Mechanism of active-power PSS low-frequency oscillation suppression and characteristic of anti-regulation

被引:0
|
作者
Zhang, Yang-Fei [1 ,2 ]
Yuan, Yue [1 ]
Chen, Xiao-Hu [2 ]
Zha, Wei-Hua [3 ]
机构
[1] Hohai University, Nanjing 210024, China
[2] Nanjing Institute of Technology, Nanjing 211167, China
[3] Nuclear Power Qinshan Joint Venture Co., Ltd, Haiyan 314300, China
关键词
D O I
暂无
中图分类号
学科分类号
摘要
This paper introduces the principle of MEC5220-type exciter regulator, elaborates the reasons of producing low-frequency oscillation in system, and describes the damping characteristics of excitation regulator. By studying the active-type power system stabilizer (PSS), it finds that although PSS can inhibit the oscillations, the merit-based PSS is used on the premise that mechanical power changes much slower than the electrical power changes. When the adjustment is made in generating the original motivation, signal power of PSS received is much larger than that of its required, resulting in excitation voltage and reactive power substantially change, that is anti-regulation. Anti-regulation characteristics of active-power PSS is demonstrated with an example and countermeasures to prevent the harm are proposed.
引用
收藏
页码:77 / 80
相关论文
共 50 条
  • [1] Development of a new two-input PSS to control low-frequency oscillation in interconnecting power systems and the study of a low-frequency oscillation model
    Tokyo Electric Power Co
    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi), 1995, 115 (07): : 49 - 68
  • [3] A Low-Power Integrated Bioamplifier With Active Low-Frequency Suppression
    Gosselin, Benoit
    Sawan, Mohamad
    Chapman, C. Andrew
    IEEE TRANSACTIONS ON BIOMEDICAL CIRCUITS AND SYSTEMS, 2007, 1 (03) : 184 - 192
  • [4] Suppression strategy of coupled oscillation and power anti-regulation of variable speed pumped storage unit with full size converter
    Shi, Huabo
    Wang, Yuhong
    Chen, Gang
    Ding, Lijie
    Liao, Jianquan
    IET ELECTRIC POWER APPLICATIONS, 2023, 17 (07) : 976 - 990
  • [5] Low-frequency Oscillation Mechanism and Suppression Strategy of Flexible HVDC Transmission System
    Zhang Y.
    Lin W.
    Deng C.
    Liu H.
    Liu P.
    Gao T.
    Dianwang Jishu/Power System Technology, 2021, 45 (08): : 3134 - 3144
  • [6] Suppression of low-frequency oscillation in local power system by adaptive excitation control
    Yu, Hao
    Liu, Ruiye
    Chen, Xueyun
    Lu, Mingdi
    Jia, Wei
    Hao, Shuchun
    Dianli Xitong Zidonghua/Automation of Electric Power Systems, 1998, 22 (09): : 65 - 68
  • [7] Understanding low-frequency oscillation in power systems
    Prasertwong, K.
    Mithulananthan, N.
    Thakur, D.
    INTERNATIONAL JOURNAL OF ELECTRICAL ENGINEERING EDUCATION, 2010, 47 (03) : 248 - 262
  • [8] Synchronization of Low-Frequency Oscillation in Power Systems
    Shim, Kwan-Shik
    Ahn, Seon-Ju
    Choi, Joon-Ho
    ENERGIES, 2017, 10 (04):
  • [9] Inverse Characteristic Locus Method for Power System Low-Frequency Oscillation Control and Optimal Design
    Shi, Peng
    Wang, Yongcan
    Wang, Xi
    Fan, Chengwei
    Bai, Jiayu
    Chen, Baorui
    Xu, Hao
    Gan, Deqiang
    Wang, Chutong
    PROCESSES, 2025, 13 (03)
  • [10] Low-frequency suppression of auditory nerve responses to characteristic frequency tones
    Temchin, AN
    Rich, NC
    Ruggero, MA
    HEARING RESEARCH, 1997, 113 (1-2) : 29 - 56