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Optimal configuration of battery energy storage systems using for rooftop residential photovoltaic to improve voltage profile of distributed network

机译:电池储能系统的最佳配置,用于改善分布式网络电压曲线的屋顶居民光伏

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摘要

Due to the power mismatches between residential load and rooftop residential photovoltaic (PV) generation, voltage profile of low-voltage distribution system (LVDN) may exceed the allowable limit during the daytime and is well below the lower limit at night. To solve this problem, an optimal configuration of battery energy storage (BES) systems is used for rooftop residential PV to improve the voltage profile of LVDN. Firstly, typical curves of residential electric load and PV generation are analysed to demonstrate the principle of integrated voltage regulation method. Secondly, two-stage voltage regulation strategy is proposed to minimise the installed capacity of BES. More specifically, to limit the voltage with reasonable level, the reactive power capability of PV inverter can be utilised in inner stage, and BES is used in outer stage in term of storage charging at off-peak time and discharging at the peak time. Finally, optimal configuration model is achieved by combining the two-stage voltage control method and the constraint condition of total reduced PV generation. Simulation results indicate that the voltage level in LVDN could be controlled in a proper range by the proposed optimal configuration scheme and the total installed capacity of BES is the minimum.
机译:由于居住载荷和屋顶居住光伏(PV)产生的功率不匹配,低压分布系统(LVDN)的电压曲线可能在白天期间超过允许的限制,并且远低于夜间的下限。为了解决这个问题,电池储能(BES)系统的最佳配置用于屋顶住宅PV,以改善LVDN的电压曲线。首先,分析了居民电负载和光伏生代的典型曲线,以证明集成电压调节方法的原理。其次,提出了两级电压调节策略,以最小化BES的装机容量。更具体地,为了限制具有合理水平的电压,可以在内部级使用PV逆变器的无功功率能力,并且在截止峰值时间的存储充电中的外部级和在峰值时间放电的外部级中使用。最后,通过组合两级电压控制方法和总减少的PV生成的约束条件来实现最佳配置模型。仿真结果表明,通过所提出的最佳配置方案,LVDN中的电压电平可以控制在适当的范围内,并且BES的总装机容量是最小的。

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