Relay Protection System Guide
Relay Protection System Guide
                   I                  INTRODUCTION
                         1
II PROTECTION SCHEME
                                         2
                                   CONTENT
I INTRODUCTION
II PROTECTION SCHEME
                                                      Minimizing
                                      Sustaining
                   Disconnecting                      damage to
                                      the safety
                   the faulty part                      human,
                                       operating
                   out of system                     equipment or
                                     state for the
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                    to minimize                        electricity
                                      rest of the
                      damages                            supply
                                        system
                                                     discontinuity
                                           6
                  3. Relay protection system requirements
                    Fast
                              Sensitivity   Selectivity        Reliability       Economics
                  operation
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A B
                        ~                                                    N
                                   I>                     I>
                                              7
                       3. Relay protection system requirements
500kV 40 80 3
                         220kV          40           100            3
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                  Application         Can be applied to all voltage level,   Each basic relay type rarely used
                                      however is limited due to high         on main transmission network ,
                                      cost, usually appllied to main         however, for combined types (e.g.
                                      transmission network.                  Distance relay) are widely used
                                                                             for all voltage level.
                  4. Protection classification
Overcurrent principle
Differential principle
                     Impedance principle
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                  6.1   Overcurrent principle
                  Operating principle
                    Relay measure current signal
                    Current magnitude> set value  relay starts,
                     signal is sent to trip CB after delayed time.
A B
                        ~
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I>>
                                     t
                  6.1   Overcurrent principle
                   Measurement current
                    Phase current (I)
                    Negative sequence current (I2)
                    Zero sequence current (3I0)
                                          A
                        ~                       B
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                                                      C
                                3I0
                                              7SJ61
                  6.1     Overcurrent principle
                   Operating level
                    Instantaneous tripping
                    Delayed tripping
                         Operating bases on independent characteristic
                         Operating bases on dependent characteristic
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                  6.1       Overcurrent principle
                   Coordination of overcurrent
                   protection
                    Time coordination
                    Magnitude coordination
                    Combined time and current magnitude
                            A I>             B I>              C I>         D
                   HT
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                        t     ta = t + tb
                                                tb = t + tc
                                                                      tc = t1
                                                                                L
                  6.1    Overcurrent principle
                   Setting
                    Instantaneous over current protection
                              Ik = Kat * INngmax
                    Delayed over current protection
                         Time coordination
                              Ik = (Ktc /Ktv)*Kmm* Ilvmax
                         Combined time and current magnitude
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                          coordination
                              Ik = Kat * INng
                      6.1        Overcurrent principle
I2
                     I1
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                                                                U(V)
                                          Uk
                                    Responsive characteristic
                       6.1   Overcurrent principle
Measurement signals: U, I
~ B
                                                         C
                                    3I0
                                                 7SJ61
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                  6.2     Differential principle
                  Compare in - out
                  currents of protected
                  object Isl = I1 + I2
                   Normal
                        I1 = -I2
                   Isl = 0
                                                   I1        I2
                   Internal fault
                                                        I1
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                        I1 = I2
                   Isl = 2I1>0
                                                        I2
                  6.2    Differential principle
                   Setting
                        Isl > Ikcbmax
                   To improve the sensitivity of relay  using
                   restrained differential principle
                        Idiff   = |I1 + I2|
                        Ibias = (|I1| + |I2|)/2
                   Relay will compare Idiff with Ibias to
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                      Normal operation
                       Idiff = |I1 + I2| = 0            I1        I2
                       Ibias = (|I1| + |I2|)/2 = I1
                       Idiff < Ibias  not operating
                   Operating zones
                    Independent operating zone: 1  4
                     zones
                   Zone 1:
                   80-85% line inductance or
                    impedance is protected.
                   Delay time t1=0s.
                        A                       B
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                                       zone 1
                  6.3   Impedance principle
                   Zone 2:
                    Protect the whole line
                    Delay time t2 = t1 + t.
                    Z2= 120% line inductance or
                     impedance is protected.
                    Zone 2 must not surpass zone 1 of
                     21 relay at rear.
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                  6.3     Impedance principle
                   Zone 3:
                       Protect the whole line and back up
                        for the adjacent line
                       Delay time t3 = t2 + t .
