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Optimal Design of High-Order Passive-Damped Filters for Grid-Connected Applications

机译:网格连接应用中高阶无源阻尼滤波器的优化设计

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摘要

Harmonic stability problems caused by the resonance of high-order filters in power electronic systems are ever increasing. The use of passive damping does provide a robust solution to address these issues, but at the price of reduced efficiency due to the presence of additional passive components. Hence, a new method is proposed in this paper to optimally design the passive damping circuit for the LCL filters and LCL with multi-tuned LC traps. In short, the optimization problem reduces to the proper choice of the multi-split capacitors or inductors in the high-order filter. Compared to existing design procedures, the proposed method simplifies the iterative design of the overall filter while ensuring the minimum resonance peak with a lower damping capacitor and a lower rated resistor. It is shown that there is only one optimal value of the damping resistor or quality factor to achieve a minimum filter resonance. The passive filters are designed, built and validated both analytically and experimentally for verification.
机译:电力电子系统中由高阶滤波器的谐振引起的谐波稳定性问题不断增加。无源阻尼的使用确实提供了解决这些问题的可靠解决方案,但是由于存在附加的无源组件,其代价是效率降低。因此,本文提出了一种新的方法来优化设计LCL滤波器和具有多重调谐LC陷阱的LCL的无源阻尼电路。简而言之,优化问题减少了对高阶滤波器中的多分裂电容器或电感器的正确选择。与现有的设计程序相比,所提出的方法简化了整个滤波器的迭代设计,同时使用较低的阻尼电容器和较低的额定电阻来确保最小的谐振峰值。结果表明,只有一个最佳的阻尼电阻或品质因数才能达到最小的滤波器谐振。无源滤波器的设计,构建和验证均经过分析和实验验证。

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