6 dB (9), -5 dB (10), -4 dB
allowed (0), notAllowed (1)
0...15, step 1
3...24, step 1
0...94, step 1
3 (0), 4 (1), 5 (2), 6 (3), 7 (4), 8 (5), 10 (6), 20 (7), 50 (8), 100 (9), 200 (10)
0dB (0), 1dB (1), 2dB (2), 3dB (3), 4dB (4), 5dB (5), 6dB (6), 8dB (7), 10dB (8), 12dB (9), 14dB (10), 16dB (11), 18dB (12), 20d
-6 dB (0), -4 dB (1), -2 dB (2), 0 dB (3)
-6 dB (0), -4 dB (1), -2 dB (2), 0 dB (3)
-140...-44 dBm, step 2 dBm
2 (0), 5 (1), 10 (2), 20 (3), 50 (4), 100 (5), 200 (6), 500 (7), 1000 (8)
4 (0), 8 (1), 12 (2), 16 (3), 20 (4), 24 (5), 28 (6), 32 (7), 36 (8), 40 (9), 44 (10), 48 (11), 52 (12), 56 (13), 60 (14), 64 (15)
0...837, step 1
0...62 dB, step 2 dB
100ms (0), 200ms (1), 300ms (2), 400ms (3), 600ms (4), 1000ms (5), 1500ms (6), 2000ms (7)
100ms (0), 200ms (1), 300ms (2), 400ms (3), 600ms (4), 1000ms (5), 1500ms (6), 2000ms (7)
1000...16000 ms, step 1000 ms
50ms (0), 100ms (1), 150ms (2), 200ms (3), 500ms (4), 1000ms (5), 2000ms (6)
0ms (0), 50ms (1), 100ms (2), 200ms (3), 500ms (4), 1000ms (5), 2000ms (6)
1000ms (0), 3000ms (1), 5000ms (2), 10000ms (3), 15000ms (4), 20000ms (5), 30000ms (6)
30s (0), 60s (1), 120s (2), 180s (3), 240s (4)
30s (0), 60s (1), 120s (2), 180s (3), 240s (4)
0...7 s, step 1 s
-120 dBm (0), -118 dBm (1), -116 dBm (2), -114 dBm (3), -112 dBm (4), -110 dBm (5), -108 dBm (6), -106 dBm (7), -104 dBm
Default Value Default Value Notes Special Value Formula Required on Creation Modification
- internal_value
Mandatory
= gui_value Not modifiable
500 ms FFS internal_value
Mandatory
= gui_value / 100 Not modifiable
50 ms internal_value
Mandatory
= gui_value BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
infinity (7) Indefinite amount of event reports Mandatory BTS restart needed
1024ms (4) Send event reports with an interval of 1024ms Mandatory BTS restart needed
- Trigger immediately Mandatory BTS restart needed
infinity (7) Indefinite amount of event reports Mandatory BTS restart needed
1024ms (4) Send event reports with an interval of 1024ms Mandatory BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
- Trigger immediately Mandatory BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
- Not reserved for operator use Mandatory BTS restart needed
- Mandatory Not modifiable
- internal_value
Mandatory
= gui_value * 10 BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
0 dB (15) 0 dB means no offset Mandatory BTS restart needed
- Mandatory BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
3 internal_value
Mandatory
= gui_value BTS restart needed
1 internal_value
Mandatory
= gui_value BTS restart needed
false High speed is not supported Mandatory BTS restart needed
8 (5) 8 Mandatory BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
- Mandatory BTS restart needed
40 (9) Mandatory BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
8000 ms internal_value
Mandatory
= gui_value BTS restart needed
200ms (3) Mandatory BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
- Mandatory BTS restart needed
- internal_value
Mandatory
= gui_value BTS restart needed
-104 dBm (8) Mandatory BTS restart needed
Modified Related Features Calculation References Internal NE Type
LTE5 Radio bearer and S1 bearer establishment
NSN reference:
andTF_LTE_SFS_BEARERMAN.300
release (internal), 3GPP Reference:
LTE5 Radio bearer and S1 bearer establishment
NSN reference:
andTF_LTE_SFS_BEARERMAN.424,
release Baseline1.0 (V2.0) (internal)
LTE53 Intra and inter eNB handoverNSN
with reference:
X2 TF_LTE_SFS_MM.1444, Baseline 4.1 (V6.1) (internal), 3GPP R
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN refe
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN refe
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS
range and description
LTE53c Simplified
corrected
intra
according
eNB handover
to fault
3GPPreport
Reference:
54867ESPE04
TS 36.331
and 57996ESPE02
V8.3.0 (internal), NSN reference: RRM_LTE_SFS