                       Inductance or impedance of zone 3
                        (Z3) must not surpass zone 2 of the
                        adjacent 21 relay.
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                   A               B            C             D
                          Zone 3                    Zone 2
                      6.3     Impedance principle
                                               Za3                Zb3
                                   Za2               Zb2
                                                                        Zc2
                        Za1                                Zc1
                                         Zb1
                  A                B                  C                       D
                      F21                F21                F21
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                           F21                               F21
                  6.3   Impedance principle
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                                     POTT Diagram
                              (permission overreach transmit trip)
                   6.3   Impedance principle
I INTRODUCTION
II PROTECTION SCHEME
                    Generator protection
                    Transformer protection
                    Line protection
                    Bus-bar protection
                    Breaker failure
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                  2.1 GENERATOR PROTECTION
                    Unbalance protection(46)
                  2.1 GENERATOR PROTECTION
Generator
~ B
                  3U0 (150Hz)
                                      7UM
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                                              3U0 (150Hz)
                   100% STATOR EARTH FAULT PROTECTION WITH
                  3RD HARMONIC
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                   100% STATOR EARTH FAULT PROTECTION WITH
                  3RD HARMONIC
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                   100% STATOR EARTH FAULT PROTECTION WITH
                  3RD HARMONIC
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                   100% STATOR EARTH FAULT PROTECTION WITH
                  3RD HARMONIC
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                   UNDER-IMPEDANCE PROTECTION(21G)
~ B
                                             C
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21G
                         Reverse                 Forward
                  UNDER-IMPEDANCE PROTECTION (21G)
~ B
                               21G
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                                     Forward
                  UNDER-IMPEDANCE PROTECTION (21G)
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                      UNBALANCE PROTECTION (46G)
                    K  unbalance constant
                  UNBALANCE PROTECTION (46G)
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                     FIELD FAILURE PROTECTION (40)
                  Supervise rotor-to-ground
                   resistance
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                    OVER-VOLTAGE (59)
                  o Main protection:
                     Electrical based Relay:
                        Differential protection (87T)
                        Restricted earth fault differential protection
                         (87REF)
                     Non-electrical based Relay:
                        Gas detector relay 96
                        Low oil level relay 33
                        Thermal relay 26:
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                   o Back-up protection:
                      Over-current protection (F50/51, 67/67N)
                      Overload protection (F49)
                      Over/under- voltage protection (59/27)
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                      2.2 TRANSFORMER PROTECTION
                     Technology protection:
                       Thermal relay(26)
                       Pressure relay (63)
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                                       ELECTRICITY
                                       OF VIETNAM
                  2.3 LINE PROTECTION
                   Auto-recloser (F79)
                  2.3 LINE PROTECTION
                          transmission
                         Distance protections at two ends are coordinated via PLC
                  2.4 BUS-BAR PROTECTION
                    Main protection:
                    Bus-bar differential protection (87B)
                    Back-up protection:
                    Over-current protection (50/51, 50/51N)
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                   2.5 BREAKER FAILURE (50BF)
                       1st scheme
                     7UM511             7UM515             7UT512         7UT513        7UT512
                     2nd scheme
                       7UM516                7UM512           7SJ511         7SJ511
II BO V CC PHN T TRONG HT
                                           83
                  1. Load shedding scheme with respect to
                     frequency(F81)
                   Objectives:
                   Load rejection balances the power
                   and demand, to adjust the system
                   frequency into the limited range
                   (over 49Hz).
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                                    84
                  1. Load shedding scheme with respect to
                     frequency(F81)
                   Effects:
                   o Keep power system stability, prevent
                     from blackout because of lack of
                     generation
                   o Restore system frequency with transient
                     process when fault
                   o Reduce hot reserve power in the system
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                                      85
                    1. Load shedding scheme with
                       respect to frequency(F81)
                                       Amount of load shedding(%)
                  Frequency(Hz)
                                  The North, The Centre     The South
49,0 5 5
48,8 5 5
48,6 5 10
48,4 5 15
48,2 5 10
48,0 5 10
                      47,8                 10                  10
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47,6 15
47,4 10
Total 65 65
                                           86
                  2. Critical load shedding scheme at
                     220/110kV SS in the North
                      Objectives:
                       A load of ~ 950MW is shed at 220/110kV
                        substations in the Northern power network, to
                        prevent blackout of the North due to frequency
                        reduction.
