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首页> 外文期刊>Electric Power Components and Systems >Direct-current Vector Control of Three-phase Grid-connected Converter with L, LC, and LCL Filters
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Direct-current Vector Control of Three-phase Grid-connected Converter with L, LC, and LCL Filters

机译:具有L,LC和LCL滤波器的三相并网转换器的直流矢量控制

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With the growing use of grid-connected converters in distributed generation systems, the problem of injected harmonics becomes critical. These harmonics require the connection of low-pass filters between the converter and the network. An LC or LCL filter has shown better attenuation to switching harmonics than a simple L filter and has recently drawn great attention in distributed generation areas. However, the control design of an LC- or LCL-filter-based grid-connected converter is more challenging. This article presents a novel vector control design for a grid-connected converter with an LC or LCL filter based on a direct-current vector control method. The behavior of the proposed control technique is compared and evaluated in a simulation and hardware experiment environment, which demonstrates that the proposed control approach has strong ability to trace rapidly changing reference commands, tolerate system disturbances, and satisfy various grid-connected converter control needs for different filtering configurations.
机译:随着分布式发电系统中并网变流器的日益使用,注入谐波的问题变得至关重要。这些谐波需要在转换器和网络之间连接低通滤波器。与简单的L滤波器相比,LC或LCL滤波器对开关谐波的衰减更好,并且最近在分布式发电领域引起了极大关注。但是,基于LC或LCL滤波器的并网转换器的控制设计更具挑战性。本文提出了一种基于直流矢量控制方法的带有LC或LCL滤波器的并网转换器的新型矢量控制设计。在仿真和硬件实验环境中对所提出的控制技术的行为进行了比较和评估,这表明所提出的控制方法具有强大的能力来跟踪快速变化的参考命令,可以容忍系统干扰,并满足各种并网变频器控制需求。不同的过滤配置。

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