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN refe
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN refe
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN refe
LTE53c Simplified intra eNB handover
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS _541 (internal), 3GPP Reference: TS 36.33
LBT959 SFS baseline 09/2008 3GPP Reference: TS36211 (public)
LTE27 Open loop UL power control 3GPP
and DLReference:
power setting
TS36.313 (internal), NSN reference: RRM SFS/object_id 765
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS_666 (internal), 3GPP Reference: TS 36.33
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS.664 (internal), 3GPP Reference: TS 36.331
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS.544 , (baseline 5.2, SFSv5.1.3) (internal)
LTE40 Physical & transport channels3GPP Reference: 36.211 / 5.7.2 (internal), NSN reference: Radio Layer 1 SFS/
LTE40 Physical & transport channelsNSN reference: Radio Layer 1 SFS/object_id 1219 (internal), 3GPP Reference:
LTE40 Physical & transport channelsNSN reference: Radio Layer 1 SFS/object_id 1222 (internal), 3GPP Reference:
LTE39 System information broadcast
3GPP Reference: 36.211 / 5.7.2 (internal), NSN reference: Radio Layer 1 SFS
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS.553, (baseline 5.2, SFSv5.1.3) (internal), 3
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS_620 (internal), 3GPP Reference: TS 36.33
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS_620 (internal), 3GPP Reference: TS 36.33
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS_714 (internal), 3GPP Reference: TS 36.33
LTE39 System information broadcast
3GPP Reference: TS 36.321 (public), NSN reference: TF_LTE_SFS_RL2 (inter
LTE40 Physical & transport channelsNSN reference: Radio Layer 2 SFS/object_id 1060 (internal)
LTE40 Physical & transport channels3GPP Reference: 36.211 / 5.7.2 (internal), NSN reference: Radio Layer 1 SFS/
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS.560, (baseline 5.2, SFSv5.1.3) (internal), 3
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS_611 (internal), 3GPP Reference: TS 36.33
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS_611 (internal), 3GPP Reference: TS 36.33
LTE50 UE state management NSN reference: TF_LTE_SFS_UESTATE.986 (internal), 3GPP Reference: TS
LTE53 Intra and inter eNB handoverNSN
with reference:
X2 TF_LTE_SFS_MM (internal), 3GPP Reference: TS 36.331 (pub
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS.611, (baseline 5.2, SFSv5.1.3) (internal), 3
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (pu
LTE39 System information broadcast
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.321 (pu
MO Class Parameter Id Parameter Name
LNBTS 53084 QCI
LNBTS 53104 RRC Guard Timer Radio Bearer Management
LNBTS 53115 Handover Cancel Latency Timer
LNCEL 53259 A3 Offset
LNCEL 53260 A3 Report Amount
LNCEL 53261 A3 Report Interval
LNCEL 53262 A3 Time To Trigger
LNCEL 53263 A5 Report Amount
LNCEL 53264 A5 Report Interval
LNCEL 53265 A5 Threshold 1
LNCEL 53266 A5 Threshold 2
LNCEL 53267 A5 Time To Trigger
LNCEL 53279 Cell Reselection Timer Factor High Mobility
LNCEL 53280 Cell Reselection Timer Factor Medium Mobility
LNCEL 53283 Cell Reselection Priority
LNCEL 53285 Cell Reserved For Operator Use
LNCEL 53298 Cyclic Prefix Length In DL And UL
LNCEL 53320 Cell Power Reduce
LNCEL 53373 Intra-Frequency Blacklisted Cell List
LNCEL 53377 Intra-Frequency Neighbouring Cell List
LNCEL 53379 Cell Reselection Procedure Offset
LNCEL 53380 Intra Frequency Cell Reselection Allowed
LNCEL 53469 PRACH Cyclic Shift
LNCEL 53470 PRACH Configuration Index
LNCEL 53471 PRACH Frequency Offset
LNCEL 53472 PRACH High Speed Flag
LNCEL 53474 Preamble Transmission Maximum
LNCEL 53486 Cell Reselection Procedure Hysteresis Value
LNCEL 53487 Cell Reselection Hysteresis High Mobility
