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Global Synchronous Pulse Width Modulation of Distributed Inverters

机译:分布式逆变器的全局同步脉冲宽度调制

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Traditionally, the parallel-connected multileg inverter could assume the interleaved pulse width modulation (PWM) to attenuate the high-frequency harmonics by using a single controller to generate the corresponding interleaved switching sequences. However, the interleaved PWM cannot be employed in multiple distributed independent inverters installed at different locations with their own controllers because the multiple independent controllers cannot work synchronously and the operational conditions are different among the distributed inverters. The summed current harmonics of multiple distributed inverters could vary at the point of common coupling (PCC) and worsen the power quality of consumers. This paper, therefore, proposes a global synchronous PWM method for the distributed inverters to attenuate the high-frequency current harmonics at PCC. The optimal interleaved switching angles among the distributed inverters are calculated by fully considering line impedances, modulation indexes, switching frequencies, the number of distributed inverters, etc. Particle swarm optimization method is assumed to find the optimal solution. Then, the low-frequency synchronization operation will synchronize the multiple PWM switching sequences in the wanted variation range. Experimental results are presented to prove the validity of this method.
机译:传统上,并联多腿逆变器可以采用交错脉宽调制(PWM),通过使用单个控制器生成相应的交错开关序列来衰减高频谐波。但是,交错式PWM不能用于安装在不同位置的多个分布式独立逆变器中,它们具有各自的控制器,因为多个独立控制器不能同步工作,并且分布式逆变器之间的工作条件不同。多个分布式逆变器的总谐波电流可能会在公共耦合点(PCC)处发生变化,并降低用户的电能质量。因此,本文提出了一种用于分布式逆变器的全局同步PWM方法,以衰减PCC处的高频电流谐波。通过充分考虑线路阻抗,调制指数,开关频率,分布式逆变器的数量等来计算分布式逆变器之间的最佳交错开关角。假定采用粒子群优化方法找到最优解。然后,低频同步操作将在所需的变化范围内同步多个PWM开关序列。实验结果证明了该方法的有效性。

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