并网PWM-VSI系统的控制策略

Emre Kantar, S. Usluer, A. Hava
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引用次数: 16

摘要

本文对三相电压源逆变器(vsi)通过lc滤波器并网的电流控制方法进行了评价。比较了线路侧和变流器侧的电流反馈方式,并进行了理论分析。该分析基于临界谐振频率的存在,该临界谐振频率将控制频率区间划分为两个区域;即低、高谐振频率区。针对系统的谐振极和低频极,分别对系统的低谐振区和高谐振区反馈类型和阻尼方法进行了评价。在低谐振频率区,线性电流反馈需要对lc滤波器谐振进行阻尼;当采用变换器电流反馈时,电流控制器提供了固有的阻尼。此外,还评估了采用线路或变换器电流反馈设计的系统在不同负载条件下的总谐波失真(THD)和功率因数性能。此外,还提出了完整的理论方法和仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control strategies for grid connected PWM-VSI systems
This paper evaluates the current control methods for three-phase voltage-source-inverters (VSIs) connected to the grid via LCL-filters. Current feedback methods from both line and converter sides are compared and theoretical analysis is stated. The analysis is based on the existence of a critical resonant frequency dividing the controlling frequency interval into two regions; namely low and high resonant frequency regions. The feedback types and damping methods are evaluated for both low and high resonant frequency regions with regard to resonant and low frequency poles of the system. In the low resonant frequency region, damping of LCL-filter resonance is necessary for line current feedback; while the current controller provides inherent damping when converter current feedback is utilized. Moreover, total harmonic distortion (THD) and power factor performance of the designed system employing either line or converter current feedback is assessed under varying load conditions. Besides, thorough theoretical approaches supported with simulation results are presented.
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