LNCEL 53488 Cell Reselection Hysteresis Medium Mobility
LNCEL 53490 Min Required RX level for intra-freq neighbouring cells
LNCEL 53491 Random Access Backoff
LNCEL 53499 Number Of Random Access Preambles
LNCEL 53512 RACH Root Sequence
LNCEL 53514 Intra Frequency Measurements Threshold
LNCEL 53542 Timer T300
LNCEL 53543 Timer T301
LNCEL 53544 Timer T302
LNCEL 53545 Timer T304 Intra LTE
LNCEL 53546 Timer T310
LNCEL 53547 Timer T311
LNCEL 53549 Timer TCRmax
LNCEL 53550 Timer TCRmaxHyst
LNCEL 53555 Cell Reselection Timer
LNCEL 53588 Preamble Initial Received Target Power
Abbreviated Name 3GPP Name Data Type Status Hidden
qci Number proposal
rrcGuardTimer Number approved
tX2RelocHold Number proposal
a3Offset Number proposal
a3ReportAmount Enumeration proposal
a3ReportInterval Enumeration proposal
a3TimeToTrigger Enumeration proposal
a5ReportAmount Enumeration proposal
a5ReportInterval Enumeration proposal
a5Threshold1 Number proposal
a5Threshold2 Number proposal
a5TimeToTrigger Enumeration proposal
celResTiFHM t-ReselectionEUTRAN-SF-High Enumeration proposal
celResTiFMM t-ReselectionEUTRAN-SF-Medium Enumeration proposal
cellReSelPrio cellReselectionPriority Number proposal
cellReserve cellReservedForOperatorUse Enumeration proposal
cycPrefix cyclic prefix Enumeration proposal
dlCellPwrRed Number proposal
intrFrBCList IntraFreqBlacklistedCellList Structure proposal
intrFrNCList IntraFreqNeighbouringCellList Structure proposal
qOffsetCell q-OffsetCell Enumeration proposal
intrFrqCelRes intraFrequencyReselection Enumeration proposal
prachCS Number approved
prachConfIndex prach-ConfigurationIndex Number proposal
prachFreqOff prach-FrequencyOffset Number proposal
prachHsFlag Boolean approved
preambTxMax preambleTransMax Enumeration proposal
qHyst q-Hyst Enumeration proposal
qHystSfHigh sf-High Enumeration proposal
qHystSfMed sf-Medium Enumeration proposal
qrxlevminintraF q-RxLevMin Number proposal
raBackoff FFS Enumeration approved
raNondedPreamb Enumeration proposal
rootSeqIndex Number approved
sIntrasearch s-IntraSearch Number proposal
t300 t300 Enumeration proposal
t301 t301 Enumeration proposal
t302 t302 Number proposal
t304IntraLte t304 Enumeration proposal
t310 t310 Enumeration proposal
t311 t311 Enumeration proposal
tEvalulation t-Evalulation Enumeration proposal
tHystNormal t-HystNormal Enumeration proposal
tReselEutr t-ReselectionEUTRAN Number proposal
ulpcIniPrePwr preambleInitialReceivedTargetPower Enumeration proposal
Description
QoS Class Identifier
This timer is started when an RRC message for setup, modification or release of a radio bearer
is sent to the UE. When the timer expires, the corresponding procedure is aborted.
This timer is started in the source eNB when the X2AP: HANDOVER CANCEL message is sent
to the target eNB and is typically stopped when the X2AP: HANDOVER REQUEST
ACKNOWLEDGE or X2AP: HANDOVER PREPARATION FAILURE message is received.
When the timer expires X2 signalling connections at Source eNB shall be closed. Parameter is
vendor specific
Handover margin for better cell HO. Used in measurement event type A3 where the event is
triggered when the neighbor cell becomes A3 offset better than the serving cell. The actual
value is parameter value multiplied by 0.5 dB.
Defines the maximum number of measurement reports that will be sent as long as the specific
criteria for the measurement event A3 is met.
Defines the interval with which measurement reports are repeatedly sent as long as the specific
criteria for the measurement event A3 is met. Value definitions as stated in 3GPP TS36.331:
value MS120 corresponds to 120 ms, MS240 to 240 ms and so on, while value MIN1
corresponds to 1 min, MIN6 to 6 min and so on.
Time for which the specific criteria for the measurement event A3 must be met in order to
trigger a measurement report. Value definitions as stated in 3GPP TS36.331: value MS0
corresponds to 0 ms, MS40 to 40 ms and so on.
