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首页> 外文期刊>International journal of electrical power and energy systems >A novel model predictive control with an integrated SOC and floating DC-link voltage balancing for 3-phase 7-level PUC converter-based MV BESS
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A novel model predictive control with an integrated SOC and floating DC-link voltage balancing for 3-phase 7-level PUC converter-based MV BESS

机译:一种新型模型预测控制,具有三相7级PUC转换器的MV BES的集成SOC和浮动直流 - 链路电压平衡

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摘要

Compared to conventional multilevel topologies, the Packed U-Cell multilevel topology utilizes the minimum number of components and provides both maximum voltage levels and high reliability. When used in a battery energy storage system, its dc-link consists of a top branch battery storage and bottom branch flying capacitors, whose state of charge and voltages must be balanced.This paper proposes a novel control scheme with two cascaded controllers: the inner loop regulates the output filter current and dc-link voltages using a novel finite-set model predictive control, the outer one is fully integrated with the model predictive controller and regulates the battery state of charge by injecting a zero-sequence voltage. The proposed control scheme was successfully implemented and tested through simulation and real-time testing. The obtained results highlight good dynamic performance and robustness of the proposed scheme during active power injection/absorption and low voltage ride-through capability.
机译:与传统的多级拓扑相比,填充的U细胞多级拓扑结构利用最小数量的组件,并提供最大电压水平和高可靠性。当在电池储能系统中使用时,其DC-Link由顶部分支电池存储和底部分支电容器组成,其充电状态和电压必须平衡。本文提出了一种具有两个级联控制器的新型控制方案:内部通过新颖的有限设定模型预测控制来调节输出滤波器电流和直流链路电压,外部与模型预测控制器完全集成,并通过注入零序电压来调节电池充电状态。通过模拟和实时测试成功实施并测试了所提出的控制方案。所获得的结果突出了在有源电力注入/吸收和低电压乘坐能力期间所提出的方案的良好动态性能和鲁棒性。

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