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首页> 外文期刊>International journal of systems science >An improved Backstepping technique using sliding mode control for transient stability enhancement and voltage regulation of SMIB power system
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An improved Backstepping technique using sliding mode control for transient stability enhancement and voltage regulation of SMIB power system

机译:使用滑模控制的改进Backstepping技术可增强SMIB电力系统的暂态稳定性和调节电压

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摘要

The problem of transient stability and voltage regulation for a single machine infinite bus (SMIB) system is addressed in this paper. An improved Backstepping design method for transient stability enhancement and voltage regulation of power systems is discussed beginning with the classical Backstepping to designing the nonlinear excitation control of synchronous generator. Then a more refined version of this technique will be suggested incorporating the sliding mode control to enhance voltage regulation and transient stability. The proposed method is based on a standard third-order model of a synchronous generator connected to the grid (SMIB system). It is basically implemented on the excitation side of the synchronous generator and compared to the classical Backstepping controller as well as the conventional controllers which are the automatic voltage regulator and the power system stabiliser. Simulation results prove the effectiveness of the proposed method which ameliorates to a great extent the transient stability compared to the other methods.
机译:本文解决了单机无限总线(SMIB)系统的瞬态稳定性和电压调节问题。从经典的Backstepping到设计同步发电机的非线性励磁控制开始,讨论了一种用于电力系统暂态稳定增强和电压调节的改进Backstepping设计方法。然后,将建议对该技术进行更完善的改进,并结合滑模控制以增强电压调节和瞬态稳定性。所提出的方法基于连接到电网(SMIB系统)的同步发电机的标准三阶模型。它基本上在同步发电机的励磁侧实现,并且与传统的Backstepping控制器以及传统的控制器(即自动电压调节器和电力系统稳定器)进行比较。仿真结果证明了该方法的有效性,与其他方法相比,在很大程度上改善了暂态稳定性。

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