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Long-term stable operation control method of dual-battery energy storage system for smoothing wind power fluctuations

机译:平滑风电波动的双电池储能系统长期稳定运行控制方法

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Since wind output power shows obvious fluctuations characteristics, direct grid-connection will bring great challenges to the safe and stable operation of the power system. In order to achieve better economic benefits, this paper adopts the dual-battery energy storage system (DBESS) operation mode which performs charge?discharge tasks separately considering the discharge depth and frequent charge?discharge conversion on battery life. However, the extreme operation will occur when considering the imbalance of charge and discharge energy of DBESS, which will make it difficult for DBESS to maintain long-term stable operation to smooth the wind output power. Besides this paper proposes a charge?discharge operational stability index for characterizing the system operation status, based on the real-time operating conditions of the energy storage system and wind power fluctuations. To ensure the DBESS long-term operation stability, the extreme operation problems caused by charge?discharge unbalanced energy in the long-term operating process must be solved. This paper used two proposed indicators as input factors and proposed a control strategy to adaptively fine-tune the first-order lowpass filtering time constant, to charge the battery throughput power in real-time and optimize two battery packs? State of Charge (SOC). The effectiveness of the proposed control strategy is verified from two aspects by using MATLAB/Simulink software: the SOC optimizing control effect and the power fluctuation smoothing effect.
机译:由于风输出功率表现出明显的波动特性,直接连接电网将带来电力系统的安全稳定运行的巨大挑战。为了实现更好的经济效益,本文采用双电池储能系统(DBESS)操作模式,来进行收费?放任务分开考虑放电深度和频繁充电?对电池寿命放电转换。但是,考虑到费用和DBESS的放电能量的不平衡,这将很难让DBESS保持长期稳定运行平滑风输出功率时,将出现极端操作。此外提出了一种电荷?放电操作稳定性指数表征系统操作状态,基于所述能量存储系统和风力功率波动的实时操作条件。为了确保DBESS长期运行的稳定性,造成电荷极端操作问题?在长期的经营过程中释放的能量不平衡必须得到解决。本文使用两种建议的指标作为输入因子和提出的控制策略以自适应微调一阶低通滤波的时间常数,对电池吞吐量功率充电实时和优化两个电池组?充电状态(SOC)。所提出的控制策略的有效性来自于两个方面,通过使用MATLAB / Simulink的软件验证:SOC的优化控制效果和电源波动的平滑效果。

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