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Hybrid Energy Storage System Planning Method of DC Distribution Network Based on Energy Storage Battery and Super Capacitor

机译:基于储能电池和超级电容器的直流配电网混合储能系统规划方法

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Energy Internet is a hot spot of research and practice in the field of energy at home and abroad. DC power distribution technology is an important element of energy Internet. How to plan the type and capacity of energy storage system (ESS) is a problem worthy of attention when designing the optimal energy conversion path in the energy Internet, especially in the DC distribution network. The proper type and capacity of ESS can effectively suppress DC voltage flicker and improve the system operation stability and fault crossing ability. In this paper, the hybrid energy storage scheme of energy storage battery and super capacitor is adopted in DC distribution network, and the discrete Fourier spectrum analysis of power demand sample data is carried out to obtain the basic power in low frequency and fluctuating power in high frequency. The energy storage battery with slow dynamic response speed is used to match the power demand of low-frequency segment, and the super capacitor with slow dynamic response speed is used to match the power demand of high-frequency segment. The influence index of SOC over limit times of energy storage system is introduced to seek the critical value of ESS capacity planning. Finally, the proposed hybrid energy storage planning method is verified by the case studying.
机译:能源互联网是国内外能源领域研究与实践的热点。直流配电技术是能源互联网的重要组成部分。当设计能源互联网(尤其是直流配电网络)中的最佳能量转换路径时,如何规划能量存储系统(ESS)的类型和容量是一个值得关注的问题。适当类型和容量的ESS可以有效抑制DC电压闪烁,并提高系统运行稳定性和故障穿越能力。本文在直流配电网中采用了储能电池和超级电容器的混合储能方案,对电力需求样本数据进行了离散傅里叶频谱分析,得到了低频的基本功率和高频的波动功率。频率。动态响应速度较慢的储能电池用于匹配低频段的功率需求,动态响应速度较慢的超级电容器用于匹配高频段的功率需求。介绍了SOC对储能系统极限时间的影响指标,以寻求ESS容量规划的临界值。最后,通过实例研究验证了所提出的混合储能计划方法。

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