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Paralleling Multiple Static Synchronous Series Compensators Using Daisy-Chained Transformers

机译:使用菊花链变压器并联多个静态同步串联补偿器

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摘要

A modular and scalable series compensation technique for enhancing controllability and flexibility in power transmission in distributed power systems is proposed. The concept is based on paralleling multiple static synchronous series compensators (SSSC) through daisy-chained transformers to perform reactive power compensation, and thus control the amount and direction of the power flow over the transmission link. Each compensator unit is under an autonomous control for regulating its output voltage. Its output current is coupled to another compensator unit through one of the daisy-chained transformers, so that the transmission current is shared among the parallel-connected compensators. Modeling, design, and analysis of a compensator unit and the proposed multiparallel-connected SSSC (MSSSC) architecture in an elementary two-machine system will be presented. A 3-kVA MSSSC test bed with three-parallel-connected compensator units for a single-phase system has been built and evaluated. The steady-state and transient current-sharing characteristics in forward and reverse power transmission over the transmission link will be studied. The response of the MSSSC system with each compensator unit engaged sequentially will also be investigated.
机译:提出了一种模块化和可扩展的串联补偿技术,用于增强分布式电源系统中功率传输的可控性和灵活性。该概念基于通过菊花链变压器并联多个静态同步串联补偿器(SSSC)来执行无功功率补偿,从而控制传输链路上的功率量和方向。每个补偿器单元都受到自治控制,以调节其输出电压。它的输出电流通过一个菊花链式变压器中的一个耦合到另一个补偿器单元,因此传输电流在并联的补偿器之间共享。将介绍基本两机系统中补偿器单元和建议的多并联SSSC(MSSSC)体系结构的建模,设计和分析。已构建并评估了具有用于单相系统的三个并联补偿器单元的3-kVA MSSSC测试台。将研究在传输链路上进行正向和反向功率传输时的稳态和瞬态均流特性。每个补偿器单元依次接合的MSSSC系统的响应也将被研究。

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