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Hybrid Modular Multilevel Converter With Arm-Interchange Concept for Zero-/Low- Frequency Operation of AC Drives

机译:混合模块化多电平转换器,具有ARM - 交换概念,用于交流驱动器的零/低频操作

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摘要

DC-AC Modular Multilevel Converter (MMC) is a promising candidate for high-power AC drive applications. The main challenge of operating the MMC in AC drive applications is its performance during low-frequency conditions, as high voltage ripple is associated with the low-frequency operation, which results in voltage stresses on the involved semiconductor devices. To keep capacitor voltages balanced and bounded in low-frequency operation, different techniques have been proposed in literature, which can be classified into software and hardware approaches. In this paper, a hybrid MMC with arm-interchange concept is proposed to ensure operating successfully during low-frequency conditions. The hybrid MMC consists of two-stages. The first stage is a front-end Integrated Gate Commutated Thyristor (IGCT)-based H-bridge converter, while the second stage is a Full-Bridge Sub-Module (FBSM)-based MMC, where FBSMs is able to generate positive, zero, and negative voltage states. Detailed illustration and design of the hybrid MMC are introduced. Simulation results of the proposed converter are presented to show the effectiveness during low-frequency and normal frequency conditions in AC drive applications. Finally, a scaled-down prototype is employed for experimental validation.
机译:DC-AC模块化多电平转换器(MMC)是高功率交流驱动应用的有希望的候选者。在交流驱动应用中操作MMC的主要挑战是其在低频条件期间的性能,因为高压纹波与低频操作相关联,这导致涉及的半导体器件上的电压应力。为了保持电容器电压平衡和界限在低频操作中,文献中提出了不同的技术,可以分为软件和硬件方法。本文提出了一种具有臂交换概念的混合MMC,以确保在低频条件下成功操作。混合MMC由两个阶段组成。第一阶段是前端集成栅极换向晶闸管(IGCT)的基于H-Bridge转换器,而第二级是基于全桥子模块(FBSM)的MMC,其中FBSMS能够生成正,零和负电压状态。介绍了混合MMC的详细说明和设计。提出了所提出的转换器的仿真结果,以显示交流驱动应用中的低频和正常频率条件期间的有效性。最后,采用缩小的原型用于实验验证。

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