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Active SOC Balancing Control Strategy for Modular Multilevel Super Capacitor Energy Storage System

机译:模块化多级超级电容器储能系统的主动SOC平衡控制策略

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This paper presents an active state-of-charge (SOC) balancing control strategy formodular super capacitor energy storage system (ESS). The strategy has a master-slave structure, including a common dc bus voltage loop and individual slave current loop for each submodule. The common voltage loop ensures the ability of the system to stabilize dc bus voltage cannot be affected by SOC balancing control, and provides a same original current reference for all submodules. SOC information is introduced into current loops to achieve SOC balancing control. The highest SOC is taken as a reference for low SOC modules, thus, the low SOC modules can regulate the submodule average operation current according to the SOC reference and their own SOC. In order to minimize system current deviation caused by the introduction of SOC, a current correction method is proposed to improve system current regulate performance. The proposed strategy can achieve SOC balancing control during ESS charging and discharging process dynamically, in addition, the modularity of the system is improved and the proposed strategy has favorable stability. A modular ESS prototype consisting of three half-bridge submodules is tested in the laboratory, and the experimental results verify the effectiveness of the proposed control strategy.
机译:本文介绍了积极的充电状态(SoC)平衡控制策略格式化电容器储能系统(ESS)。该策略具有主从结构,包括每个子模块的公共直流总线电压环和各个从电流环路。公共电压回路确保系统稳定直流母线电压的能力不能受到SOC平衡控制的影响,并且为所有子模块提供相同的原始电流参考。 SOC信息被引入电流循环以实现SOC平衡控制。将最高SOC作为低SOC模块的参考,因此,低SOC模块可以根据SOC参考和它们自己的SOC调节子模块平均操作电流。为了最小化由SOC引入引起的系统电流偏差,提出了一种电流校正方法来提高系统电流调节性能。所提出的策略可以在ESS充电和放电过程中实现SOC平衡控制,此外,系统的模块化得到改善,所提出的策略具有良好的稳定性。在实验室测试了由三个半桥子模块组成的模块化ESS原型,实验结果验证了所提出的控制策略的有效性。

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