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GD B021 BE01-ABB HIEE300766R0001 Gate Control Unit-GDB021BE01

The output adjustment command is given to the speed governor to control the opening of the turbine guide vane gate, change the unit speed and voltage, and continuously reduce the frequency difference and phase angle difference. When the frequency difference, voltage difference and phase angle are all within the allowable range, the internal relay outputs the closing command to close the generator circuit breaker and complete the grid connection.

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  GDB021BE01 GD B021 BE01 HIEE300766R0001 Other Names:

  I/O Module GDB021BE01 GD B021 BE01 HIEE300766R0001

  GDB021BE01 GD B021 BE01 HIEE300766R0001 Main Control Board

  Analog Module GDB021BE01 GD B021 BE01 HIEE300766R0001


  I. Working Principle

  Signal Acquisition: The PT voltage transformer introduces the generator voltage and the power grid system voltage. Simultaneously, it acquires feedback from the turbine guide vane (gate) opening and circuit breaker position contact signals, sending them to the board's analog and digital channels.

  Comparison Calculation: The board's internal CPU calculates voltage difference, frequency difference, and phase angle difference in real time and compares them with the system's set grid connection allowable window.

  Closed-Loop Regulation: Outputs regulation commands to the governor, controlling the turbine guide vane gate opening, changing the unit speed and voltage, and continuously reducing the frequency and phase angle differences.

  Closing Output: When the frequency difference, voltage difference, and phase angle are all within the allowable range, the internal relay outputs a closing command, closing the generator circuit breaker to complete grid connection.

  Interlock Protection: For parameter exceeding limits or signal disconnection, the closing circuit is double-interlocked by hardware and software, prohibiting asynchronous grid connection. Simultaneously, a fault alarm is output and reported to the upper control system via the VME bus.

  Self-Diagnosis: The board continuously self-checks power supply, data acquisition channels, and bus communication. An abnormality illuminates the panel fault LED.


  II. Core Functions:

  Automatic Quasi-Synchronous Grid Connection: Fully automatic detection of voltage, frequency, and phase; automatic adjustment of the unit; outputting a circuit breaker closing command when conditions are met.

  Turbine Guide Vane (Gate) Interlocking Control: Outputs control signals to adjust the guide vane opening, coordinating grid connection and load connection. This is the origin of the name "Gate Control Unit."

  Synchronization Interlocking Protection: Directly blocks the closing output in cases of excessive frequency difference, phase angle exceeding limits, or PT disconnection, preventing asynchronous impacts from damaging the generator.

  Local/Remote Mode Switching: Supports local manual synchronization operation and also receives remote commands from the DCS/upper-level system.

  Status Acquisition and Feedback: Collects circuit breaker open/close positions and gate opening, uploading operating status and fault codes.

  Hardware Self-Diagnosis: Power failure, channel damage, and bus abnormalities trigger panel indicator lights and system alarm outputs.


  III. Application Scenarios:

  Hydropower Plants: Automatic grid connection of turbine generator units and control of guide vane gates are the primary applications of this board.

  Synchronization and Grid Connection Control of Small and Medium-Sized Thermal Power Units and Gas Turbine Units:

  Plant and Mining Self-Supplied Power Stations and Distributed Energy Power Stations: Control of unit grid connection and disconnection from the public grid. This card is used as a synchronization gate control card within the control system rack of an older ABB VME architecture unit.


  IV. Usage Precautions

  Hardware Installation

  This is a VME rack-mount card. Before inserting or removing it, the 24V control power supply to the rack must be disconnected. Hot-swapping is prohibited, as it will burn out the backplane interface of the card.

  Ensure proper chassis cooling. Operating temperature: -20℃ to +60℃. Avoid damp, dusty, and high-vibration environments for the rack.

  Keep the gold fingers of the VME slot on the backplane clean. Poor contact will result in communication loss and random fault reports.

  Wiring and Signals

  The PT voltage input circuit must use shielded cable, with the shield grounded at one end. The high-voltage PT circuit and the 24V low-voltage circuit should be routed separately to avoid interference and synchronization errors.

  Short circuits are strictly prohibited in the PT secondary circuit. After wiring, verify the phase sequence. Incorrect phase sequence will directly lead to grid connection failure.

  The gate opening feedback and circuit breaker position dry contact wiring must be secure; loose connections will cause synchronization logic abnormalities.

  Parameter Setting

  Frequency difference, voltage difference, and phase angle closing window parameters must be strictly set according to the unit's specifications. An excessively large window setting will cause grid connection impact; an excessively small window will result in closing failure.

  After replacing spare parts, the internal configuration parameters of the circuit board must be verified. The default parameters of new/removed circuit boards may not be compatible with the field unit.

  Fault Risk Warning

  PT disconnection and wiring interference will cause missynchronization risks; a simulated transmission test must be performed after maintenance; do not directly connect to the grid with a real unit.


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