Defines the maximum number of measurement reports that will be sent as long as the specific
criteria for the measurement event A5 is met.
Defines the interval with which measurement reports are repeatedly sent as long as the specific
criteria for the measurement event A5 is met. Value definitions as stated in 3GPP TS36.331:
value MS120 corresponds to 120 ms, MS240 to 240 ms and so on, while value MIN1
corresponds to 1 min, MIN6 to 6 min and so on.
Receive level threshold for serving cell in A5 event. Used in measurement event type A5 where
the event is triggered if the serving cell becomes worse than a5Threshold1 AND the neighbor
cell becomes better than a5Threshold2. The actual threshold value is parameter value -140
dBm.
Receive level threshold for neighbour cell in A5 event. Used in measurement event type A5
where the event is triggered if the serving cell becomes worse than a5Threshold1 AND the
neighbor cell becomes better than a5Threshold2. The actual threshold value is parameter value
-140 dBm.
Time for which the specific criteria for the measurement event A5 must be met in order to
trigger a measurement report. Value definitions as stated in 3GPP TS36.331: value MS0
corresponds to 0 ms, MS40 to 40 ms and so on.
The Cell Reselection Timer (t-ReselectionEUTRAN) is multiplied with this factor if the UE is in
Medium High Mobility state.
The Cell Reselection Timer (t-ReselectionEUTRAN) is multiplied with this factor if the UE is in
Medium Mobility state.
The Cell Reselection Priority parameter defines the absolute priority of the serving layer. 0
means lowest priority.
Cell which are 'cell reserved for operator use' are treated as barred by 'normal' UE without an
USIM
with AC 11 or 15 inserted. UEs with AC 11 or 15 USIM inserted are specific operator Ues and
thus allowed to
camp on and access such cells. Default value not reserved.
Instance Number 1 of this list is related to the primary PLMN-Id.
The remaining instances are related to the further PLMN-Ids.
The parameter defines cyclic prefix configuration/length for OFDM symbol in downlink and
uplink.
Parameter is vendor specific
User can define lower cell output power by the cell power reduction. Reduction is set down from
a antenna maximum TX power.
Defines the Intra-Frequency Blacklisted Cell List.
Defines the Intra-Frequency Neighbouring Cell List.
The parameter defines a cell-specific offset (in dB) that is used in the cell reselection procedure.
Used to control cell reselection on intra-frequency cells when the highest ranked cell is barred,
or is considered as barred by the UE, as specified in TS 36.304
Preamble cyclic shift defines the configuration which is used for preamble generation. The
configuration determines how many cyclic shifts are needed to generate preamble. Unrestricted
set is supported.
Configuration also defines the zero correlation zone and respective maximum cell range.
Defines allowed System frame and sub-frame numbers for random access attempts, and the
preamble format.
First physical resource block available for PRACH in the UL system frequency band.
High speed flag for PRACH preamble generation determines whether unrestricted or restricted
set has to be used by UE. Unrestricted set, and thus parameter value false is supported.
The parameter Preamble Transmission Maximum defines the maximum number of random
access transmissions.
Note: The values n50, n100 and n200 shall not be used.
The Qhyst parameter provides the hysteresis value in dB for ranking criteria in the cell
reselection procedure. Parameter is used to minimize pingpong.
Parameter defines an additional hysteresis value to be applied in High Mobility state
to the Cell Reselection Procedure Hysteresis Value (q-Hyst).
Value db-6 corresponds to -6dB, db-4 corresponds to -4dB and so on.
Parameter defines an additional hysteresis value to be applied in Medium Mobility state
to the Cell Reselection Procedure Hysteresis Value (q-Hyst).
Value db-6 corresponds to -6dB, db-4 corresponds to -4dB and so on.
Specifies the minimum required Rx RSRP level for the intra-frequency neighbouring E-UTRA
cells.
(Qrxlevmin in 36.304)
The Random Access Backoff parameter defines the backoff in TTIs that should be applied if a
random access fails.
This parameter is used to determine the total number of non dedicated RA preambles that UE
can select from (i.e. for contention based RA). The minimum cannot be zero.
Preable generation is started from the Root Sequence which is pointed by the logical root
sequence number. 64 preambles can be transmitted in the PRACH frame. If one root is not
enough to generate all the 64 preambles, then the concecutive number is selected until the full
set is generated. RACH root sequence is cell specific information and neighbouring cells shall
have a different value. RACH root sequence is transmitted in system information.
