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Configuration
Paralleling Genset
Application
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Agenda
› Softwares for paralleling
controllers
› Shared and distributed signals
› Forced values
› Software keys
› Can Bus logging
› Grid codes
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Software
› InteliConfig
» Comissioning
» Service
» Short term monitoring
» Multiple gensets
›WebSupervisor
» Long term monitoring
» Cloud base service
» Fleet management
›InteliSCADA
» Long term monitoring
» Site control
›Winscope 1000
» Short term monitoring
» Archiving trends
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Shared and Distributed Signals
› Binary or analog signals SHARING between controllers using CAN 2 bus link
› Saving physical analog or binary signals in controller
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Shared Binary Signals
› SHBOUT = SHared Binary OUTput
› SHBIN = SHared Binary INput
› 6 SHBOUT modules are available for entire system, which can contain up to 64 controllers
› Up to 6 SHBIN modules can be configured in one controller
› SHBIN module index has to match SHBOUT module index to link the modules together
› Only one controller can have configured SHBOUT module with same module index in CAN
topology.
SHBOUT(1) is linked with SHBIN(1)
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Shared Binary Signals
SHBIN (2) SHBIN (3)
SHBOUT
SHBIN
SHBIN(2)
(3)
(1) SHBOUT
SHBIN
CAN
is not 2 bus
(1)
(3)
configured SHBOUT
SHBIN
is not (1)
(2)
configured
InteliMans InteliGen InteliGen
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Shared Binary Output
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Shared Binary Input
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Shared Binary Signals
› One set of SHBOUT’s provides 8 binary outputs
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Shared Analog Signals
› SHAOUT = SHared Analog OUTput
› SHAIN = SHared Analog INput
› 2 SHAOUT modules are available for entire system, which can contain up to 64 controllers
› Up to 2 SHAIN modules can be configured in one controller
› SHAIN module index has to match SHAOUT module index to link the modules together
› Only one controller can have configured SHAOUT module with same module index in CAN
topology.
SHAOUT(1) is linked with SHAIN(1)
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Distributed Binary Signals
› DISTBOUT = DISTributed Binary OUTput
› DISTBIN = DISTributed Binary INput
› Each controller can transmit one set of DISTBOUT’s
› Each DISTBOUT contains up to 32 binary output inside.
› Up to 64 DISTBIN modules can be configured in one controller
› DISTBIN module index has to match DISTBOUT module index to link the modules together
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Distributed Binary Output
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Distributed Binary Input
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Forced Value
› Allows forcing of preconfigured value into selected setpoints via activation of LBI.
› Each LBI can force only one value into one setpoint.
› You can see current states of all LBIs in value Forced Value Status
› Setpoints for which is Forced Value already configured are marked with gray or green arrow in
InteliConfig and on display
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Forced Value
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Software keys
› The controller offers premium features which are unlocked by software key.
› The SW key is stored in setpoint SW Key which is protected against rewriting during
configuration update.
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Software keys
› Value SW Key Feature List contains actual list of features which requires SW key in order
› to be used.
› When there is logical 1 respective function is unlocked and can be used without of limitation.
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Revision
1. Can SHBIN1 be configured on more than 1 controller? Will it be possible to configure
SHBOUT1 on more than 1 controller on the same CAN2 line?
2. What is the purpose of using Forced Values?
3. How do we verify that the Software Key is activated?
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Hands-on
› Task 1 - Configure function that measure and protect power Imported from Mains
» Use controller analog input to measure active power of mains. Create a Mains Power sensor with
0Ω corresponding to -100kW and 1000Ω corresponding to 100kW (0:1000Ω ; -100:100kW).
» The input has to be linked with Mains Measurement P function on the LAI card and parameter
Process Control: Mains Measurement P is set to Analog.
» Check the Mains Power value on controller screen Power (2nd screen) or Analog Inputs (11th
screen). Another option is to use InteliConfig (Values – Mains/Bus – Mains Import P).
› Task 2 - Create function that will show alarm on the display if unit is not in Automatic mode.
» Warning "Not in Auto" is displayed when the controller is not in Auto mode and is cancelled when the
controller returns to Auto mode.
» Sd "Not in Auto" is displayed when the controller is not in Auto mode and genset is running.
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Hands-on
› Task 3 - Create output to START/STOP Fuel Pump (Binary Output) for fuel auto refilling
» Pump will start refilling on 20 % of fuel tank and will stop on 90 % of fuel tank.
» Start and Stop values should be adjustable from controller (PLC Setpoints).
› Task 4 - Louvre control simulation
» Activate one controller binary output for 2 s to open louvre when genset is preparing to start.
» Activate other controller binary output for 2 s to close louvre after stopping (10s after fuel solenoid
signal deactivation).
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ComAp Support
Hotline: +420 246 012 666
E-mail: support@comap-control.com
Website: www.comap-control.com
› 24/5 – Support
› InteliBot
› ComAp Club
› Trainings
› On-line trainings
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PLC Tasks
Task 3 – PLC Editor
A. Create function that will show alarm on the display if unit is not in automatic mode
B. Create output to START/STOP Fuel Pump (Binary Output) for fuel auto refilling
C. Opened door protection
D. Louvre control simulation (Use delay blocks)
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GenConfig
User sensor tab
User Sensor:
• Sensor curves specification
• Up to 31 points
26
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