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Design of LCC HVDC wide-area emergency power support control based on adaptive dynamic surface control

机译:基于自适应动态表面控制的LCC HVDC广域应急电源支持控制设计

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摘要

In AC-DC parallel systems, line-commutated-converter (LCC)-based high-voltage direct-current (HVDC) emergency control strategy can improve the stability of the power system. This study proposes an LCC HVDC emergency control strategy that utilises the global information measured by wide-area measurement systems. The design of the proposed LCC HVDC emergency control strategy takes advantage of dynamic surface control and adaptive control. The Lyapunov stability analysis is used to prove that the AC-DC parallel system is uniformly ultimately bounded in the presence of the uncertainties. A two-area four-generator AC-DC parallel system is developed in PSCAD/EMTDC to verify the effectiveness and correctness of the proposed strategy. Simulation results show that the proposed LCC HVDC emergency control strategy can improve the stability of an AC-DC parallel system and is robust. Its superiority is demonstrated by comparing the proposed method with controllers designed using backstepping technique and pole placement technique.
机译:在AC-DC并联系统中,基于线换向转换器(LCC)的高压直流(HVDC)紧急控制策略可以提高电力系统的稳定性。这项研究提出了一种LCC HVDC应急控制策略,该策略利用了由广域测量系统测得的全球信息。提出的LCC HVDC应急控制策略的设计利用了动态表面控制和自适应控制的优势。 Lyapunov稳定性分析用于证明存在不确定性时,AC-DC并联系统最终最终有界。在PSCAD / EMTDC中开发了一种两区域四发电机AC-DC并联系统,以验证所提出策略的有效性和正确性。仿真结果表明,所提出的LCC HVDC应急控制策略可以提高AC-DC并联系统的稳定性,并且具有鲁棒性。通过将提出的方法与使用反步技术和极点放置技术设计的控制器进行比较,证明了其优越性。

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