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A Space Vector Modulation Approach for a Multimodule HVDC Converter System

机译:多模块高压直流输电系统的空间矢量调制方法

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This paper presents the application of a space vector modulation (SVM) strategy for a multimodule converter system that 1) enables low switching frequency, 2) eliminates/minimizes ac-side voltage harmonics, particularly low-order harmonics, and 3) provides maximum ac-side fundamental voltage component. The SVM strategy is based on a sequential sampling technique. The SVM provides harmonic cancellation/minimization by introducing appropriate phase shift for the corresponding voltage harmonics of the converter modules, while maintaining the fundamental voltage components of modules in-phase to obtain maximum ac-side voltage. The SVM eliminates the need for complicated transformer arrangement for harmonic reduction, and thus provides high degree of modularity by utilization of identical transformers for converter modules. The proposed SVM strategy is developed for a back-to-back HVDC converter station in which each converter system is composed of four identical modules. Based on a dynamic model of the system, converter controls are designed and performance of the SVM strategy in terms of converter harmonics and dynamic performance are presented. The studies are performed in time-domain, using the PSCAD/EMTDC software tool.
机译:本文介绍了空间矢量调制(SVM)策略在多模块转换器系统中的应用:1)能够实现低开关频率,2)消除/最小化交流侧电压谐波,特别是低阶谐波,3)提供最大的交流电侧基本电压分量。 SVM策略基于顺序采样技术。 SVM通过为转换器模块的相应电压谐波引入适当的相移来提供谐波消除/最小化,同时保持模块的基本电压分量同相以获得最大的交流侧电压。 SVM消除了用于降低谐波的复杂变压器布置的需求,因此通过将相同的变压器用于转换器模块,可以提供高度的模块化。提出的SVM策略是为背对背HVDC换流站开发的,其中每个换流系统由四个相同的模块组成。基于系统的动态模型,设计了转换器控制,并根据转换器谐波和动态性能介绍了SVM策略的性能。研究使用PSCAD / EMTDC软件工具在时域内进行。

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