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Phasor Measurement PCS-997S Fault Line Locator PCS-996S-G Phasor Data Concentrator PCS-996 Phasor Measurement Unit
Disturbance Fault Recording PCS-996RC Disturbance Fault Recorder PCS-996R Disturbance Fault Recorder PCS-986 Disturbance Fault Recorder PCS-9013 DFR Management System
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Configuration Tool PCS-Torch MOT Tool PCS-Studio Configuration Tool PCS-Explorer IED Configuration & Debugging Tool PCS-SCD Configuration Tool PCS-COMM Configuration & Debugging Tool
Accessories MD1501 Series Auxiliary Relays MD1701 Series Test Blocks MD1701S Test Block
FACTS PCS-9580 Static Var Compensator PCS-9583 Static Synchronous Compensator PCS-9570 Series Compensation PCS-9590 DC De-Icer PCS-9578 Controllable Shunt Reactor PCS-8200 Unified Power Flow Controller PCS-9571 Fault Current Limiter PCS-9564A Dynamic Voltage Restorer PCS-9569 Shore Power System
HVDC PCS-8600 UHVDC Converter Valve System PCS-9550 LCC-HVDC Control and Protection System PCS-8100 VSC-HVDC IGBT Valve PCS-9520 VSC-HVDC Control and Protection System PCS-9510 Cooling System PCS-8300 High-voltage DC Circuit Breaker PCS-9250 DC Electronic CT/VT
PV & Wind Power Grid-Connection PCS-9700 Renewable Energy SCADA PCS-9726 Generation Management Unit PCS-9700F Power Forecast System PCS-9700R AGC/AVC
Battery Energy Storage System PCS-9567MV-10000 Medium Voltage Skid PCS-9567MV-7000 Medium Voltage Skid PCS-9567MV-5000 Medium Voltage Skid PCS-9567MV-3500 Medium Voltage Skid PCS-9567-2500 Twin Power Conversion Systems PCS-9567-1750 Power Conversion System PCS-9567-1750 電力変換システム PCS-9567 Power Conversion System Vulnerability Disclosure Policy PCS-9567 パワーコンディショナー脆弱性開示ポリシー
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Static Frequency Converter PCS-9575 Static Frequency Converter
Protection,Automation&Control DMS EMS Stability Control & WAMS Digital Substation
HVDC & FACTS De-Icing Unified Power Flow Controller (UPFC) Series Compensation Static Synchronous Compensator(STATCOM) Static Var Compensator (SVC) LCC-HVDC Transmission VSC-HVDC Transmission
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PCS-9575 static frequency converter includes primary power equipment and secondary control and protection equipment. The primary equipment consists of input switchgear cabinet, input transformer, rectifier, DC reactor, inverter, output transformer, output switchgear cabinet, SFC output switch, and cooling equipment for converter.
Input Switchgear Cabinet
It consists of input switches/breakers for SFC system.
Input Transformer
By behaving both as a short circuit current suppressor and an isolation node between SFC and power supply, the input transformer also provides the required secondary voltage at the same time. According to the rectifier pulse number and the voltage ratio, 3-winding transformer, 2-winding transformer, step-down transformer or 1:1 isolation transformer can be adopted.
Rectifier
A current source series with reactor adopts 3-phase thyristor full-bridge structure having the options of 6/12-pulsewaves. The thyristor valve bridge arm adopts photoelectric triggering using thyristor control unit (TCU) and highly efficient water/ air cooling for refined and exceeding output.
Reactor
The current source uses a DC reactor for reducing DC current ripple and short circuit current. It is availed with air cooling for optimum performance.However the AC reactors are configured for AC input and output of SFC system in some cases.
Inverter
The Inverter adopts a 3-phase full-bridge thyristor structure with the options of 6/12-pulsewaves. Photo-electric triggering and high efficient water/air cooling make it more efficient for Inversion.
Output Transformer
By making an isolation node between SFC system and motor, output transformer changes the output of SFC to required stator voltage. Depending upon inverter pulse number, the output transformer can be 3-winding transformer, 2-winding transformer, step-down transformer and 1:1 isolation transformer. While in LCI system the output transformer is not configured.
Output Switchgear Cabinet
In SFC system, the output switch cabinet is composed of output switch/breaker and output transformer bypass switch. In case of LCI system, the output transformer with bypass switch cabinet is generally not configured.
Cooling Equipment
Formation of enormous heat during operation may damage the components if it is not dissipated well. During low system capacity, PCS-9575 SFC adopts forced air cooling whereas during large system capacity, it adopts closed-loop water cooling with specialized control system.
Control & Protection System
As the mastermind of PCS-9575 SFC, the Control and Protection System keeps track of every system through acquiring digital and analog data and issues commands for switching/triggering and controlling of analog quantities. The controller analyzes and processes various input signals to perform the monitoring of system operation.