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首页> 外文期刊>IEEE Transactions on Power Electronics >Energy-balancing Control Strategy for Modular Multilevel Converters Under Submodule Fault Conditions
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Energy-balancing Control Strategy for Modular Multilevel Converters Under Submodule Fault Conditions

机译:子模块故障条件下模块化多电平转换器的能量平衡控制策略

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摘要

The modular multilevel converter (MMC) is a newly introduced switch-mode converter topology with the potential for high-voltage and high-power applications. This paper focuses on the design and control methods for fault-tolerant operation using redundant submodules (SMs), which is one of the most important features in the MMC topology. By comparing three design schemes of redundant SMs, the most economic and reliable scheme is identified. In addition, a mathematical model of the MMC with arms containing different numbers of SMs is developed. Based on the identified scheme and mathematical model, an energy-balancing control strategy is proposed to keep the MMC operating normally under SM fault conditions. Finally, time-domain simulations of a 61-level MMC system are performed, using the PSCAD/EMTDC software, while experiments are carried out on a 41-level MMC prototype. The simulation and experimental results validate the design scheme, mathematical model, and proposed energy-balancing control strategy.
机译:模块化多电平转换器(MMC)是新推出的开关模式转换器拓扑,具有用于高电压和高功率应用的潜力。本文重点介绍使用冗余子模块(SM)进行容错操作的设计和控制方法,这是MMC拓扑中最重要的功能之一。通过比较冗余SM的三种设计方案,可以确定最经济,最可靠的方案。此外,建立了带有包含不同数量SM的臂的MMC的数学模型。基于确定的方案和数学模型,提出了一种能量平衡控制策略,以使MMC在SM故障条件下保持正常运行。最后,使用PSCAD / EMTDC软件对61级MMC系统进行时域仿真,同时对41级MMC原型进行实验。仿真和实验结果验证了设计方案,数学模型和提出的能量平衡控制策略。

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