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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Model-Predictive-Control-Based Capacitor Voltage Balancing Strategies for Modular Multilevel Converters
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Model-Predictive-Control-Based Capacitor Voltage Balancing Strategies for Modular Multilevel Converters

机译:模块化多电平转换器的基于模型预测控制的电容器电压平衡策略

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摘要

This paper presents two capacitor voltage balancing (CVB) strategies for modular multilevel converter (MMC) applications. Both balancing schemes are based on model predictive control and are designed to efficiently solve a constrained optimal control problem, where the predicted capacitor voltage errors are included in the cost function with the demanded output voltage of a cluster being forced through an equality constraint. The first method proposed in this paper computes specific modulation indexes for each module using the explicit solution of a relaxed version of the original optimization problem. The second approach proposed in this paper reduces the complexity of the original problem by linearizing the objective function and using an optimal sorting network based on a greedy algorithm to solve this approximation. Considering the structures of both solution approaches, they are integrated into modulation schemes based on phase-shifted and level-shifted pulsewidth modulation algorithms, respectively. Experimental results obtained from a nine-cell single-phase MMC prototype demonstrate the good performance achieved with the proposed methodologies, as well as the implementation simplicity offered by the proposed CVB algorithms.
机译:本文介绍了两种用于模块化多电平转换器(MMC)应用的电容器电压平衡(CVB)策略。两种平衡方案均基于模型预测控制,旨在有效地解决约束最优控制问题,在该最优控制问题中,预测电容器电压误差包含在成本函数中,并且通过相等约束强制要求的群集输出电压。本文提出的第一种方法是使用原始优化问题的宽松版本的显式解决方案为每个模块计算特定的调制指数。本文提出的第二种方法通过使目标函数线性化并使用基于贪婪算法的最佳排序网络来解决该近似问题,从而降低了原始问题的复杂性。考虑到两种解决方案方法的结构,它们分别被集成到基于相移和电平移位脉冲宽度调制算法的调制方案中。从九单元单相MMC原型获得的实验结果证明了所提出的方法实现的良好性能,以及所提出的CVB算法所提供的实现简便性。

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