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Bi-level Dispatching Strategy for HESS in Distribution Networks with High PV Penetration Considering Voltage Regulation and Price Arbitrage

机译:考虑电压调节和价格套利的高PV渗透配电网HESS双层调度策略

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A bi-level multi-timescale dispatching strategy for hybrid energy storage system (HESS) is proposed to smooth the PV output fluctuation as well as to solve voltage rise/drop issues and to make profits from the peak and valley price. The exponential smoothing method is adopted at the lower-level to produce PV output reference and ultra-capacitors are utilized to compensate the PV fluctuation within every minute. The smoothed PV output are employed at the upper-level to control lithium batteries within hourly timescale, which includes voltage regulation and price arbitrage. In the voltage regulation part, performance indices such as batteries' remaining lifetime, State of Charge (SoC), operating costs and voltage sensitivity factor (VSF) are taken into consideration to optimize the control strategy. In the price arbitrage part, to minimize the effects on the node voltage and to achieve optimality based on the real-time price, the battery with the minimal VSF and operating costs will be selected with the highest priority to realize the control strategy. A case study is shown in this paper to verify the effectiveness of the proposed strategy.
机译:提出了一种混合动力储能系统(HESS)的双级多时间尺度调度策略,以平滑光伏输出波动,并解决电压上升/下降问题,并从高峰和谷底价格中获利。在较低级别采用指数平滑法来生成PV输出参考,并使用超级电容器来补偿每分钟内的PV波动。平滑的PV输出在较高级别上用于在每小时的时间范围内控制锂电池,其中包括电压调节和价格套利。在电压调节部分,要考虑性能指标,例如电池的剩余寿命,充电状态(SoC),运行成本和电压灵敏度系数(VSF),以优化控制策略。在价格套利部分,为了最大程度地降低对节点电压的影响并基于实时价格实现最优,将选择具有最低VSF和运营成本的电池,以实现控制策略。本文显示了一个案例研究,以验证所提出策略的有效性。

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