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Dynamic Modeling and Performance Analysis of a Grid-Connected Current-Source Inverter-Based Photovoltaic System

机译:并网电流源逆变器光伏系统的动力学建模与性能分析

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摘要

Voltage-source inverter (VSI) topology is widely used for grid interfacing of distributed generation (DG) systems. However, when employed as the power conditioning unit in photovoltaic (PV) systems, VSI normally requires another power electronic converter stage to step up the voltage, thus adding to the cost and complexity of the system. To make the proliferation of grid-connected PV systems a successful business option, the cost, performance, and life expectancy of the power electronic interface need to be improved. The current-source inverter (CSI) offers advantages over VSI in terms of inherent boosting and short-circuit protection capabilities, direct output current controllability, and ac-side simpler filter structure. Research on CSI-based DG is still in its infancy. This paper focuses on modeling, control, and steady-state and transient performances of a PV system based on CSI. It also performs a comparative performance evaluation of VSI-based and CSI-based PV systems under transient and fault conditions. Analytical expectations are verified using simulations in the Power System Computer Aided Design/Electromagnetic Transient Including DC (PSCAD/EMTDC) environment, based on a detailed system model.
机译:电压源逆变器(VSI)拓扑广泛用于分布式发电(DG)系统的电网接口。但是,当VSI用作光伏(PV)系统中的功率调节单元时,VSI通常需要另一个功率电子转换器级来提高电压,从而增加了系统的成本和复杂性。为了使并网光伏系统的普及成为成功的商业选择,需要改善功率电子接口的成本,性能和预期寿命。电流源逆变器(CSI)在固有的升压和短路保护功能,直接输出电流可控制性以及交流侧更简单的滤波器结构方面,比VSI具有优势。基于CSI的DG的研究仍处于起步阶段。本文重点研究基于CSI的光伏系统的建模,控制以及稳态和瞬态性能。它还在瞬态和故障条件下对基于VSI和基于CSI的光伏系统进行了比较性能评估。基于详细的系统模型,在包含DC的电力系统计算机辅助设计/电磁瞬态(PSCAD / EMTDC)环境中的仿真验证了分析期望。

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