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Dynamic grid voltage support from distributed energy resources during short-circuits

机译:短路期间来自分布式能源的动态电网电压支持

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Grid codes are consistently updated in order to increase the operation efficiency of the power system. In many utilities, Low-Voltage-Ride-Through (LVRT) capability of Distributed Energy Resources (DERs) is nowadays a grid code requirement, according to which DERs should stay connected to faulty grid and support the voltage. This paper intends to illustrate the benefits gained from the LVRT capability of DERs to support voltage dynamically under short-circuit conditions. Both synchronous generators and inverter-interfaced DERs are included in the analysis, initially as single grid-connected units and subsequently as generating units connected to a benchmark distribution system. The importance of the synchronous machines voltage regulator parameters and that of the inverter-interfaced DERs' control system is highlighted. Local versus dispersed integration of DERs, the line type of the distribution feeder and the DERs regulator/controller operation are shown to play important role in grid voltage support during short-circuits if DERs are operating independently or together in a distribution system. Relevant conclusions occur from the simulation results.
机译:电网代码会不断更新,以提高电力系统的运行效率。在许多公用事业中,如今分布式能源(DER)的低电压穿越(LVRT)功能已成为电网规范要求,根据该规范,DER应保持与故障电网的连接并支持电压。本文旨在说明从DER的LVRT功能在短路条件下动态支持电压中获得的好处。分析中同时包括了同步发电机和逆变器接口的DER,它们最初是作为单个并网设备,随后是与基准配电系统相连的发电机。强调了同步电机调压器参数和逆变器接口的DERs控制系统的重要性。如果DER在配电系统中独立运行或一起运行,则表明DER的本地集成与分散集成,配电馈线的线路类型以及DER调节器/控制器的运行在短路期间的电网电压支持中起着重要作用。从仿真结果中得出相关结论。

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