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Performances coordination strategies of Dynamic Controlled Inter-phase Power Controller (DCIPC)

  • Shan Jun Yi*
  • , Ji Lai Yu
  • , Zhi Zhong Guo
  • *Corresponding author for this work
  • Harbin Institute of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The usual Inter-phase Power Controller (IPC) is a static device, and has the unique properties of robust power flow control, fault currents limitation and decoupling of interconnected networks. Whereas there are many problems for IPC's applications, such as over-voltage on the components of IPC, overflow of IPC's terminal voltages, decentralization of control parameters for fulfilling various operation requests, and difficulty in coordinating various operation requests. This paper proposes a principle configuration of IPC with dynamic control properties, termed as Dynamic Controlled Inter-phase Power Controller (DCIPC). Four control strategies of DCIPC are analyzed, which is based on global normal operation information, local normal operation information, local fault information, and for device going into and dropping out, respectively. Parameter-coordinating methods and schemes of control system are also analyzed based on the four control strategies. Case studies on test systems verify the feasibility of strategies and methods.

Original languageEnglish
Title of host publication2004 International Conference on Power System Technology, POWERCON 2004
Pages367-372
Number of pages6
StatePublished - 2004
Event2004 International Conference on Power System Technology, POWERCON 2004 - , Singapore
Duration: 21 Nov 200424 Nov 2004

Publication series

Name2004 International Conference on Power System Technology, POWERCON 2004
Volume1

Conference

Conference2004 International Conference on Power System Technology, POWERCON 2004
Country/TerritorySingapore
Period21/11/0424/11/04

Keywords

  • Coordination control
  • Dynamic Controlled IPC (DCIPC)
  • FACTS
  • Inter-phase Power Controller (IPC)
  • Power flow control

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