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采用三次谐波注入、扩展自然平衡及故障阻断能力的开关中点式模块化多电平变换器
Switched Midpoint Modular Multilevel Converter With Third-Order Harmonic Injection, Extended Natural Balancing, and Fault-Blocking Capability
| 作者 | Saeed Sharifi · Levi Bieber · Liwei Wang · Juri Jatskevich |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2024年6月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 多电平 模型预测控制MPC |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 开关中点模块化多电平转换器 可再生能源集成 零电压开关 高压直流应用 直流故障保护 |
语言:
中文摘要
本文研究一种新型开关中点式模块化多电平变换器(SMPC),通过引入三次谐波注入和故障阻断能力,显著提升调制比,适用于电压变化范围宽的高压直流(HVdc)系统。该拓扑每相共享一组半桥子模块(HBSM),实现导通开关的零电压切换(ZVS),较传统MMC减少17.7%子模块数量和40%储能需求。扩展型SMPC简化了堆栈电压平衡所需的谐波电流消除,降低半导体应力,损耗表现优于HBSM-MMC。外侧全桥子模块提供基于电容反电动势的固有直流故障保护与穿越能力。文中阐述其运行原理与能量平衡机制,并通过OPAL-RT实验平台验证性能优越性。
English Abstract
This article considers the switched midpoint modular multilevel converter (SMPC) topology, which has been recently proposed for the integration of renewable sources and interconnections in ac-dc grids. The SMPC employs a shared flying stack of half-bridge submodules (HBSMs) per phase, which enables zero-voltage switching (ZVS) of its director switches (DSs). It reduces the number of required submodules and lowers energy storage requirements by 17.7% and 40% , respectively, compared to the conventional modular multilevel converter (MMC). This article extends the SMPC to operate with significantly higher modulation indexes by considering the third-order harmonic injection and fault-blocking capability, making it particularly attractive for reliable high-voltage direct current (HVdc) applications requiring a wide voltage variation. Other benefits of the extended SMPC include simplified harmonic current elimination required for stack voltage balancing and reduced semiconductor stress, resulting in significant loss reduction, surpassing even the most efficient competitor, i.e., HBSM-MMC. In addition, its full-bridge submodule (FBSM)-based outer stacks offer inherent dc fault protection through its capacitors’ back EMF generation and dc fault ride-through. The principles of operation and energy-balancing concepts are presented and compared with previous well-known counterparts. Finally, the simulation results and experimental evaluations using a lab-scale prototype based on OPAL-RT MMC test bench are given to validate the superiority of the converter’s performance.
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SunView 深度解读
该SMPC拓扑技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。其17.7%子模块数量削减和40%储能需求降低,可直接优化ST2752KWH等高压储能系统的成本结构和功率密度。三次谐波注入扩展调制比特性适配宽电压范围应用场景,增强系统灵活性。ZVS软开关技术与阳光电源SiC器件应用方向契合,可降低开关损耗提升效率。固有直流故障阻断能力强化电网侧安全性,符合构网型GFM控制策略对故障穿越的要求。扩展自然平衡机制简化控制算法,可融入现有MPC控制架构,为下一代模块化储能变流器拓扑创新提供技术路径。