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High Performance ILQG Controller Design to Enhance Dynamic Stability of Multimachine Power System

机译:高性能ILQG控制器设计,增强多机电力系统的动态稳定性。

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Multimachine power system consists of a large number of power generation units to produce electrical power. The damping torque of the generators control the stability of the system. Transmission lines fault, unknown loads and disturbances hamper the damping torque of the generator. The oscillation of the performance of the power system arises due to the lack of damping torque of the generators. The oscillation of the speed, rotor angle and terminal voltage may increase or decrease and reduce the stability of the power system. This paper presents a robust integral linear quadratic gaussian controller (ILQG) to damp out the oscillation of the power system. The ILQG controller has high gain and phase margin and bandwidth. It improves the dynamic stability of the power system. The performance of power system under ILQG controller is investigated using MATLAB. The simulation results show the robustness of the proposed controller.
机译:多机电源系统由大量发电单元组成,可产生电能。发电机的阻尼扭矩控制系统的稳定性。传输线故障,未知负载和干扰会妨碍发电机的阻尼扭矩。由于缺少发电机的阻尼扭矩,导致电力系统性能出现振荡。速度,转子角和端子电压的振荡可能会增加或减少,并降低动力系统的稳定性。本文提出了一种鲁棒的积分线性二次高斯控制器(ILQG),以抑制电力系统的振荡。 ILQG控制器具有高增益,相位裕量和带宽。它提高了电力系统的动态稳定性。利用MATLAB研究了ILQG控制器下的电力系统性能。仿真结果表明了所提出控制器的鲁棒性。

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