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A coordination scheme of FACTS-based WADC to improve small signal stability with transient stability constraints in multi-machine system

机译:基于事实的WADC协调方案,提高多机系统中瞬态稳定约束的小信号稳定性

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With the advent of smart-grid technology, the wide application of FACTS (Flexible AC Transmission Systems)- based damping controllers exerts influences on both small signal stability and transient stability. Traditional Modal Analysis (MA) method can hardly meet the requirements of online applications. According to the inter-area oscillation mode to be studied, the multi-machine system can be equivalent to a two-machine system, and the Wide-Area Measurement System (WAMS) supports real-time dynamic equivalents. This paper explores the electric torque analysis (ETA) method in the two-machine system and the criteria of stability. An online coordination scheme of SVC-based Wide-Area Damping Controller (WADC) to maximize the damping ratio of the inter-area mode with the transient stability constraints is presented in this paper. The scheme is treated as an optimization issue and a plant growth simulation algorithm (PGSA) is employed to search for the optimal controller parameters. A 4-machine-2-area benchmark is used to verify the effectiveness and advantages of the proposed scheme for online applications.
机译:随着Smart-Grid技术的出现,基于事实(灵活的AC传输系统)的阻尼控制器的广泛应用施加对小信号稳定性和瞬态稳定性的影响。传统的模态分析(MA)方法几乎不符合在线应用的要求。根据要研究的区域间振荡模式,多机系统可以等同于双机系统,并且广域测量系统(WAMS)支持实时动态等同物。本文探讨了双机系统中的电动扭矩分析(ETA)方法及稳定性标准。本文介绍了基于SVC的广域阻尼控制器(WADC)的在线协调方案,以最大化相互稳定性稳定性约束的区域间模式的阻尼比。该方案被视为优化问题,采用植物生长模拟算法(PGSA)来搜索最佳控制器参数。一个4机2区域基准测试用于验证在线应用程序的效力和优势。

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