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Transient performance analysis of a small-scale PV-PHS power plant fed by a SVPWM drive applied for a distribution system

机译:SVPWM驱动的小型PV-PHS发电厂的暂态性能分析

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The transient performance of a small-scale plant consisting of a photovoltaic (PV) and a pumped hydro storage (PHS) system has been evaluated. An indirect field oriented control (IFOC) based state-vector pulse width modulation (SVPWM) drive connects the plant to the distribution system. The drive system includes two six-pulse IGBT converters interconnected through a DC link, to which the PV plant is interfaced via a single-stage bidirectional boost converter. The electrical system of the PHS plant consists of a squirrel-cage induction machine supplied by the machine side converter. The hydraulic system of the PHS plant includes separate turbine and pump units where a scaled linearized model is adopted to represent the elastic water column and surge tank. In the present study, the PV generated power has a control scheme designed to regulate the performance of the overall system. Simulation results are provided that show the transient performance of the plant during pumping and generating cycles of the PHS system.
机译:已评估了由光伏(PV)和抽水蓄能(PHS)系统组成的小型工厂的暂态性能。基于间接场定向控制(IFOC)的状态矢量脉冲宽度调制(SVPWM)驱动器将工厂连接到配电系统。该驱动系统包括两个通过DC链路互连的六脉冲IGBT转换器,PV设备通过一个单级双向升压转换器与之相连。 PHS工厂的电气系统由机器侧转换器提供的鼠笼式感应电机组成。 PHS工厂的液压系统包括单独的涡轮机和泵单元,其中采用比例线性化模型来表示弹性水柱和缓冲罐。在本研究中,PV产生的功率具有设计用来调节整个系统性能的控制方案。提供的仿真结果显示了在PHS系统的泵送和发电周期中设备的瞬态性能。

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