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A Robust Active Damping Control Strategy for an -Based Grid-Connected DG Unit

机译:基于电网的分布式发电单元的鲁棒主动阻尼控制策略

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The connection of a distributed generation (DG) unit to a weak power system is challenging due to stability issues resulted from dynamic interactions between the DG unit and the grid. An LCL-based DG unit is a particularly challenging case due to the presence of a high resonant peak in its frequency response. This paper proposes a robust control strategy to overcome the stability issues of an LCL-based DG unit connected to a weak grid. The main advantage of the proposed control strategy is that it guarantees stability and satisfactory transient performance against the variations of grid impedance. Moreover, it is able to decouple the and channels of the control system, which enables independent regulation of the real and reactive output power of the DG unit. Real-time simulations and experimental tests illustrate the effectiveness of the proposed controller in terms of improved transient performance, robust stability, and satisfactory controller set-point tracking.
机译:由于DG单元与电网之间的动态相互作用导致稳定性问题,因此将分布式发电(DG)单元连接到弱电系统具有挑战性。基于LCL的DG单元是一个特别具有挑战性的情况,因为其频率响应中存在一个高谐振峰。本文提出了一种鲁棒的控制策略,以克服连接到弱电网的基于LCL的DG机组的稳定性问题。所提出的控制策略的主要优点是,它可以确保稳定性和令人满意的瞬态性能,以抵抗电网阻抗的变化。而且,它能够使控制系统的和通道解耦,从而可以独立调节DG单元的有功和无功输出功率。实时仿真和实验测试从改进的暂态性能,鲁棒的稳定性和令人满意的控制器设定点跟踪方面说明了所提出控制器的有效性。

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