Design of control structure for modular multilevel converter

Jichuan Zhang, L. Jing, Lei Shao, Xiaoyao Yuan
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Abstract

Considering the control complexity of modular multilevel converter(MMC) under high-voltage high-power application with too many sub-modules, an improved hierarchical control structure consisted of three-level controller is proposed, to solve the synchronization and low reliability problems of the traditional control system in this paper. Framework structure and implementation of the hierarchical control system is discussed in detail in up-down order, including the operating staff, the upper scheduling interface, the main controller, the sub-module controller, and the communication mode and content between layers. Experiment of a 3-phase 9- level MMC adopting the proposed control structure verified the system's feasibility and flexibility.
模块化多电平变换器控制结构设计
针对模块化多电平变换器(MMC)在高压大功率应用中子模块过多的控制复杂性,提出了一种改进的由三电平控制器组成的分层控制结构,以解决传统控制系统的同步性和可靠性低的问题。按自上而下的顺序详细讨论了分层控制系统的框架结构和实现,包括操作人员、上层调度接口、主控制器、子模块控制器以及层与层之间的通信方式和内容。采用该控制结构的三期九级MMC实验验证了该系统的可行性和灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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