The Sintrasearch parameter defines the threshold (in dB) for intra frequency measurements.
UE can omit measurements of intra-frequency neighbor cells if serving cell is above a certain
threshold.
The Timer T300 supervises the RRC Connnection Establishment procedure.
Start: Transmission of RRCConnectionRequest
Stop: Reception of RRCConnectionSetup or RRCConnectionReject message,
cell re-selection and upon abortion of connection establishment by upper layers
At expiry: Perform the actions as specified in 36.331, 5.3.3.6
The Timer T301 supervises the RRC Connnection Re-Establishment procedure.
Start: Transmission of RRCConnectionReestabilshmentRequest
Stop: Reception of RRCConnectionReestablishment or RRCConnectionReestablishmentReject
message as well as when the selected cell becomes unsuitable
At expiry: Go to RRC_IDLE
eNB sends this parameter to UE in the message RRC CONNECTION REJECT.
UE will consider access to the cell as barred for the time specified by t302.
The Timer T304 supervises the successful completion of handover or cell change
The Timer T310 supervises the recovery from physical layer problems.
The Timer T311 supervises the RRC Connnection Re-Establishment.
Timer TCRmax defines the duration for evaluating the criteria to enter mobility states. For idle
mode it corresponds to TCRmax in TS 36.304.
The Timer TCRmaxHyst defines the additional duration for evaluating the criteria to enter
normal mobility state. For idle mode it corresponds to TCRmaxHyst in TS 36.304.
The Treselection parameter defines the cell reselection timer value. It allows averaging of the
target cell quality before cell reselection is performed.
The Preamble Initial Received Target Power parameter defines the initial power for Random
Access Preamble transmission.
Short Description
QoS Class Identifier
RRC guard timer for outgoing radio bearer requests
Spare time at source side after sent of X2AP: HANDOVER CANCEL
for Inter eNB Handover
Handover margin for better cell HO.
Defines the maximum number of measurement reports that will be sent
as long as the specific criteria for the measurement event A3 is met.
Defines the interval with which measurement reports are sent as long
as the specific criteria for the measurement event A3 is met.
Time for which the specific criteria for the measurement event A3 must
be met in order to trigger a measurement report.
Defines the maximum number of measurement reports that will be sent
as long as the specific criteria for the measurement event A5 is met.
Defines the interval with which measurement reports are sent as long
as the specific criteria for the measurement event A5 is met.
Receive level threshold for serving cell in A5 event.
Receive level threshold for neighbour cell in A5 event.
Time for which the specific criteria for the measurement event A5 must
be met in order to trigger a measurement report.
Cell Reselection Timer factor if the UE is in High Mobility state.
Cell Reselection Timer factor if the UE is in Medium Mobility state.
Defines the absolute priority of the serving layer.
Indicates if the cell is reserved for operator use.
Cyclic prefix length in downlink and uplink
Sets the power reduction from a antenna maximum Tx power
Intra-Frequency Blacklisted Cell List
Intra-Frequency Neighbouring Cell List
Defines a cell-specific offset used for cell reselection.
Indicates if intra-frequency cell reselection is allowed or not
Defines the PRACH Cyclic Shift configuration for preamble generation
Defines subframes and preamble format for random access attempt
opportunities.
Defines the location in frequency for the PRACH transmissions.
High speed flag for PRACH preamble generation
Defines the maximum number of random access transmissions.
Provides the hysteresis value for the cell reselection procedure.
Hysteresis value in High Mobility state applied to the Cell Reselection
Procedure Hysteresis Value.
Hysteresis value in Medium Mobility state applied to the Cell
Reselection Procedure Hysteresis Value.
Indicates the minimum required RX level in the cell (dBm) for intra-
frequency
Defines the backoff that should be applied if a random access fails.
Defines the total number of RA Preambles that a UE can select.
RACH Root Sequence defines the physical root sequence number
which is used as starting point to generate preamble sequencies
Defines the threshold (in dB) for intra frequency measurements
T300 supervises the RRC Connnection Establishment procedure.
T301 supervises the RRC Connnection Establishment procedure.
T302 suppresses reselection of a cell for a short while.
The Timer T304 supervises the successful completion of handover or
cell change
T310 supervises the recovery from physical layer problems.
T311 supervises the RRC Connnection Re-Establishment.
Defines the duration for evaluating the criteria to enter mobility states.
