基于直接交/交转换的斩波控制阻抗调节器优化配电馈线性能

Heng An, Dongbo Guo, Zhongchen Pei, Chuang Liu
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摘要

本文基于多功能模块化斩波控制阻抗(CCI)实现输电线路潮流管理,以提高配电网的输电容量和电能质量。补偿器由多个直接交流/交流斩波控制阻抗子模块级联而成,可实现等效电抗由电感到电容的连续变化。CCI不需要电解电容器,体积小,无需中间环节即可实现功率的单级转换。由于补偿器的模块化设计,可以使用传统的工业级组件以低成本制造,这也简化了系统维护。此外,通过合理设计CCI的内部参数,不仅可以提高传输容量,还可以实现线路故障限流的功能。本文完成了详细的理论分析,并利用Matlab/Simulink仿真软件完成了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chopper Controlled Impedance Conditioner Based on Direct AC/AC Conversion for Optimizing the Distribution Feeders Performance
This paper is based on a multi-functional modular chopper controlled impedance (CCI) to realize power flow management of transmission lines to improve transmission capacity and power quality of distribution network. The compensator is formed by cascading multiple direct AC/AC chopper controlled impedance sub-modules, which can realize the continuous change of equivalent reactance from inductive to capacitive. CCI does not require electrolytic capacitors, is small in size, and can realize single-stage conversion of power without intermediate links. Due to the compensator's modular design, it can be manufactured at low cost using traditional industrial-grade components, which also eases system maintenance. In addition, by rationally designing the internal parameters of the CCI, not only can the transmission capacity be improved, but also the function of line fault current limiting can be achieved. This paper completes the detailed theoretical analysis, and uses Matlab/Simulink simulation software to complete the simulation verification.
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