电力系统解耦自适应区间2型模糊滑模控制器

A. Abbadi, L. Nezli, D. Boukhetala
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引用次数: 1

摘要

本文提出了一种解耦自适应区间2型模糊滑模控制方案,该方案能够提高单机无限母线电力系统的暂态稳定性并实现电压调节。该控制器的设计涉及直接反馈线性化(DFL)技术和滑模控制(SM)理论。采用两个模糊系统作为系统的到达和等效部分。利用模糊逻辑处理等效部分设计中的不确定性/干扰,并为到达部分的设计提供无抖振控制。为了构造等效控制律,采用自适应区间2型模糊逻辑推理机逼近系统的未知部分。为了消除抖振,采用了一种类似于饱和函数技术的模糊逻辑模型来达到控制律。利用李雅普诺夫方法从数学上证明了闭环系统的稳定性。仿真结果表明,无论系统运行条件如何,所开发的方法都具有良好的性能。
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Decoupled adaptive interval type 2 fuzzy sliding mode controller for power systems
In this paper, we propose a decoupled adaptive interval type 2 fuzzy sliding mode control scheme that has the ability to enhance the transient stability and achieve voltage regulation of a single machine infinite bus power system. The design of this controller involves the direct feedback linearization (DFL) technique and the sliding mode (SM) control theory. Two fuzzy systems are used as reaching and equivalent parts of the SMC. The fuzzy logic is used to handle uncertainty/ disturbance in the design of the equivalent part and to provide a chattering free control for the design of the reaching part. To construct the equivalent control law, an adaptive interval type2 fuzzy logic inference engine is used to approximate the unknown parts of the system. To get rid of the chattering, a fuzzy logic model is assigned for reaching control law, which is acting like the saturation function technique. The stability of the closed-loop system is proved mathematically based on the Lyapunov method. Simulation results illustrate the performance of the developed approach regardless of the system operating conditions.
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