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Wavelet-Based Capacity Configuration and Coordinated Control of Hybrid Energy Storage System for Smoothing Out Wind Power Fluctuations

机译:基于小波的混合动力储能系统容量配置和协调控制,用于消除风电波动

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摘要

Stochastically fluctuating wind power has a negative impact on power grid operations. This paper presents a wind power filtering approach to mitigate short- and long-term fluctuations using a hybrid energy storage system (HESS), and a novel wavelet-based capacity configuration algorithm to properly size the HESS. A frequency distribution allocates wind power fluctuations to the different HESS components to more easily satisfy 1-min and 30-min fluctuation mitigation requirements (FMR). An ultra-capacitor bank (UC) mitigates short-term fluctuations. In the HESS, and a lithium-ion battery bank (LB) minimizes long-term fluctuations. This paper also proposes a novel online-wavelet based coordination control scheme for the HESS, consisting of primary filtering (PF) and secondary filtering (SF) stages. The PF stage obtains a combined power output that fully satisfies the FMRs, while the SF stage provides additional smoothing of the wind power output fluctuations after the PF stage. A remaining energy level (REL) feedback control maintains the REL of the battery bank within its proper range. Case studies demonstrate that the proposed wavelet-based algorithm is more efficient than other published algorithms, and needs a lower energy storage capacity to satisfy 1-min and 30-min FMRs.
机译:风能的随机波动会对电网运行产生负面影响。本文提出了一种使用混合储能系统(HESS)来减轻短期和长期波动的风能过滤方法,以及一种新颖的基于小波的容量配置算法来适当地确定HESS的大小。频率分布将风电波动分配给不同的HESS组件,以便更轻松地满足1分钟和30分钟的波动缓解要求(FMR)。超级电容器银行(UC)可以缓解短期波动。在HESS中,锂离子电池组(LB)使长期波动最小化。本文还提出了一种基于在线小波的HESS协调控制方案,该方案由初级滤波(PF)和次级滤波(SF)阶段组成。 PF级获得完全满足FMR要求的组合功率输出,而SF级则提供了PF级之后风能输出波动的额外平滑处理。剩余能量水平(REL)反馈控制将电池组的REL保持在其适当范围内。案例研究表明,所提出的基于小波的算法比其他已发布的算法效率更高,并且需要较低的能量存储容量才能满足1分钟和30分钟的FMR。

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