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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Capacitor voltage balancing method for modified modular multilevel converter
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Capacitor voltage balancing method for modified modular multilevel converter

机译:修改模块化多级转换器的电容器电压平衡方法

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This paper presents a modified modular multilevel converter (MMC) topology and a simple voltage balancing scheme that consists of intra‐ and inter‐arm voltage balancing methods. Each arm of the modified MMC comprises several half‐bridge submodules (SMs), one modified full‐bridge SM, and some clamping diodes. By adding a clamping diode to each of the two adjacent SMs, the capacitor voltage of one SM will be clamped by the two neighboring SMs when the clamping diode is in operation. Based on the diode‐clamped circuit, a simplify intra‐arm voltage balancing method, which needs only two voltage sensors, is proposed, and it takes up very little time for calculation and control. Moreover, an inter‐arm voltage balancing method based on bidirectional DC–DC converter control is studied, which can regulate the voltage balancing of two arms in one phase by controlling the power transmission amount and direction between two modified full‐bridge SMs. Compared with previous works, the present design prevents the MMC common mode current component to be injected into the grid and avoids interferences with system input or output voltage and current. Finally, a modified MMC system is built by using the PSCAD/EMTDC software, and the simulation results verify the effectiveness of the proposed topology and voltage balancing methods. ? 2018 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:本文提出了一个修改的模块化多级转换器(MMC)拓扑和简单的电压平衡方案,该方案由Intera组成 - 臂间电压平衡方法。修改后的MMC的每个臂包括几个半桥子模型(SMS),一个修改的全桥SM和一些夹紧二极管。通过在两个相邻的SMS中的每个SM中添加夹具二极管,当夹紧二极管在运行时,两个相邻的SMS将夹紧一个SM的电容器电压。基于二极管限制的电路,提出了一种简化的内部电压平衡方法,仅需要两个电压传感器,并且几乎没有时间进行计算和控制。此外,研究了基于双向DC – DC转换器控制器控制的臂间电压平衡方法,该方法可以通过控制两个修改后的全桥SMS之间的功率传输量和方向来调节两个臂的电压平衡。与以前的工作相比,目前的设计可防止将MMC公共模式电流组件注入网格中,并避免干扰系统输入或输出电压和电流。最后,通过使用PSCAD/EMTDC软件构建了修改的MMC系统,模拟结果验证了提出的拓扑和电压平衡方法的有效性。 ? 2018年日本电气工程师研究所。由John Wiley&amp出版Sons,Inc。

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