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Design of Modified Droop Controller for Frequency Support in Microgrid Using Fleet of Electric Vehicles

机译:电动车舰队微电网频率支持的改进下垂控制器设计

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Droop control has been extensively used by academia and industry for managing frequency fluctuations at microgrid (MG). This controller generates series of reference signals to different distributed energy sources (DES) such as diesel generator, PV, and wind system based on their respective maximum capacities. However, the combination of inertial and noninertial DES leads to frequency fluctuations at MG. Therefore, this paper proposes a novel frequency support strategy by controlling the operation of DES and controllable loads, i.e., electric vehicles (EVs). Moreover, fleet of EVs batteries maximum capacity depends upon constraints, such as state of charge (SoC), random arrival, and departure patterns. Hence, to accomodate EVs’ batteries with droop controller, it has been enhanced with communication links and feedback mechanism and referred as modified droop controller (MDC). This MDC would be now able to dispatch reference signals to both DES and EVs. However, for meeting reference signal given to fleet of EVs, an aggregator (AG) is proposed. AG can alter the charging and discharging rates of EVs’ thereby satisfying EVs’ needs in terms of battery's SoC. Extensive simulations have been done using the proposed scheme on data available from Santa Rita Jails’ MG.
机译:下垂控制已被学术界和工业界广泛用于管理微电网(MG)的频率波动。该控制器基于它们各自的最大容量,为不同的分布式能源(DES)(例如柴油发电机,PV和风力系统)生成一系列参考信号。但是,惯性和非惯性DES的组合会导致MG处的频率波动。因此,本文提出了一种通过控制DES的运行和可控负载即电动汽车(EV)的新型频率支持策略。此外,电动车电池组的最大容量取决于约束,例如充电状态(SoC),随机到达和离开模式。因此,为使电动汽车的电池具有下垂控制器,它已通过通信链接和反馈机制进行了增强,并被称为改进的下垂控制器(MDC)。该MDC现在将能够将参考信号分发到DES和EV。但是,为了满足给电动车队提供的参考信号,提出了一种聚合器(AG)。 AG可以更改电动汽车的充电和放电速率,从而满足电动汽车在电池SoC方面的需求。使用建议的方案,已根据Santa Rita Jails的MG获得的数据进行了广泛的仿真。

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