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A novel ramp-rate control of grid-tied PV-Battery systems to reduce required battery capacity

机译:新型斜坡速率控制网格绑定的PV电池系统,以减少所需的电池容量

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This paper proposes a novel ramp-rate control of PV-battery systems in microgrids, including the coordination and control of time-varying loads. The power consumed by the loads is part of regulation strategy and participates in mitigating the overall ramp-rate of the controlled PV system and the loads. The control strategy is grid-friendly as the power fluctuation of the loads is also considered besides that of the PV system. Furthermore, this control strategy economizes on the number and size of auxiliary batteries that tipically are considered combined with PV system, since a part of the required active power is now borrowed from the loads. Combined to the load control a ramp-rate control, based on the virtual synchronous generator technology, is originally proposed to further reduce the use of the batteries and to provide innovative ancillary service. Finally numerical simulations on a test microgrid indicate the effectiveness of the proposed ramp-rate control. The test cases also demonstrate that this control strategy succeeds in reducing the battery capacity and the number of (dis)charge cycles as well as in offering frequency support to the microgrid.
机译:本文提出了一种微电网中PV电池系统的新型斜坡速率控制,包括协调和控制时变负载。负载消耗的功率是调节策略的一部分,并参与缓解受控光伏系统和负载的整体斜率。由于PV系统的负载的功率波动,控制策略是友好的,因为除了PV系统之外也考虑了负载的电力波动。此外,该控制策略节省了辅助电池的数量和大小,这些电池的数量和尺寸将被认为与光伏系统结合使用,因为现在从负载借用了一部分所需的电力。组合到负载控制,最初提出了基于虚拟同步发电机技术的斜率控制,以进一步减少电池的使用并提供创新的辅助服务。最后关于测试微电网的数值模拟表明提出的斜坡率控制的有效性。测试用例还证明,该控制策略成功降低了电池容量和(DIS)电荷周期的数量以及向微电网提供频率支持。

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