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Mitigation of Fault Induced Delayed Voltage Recovery (FIDVR) by PV-STATCOM

机译:PV-Statcom对断层引起的延迟电压恢复(FIDVR)的缓解

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This paper presents a novel day-and-night control of large PV solar farm as STATCOM, termed PV-STATCOM, for FIDVR alleviation. The proposed control involves dynamic modulation of both reactive and real power during day, and of reactive power during night. The active and reactive power output of solar farm are based on the sensitivity of solar plant voltage to active and reactive power injections. Enhanced voltage control up to utility Transient Overvoltage Limit is utilized. Eigenvalue analysis is done to study the sensitivity of proposed controller performance to various power system and PV plant parameters. Extensive PSCAD simulation studies of FIDVR are performed in a realistic power transmission system with large-scale PV plant and comprehensive IM loads. It is shown that the proposed PV-STATCOM control: (i) mitigates FIDVR even if solar farm is located more than 100 km from motor loads, (ii) is more effective than reactive power support required by German Grid Code, (iii) is equally effective as a STATCOM connected locally at motor loads, and (iv) stabilizes motors at night which is beyond Grid Code requirements. The PV-STATCOM potentially provides significant cost savings to utilities and new revenue stream for solar plants in providing 24/7 FIDVR mitigation service.
机译:本文介绍了大型光伏太阳能电池的新型和夜间控制,如Statcom,被称为PV-Statcom,用于PERVR缓解。所提出的控制涉及在一天中动态调制反应性和实际功率,并且在夜间期间的无功功率。太阳能电池的主动和无功功率输出基于太阳能电压电压与主动和无功型电流的灵敏度。利用增强型电压控制达到公用事业瞬态过压限制。完成了特征值分析,以研究提出的控制器性能对各种电力系统和光伏工厂参数的敏感性。广泛的PSCAD模拟PERVR的仿真研究在具有大型光伏电厂和全面的IM负载的现实动力传输系统中进行。结果表明,拟议的PV-Statcom控制:(i)即使太阳能农场距离电机负荷超过100公里,(ii)也比德国网格代码所需的无功功率支持更有效,(iii)是更有效的同样有效作为在电动机负载上局部连接的Statcom,(IV)在夜间稳定电机,其超出网格代码要求。 PV-Statcom可能为公用事业提供重大成本,为太阳能电厂提供24/7 Fidvr缓解服务的新增费用。

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