In grid connected multiple inverter systems, it is normal to synchronize the output current of each inverter to the common network voltage. Any current controller deficiencies, which result in low order harmonics, are also synchronized to the common network voltage. As a result the harmonics produced by individual converters show a high degree of correlation and tend to be additive. Each controller can be tuned to achieve a different harmonic profile so that harmonic cancellation can take place in the overall system, thus reducing the net current total harmonic distortion level. However, inter-inverter communication is required. This paper presents experimental results demonstrating an alternative approach, which is to arrange for the tuning within each inverter to be adjusted automatically with a random component. This results in a harmonic output spectrum that varies with time, but is uncorrelated with the harmonic spectrum of any other inverter in the system. The net harmonics from all the inverters undergo a degree of cancellation and the overall system yields a net improvement in power quality. ud ud
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机译:在并网连接的多个逆变器系统中,通常将每个逆变器的输出电流与公共网络电压同步。任何会导致低次谐波的电流控制器缺陷也将同步到公共网络电压。结果,由各个转换器产生的谐波显示出很高的相关度,并且倾向于相加。可以对每个控制器进行调整,以实现不同的谐波分布,从而可以在整个系统中进行谐波消除,从而降低了净电流的总谐波失真水平。但是,需要变频器之间的通信。本文介绍的实验结果表明了一种替代方法,该方法是安排每个逆变器内的调谐都可以通过随机分量自动进行调整。这导致谐波输出频谱随时间变化,但与系统中任何其他逆变器的谐波频谱不相关。来自所有逆变器的净谐波经过一定程度的抵消,整个系统的电能质量得到了净改善。 ud ud
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