Defines the additional duration for evaluating the criteria to enter normal
mobility state.
Defines the cell reselection timer value.
Defines the initial power for Random Access Preamble
transmission.(dBm)
Additional Information
Author: Tillmann Richter (C-Plane); SFS abbrev. name: qci (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A3_Offset (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A3-reportAmount (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A3-reportInterval (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A3-timeTotrigger (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A5-reportAmount (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A5-reportInterval (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A5_Threshold1 (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A5_Threshold2 (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: A5-timeToTrigger (internal)
Author: M. Guessregen (C-Plane)SFS abbrev. name:cellReservedForOperatorUse (internal)
Author: Tuomas Hakuli (U-Plane)SFS abbreviated name: cycConf (internal)
Author: Marko Saarinen (U-plane);SFS abbreviated name: CELL_PWR_RED (internal)
Author: M. Gussregen (C-Plane)SFS abbrev. name:IntraFreqBlacklistedCellList (internal)
Author: M. Gussregen (C-Plane)SFS abbrev. name: intraFrequencyReselection (internal)
Author: Tuomas Hakuli (U-Plane)SFS abbreviated name: RL1_SFSRange is restricted to two different ranges: 3-8 and 19-24 (in
Author: Tuomas Hakuli (U-Plane)SFS abbreviated name: PrachFrequencyOffset (internal)
Author: M. Gussregen (C-Plane)SFS abbrev. name: preambleTransMax (internal)
Author: M. Guessregen (C-Plane)SFS abbrev. name: sf-High (internal)
Author: M. Guessregen (C-Plane)SFS abbrev. name: sf-Medium (internal)
Author: M. Gussregen (C-Plane)SFS abbrev. name:q-RxLevMin-intraFrequency (internal)
Author: Raimo Karjalainen (U-Plane); SFS abbrev. name: raBackoffSize (internal)
Author: Raimo Karjalainen (U-Plane); SFS abbrev. name: RaPreambles (internal)
Author: Tuomas Hakuli (U-Plane); SFS abbrev. name: RootSeqIndex (internal)
Author: M. Gussregen (C-Plane)SFS abbrev. name:s-IntraSearch (internal)
Author: M. Guessregen (C-Plane)SFS abbrev. name: t300 (internal)
Author: M. Guessregen (C-Plane)SFS abbrev. name: t301 (internal)
Author: E.Holzer (C-Plane)SFS abbreviated name: t302 (internal)
Author: Mayer Walter (C-Plane); SFS abbrev. name: T304_IntraLTE (internal)
Author: M. Gussregen (C-Plane)SFS abbrev. name: t311 (internal)
Multiplicity Related Functions System information
1 E-RAB Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 Handover Control
1 System Information Broadcast
1 System Information Broadcast
6 System Information Broadcast
1 Packet Scheduler
1 Power Control
16 System Information Broadcast
16
1 System Information Broadcast
1 Random Access
1 Random Access
1 Packet Scheduler, Random Access
1 Random Access
1 System Information Broadcast
1 System Information Broadcast
1 System Information Broadcast
1 System Information Broadcast
1 Random Access
1 System Information Broadcast
1 System Information Broadcast
1 System Information Broadcast
1 Handover Control
1
1 System Information Broadcast
1
Related Parameters Description of Parameter Relationships Group
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
Range: 0,1,2, ulChBw in PRBs - 8, ulChBw in
ulChBw of LNCEL - null PRBs -7, ulChBw in PRBs -6
(public) Default value: 1
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
no relations
Classification Interfaces
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
LTE BTS <-> EM, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
LTE BTS <-> EM, LTE BTS <-> RAC, RACApp <-> RAC
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
EM <-> LTE BTS, LTE BTS <-> RAC, RAC <-> RACApp
Range and Step
1...9, step 1
100...6000 ms, step 100 ms
10...2000 ms, step 10 ms
-30...30 dB, step 1 dB
