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Frequency Regulation using Smart Inverters in High Penetration Distributed PV Scenario

机译:高穿透率分布式光伏场景中使用智能逆变器的频率调节

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The classical frequency regulation problem of a medium voltage distribution network with high Photovoltaic (PV) penetration is addressed. The methodology, using multiple distributed smart inverters, is discussed thoroughly. The frequency control strategy shown here, is primarily based on the advanced Frequency-Watt Control (FWC) feature of the Voltage Source Inverter (VSI). This feature mimics the governor droop control of conventional synchronous generator and doesn't require costly communication infrastructure. Dead band coordination is discussed and a low-cost coordination strategy for multiple smart PV inverters is also proposed based on the Inverse Definite Minimum Time (IDMT) principle. Dynamic frequency regulation on a modified IEEE-13 bus test system is simulated and analyzed to verify the effectiveness of the proposed solution. The simulation results show evidence that the proposed coordination strategy is effective in providing a tight frequency regulation.
机译:解决了具有高光伏(PV)穿透力的中压配电网络的经典调频问题。彻底讨论了使用多个分布式智能逆变器的方法。此处显示的频率控制策略主要基于电压源逆变器(VSI)的高级频率-瓦特控制(FWC)功能。该功能模仿了传统同步发电机的调速器下垂控制,并且不需要昂贵的通信基础设施。讨论了死区协调,并基于逆最小限时(IDMT)原理,提出了多个智能光伏逆变器的低成本协调策略。仿真和分析了修改后的IEEE-13总线测试系统上的动态频率调节,以验证所提出解决方案的有效性。仿真结果表明,所提出的协调策略可有效地提供严格的频率调节。

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