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Adaptive controller design based on input-output signal selection for voltage source converter high voltage direct current systems to improve power system stability 被引量:2

Adaptive controller design based on input-output signal selection for voltage source converter high voltage direct current systems to improve power system stability
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摘要 An input-output signal selection based on Phillips-Heffron model of a parallel high voltage alternative current/high voltage direct current(HVAC/HVDC) power system is presented to study power system stability. It is well known that appropriate coupling of inputs-outputs signals in the multivariable HVDC-HVAC system can improve the performance of designed supplemetary controller. In this work, different analysis techniques are used to measure controllability and observability of electromechanical oscillation mode. Also inputs–outputs interactions are considered and suggestions are drawn to select the best signal pair through the system inputs-outputs. In addition, a supplementary online adaptive controller for nonlinear HVDC to damp low frequency oscillations in a weakly connected system is proposed. The results obtained using MATLAB software show that the best output-input for damping controller design is rotor speed deviation as out put and phase angle of rectifier as in put. Also response of system equipped with adaptive damping controller based on HVDC system has appropriate performance when it is faced with faults and disturbance. An input-output signal selection based on Phillips-Heffron model of a parallel high voltage alternative current/high voltage direct current (HVAC/HVDC) power system is presented to study power system stability. It is well known that appropriate coupling of inputs-outputs signals in the multivariable HVDC-HVAC system can improve the performance of designed supplemetary controller. In this work, different analysis techniques are used to measure controllability and observability of electromechanical oscillation mode. Also inputs–outputs interactions are considered and suggestions are drawn to select the best signal pair through the system inputs-outputs. In addition, a supplementary online adaptive controller for nonlinear HVDC to damp low frequency oscillations in a weakly connected system is proposed. The results obtained using MATLAB software show that the best output-input for damping controller design is rotor speed deviation as out put and phase angle of rectifier as in put. Also response of system equipped with adaptive damping controller based on HVDC system has appropriate performance when it is faced with faults and disturbance.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2254-2267,共14页 中南大学学报(英文版)
关键词 高压直流系统 自适应控制器 控制器设计 输入输出 信号选择 电压源换流器 PHILLIPS-HEFFRON模型 稳定性 input-output signal selection online adaptive damping controller nonlinear high voltage direct current power systemstability
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  • 1ADAPA R. High-wire act: HVDC technology: The state of the art[J]. IEEE Power Energy Mag, 2012,10(6): 18-29.
  • 2PREECE R, ALMUTAIRI A, MARJANOVIC 0, MILANOVIC J. Damping of electromechanical oscillations by VSC-HVDC active power modulation with supplementary warns based modal LQG controller[C]// IEEE Power Energy Soc Gen Meeting. San Diego, CA, USA, 2011: 1-7.
  • 3ZHANG L, HARNEFORS L, NEE H-P. Interconnection of two very weak ac systems by VSC-HVDC links using power-synchronization control[J]. IEEE Trans Power Syst, 2011, 26(1): 344-355.
  • 4LATORRE H F, GHANDHARI M. Improvement of power system stability by using a VSC-HVDC[J]. Electrical Power and Energy Systems, 2011, 33: 332-339.
  • 5FUCHS A, MARIETHOZ S, LARSSON M, MORARI M. Grid stabilizationthrough VSC-HVDC using wide area measurements[C]// IEEE Powertech, Power Syst Technol Trondheim. Norway, 2011: 1-6.
  • 6BANAEI M, TAHERI N. An adaptive neural damping controller for HVDC transmission systems[J]. Euro Trans Electr Power, 001: 10.1002/etep.485.
  • 7KUNDUR P. Power system stability and control[M]. Columbus, USA: McGraw-Hill Professional, 1994.
  • 8PIPELZADEH Y, CHAUDHURI N, CHAUDHURI B, GREEN T. System stability improvement through optimal control allocation in vsc-based hvdc links[J]. lET Gener Transm Distrib, 2012, 6(9): 811-821.
  • 9DiAZ-GONZALEZ F, SUMPER A, GOMIS-BELLMUNT 0, VILLAFAFILA-ROBLES R. A review of energy storage technologies for wind power applications[J]. Renew Sustain Energy Rev, 2012,16(4): 2154-2171.
  • 10DOMiNGUEZ-GARCiA J L, BIANCHI F, GOMIS-BELLMUNT O. Analysis of the damping contribution of power system stabilisers driving wind power plants[J]. Wind Energy, 2014, 17(2): 267-278.

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