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Control Strategy of BESS for Smoothing Fluctuation of Photovoltaic Power based on Fuzzy Control Theory

机译:基于模糊控制理论的光伏电力平滑光伏电力控制策略

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Recently, the penetration of photovoltaic (PV) power in power system has being promoted rapidly. However, the PV power shows drastic fluctuation which presents great challenge to the power grid. Thus, how to mitigate the fluctuation of PV station needs to be solved. Battery energy storage system (BESS) is flexible to charge/discharge and track the fluctuation of PV power, and also BESS integrated with PV station has fast response capability, so it is well suited for smoothing PV power fluctuations. At the same time, it should be noted that BESS has relatively high price per unit size. So how to prolong its lifetime and decrease the average cost per time unit is significant for the application of BESS. In this paper, a control strategy of BESS based on fuzzy control theory is presented to avoid the over-discharge of BESS, accordingly decrease the potential damage to BESS to decrease its lifetime. Also the fuzzy control theory based charge/discharge scheme is presented to adjust SOC to maintain the state of health (SOH) of BESS. The effectiveness of the proposed method has been demonstrated by case study with actual PV power data.
机译:最近,电力系统中的光伏(PV)功率的渗透已经迅速推广。然而,光伏电量显示出剧烈波动,这对电网具有巨大挑战。因此,需要解决如何减轻光伏电台的波动。电池储能系统(BESS)充电/放电并追踪光伏电源的波动,也与光伏电台集成的BESS集成具有快速响应能力,因此非常适合平滑光伏电量波动。同时,应该指出的是,贝塞尔每单位大小的价格相对较高。因此,如何延长其寿命并降低每次平均成本单位对于百分点的应用很重要。在本文中,提出了一种基于模糊控制理论的BESS的控制策略,以避免贝塞的过度排出,因此降低了贝塞的潜在损坏以降低其寿命。此外,还提出了基于模糊的控制理论的充电/放电方案来调整SOC以维持贝塞的健康状况(SOH)。通过实际PV电力数据进行了案例研究,已经证明了所提出的方法的有效性。

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