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A Hybrid Damping Method for LLCL-Filter Based Grid-tied Inverter with a Digital Filter and an RC Parallel Passive Damper

机译:基于LLCL滤波器的网格连接逆变器的混合式阻尼方法,具有数字滤波器和RC并联无源阻尼器

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Grid-tied inverters have been widely used to inject the renewable energies into the distributed power generation systems. However, a large variation of the grid impedance challenges the stability of the high-order power filter based grid-tied inverter. Many passive and active damping methods have been proposed to overcome this issue. Recently, a composite passive damping method for a high-order power filter based grid-tied inverter with an RC parallel damper and an RL series damper was presented to eliminate this problem, but at the cost of more material and power losses. In this paper, a hybrid damping method with a digital filter and an RC parallel damper is proposed. The design of the digital filter is developed using a normalized method. The validity is verified through the simulations and the experiments on a 500 W, 110 V/50 Hz prototype, while the grid inductance varies from 0.15 mH to 5 mH.
机译:基于网格栓逆变器已被广泛用于将可再生能量注入分布式发电系统中。 然而,电网阻抗的大变化挑战了基于高阶电力滤波器的网格连接逆变器的稳定性。 已经提出了许多被动和有源阻尼方法来克服这个问题。 近来,提出了一种具有RC并联阻尼器的高阶电力滤波器的网格连接逆变器和RL系列阻尼器的复合无源阻尼方法,以消除该问题,但是以更具材料和功率损耗的成本为代价。 本文提出了一种具有数字滤波器和RC并联阻尼器的混合阻尼方法。 数字滤波器的设计是使用归一化方法开发的。 通过模拟和500 W,110 V / 50 Hz原型的实验验证了有效性,而电网电感会从0.15 MH变化到5 MH。

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