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Robust Tracking Control with Integral Action for DMC-UPFC System

机译:DMC-UPFC系统具有积分作用的鲁棒跟踪控制

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摘要

To improve the dynamic performance and robustness for the direct matrix converters operating as unified power flow controllers (DMC-UPFC), a robust tracking controller based on state feedback with integral action is proposed. Firstly, a 6th order mathematical model for series side of DMC-UPFC is presented, which can be designed as the robust tracking controller through carrying out an appropriate coordinate transformation and state variable feedback. Next, the quadratic optimal control strategy is utilized to select feedback gain matrix and obtain the optimal control law, which can be applied to complete the design of robust controller. Compared with the conventional proportional integral control, the proposed robust tracking control with integral action can achieve great reference tracking performance and rejection of constant disturbances. Finally, the effectiveness and rationality of the robust controller can be validated through simulations in two-bus low-voltage power transmission network.
机译:为了提高直接矩阵变换器作为统一潮流控制器(DMC-UPFC)的动态性能和鲁棒性,提出了一种基于状态反馈并具有积分作用的鲁棒跟踪控制器。首先,提出了DMC-UPFC串联侧的6阶数学模型,通过进行适当的坐标变换和状态变量反馈,可以将其设计为鲁棒跟踪控制器。其次,利用二次最优控制策略选择反馈增益矩阵,得到最优控制律,可用于完成鲁棒控制器的设计。与常规比例积分控制相比,所提出的具有积分作用的鲁棒跟踪控制可以实现较高的参考跟踪性能和恒定干扰的抑制。最后,通过在两总线低压输电网络中的仿真可以验证鲁棒控制器的有效性和合理性。

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