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Photovoltaic active power control based on BESS smoothing

机译:基于BESS平滑的光伏有功功率控制

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The power fluctuation of photovoltaic (PV) is harmful to power systems, so the battery energy storage system (BESS) was applied to smooth power fluctuation in PV. At present, the main ways to get configuration of BESS are low-pass filter and spectrum compensation, which have some drawbacks. In this paper, a method that combines empirical mode decomposition (EMD) with wavelet analysis (WA) is proposed to get grid-connected active power expectation of PV properly. Based on simulation of PV output, the minimum sizing of BESS is determined by different batteries’ state-of-charging (SOC) and efficiency. Comparing traditional low-pass filter and spectrum compensation, this method not only acquires the capacity of BESS accurately, but also improves the effect to smoothing power fluctuation of PV effectively. Finally, a case is proposed to verify correctness of the theory.
机译:光伏(PV)的功率波动对电力系统有害,因此采用电池储能系统(BESS)来平滑PV的功率波动。目前,获得BESS配置的主要方法是低通滤波器和频谱补偿,这有一些缺点。本文提出了一种将经验模态分解(EMD)与小波分析(WA)相结合的方法,以正确地获得光伏的并网有功功率期望值。在模拟光伏输出的基础上,BESS的最小尺寸取决于不同电池的充电状态(SOC)和效率。与传统的低通滤波器和频谱补偿相比,该方法不仅可以准确地获得BESS的容量,而且可以有效地改善平滑光伏功率波动的效果。最后,提出了一个案例来验证该理论的正确性。

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