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Hybrid Communication Topology and Protocol for Distributed-Controlled Cascaded H-Bridge Multilevel STATCOM

机译:分布式控制级联H桥多级STATCOM的混合通信拓扑和协议

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摘要

Distributed control scheme is preferred to the multiple-modules-based system because of the simple structure, low maintenance, and high scalability. This paper proposes a hybrid communication topology and a route-switching communication protocol to implement the distributed control applied in the cascaded H-bridge (CHB) multilevel static synchronous compensator (STATCOM). The hybrid topology consists of multiple paralleled synchronous communication branches and each branch has very small transmission delay, which makes it possible to apply the low-speed communication network, such as 5 Mb/s optical fiber, to reduce the cost and improve the reliability. The route-switching communication protocol promises the global fault response of the STATCOM as quick as 10 μs by switching from the long normal data to the short fault signal when the module fault occurs. Experiments based on the CHB 13-level STATCOM prototype verify the effectiveness, flexibility, and reliability of the proposed topology and protocol.
机译:分布式控制方案由于其结构简单,维护成本低和可伸缩性高而优于基于多模块的系统。本文提出了一种混合通信拓扑结构和路由交换通信协议,以实现应用于级联H桥(CHB)多级静态同步补偿器(STATCOM)的分布式控制。混合拓扑由多个并行的同步通信分支组成,每个分支的传输延迟非常小,这使得可以应用低速通信网络(例如5 Mb / s光纤)来降低成本并提高可靠性。路由交换通信协议通过在模块故障发生时从长正常数据切换到短故障信号,保证STATCOM的全局故障响应最快可在10 s内完成。基于CHB 13级STATCOM原型的实验验证了所提出的拓扑和协议的有效性,灵活性和可靠性。

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