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A new droop characteristic for energy storage system dispatch commands generation

机译:能量存储系统调度命令生成的新下垂特性

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This work aims to facilitate higher photovoltaic (PV) penetration in distribution networks, by utilising an energy storage system (ESS) and the on-load tap-changer (OLTC) mechanism at the substation transformer. The dispatch commands to the ESS are generated by a new droop characteristic, that relates the ESS active power to the power surplus. The identification of the appropriate droop characteristic is assigned to the scheduling algorithm that generates dispatch commands both for the ESS and the OLTC. First, the ESS is dispatched alone, and then, a joint dispatch is performed combining the ESS and the OLTC. For each of the above dispatch strategies, the lowest cost solution for ESS placement and sizing (kW, kWh) is identified, and possible differences are discussed. To demonstrate the effectiveness of the proposed droop characteristic, simulation results for a real-life distribution network in Queensland are presented.
机译:这项工作旨在通过变电站变压器上的储能系统(ESS)和有载分接开关(OLTC)机制,促进更高的光伏(PV)渗透到配电网络中。 ESS的调度命令由新的下降特性生成,该特性将ESS有功功率与剩余功率相关联。适当的下降特性的标识被分配给调度算法,该调度算法为ESS和OLTC生成调度命令。首先,单独调度ESS,然后结合ESS和OLTC执行联合调度。对于以上每种调度策略,都确定了ESS放置和规模调整的最低成本解决方案(kW,kWh),并讨论了可能的差异。为了证明所提出的下垂特性的有效性,给出了昆士兰州一个现实生活中的配电网的仿真结果。

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