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Highly efficient three-phase grid-connected parallel inverter system

机译:高效三相并网并联逆变器系统

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摘要

In this paper, a new three-phase grid-connected inverter system is proposed. The proposed system includes two inverters. The main inverter, which operates at a low switching frequency, transfers active power to the grid. The auxiliary inverter processes a very low power to compensate for the grid current ripple. Thus, no active power is processed by the auxiliary inverter. The goal is to produce a grid current with a low total harmonic distortion (THD) and to obtain the highest efficiency from the inverter system. The main inverter is controlled via a space-vector pulse-width modulation owing to its optimum switching pattern, and the auxiliary inverter is controlled via a hysteresis current-control technique owing to the technique's fast dynamic response. The proposed system is analyzed in terms of different DC-link voltage, switching frequency, and filter inductance values. The optimum system parameters are selected that provide a THD value of less than 5%. A prototype inverter system at a 10-kW output power has been implemented. The main inverter operates at a 3-kHz switching frequency, and the auxiliary inverter compensates for the grid-current ripple. In total, a THD of 4.33% and an efficiency of 97.86% are obtained using the proposed inverter system prototype.
机译:本文提出了一种新型的三相并网逆变器系统。拟议的系统包括两个逆变器。以低开关频率运行的主逆变器将有功功率传输到电网。辅助逆变器处理的功率非常低,以补偿电网电流纹波。因此,辅助逆变器不处理有功功率。目标是产生具有低总谐波失真(THD)的电网电流,并从逆变器系统获得最高效率。主逆变器由于其最佳的开关模式而通过空间矢量脉冲宽度调制进行控制,而辅助逆变器由于其快速的动态响应而通过磁滞电流控制技术进行控制。根据不同的直流母线电压,开关频率和滤波器电感值对建议的系统进行了分析。选择最佳THD值小于5%的最佳系统参数。已经实现了输出功率为10 kW的原型逆变器系统。主逆变器以3 kHz的开关频率工作,辅助逆变器补偿电网电流纹波。使用建议的逆变器系统原型,总谐波失真(THD)为4.33%,效率为97.86%。

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