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首页> 外文期刊>Industry Applications, IEEE Transactions on >Discrete-Time Active Damping of $LC!L$-Resonance by Proportional Capacitor Current Feedback
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Discrete-Time Active Damping of $LC!L$-Resonance by Proportional Capacitor Current Feedback

机译:比例电容器电流反馈对<​​inline-formula> $ LC!L $ -共振的离散时间主动阻尼

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摘要

In order to fulfill the grid codes and meet power quality requirements in grid-connected converters without increasing the switching frequency or system size, higher order line filters are often used. This paper considers the active damping of -filters in grid-connected converters. Analysis in the discrete time domain shows that the damping can be increased when proportional plus derivative control of the capacitor current is applied, and it is found that this scheme has a simple implementation in a discrete time system as it is equivalent to proportional feedback of the last two samples. To find optimal damping controller gains, an analytical solution is derived for the open-loop system, and for the closed-loop system, a numerical optimization algorithm is developed. The performance of the proposed methods is compared using analysis in the -domain, simulations, and experimental investigation. The analytical solution has good damping, an easy implementation, and is seen to have robustness against parameter variation, whereas the numerical solution is computation intensive but has even higher damping.
机译:为了在不增加开关频率或系统尺寸的情况下满足并网转换器的电网规范并满足电能质量要求,经常使用高阶线路滤波器。本文考虑了并网变流器中滤波器的有源阻尼。在离散时域中的分析表明,当对电容器电流进行比例加微分控制时,可以增加阻尼,并且发现该方案在离散时间系统中具有简单的实现方式,因为它等效于电容的比例反馈。最后两个样本。为了找到最佳的阻尼控制器增益,推导了开环系统的解析解,并为闭环系统开发了数值优化算法。使用-域中的分析,模拟和实验研究,比较了所提出方法的性能。解析解具有良好的阻尼,易于实现,并且被视为具有抵抗参数变化的鲁棒性,而数值解则需要大量计算,但阻尼更高。

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