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Genetic algorithm-based design of the active damping for an LCL-filter three-phase active rectifier

机译:基于遗传算法的LCL滤波器三相有源整流器有源阻尼设计

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Active rectifiers/inverters are becoming used more and more often in regenerative systems and distributed power systems. Typically, the interface between the grid and rectifier is either an inductor or an LCL-filter. The use of an LCL-filter mitigates the switching ripple injected in the grid by a three-phase active rectifier. However, stability problems can arise in the current control loop. In order to overcome them, a damping resistor can be inserted, at the price of a reduction of efficiency. The use of active damping by means of control may seem attractive but it is often limited by the use of more sensors compared to the standard control and also by a complex tuning procedure of the controllers. This paper introduces a new active damping method that does not require the use of more sensors. It consists of adding a filter on the reference voltage for the modulator. The tuning process of this filter is easily done, for a wide range of sampling frequencies, with the use of genetic algorithms. This method is used only for the optimum choice of the parameters in the filter and an on-line implementation is not needed. Thus the resulting active damping solution does not need new sensors or complex calculations. Moreover, in the paper particular attention is devoted to the susceptibility of the system in a high polluting environment.
机译:有源整流器/逆变器越来越多地用于再生系统和分布式电源系统中。通常,电网和整流器之间的接口是电感器或LCL滤波器。使用LCL滤波器可减轻由三相有源整流器注入电网的开关纹波。但是,电流控制回路中可能会出现稳定性问题。为了克服它们,可以以降低效率为代价插入阻尼电阻器。通过控制来使用主动阻尼似乎很有吸引力,但与标准控制相比,它通常受到更多传感器的使用以及控制器复杂的调整程序的限制。本文介绍了一种新的主​​动阻尼方法,该方法不需要使用更多的传感器。它包括在调制器的参考电压上添加一个滤波器。使用遗传算法,可以在很宽的采样频率范围内轻松完成该滤波器的调谐过程。该方法仅用于最佳选择滤波器中的参数,并且不需要在线实现。因此,最终的主动阻尼解决方案不需要新的传感器或复杂的计算。此外,在本文中,特别关注系统在高污染环境中的敏感性。

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