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Coordinated Voltage Control Scheme for SEIG-Based Wind Park Utilizing Substation STATCOM and ULTC Transformer

机译:基于STATCOM和ULTC变电站的SEIG风电场协调电压控制方案

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This paper presents a coordinated voltage control scheme for improving the network voltage profile and for minimizing the steady-state loading of the STATCOM to effectively support the system during contingencies. The paper addresses implementation issues associated with primary voltage control and optimal tracking secondary voltage control for wind parks based on self-excited induction generators which comprise STATCOM and under-load tap changer (ULTC) substation transformers. The voltage controllers for the STATCOM and ULTC transformer are coordinated and ensure the voltage support. In steady-state operation, the voltage is controlled by only stepping the tap changer when the voltage is outside the deadband region of the ULTC to minimize the number of taps changes. Thus, the STATCOM will be unloaded and ready to react with higher reactive power margin during contingencies. In the paper, the effects of the short circuit ratio of the interconnection and the inherent communication delay between the wind park and the remote bus on the performance of the controllers and the maximum critical clearing time of fault are considered. Simulation results are presented to demonstrate the performance of the controllers in steady-state and in response to system contingency situations.
机译:本文提出了一种协调电压控制方案,用于改善网络电压曲线并最小化STATCOM的稳态负载,以在突发事件期间有效地支持系统。本文基于自励感应发电机(包括STATCOM和有载分接开关(ULTC)变电站变压器),解决了与风电场的一次电压控制和最佳跟踪二次电压控制相关的实施问题。 STATCOM和ULTC变压器的电压控制器相互协调并确保电压支持。在稳态操作中,当电压在ULTC的死区区域之外时,仅通过对抽头变换器进行步进控制,以最大程度地减少抽头变换次数。因此,在意外情况下,STATCOM将被卸载并准备以更高的无功功率裕度做出反应。在本文中,考虑了互连的短路率以及风电场与远程总线之间固有的通信延迟对控制器性能和最大故障排除时间的影响。仿真结果表明了控制器在稳态和响应系统意外情况下的性能。

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