1r (0), 2r (1), 4r (2), 8r (3), 16r (4), 32r (5), 64r (6), infinity (7)
120ms (0), 240ms (1), 480ms (2), 640ms (3), 1024ms (4), 2048ms (5), 5120ms (6), 10240ms (7), 1min (8), 6min (9), 12min (10
0ms (0), 40ms (1), 64ms (2), 80ms (3), 100ms (4), 128ms (5), 160ms (6), 256ms (7), 320ms (8), 480ms (9), 512ms (10), 640m
1r (0), 2r (1), 4r (2), 8r (3), 16r (4), 32r (5), 64r (6), infinity (7)
120ms (0), 240ms (1), 480ms (2), 640ms (3), 1024ms (4), 2048ms (5), 5120ms (6), 10240ms (7), 1min (8), 6min (9), 12min (10
0...97 dB, step 1 dB
0...97 dB, step 1 dB
0ms (0), 40ms (1), 64ms (2), 80ms (3), 100ms (4), 128ms (5), 160ms (6), 256ms (7), 320ms (8), 480ms (9), 512ms (10), 640m
0.25 (0), 0.5 (1), 0.75 (2), 1 (3)
0.25 (0), 0.5 (1), 0.75 (2), 1 (3)
0...7, step 1
Not Reserved (0), Reserved (1)
normal (0)
0...10 dB, step 0.1 dB
-24 dB (0), -22 dB (1), -20 dB (2), -18 dB (3), -16 dB (4), -14 dB (5), -12 dB (6), -10 dB (7), -8 dB (8), -6 dB (9), -5 dB (10), -4 dB
allowed (0), notAllowed (1)
0...15, step 1
3...24, step 1
0...94, step 1
3 (0), 4 (1), 5 (2), 6 (3), 7 (4), 8 (5), 10 (6), 20 (7), 50 (8), 100 (9), 200 (10)
0dB (0), 1dB (1), 2dB (2), 3dB (3), 4dB (4), 5dB (5), 6dB (6), 8dB (7), 10dB (8), 12dB (9), 14dB (10), 16dB (11), 18dB (12), 20dB
-6 dB (0), -4 dB (1), -2 dB (2), 0 dB (3)
-6 dB (0), -4 dB (1), -2 dB (2), 0 dB (3)
-140...-44 dBm, step 2 dBm
2 (0), 5 (1), 10 (2), 20 (3), 50 (4), 100 (5), 200 (6), 500 (7), 1000 (8)
4 (0), 8 (1), 12 (2), 16 (3), 20 (4), 24 (5), 28 (6), 32 (7), 36 (8), 40 (9), 44 (10), 48 (11), 52 (12), 56 (13), 60 (14), 64 (15)
0...837, step 1
0...62 dB, step 2 dB
100ms (0), 200ms (1), 300ms (2), 400ms (3), 600ms (4), 1000ms (5), 1500ms (6), 2000ms (7)
100ms (0), 200ms (1), 300ms (2), 400ms (3), 600ms (4), 1000ms (5), 1500ms (6), 2000ms (7)
1000...16000 ms, step 1000 ms
50ms (0), 100ms (1), 150ms (2), 200ms (3), 500ms (4), 1000ms (5), 2000ms (6)
0ms (0), 50ms (1), 100ms (2), 200ms (3), 500ms (4), 1000ms (5), 2000ms (6)
1000ms (0), 3000ms (1), 5000ms (2), 10000ms (3), 15000ms (4), 20000ms (5), 30000ms (6)
30s (0), 60s (1), 120s (2), 180s (3), 240s (4)
30s (0), 60s (1), 120s (2), 180s (3), 240s (4)
0...7 s, step 1 s
-120 dBm (0), -118 dBm (1), -116 dBm (2), -114 dBm (3), -112 dBm (4), -110 dBm (5), -108 dBm (6), -106 dBm (7), -104 dBm (
Default Value Default Value Notes Special Value
-
500 ms FFS
50 ms
infinity (7) Indefinite amount of event reports
1024ms (4) Send event reports with an interval of 1024ms
- Trigger immediately
infinity (7) Indefinite amount of event reports
1024ms (4) Send event reports with an interval of 1024ms
- Trigger immediately
- Not reserved for operator use
-
0 dB (15) 0 dB means no offset
false High speed is not supported
8 (5) 8
40 (9)
-
-
8000 ms
200ms (3)
-
-
-104 dBm (8)
Formula Required on Creation Modification
internal_value = gui_value Mandatory Not modifiable
internal_value = gui_value / 100 Mandatory Not modifiable
internal_value = gui_value Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory Not modifiable
internal_value = gui_value * 10 Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
Mandatory BTS restart needed
internal_value = gui_value Mandatory BTS restart needed
Mandatory BTS restart needed
Modified
range and description corrected according to fault report 54867ESPE04 and 57996ESPE02
Related Features Calculation
LTE5 Radio bearer and S1 bearer establishment and release
LTE5 Radio bearer and S1 bearer establishment and release
LTE53 Intra and inter eNB handover with X2
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE53c Simplified intra eNB handover
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LBT959 SFS baseline 09/2008
LTE27 Open loop UL power control and DL power setting
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE40 Physical & transport channels
LTE40 Physical & transport channels
LTE40 Physical & transport channels
