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Mitigating subsynchronous resonance and damping power system oscillation in a series compensated wind park using a novel static synchronous series compensator control algorithm

机译:使用新型静态同步串联补偿器控制算法缓解串联补偿风电场中的次同步谐振和阻尼电力系统振荡

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This paper presents a novel damping control algorithm for static synchronous series compensator (SSSC) in a series compensated wind park for mitigating subsynchronous resonance (SSR) and for damping power system oscillations. The sample test system, adapted from the IEEE first benchmark model on SSR replacing the synchronous generator, is employed aggregating wind park based self-excited induction generator. Consequently, it investigates the SSR phenomena and the damping power system oscillation while integrating large wind park based on SEIG. The potential occurrence and mitigation of the SSR caused by induction generator effects as well as torsional interactions, in a series compensated wind park, are investigated. The auxiliary subsynchronous damping control loops for the SSSC based on a novel design procedure of non-linear optimization are developed. The performance of the controller is tested in steady state operation and in response to system contingencies, taking into account the impact of short circuit ratios (SCRs). The simulation results are presented to demonstrate the capability of the controllers for mitigating the SSR, damping the power system oscillation and enhancing the transient stability margin in response to different SCRs.
机译:本文提出了一种用于串联补偿风电场中的静态同步串联补偿器(SSSC)的新型阻尼控制算法,用于减轻次同步谐振(SSR)和阻尼电力系统振荡。该样本测试系统采用了基于风电场的自励感应发电机,并采用了IEEE最初针对SSR的基准模型替代了同步发电机,并采用了该系统。因此,在集成基于SEIG的大型风电场时,它研究了SSR现象和阻尼电力系统的振荡。在串联补偿风电场中,研究了由感应发电机效应以及扭转相互作用引起的SSR的潜在发生和缓解。提出了一种基于非线性优化设计程序的SSSC辅助次同步阻尼控制回路。在考虑到短路比(SCR)的影响的情况下,控制器的性能在稳态操作和响应系统意外情况下进行了测试。给出了仿真结果,以证明控制器缓解SSR,抑制电力系统振荡以及增强响应不同SCR的暂态稳定裕度的能力。

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