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Enhancement of transient stability limit and voltage regulation with dynamic loads using robust excitation control

机译:使用鲁棒的励磁控制来增强动态负载的瞬态稳定性极限和电压调节

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摘要

In stressed power systems with large induction machine component, there exist undamped electromechanical modes and unstable montonic voltage modes. This article proposes a sequential design of an excitation controller and a power system stabiliser (PSS) to stabilise the system. The operating region, with induction machines in stressed power systems, is often not captured using a linearisation around an operating point, and to alleviate this situation a robust controller is designed which guaruntees stable operation in a large region of operation. A minimax linear quadratic Gaussian design is used for the design of the supplementary control to automatic voltage regulators, and a classical PSS structure is used to damp electromechanical oscillations. The novelty of this work is in proposing a method to capture the unmodelled nonlinear dynamics as uncertainty in the design of the robust controller. Tight bounds on the uncertainty are obtained using this method which enables high-performance controllers. An IEEE benchmark test system has been used to demonstrate the performance of the designed controller
机译:在具有大量感应电机组件的压力电力系统中,存在无阻尼的机电模式和不稳定的蒙脱电压模式。本文提出了一个励磁控制器和一个用于稳定系统的电力系统稳定器(PSS)的顺序设计。通常在工作点周围没有使用线性化来捕获带有感应电机的工作区域,并且为缓解这种情况,设计了一种坚固的控制器,可确保在大范围的操作区域中稳定运行。 Minimax线性二次高斯设计用于自动电压调节器的辅助控制设计,而经典PSS结构用于阻尼机电振荡。这项工作的新颖性在于提出一种方法来捕获未建模的非线性动力学作为鲁棒控制器设计中的不确定性。使用此方法可以获得高性能控制器的不确定性的严格界限。 IEEE基准测试系统已用于演示设计的控制器的性能

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