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Research on SOC Weighted Control Method of Energy Storage System Based on Fuzzy Logic Control Theory

机译:基于模糊逻辑控制理论的储能系统SOC加权控制方法研究

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The equalization system is a key technology in the large-capacity energy storage management system. The existing active equalization and passive equalization can only control the capacity and voltage deviation inside the module (cluster). Although the balance of the SOC in the cluster is realized by the transfer or consumption of the energy in the batteries, the system topology of the large-capacity energy storage is complex and the number of batteries is large. For the entire energy storage system, the overall SOC balance must be considered especially when the system power output demand is close to or exceeds the rated power of the system. The short board cluster will limit the output power capabilities of the overall system. Aiming at the SOC balance of large-capacity energy storage system, this paper allocates the power command sent by the energy storage controller to the energy storage system according to the SOC weighted control algorithm of the fuzzy logic control theory. Through the power control of the bidirectional DC/DC converter, the battery pack whose cluster SOC value is higher than the average value discharge more power in the discharge phase, and the battery pack with SOC value lower than the average value absorbs more energy in the charging stage, resulting the capacity consistency of the battery clusters. Also, the specific implementation steps achieving the SOC weighed control based on Fuzzy logic theory has been illustrated in detail.
机译:均衡系统是大容量储能管理系统中的关键技术。现有的主动均衡和被动均衡只能控制模块(集群)内部的容量和电压偏差。尽管集群中SOC的平衡是通过电池中能量的转移或消耗来实现的,但大容量储能器的系统拓扑结构复杂且电池数量很多。对于整个储能系统,尤其是在系统功率输出需求接近或超过系统的额定功率时,必须考虑整体SOC平衡。短板集群将限制整个系统的输出功率功能。针对大容量储能系统的SOC平衡,根据模糊逻辑控制理论的SOC加权控制算法,将储能控制器发送的功率指令分配给储能系统。通过双向DC / DC转换器的功率控制,群集SOC值高于平均值的电池组在放电阶段会释放更多的功率,而SOC值低于平均值的电池组会在放电阶段吸收更多的能量。充电阶段,导致电池组的容量一致性。此外,还详细说明了基于模糊逻辑理论实现SOC加权控制的具体实现步骤。

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