Review of High Voltage DC/DC Modular Multilevel Converters

Seema Mir Akbar, Ammar Hasan
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引用次数: 6

Abstract

Smart grid has emerged as a solution to provide clean, reliable and efficient energy. Renewable energy resources, AC grid, load centers and distributed storage are the main components of a smart grid. High voltage DC (HVDC) transmission is emerging as an efficient system to connect these components to the smart grids as compared to high voltage AC (HVAC) due to less cost of transmission lines and low losses. High voltage AC/DC, DC/AC and DC/DC converters are the main constituents of the HVDC system to interconnect with the power generating systems, AC grid and load centers. Modular multilevel converter (MMC) possess features such as modular structure, scalability, reliability, fault tolerance and high step up/down ratios, which makes it an important topology for HVDC. Extensive research has been carried out on MMCs which has resulted in innovative circuit configurations of converters, novel modulation techniques and efficient control algorithms. This paper presents a review of different configurations of high voltage DC/DC MMCs, its operation and features. It also discusses the modulation and control techniques designed for DC/DC MMCs.
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高压DC/DC模块多电平变换器综述
智能电网作为一种提供清洁、可靠和高效能源的解决方案已经出现。可再生能源、交流电网、负荷中心和分布式存储是智能电网的主要组成部分。与高压交流(HVAC)相比,由于输电线路成本更低,损耗更低,高压直流(HVDC)输电正在成为将这些组件连接到智能电网的有效系统。高压AC/DC、DC/AC和DC/DC变换器是高压直流输电系统与发电系统、交流电网和负荷中心互连的主要组成部分。模块化多电平变换器(MMC)具有模块化结构、可扩展性、可靠性、容错性和高升压/降压比等特点,是高压直流输电的重要拓扑结构。对mmc进行了广泛的研究,导致了变换器的创新电路配置,新的调制技术和有效的控制算法。本文综述了高压直流/直流mmc的不同结构、工作原理和特点。讨论了为DC/DC mmc设计的调制和控制技术。
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