引用本文:翁 华,徐 政,刘 昇,赵 兵,董桓锋,许 烽.基于多工况综合留数及H2/H∞的多回直流系统阻尼控制鲁棒设计方法[J].电力自动化设备,2014,34(7):
WENG Hua,XU Zheng,LIU Sheng,ZHAO Bing,DONG Huangfeng,XU Feng.Robust design of multi-HVDC system damping control based on synthetic residues of multiple operating conditions and H2 / H∞[J].Electric Power Automation Equipment,2014,34(7):
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基于多工况综合留数及H2/H∞的多回直流系统阻尼控制鲁棒设计方法
翁 华1, 徐 政1, 刘 昇1, 赵 兵2, 董桓锋1, 许 烽1
1.浙江大学 电气工程学院,浙江 杭州 310027;2.中国电力科学研究院,北京 100192
摘要:
直流附加阻尼控制是提高电力系统区域间低频振荡阻尼的有效措施,但阻尼控制器的安装地点和调制信号的选取是影响阻尼控制器性能的重要因素。综合考虑了控制器安装地点和调制信号组合方案对主导模式的可观可控性、对其他模式的耦合作用和对多种运行工况的鲁棒性3个因素,提出了多工况综合留数指标来确定最优方案,所设计控制器的H2 / H∞综合性能验证了多工况综合留数指标的有效性。最后,对一个大规模交直流混联系统在多种运行工况、多种故障情况下进行了仿真,仿真结果验证了基于多工况综合留数和H2 / H∞的多回直流系统阻尼控制鲁棒设计方法能有效提高系统区间振荡模式的阻尼。
关键词:  电力系统  综合留数  阻尼  低频振荡  鲁棒控制  多直流系统
DOI:
分类号:
基金项目:国家高技术研究发展计划(863计划)资助项目(2011-AA05A119); 国家电网公司大电网重大专项资助项目课题(SGCC-MPLG001-031-2012);2012年教育部博士研究生学术新人奖
Robust design of multi-HVDC system damping control based on synthetic residues of multiple operating conditions and H2 / H∞
WENG Hua1, XU Zheng1, LIU Sheng1, ZHAO Bing2, DONG Huangfeng1, XU Feng1
1.College of Electrical Engineering,Zhejiang University,Hangzhou 310027,China;2.China Electric Power Research Institute,Beijing 100192,China
Abstract:
HVDC supplementary damping control is an effective measure to improve the damping of inter-area low-frequency oscillation,but the installation location of damping controller and the selection of input signal are key influencing factors on the performance of damping controllers. A synthetic residues index of multiple operating conditions is proposed to determine the optimal combination of installation location and input signal,which comprehensively considers the controllability and observability of dominated mode,the coupling effect on other modes and the robustness under various operating conditions. Its effectiveness is verified by the comprehensive H2 / H∞ performance of the designed damping controller. Simulations are carried out for a large-scale AC / DC hybrid power system with multiple faults under multiple operating conditions and results verify that,the robust design of multi-HVDC system damping control based on the synthetic residues of multiple operating conditions and the H2/H∞ improves effectively the damping in inter-area low-frequency oscillation mode.
Key words:  electric power systems  synthetic residue  damping  low-frequency oscillation  robust control  multi-HVDC system

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