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多端口模块化固态变压器中用于子模块电容优化的功率波动传递设计与控制

Design and Control of Power Fluctuation Delivery for Cell Capacitance Optimization in Multiport Modular Solid-State Transformers

语言:

中文摘要

本文研究了基于模块化多电平变换器(MMC)的固态变压器(SST)。通过将MMC子模块与双有源桥(DAB)模块耦合,构建多端口SST以实现交直流混合配电。文章重点探讨了功率波动传递策略,旨在优化子模块电容设计,提升系统功率密度与效率。

English Abstract

Modular multilevel converter (MMC)-based solid-state transformers (SSTs) have gained increasing interest lately. Topologies consisting of cells made of directly coupled MMC submodules (SMs) and dual-active-bridge (DAB) modules have been introduced to form multiport SSTs to interface different grid entities. Designated as modular SSTs (M-SSTs), such devices can interconnect hybrid ac-dc distributio...
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SunView 深度解读

该研究涉及的MMC拓扑及DAB模块化技术,与阳光电源的PowerTitan系列大型储能系统及集中式光伏逆变器的高压化趋势高度相关。通过优化功率波动传递来降低子模块电容需求,有助于进一步提升产品功率密度并降低成本。建议研发团队关注该控制策略在多端口电力电子变压器中的应用,这对于未来构建高压直流接入的光储一体化电站及构网型储能系统具有重要的参考价值,有助于提升系统在弱电网下的稳定性。