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Utility Scale Interface for Renewables and Storage Using a Power Electronic Transformer with Back-to-Back MMCs: A Novel Proposal and Control Scheme for Virtual Inertia

机译:使用带有背靠背MMC的电力电子变压器进行可再生能源和存储的公用事业规模接口:虚拟惯性的新型提议和控制方案

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The increasing penetration of renewable energy sources into the grid has brought upon the need for synthetic inertia. This is to be meted out by the corresponding power electronic interfaces integrating these Distributed Energy Sources into the grid. In particular, a novel interface scheme using back-to-back MMCs to integrate wind turbines to the collection grid at voltages of 34.5kV has been shown to possess substantial potential for virtual inertia. The large stored potential energy in the virtual dc link between the MMCs is used to emulate the characteristics of a synchronous generator in case of step load changes. Inertial parameters of the back-to-back MMC has been derived enabling comparison with a synchronous generator connected to the grid. A control scheme to provide additional power to emulate the inertial characteristics of a synchronous generator has been developed. The corresponding over-ratings of currents and voltages to support this function have been quantitatively described. Frequency response characteristics due to step load changes in a weak grid has been considerably improved with the proposed interface scheme as verified by simulation results.
机译:可再生能源越来越多地渗透到电网中,因此需要合成惯性。这将通过将这些分布式能源集成到电网中的相应电力电子接口来解决。特别是,使用背对背MMC将风力涡轮机以34.5kV的电压集成到收集电网的新型接口方案已显示出具有很大的虚拟惯性潜力。 MMC之间虚拟直流链路中存储的大量势能用于模拟阶跃负载变化情况下同步发电机的特性。已经推导出了背靠背MMC的惯性参数,从而可以与连接到电网的同步发电机进行比较。已经开发出一种控制方案,以提供额外的功率来模拟同步发电机的惯性特性。已经定量地描述了支持该功能的电流和电压的相应过额定值。仿真结果验证了所提出的接口方案大大改善了弱电网中阶跃负载变化引起的频率响应特性。

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