Sliding mode observer of submodular capacitor voltages in Modular Multilevel Converter

Amal Al-Wedami, K. Al-Hosani, A. R. Beig
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引用次数: 12

Abstract

Modular Multilevel Converter (MMC) has attracted the attention of researchers particularly those working in the area of transformer-less medium to high power conversion. This topology has adopted several interesting operational characteristics such as modularity, voltage scalability, multilevel waveform capability, safe failure management, redundancy and high reliability. MMC consists of cascaded connection of multiple, identical and individually controlled bidirectional half-bridge sub modules with floating DC capacitors. A significant aspect of MMC operation is maintaining the total sum of capacitor voltages of the sub modules per arm equal to the input DC bus voltage and ensuring equal voltage sharing among the submodules. In this paper, sliding mode observer is introduced to complement a Phase shifted Pulse Width Modulation based capacitor voltage balancing controller for a three-level MMC. Also, the mathematical model of MMC, voltage balancing control algorithm, and sliding mode submodular capacitor voltage observer are included in this paper. Finally, the proposed observer design is verified through computer simulation.
模块化多电平变换器中子模块电容电压的滑模观测器
模块化多电平变换器(MMC)已经引起了研究人员的关注,特别是在无变压器的中大功率转换领域。这种拓扑结构采用了模块化、电压可扩展性、多电平波形能力、安全故障管理、冗余和高可靠性等一些有趣的操作特性。MMC由带有浮动直流电容的多个相同且单独控制的双向半桥子模块级联组成。MMC运行的一个重要方面是保持每臂子模块的电容器电压总和等于输入直流母线电压,并确保子模块之间的电压均等共享。本文引入了滑模观测器来补充基于相移脉宽调制的电容电压平衡控制器。文中还介绍了MMC的数学模型、电压平衡控制算法和滑模子模电容器电压观测器。最后,通过计算机仿真验证了所提出的观测器设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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