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Frequency response and its enhancement using synchronous condensers in presence of high wind penetration

机译:在高风速情况下使用同步电容器的频率响应及其增强

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In recent years wind power integration has substantially increased in southern states of Australia. At present South Australia has the highest wind generation capacity of any region across the country. This large capacity penetration would likely displace existing synchronous generation fleet. These wind generators have neither enough inertia response nor governor support to control major frequency excursion. Under high wind power availability and cheaper import from neighboring region, South Australian grid could depend on few synchronous machines for frequency regulation. Under such a scenario, a big contingency may produce a severe frequency excursion in the network. Consequently, system may face a considerable amount of load shedding, which may degrade the standard of network service quality. To understand these issues, this paper investigates frequency response of a power system in presence of high wind penetration. The network under consideration loosely represents South Australian power system. Additional frequency control strategy, such as deployment of synchronous condensers to enhance network frequency response is also studied.
机译:近年来,澳大利亚南部各州的风电整合已大大增加。目前,南澳大利亚州的风力发电能力是全国所有地区中最高的。这种大容量的渗透可能会取代现有的同步发电船队。这些风力发电机既没有足够的惯性响应,也没有调速器支持来控制主要频率偏移。在高风能可用性和从邻近地区廉价进口的情况下,南澳大利亚电网可以依靠很少的同步电机来进行频率调节。在这种情况下,较大的意外事件可能会在网络中产生严重的频率偏移。因此,系统可能面临大量的负载减少,这可能会降低网络服务质量的标准。为了理解这些问题,本文研究了存在大风的情况下电力系统的频率响应。所考虑的网络大致代表了南澳大利亚州的电力系统。还研究了其他频率控制策略,例如部署同步电容器以增强网络频率响应。

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