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Simulation of LLCL filter based on active damping weighted current control strategy

机译:基于主动阻尼加权电流控制策略的LLCL滤波器仿真

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Grid-connected inverters is the core component of distributed generation system, and the filter is the core component of the inverters. When the inverter works, the filter can effectively filter and suppress the high-frequency harmonics in the output current of the inverter side, so as to ensure the stability of the power grid and improve the working effect of the whole grid connected inverter system. The filter is a high order underdamped system, and the LLCL Filter also has a resonance peak. In this paper, a weighted current method based on active damping is used. In this method, the output current of the inverter side and the current of the grid side are weighted with a reasonable proportion as the feedback quantity, the weighted current feedback is the outer loop, and the LC series branch current feedback is the inner loop. The system is reduced to the first order theoretically, which makes up for the under damping problem of the system and suppresses the resonance peak of the system. Through the simulation experiment, the feasibility of the active damping weighted current method is verified.
机译:网格连接的逆变器是分布式发电系统的核心组件,滤波器是逆变器的核心组件。当变频器工作时,滤波器可以有效地滤波和抑制逆变器侧的输出电流中的高频谐波,以确保电网的稳定性,提高整个网格连接逆变器系统的工作效果。滤波器是高阶被拒绝的系统,并且LLCL过滤器也具有共振峰值。本文使用了一种基于主动阻尼的加权电流方法。在该方法中,逆变器侧的输出电流和电网侧的电流以合理的比例加权,作为反馈量,加权电流反馈是外环,并且LC系列分支电流反馈是内环。理论上,该系统从理论上减少到第一阶,这弥补了系统的破坏问题,并抑制了系统的共振峰值。通过仿真实验,验证了有源阻尼加权电流方法的可行性。

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