                     Setting values:
                       Group 1: f  48.0 Hz and t = 0.2 s
                       Group 2: f  47.8 Hz and t = 0 s
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                                            87
                  2. Critical load shedding scheme at
                     220/110kV SS in the North
                  No         Substation name     Group
                                           88
                  3. Critical load shedding scheme at
                     220/110kV SS in the South
                    Objectives:
                    A load of ~ 1000MW is shed at 220/110kV
                     substations in the South to prevent blackout
                     due to frequency reduction when serious fault
                     (loss gas supply for thermal power plants Phu
                     My - Ba Ria)
                    Setting values:
                   Group 1: when f  47,5 Hz and t = 0.0 s
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                                         89
                       3. Critical load shedding scheme at
                          220/110kV SS in the South
                  No              Substation name         Shedding routes
6 220kV Ba Ra 175
                                                     90
                  4. Power rejection: Hiep Phuoc, Phu My
                     22, 3, 4
                    Objectives:
                    To prevent overloading 220kV line Nha Be 
                     Phu Lm when fault occurs on 500kV line Nha
                     Be  Phu Lam
                    Operating conditions:
                    Power in 500kV line Nha Be  Phu Lam
                     reduces from 500MW to under 50MW in 0.2
                     seconds, and
                    Simultaneously trip CB565, 585 Nha Be, and
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                                       91
                  4. Power rejection: Hiep Phuoc, Phu My
                     22, 3, 4
                    Setting levels
                    Level 1: 3002A/1569A  trip 1 or 2
                     Hiep Phuoc units.
                    Level 2: 3411A/1842A  trip 1 or 2
                     Hiep Phuoc units and 1 Phu My 22 unit
                     (or Phu My 3).
                    Level 3: 3684A/2046A  trip 1 or 2
                     Hiep Phuoc units, 1 Phu My 22 unit (or
                     Phu My 3) and 1 Phu My 4 unit.
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                                      92
                  4. Power rejection: Hiep Phuoc, Phu My
                     22, 3, 4
                    Setting levels
                    Level 4: 3820A/2320A  trip 1 or 2 Hiep
                     Phuoc units, 1 Phu My 22 unit and 1 Phu My
                     3 unit.
                    Level 5: 3955A/2455A  trip 1 or 2 Hiep
                     Phuoc units, 1 Phu My 22 unit, 1 Phu My 3
                     unit and 1 Phu My 4 unit.
                    Level 6: 3002A/1569A  sending warning
                     signal after 5 seconds.
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                                        93
                  4. Power rejection: Hiep Phuoc, Phu My
                     22, 3, 4
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                                    94
                  5. Power rejection of South East region
                   Objectives:
                     To prevent overloading and losing connection
                     of one circuit if the other one is faulted in
                     case of 220kV double line Phu My 1  Long
                     Thanh or Long Thanh  Long Binh.
                   Operating conditions
                    One circuit fault of Phu My 1  Long Thanh
                     line and the other circuit is overloaded 
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                     155%
                    One circuit fault of Long Thanh  Long Binh
                     line and the other is overloaded  134%
                                      95
                  5. Power rejection of South East region
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                                  96
                  5. Power rejection of South East region
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                                  97
                                   CONTENT
I INTRODUCTION
II PROTECTION SCHEME
                                        98
                  1.   DECENTRALIZATION IN RELAY SETTINGS
                       CALCULATION
                                             yes
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                                         Approved by                   no
                                       dispatching unit?
yes
                                         On shift dispatching          no
                                     engineer allows relay setting
                                      in accordance with slips?
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                                       yes                1
                  3.   PROTECTION SLIP SETTING UP COORDINATION
II BO V CC PHN T TRONG HT
                    Purposes:
                    to determine cause of the fault to
                    propose overcoming and preventing
                    methods
                    Implementation sequence
                   1. Fault information collecting
                   2. Making and submitting fault reports
                   3. Fault analyzing
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                  2.Fault information collecting
                     substation;
                    Actual setting value in protection relays, automatic
                     devices in substation have operated and/or start
                     when fault occurring.
                  2. Fault information collecting
phantichsuco.Ax@gmail.com to Ax