Description
hardware flow control. It is an ideal choice in the field of industrial automation.
3.2 Upgrading of regulators and control systems
For the upgrade of the regulator, the original excitation control system cabinet structure is retained, and the entire system is upgraded by upgrading the board card.
Among them, the CoB main board, MUB measurement board, F10 input and output board, and LCP local control panel were replaced with the PEC800 controller,
CCM measurement control interface board, CIo comprehensive input and output board, and ECT excitation system control terminal in the Unitrol6800 system respectively.
For the upgrade of the power cabinet, since the power of the excitation system will not change during the transformation, the N-1 redundant configuration of the five
UNL3300 rectifier bridges in the original system has not been changed, but the control and measurement parts of the rectifier
bridge have been upgraded. And the fan circuit and power control part of the rectifier bridge have been upgraded. Among them, the signal interface board (PsI) was
changed to the rectifier bridge signal interface board (CsI), the circuit breaker of the rectifier bridge panel was changed from CDP to CCP, and the rectifier bridge control
interface board (CIN) was changed to the rectifier bridge control board (CCI).
For the upgrade of the demagnetization cabinet, the switch control part was mainly upgraded. By adding a CIo board to the switch cabinet and installing a special
power distributor and relay to control the demagnetization switch, the original PsI board was removed. Secondly, in the transformation of the current detection part,
the Hall element in the Unitrol5000 system was replaced by the current relay of the Unitrol6800 system.
For the upgrade of the excitation current measurement part, the rectifier side Hall element of the rectifier bridge was replaced with an AC side CT. Relying on the linearity of the
CT, the current sharing coefficient of the excitation system was increased to 0.98, so that the role of the rectifier bridge can be fully exerted in the system. .
For the upgrade of the fan power supply circuit of the rectifier cabinet, each power cabinet can independently control the power supply of the fans in the
cabinet to avoid the problem that if the power circuit relay fails in the original system, all the fans will not work.
3.3Unitrol6800 functional logic configuration points
The Unitrol6800 system adds PT slow-blow judgment logic, and defines the actions of PT slow-blow as alarm and channel switching. The system PT
slow-blow logic pressure difference is 2% to ensure sufficient sensitivity. Since some external reasons will cause the sequential increase or decrease of magnetic
commands, a special increase or decrease magnetic contact adhesion judgment logic has been added to effectively lock out external causes. At the same
time, it can
avoid the jitter of the relay on the increase or decrease magnetic circuit and ensure the stability of the circuit. The excitation temperature detection is used to
alarm in the system, but it cannot control the system tripping. The tripping intermediate relays K291 and K292 use high-power (≥5w) relays to avoid
the problem of tripping of the excitation system
due to signal interference.
4 Problems discovered during the transformation and their solutions
After upgrading the excitation system from Unitrol5000 to Unitrol6800, since the partition between the regulator cabinets of the original excitation switch
cabinet was removed and the mounting backplate of the regulator was moved forward, the hot air from the excitation switch cabinet will enter the excitation regulator
cabinet, causing the cabinet to be damaged. The internal temperature rises, and sometimes the temperature can even reach 45°C. In order to avoid problems caused
by high temperatures, partitions were added to reduce the temperature inside the switch cabinet and control the
temperature to 30°C.
During the maintenance process, if the grounding carbon brush of the generator is removed, it is easy to cause the rotor grounding relay isoLR275 to
malfunction. Therefore, during maintenance, the power supply of the grounding relay will be disconnected and the large shaft in the magnetic cabinet will be short-circuited.
5 Conclusion
Through the transformation of the excitation system, our company not only meets the needs of increasing the generator capacity, but also
eliminates the safety hazards of ARCnet failure or flat cable damage in the excitation system of the unit. It can find the fault point during maintenance
and prevent the unit from non-stop. event. The new board used in the new excitation system has modular characteristics, which can make online maintenance more
convenient, and because the boards use trigger pulse generation communication and optical fiber redundant communication, the stability of
information transmission is ensured. Avoid communication failures and damage to pulse lines.
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KJ1501X1-BC1 SYSTEM POWER SUPPLY | DeltaV
XVS-440-57MPI-1-1U Touch panel
A6500-UM axis relative vibration mode
A6370D monitor A6370D DCS analog
5SHX264510002 insulated gate bipolar transistor
2711P-T6C21D8S Analog resistance touch screen
PPD103-B03-10-150000 Central processing unit
V7768-320000 VMEbus single board computer
0005-4050-710 Press panel
2711-K10G9L1 Keyboard/Touch Operator interface Terminal
2711-K6C20 Operator terminal
Allen-Bradley 2711-T10C10 Touch screen man-machine interface terminal
2711-NM28 8MB Flash ATA card
2711-T10C15 Man-Machine Interface (HMI)
2711-T10G8L1 PanelView 1000 Control terminal
2711-T5A8L1 Man-machine interface (HMI) device
PFSK152 ABB PFSK 152 Signal concentrator
PFSK151 ABB PFSK 151 DSP- Signal processing
PFSK142 ABB PFSK 142 Control panel
KJ1501X1-BA2 System power supply| DeltaV
PFSK 141 ABB PFSK141 Power supply with heat sink
PFSK 129 ABB PFSK129 Terminal board
PFSK126 ABB PFSK 126 Channel control unit
PFSK 115 ABB PFSK115 Adapter stress meter STU
PFSK111 ABB PFSK 111 VDU board
PFSK 109 ABB PFSK109 Connection unit
PFSK 104 ABB PFSK104 Control Board
PFSK 102 ABB PFSK102 Reel supply device
PFSA240 ABB PFSA 240 Coil DC power supply unit
PFSA185 ABB PFSA 185 ower and media converter unit
PFSA 146 ABB PFSA146 Power supply 24V external
PFSA 145 ABB PFSA145 MAINS FILTER
PFSA101 ABB PFSA 101 Roll Supply Unit
DSPC 454 ABB DSPC454 Programmable controller
DSPC 320 ABB DSPC320 processor board
DSPC 172 ABB DSPC172 Processor module
KJ1501X1-BB1 System DC/DC power supply|| DeltaV
DSPC157 ABB DSPC 157 Processor Board
DSPC 155 ABB DSPC155 processor board
DSAI 151 ABB DSAI151 Analog input board
DSAI 301 ABB DSAI301 Analog input unit
DSAI 151 ABB DSAI151 Analog input board
DSAI 130D ABB DSAI130D Analog input board
PFSK 130 ABB PFSK130 Channel control unit
PFSK103 ABB PFSK 103 Expansion board
DSTC452 ABB DSTC 452 FSK-Mod.Serial I/O
DSPC452 ABB DSPC452 Programmable controller
DSPC 174 ABB DSPC174 Processor board
DSPC170 ABB DSPC 170 Printed circuit board
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