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE40 Physical & transport channels
LTE40 Physical & transport channels
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE50 UE state management
LTE53 Intra and inter eNB handover with X2
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
LTE39 System information broadcast
References
NSN reference: TF_LTE_SFS_BEARERMAN.300 (internal), 3GPP Reference: TS 23.203 (public)
NSN reference: TF_LTE_SFS_BEARERMAN.424, Baseline1.0 (V2.0) (internal)
NSN reference: TF_LTE_SFS_MM.1444, Baseline 4.1 (V6.1) (internal), 3GPP Reference: TS 36.331 (internal)
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN reference: RRM_LTE_SFS_RRM.945, Baseline V4
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN reference: RRM_LTE_SFS_RRM.945, Baseline V4
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS_RRM.945 (V3.0.1, 26.09.2008) (internal)
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS_RRM.945 (V3.0.1, 26.09.2008) (internal)
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN reference: RRM_LTE_SFS_RRM.945, Baseline V4
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS_RRM.945 (V3.0.1, 26.09.2008) (internal)
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN reference: RRM_LTE_SFS_RRM.945, Baseline V4
3GPP Reference: TS 36.331 V8.3.0 + latest CR R2-08xxxx (internal), NSN reference: RRM_LTE_SFS_RRM.945, Baseline V4
3GPP Reference: TS 36.331 V8.3.0 (internal), NSN reference: RRM_LTE_SFS_RRM.945 (V3.0.1, 26.09.2008) (internal)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS _541 (internal), 3GPP Reference: TS 36.331 (public)
3GPP Reference: TS36211 (public)
3GPP Reference: TS36.313 (internal), NSN reference: RRM SFS/object_id 765 (internal)
NSN reference: TF_LTE_SFS_SYS_666 (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS.664 (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS.544 , (baseline 5.2, SFSv5.1.3) (internal)
3GPP Reference: 36.211 / 5.7.2 (internal), NSN reference: Radio Layer 1 SFS/object_id 1226 (internal)
NSN reference: Radio Layer 1 SFS/object_id 1219 (internal), 3GPP Reference: 36.211 / 5.7.1, 36.331 / 6.3.2 (public)
NSN reference: Radio Layer 1 SFS/object_id 1222 (internal), 3GPP Reference: 36.211 / 5.7.1, 36.104 / 5.2, 36.331 / 6.3.2 (publ
3GPP Reference: 36.211 / 5.7.2 (internal), NSN reference: Radio Layer 1 SFS / Id_1228 (internal)
NSN reference: TF_LTE_SFS_SYS.553, (baseline 5.2, SFSv5.1.3) (internal), 3GPP Reference: TS 36.321, 36.331 (internal)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS_620 (internal), 3GPP Reference: TS 36.331, TS 36.304 (public)
NSN reference: TF_LTE_SFS_SYS_620 (internal), 3GPP Reference: TS 36.331, TS 36.304 (public)
NSN reference: TF_LTE_SFS_SYS_714 (internal), 3GPP Reference: TS 36.331, TS 36.305 (public)
3GPP Reference: TS 36.321 (public), NSN reference: TF_LTE_SFS_RL2 (internal), NSN reference: TF_LTE_SFS_SYS (intern
NSN reference: Radio Layer 2 SFS/object_id 1060 (internal)
3GPP Reference: 36.211 / 5.7.2 (internal), NSN reference: Radio Layer 1 SFS/object_id 1232 (internal)
NSN reference: TF_LTE_SFS_SYS.560, (baseline 5.2, SFSv5.1.3) (internal), 3GPP Reference: TS 36.331, TS 36.304 (public)
NSN reference: TF_LTE_SFS_SYS_611 (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS_611 (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_UESTATE.986 (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_MM (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS.611, (baseline 5.2, SFSv5.1.3) (internal), 3GPP Reference: TS 36.331 (internal)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public), 3GPP Reference: TS 36.304 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public), 3GPP Reference: TS 36.304 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.331 (public)
NSN reference: TF_LTE_SFS_SYS (internal), 3GPP Reference: TS 36.321 (public)
Internal NE Type