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Robust Power Flow Control of Grid-Connected Inverters

机译:并网逆变器的鲁棒潮流控制

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摘要

In this paper, an uncertainty and disturbance estimator (UDE)-based robust power flow control is developed for grid-connected inverters to achieve accurate power delivery to the grid. The model of power delivering with both frequency dynamics and voltage dynamics is derived at first. The UDE method is introduced into the controller design to deal with model uncertainties (e.g., output impedance and power angle), coupling effects, and external disturbances (e.g., the fluctuation of the dc-link voltage, the variation of output impedance/line impedance, and the variations of both frequency and amplitude in the grid voltage). Also, this controller does not need a voltage regulator or a current regulator and is easy for the implementation and parameter tuning through the design of the desired tracking error dynamics and the UDE filters. Experimental results are provided to show the effectiveness of the proposed method for different disturbance rejection scenarios, the low-voltage fault-ride through capability, and the weak grid operation capability. The good robustness of the UDE-based control is also demonstrated through the comparison with two other controllers: the proportional-integral controller and the active disturbance rejection controller.
机译:在本文中,针对并网逆变器开发了基于不确定性和干扰估计器(UDE)的鲁棒功率流控制,以实现向电网的精确功率传输。首先推导具有频率动态和电压动态的功率传递模型。 UDE方法被引入控制器设计中,以处理模型不确定性(例如,输出阻抗和功率角),耦合效应和外部干扰(例如,直流母线电压的波动,输出阻抗/线路阻抗的变化) ,以及电网电压中频率和幅度的变化)。同样,该控制器不需要稳压器或电流调节器,并且通过设计所需的跟踪误差动态特性和UDE滤波器,易于实现和参数调整。实验结果表明,该方法对于不同的干扰抑制方案,低压穿越故障能力和弱电网运行能力是有效的。通过与其他两个控制器(比例积分控制器和有源干扰抑制控制器)的比较,也证明了基于UDE的控制的良好鲁棒性。

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