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文章摘要
多通道次同步附加阻尼控制器协调优化策略研究
Coordinative Optimization Method of Multi-Channel Supplementary Damping Controllers for Sub-synchronous Resonance
Received:April 09, 2017  Revised:April 09, 2017
DOI:
中文关键词: 小干扰稳定  次同步谐振  附加阻尼控制器  协调优化
英文关键词: Small Signal Stability  Sub-synchronous Resonance  Supplementary Damping Controllers  Coordinative Optimization
基金项目:
Author NameAffiliationE-mail
CHEN BAOPING* Wuhan University 309875997@qq.com 
LIN Tao Wuhan University taol@whu.edu.cn 
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中文摘要:
      为提高电力系统的小干扰稳定性,抑制系统中的次同步谐振,本文研究了多通道次同步附加阻尼控制器之间的协调优化策略。基于模态分离和相位补偿设计了多通道SEDC、TCSC-SSDC和HVDC-SSDC,在充分研究了所有次同步附加阻尼控制器的特点及其适应性的基础上,建立了修改后的IEEE SSR第一标准测试系统。以待改善谐振模式阻尼比最大化为优化目标建立优化模型,利用遗传算法对阻尼控制器参数进行协调优化,以得到能最大程度提高谐振模式阻尼的控制器参数。特征值计算和时域仿真结果表明,经过参数协调优化的多通道附加阻尼控制器能有效地抑制次同步谐振,改善了系统的小干扰稳定性。
英文摘要:
      In order to improve small signal stability of power system, and suppress the sub-synchronous resonance (SSR), this paper researches the coordinated optimization strategy among multi-channel sub-synchronous supplement damping controllers (SSDC). Multi-channel SEDC, TCSC-SSDC and HVDC-SSDC are designed based on model separation ideas and principles of phase compensation, on the full study basis of characteristics and adaptability of above all SSDC, establish modified IEEE first benchmark model for SSR.SSR modes, which are selected and to be improved, are taken as the target modes and taking the maximized damping ratio under the target mode as the optimization objective and an optimization model is established, the coordinated optimization of damping controller parameters is performed by genetic algorithm, to get controller parameters which can maximize damping modes. The results of eigenvalue analysis and EMTDC simulation prove the parameters in multi-channel damping controllers which use coordinative optimization method is validity for SSR suppression, and improve the small signal stability of power system.
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