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A Capacitor Voltage Balancing Approach Based on Mapping Strategy for MMC Applications

机译:基于映射策略的MMC应用电容器电压平衡方法

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摘要

This paper proposes a new strategy to achieve balanced capacitor voltages in modular multilevel converters. Among the possible solutions, centralized arm control approaches are often adopted. These methods require a balancing technique based on a sorted list of the sub-modules according to their capacitor voltages. In order to achieve the aforementioned sorted list, different algorithms have been proposed in literature, such as: Sorting algorithms, max/min approaches, etc. However, the sorting algorithms require a long execution time, while the max/min approaches affect the converter dynamic response during faults. To overcome these issues, a new mapping strategy providing a quasi-sorted list is proposed in this paper. The suggested method is compared in simulation with both the classical bubble sorting algorithm, and the max/min method during both normal and faulty conditions. Moreover, the three methods have been implemented in a Xilinx Zynq-7000 System-on-Chip (SoC) device, in order to analyze the corresponding execution time and the required computational effort. Hardware-in-the-loop results are presented for demonstrating the superior performance of the proposed balancing strategy.
机译:本文提出了一种在模块化多电平转换器中实现电容器电容平衡电压的新策略。在可能的解决方案中,通常采用集中式手臂控制方法。这些方法需要基于子模块根据其电容器电压的排序列表的平衡技术。为了获得上述排序列表,文献中提出了不同的算法,例如:排序算法,最大/最小方法等。但是,排序算法需要较长的执行时间,而最大/最小方法会影响转换器故障期间的动态响应。为了克服这些问题,本文提出了一种提供准排序列表的新映射策略。在模拟中将建议的方法与经典气泡分类算法以及正常和故障情况下的最大/最小方法进行了仿真比较。此外,这三种方法已在Xilinx Zynq-7000片上系统(SoC)器件中实现,以便分析相应的执行时间和所需的计算量。提出了硬件在环结果,以证明所提出的平衡策略的优越性能。

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