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首页> 外文期刊>IEEE Transactions on Industry Applications >Modular Plug’n’Play Control Architectures for Three-Phase Inverters in UPS Applications
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Modular Plug’n’Play Control Architectures for Three-Phase Inverters in UPS Applications

机译:UPS应用中用于三相逆变器的模块化即插即用控制架构

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In this paper, a control strategy for the parallel operation of three-phase inverters in a modular online uninterruptable power supply (UPS) system is proposed. The UPS system is composed of a number of dc/acs with filter connected to the same ac critical bus and an ac/dc that forms the dc bus. The proposed control includes two layers: 1) individual layer and 2) recovery layer. In individual layer, virtual impedance concept is employed in order to achieve active power sharing while individual reactive power is calculated to modify output voltage phases to achieve reactive power sharing among different modules. Recovery layer is mainly responsible for guaranteeing synchronization capability with the utility and voltage recovery. With the proposed control, improved voltage-transient performance can be achieved and also dc/ac modules can be plugged in and out flexibly while controlling the ac critical bus voltage, thus allowing or hot-swap capability. Detailed control architecture of the individual and recovery layers is presented in this paper. An experimental setup was built to validate the proposed control approach under several case-study scenarios.
机译:本文提出了一种模块化在线不间断电源(UPS)系统中三相逆变器并联运行的控制策略。 UPS系统由多个直流/交流电组成,滤波器连接到同一交流关键总线,交流电/直流电构成直流总线。提议的控件包括两层:1)个人层和2)恢复层。在单个层中,采用虚拟阻抗概念以实现有功功率共享,而计算单个无功功率以修改输出电压相位以实现不同模块之间的无功功率共享。恢复层主要负责保证与公用事业和电压恢复的同步能力。通过提出的控制,可以实现改进的电压瞬变性能,并且可以在控制交流临界总线电压的同时灵活地插入和拔出dc / ac模块,从而实现热插拔功能。本文介绍了各个层和恢复层的详细控制体系结构。建立了一个实验装置,以在几种案例研究情况下验证所提出的控制方法。

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