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Operation of Modular Multilevel Converters under grid asymmetries

机译:电网不对称情况下模块化多电平转换器的操作

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The Modular Multilevel Converter is very likely to operate in a grid-connected mode under asymmetric conditions. Such a converter features several unique characteristics, which make its analysis different from other types of power converters in similar cases. The existence of three independent capacitive phase legs rather than a common DC-link capacitor requires special attention, in terms of stability and component dimensioning. This paper investigates the impact of unbalanced grid conditions on the operation of the Modular Multilevel Converter. The expressions for the branch energy variation are derived assuming that the grid-related quantities can be modeled by means of symmetrical components. Moreover, the effect of circulating current control for capacitive storage reduction as well as DC-link oscillation elimination is also studied. Finally, a control system is proposed and simulation results verify its discrete-time implementation.
机译:模块化多电平转换器很可能在非对称条件下以并网模式运行。这种转换器具有几个独特的特性,这使得它的分析在类似情况下不同于其他类型的电源转换器。就稳定性和组件尺寸而言,需要特别注意三个独立的电容性相臂而不是一个普通的直流母线电容器的存在。本文研究了不平衡电网条件对模块化多电平转换器运行的影响。假设可以通过对称分量对与网格相关的量进行建模,则得出分支能量变化的表达式。此外,还研究了循环电流控制对减少电容存储以及消除直流母线振荡的影响。最后,提出了一种控制系统,仿真结果验证了该系统的离散时间实现。

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