用于SMIB电力系统暂态稳定和电压调节的改进直接反馈线性化励磁控制器

S. Keskes, Nouha Bouchiba, S. Sallem, L. Chrifi-Alaoui, M. Kammoun
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引用次数: 3

摘要

本文讨论了一种用于电力系统暂态稳定和电压调节的改进直接反馈线性化方法。从目前应用于电力系统的经典直接反馈线性化技术出发,对同步发电机励磁控制方程进行了修正,以消除终端发电机电压的静态误差。这种修改考虑了三相短路后电抗线的变化。该方法基于同步发电机的标准三阶模型,该模型只需要角速度、有功功率和发电机端电压的物理测量信息。仿真结果表明,与电力系统稳定器(PSS)和直接反馈线性化(DFL)相比,该方法具有快速响应和鲁棒性。结果表明,该系统在阻尼、稳态和暂态稳定性以及电压调节方面均达到了满意的效果。
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Modified direct feedback linearization Excitation Controller for transient stability and voltage regulation of SMIB power system
In this paper, a modified direct feedback linearization method for transient stability and voltage regulation of power systems is discussed. Starting with the classical direct feedback linearization technique currently applied to power systems, a modification is proposed in the equation of excitation control of synchronous generators in order to eliminate the static error of the terminal generator voltage. This modification takes into account the change of the reactance line after a three-phase short circuit. The proposed method is based on a standard third-order model of a synchronous generator which requires only information about the physical available measurements of angular speed, active electric power and generator terminal voltage. Simulation results show that this technique presents a fast response and a robustness compared with the Power System Stabilizer (PSS) and the Direct Feedback Linearization (DFL). They also demonstrate that the damping, the steady-state and the transient stability as well as voltage regulation are all achieved satisfactorily.
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