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风电变流技术 多电平 ★ 5.0

一种新型复用臂选择模块化多电平变换器的拓扑与控制

Topology and Control of a Novel Multiplexing Arm Selection Modular Multilevel Converter

作者 Zeyu Hao · Jianxi Lan · Wu Chen · Xin Li · Yubo Yuan
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2025年3月
技术分类 风电变流技术
技术标签 多电平
相关度评分 ★★★★★ 5.0 / 5.0
关键词 模块化多电平换流器 复用臂选择MMC拓扑 调制电压选择策略 子模块数量 成本与功率密度
语言:

中文摘要

随着海上风电与光伏发电中直流输电技术的快速发展,模块化多电平变换器(MMC)在经济性与轻量化方面的需求日益迫切。本文创新性地提出一种基于级联开关堆与复用臂结构的新型复用臂选择MMC(MAS-MMC)拓扑,并提出一种臂优化调制电压选择策略,可在不同功率因数下实现半工频周期内的能量平衡,且最小化臂电压峰值,相较传统MMC减少子模块数量达59.1%。该拓扑显著降低系统成本并提升功率密度。通过系统仿真与实验样机验证了所提拓扑结构与控制策略的优越性与可行性。

English Abstract

With the rapid advancement of dc transmission technology in offshore wind power and photovoltaic power generation, there is an increasingly urgent demand for modular multilevel converters (MMCs) in terms of economy and lightweight. This article innovatively proposes a novel multiplexing arm selection MMC (MAS-MMC) topology, which consists of cascaded switching stacks and multiplexing arms. An arm-optimized modulation voltage selection strategy is proposed to ensure its energy balance within half the fundamental period under different power factors and minimize the peak of arm modulation voltage, effectively reducing the number of submodules (SMs) by 59.1% compared to the traditional MMC. Notably, MAS-MMC could also significantly reduce its cost and improve power density. Finally, the comprehensive validation of the proposed MAS-MMC topology and the control strategy is conducted through systematic simulation and experimental prototype, conclusively demonstrating its superiority and feasibility.
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SunView 深度解读

该复用臂选择MMC拓扑技术对阳光电源的大功率产品线具有重要参考价值。通过级联开关堆与复用臂结构创新,可将子模块数量减少近60%,这与我司ST2000储能变流器及SG3000HV光伏逆变器的成本优化目标高度契合。该技术可优化我司MW级变流器的功率密度与经济性,特别适用于海上风电并网和储能变流等场景。建议在PowerTitan储能系统和大功率光伏逆变器中探索该拓扑的工程实现,重点关注不同功率因数下的能量平衡控制策略,以提升产品竞争力。