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Capacity allocation of a hybrid energy storage system for power system peak shaving at high wind power penetration level

机译:高风电渗透水平下用于电力系统调峰的混合储能系统的容量分配

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High wind power penetration in power system leads to a significant challenge in balancing power production and consumption due to the intermittence of wind. Introducing energy storage system in wind energy system can help offset the negative effects, and make the wind power controllable. However, the power spectrum density of wind power outputs shows that the fluctuations of wind energy include various components with different frequencies and amplitudes. This implies that the hybrid energy storage system is more suitable for smoothing out the wind power fluctuations effectively rather than the independent energy storage system. In this paper, we proposed a preliminary scheme for capacity allocation of hybrid energy storage system for power system peak shaving by using spectral analysis method. The unbalance power generated from load dispatch plan and wind power outputs is decomposed into four components, which are outer-day, intra-day, short-term and very short-term components, by using Discrete Fourier Transform (DFT) and spectral decomposition method. The capacity allocation can be quantified according to the information in these components. The simulation results show that the power rating and energy rating of hybrid energy storage system in partial smoothing mode decrease significantly in comparison with those in fully smoothing mode. (C) 2014 Elsevier Ltd. All rights reserved.
机译:由于风的间歇性,高的风能在电力系统中的渗透导致在平衡电力生产和消耗方面的重大挑战。在风能系统中引入储能系统可以抵消负面影响,使风电可控。然而,风能输出的功率谱密度表明,风能的波动包括具有不同频率和幅度的各种分量。这意味着,混合动力储能系统比独立的储能系统更适合于有效地消除风能波动。本文提出了一种基于频谱分析的电力系统调峰用混合储能系统容量分配的初步方案。通过使用离散傅里叶变换(DFT)和频谱分解方法,将负荷分配计划和风能输出产生的不平衡功率分解为四个部分,分别是日内,日内,短期和非常短期。 。可以根据这些组件中的信息来量化容量分配。仿真结果表明,与完全平滑模式相比,混合动力储能系统在部分平滑模式下的额定功率和额定能量明显降低。 (C)2014 Elsevier Ltd.保留所有权利。

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