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Capability curve based enhanced reactive power control strategy for stability enhancement and network voltage management

机译:基于能力曲线的增强型无功功率控制策略,用于增强稳定性和网络电压管理

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Reactive power has become a vital resource in modern electricity networks due to increased penetration of distributed generation. This paper examines the extended reactive power capability of DFIGs to improve network stability and capability to manage network voltage profile during transient faults and dynamic operating conditions. A coordinated reactive power controller is designed by considering the reactive power capabilities of the rotor-side converter (RSC) and the grid-side converter (GSC) of the DFIG in order to maximise the reactive power support from DFIGs. The study has illustrated that, a significant reactive power contribution can be obtained from partially loaded DFIG wind farms for stability enhancement by using the proposed capability curve based reactive power controller; hence DFIG wind farms can function as vital dynamic reactive power resources for power utilities without commissioning additional dynamic reactive power devices. Several network adaptive droop control schemes are also proposed for network voltage management and their performance has been investigated during variable wind conditions. Furthermore, the influence of reactive power capability on network adaptive droop control strategies has been investigated and it has also been shown that enhanced reactive power capability of DFIGs can substantially improve the voltage control performance.
机译:由于分布式发电的普及,无功功率已成为现代电网中的重要资源。本文研究了DFIG的扩展无功功率功能,以改善网络稳定性,并在瞬态故障和动态工作条件下管理网络电压曲线。通过考虑DFIG的转子侧变流器(RSC)和电网侧变流器(GSC)的无功功率能力来设计协调型无功功率控制器,以最大化DFIG的无功功率支持。研究表明,通过使用建议的基于能力曲线的无功功率控制器,可以从部分加载的DFIG风电场中获得显着的无功功率贡献,以增强稳定性。因此,DFIG风力发电场可以作为电力公用事业的重要动态无功功率资源,而无需调试其他动态无功功率设备。还提出了几种用于网络电压管理的网络自适应下垂控制方案,并已研究了在变风条件下的性能。此外,已经研究了无功功率能力对网络自适应下垂控制策略的影响,并且还显示出增强的DFIG的无功功率能力可以大大改善电压控制性能。

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