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Battery Energy Storage System Control for Voltage Regulation in Microgrid with High Penetration of PV Generation

机译:光伏发电高渗透率的微电网调压电池储能系统控制

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This paper presents an adaptive droop based control of battery energy storage system (BESS) for voltage regulation in low voltage (LV) microgrid with high penetration of photovoltaic (PV) generation. The proposed control strategy aims to eliminate voltage rise problem to prevent over-voltage violations caused by peak PV generation or low power consumption. Furthermore, voltage drop problem is mitigated to circumvent under-voltage violations during the intermittency of solar energy generation or high loading conditions. The BESS will be charged and discharged corresponding to droop characteristic during voltage rise and drop, respectively. Fuzzy logic is applied to enhance performance of the proposed strategy by considering allowable voltage deviation limits and state of charge (SoC) of the BESS to avoid an undesired saturation of batteries. The proposed control strategy is simulated using a LV microgrid to analyze and investigate the voltage regulation capability in comparative study. The simulation results demonstrate that the proposed control strategy offers an effectiveness and potential performance of voltage regulation in LV microgrid with high penetration of PV generations.
机译:本文提出了一种基于自适应下垂的电池储能系统(BESS)控制,用于低压(LV)微电网中具有高穿透性(PV)发电的电压调节。提出的控制策略旨在消除电压上升问题,以防止由峰值PV产生或低功耗引起的过电压违规。此外,缓解了电压降的问题,以在太阳能发电间歇性或高负荷条件期间规避欠压违规情况。在电压上升和下降期间,BESS将分别根据下降特性进行充电和放电。通过考虑允许的电压偏差极限和BESS的充电状态(SoC)来避免电池的不期望的饱和,应用模糊逻辑来提高所提出策略的性能。在比较研究中,使用低压微电网对拟议的控制策略进行了仿真,以分析和研究其电压调节能力。仿真结果表明,所提出的控制策略为光伏发电的高渗透率提供了低压微电网中电压调节的有效性和潜在性能。

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