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An indirect adaptive type-2 fuzzy sliding mode PSS design to damp power system oscillations

机译:一种间接自适应类型-2模糊滑模PSS设计,潮湿的电力系统振荡

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This paper introduces a new indirect adaptive type-2 fuzzy sliding mode controller as a power system stabilizer (PSS) that used to damp out the low frequency oscillations in power systems. The proposed controller design is based on the integration of sliding mode control (SMC) and Adaptive type-2 fuzzy control. The type-2 fuzzy logic system is used to approximate the unknown system function and PI control term is used to eliminate chattering action in the design of sliding mode control. Using Lyapunov stability theory, the adaptation laws are developed to make the controller adaptive to take care of the changes due to the different operating conditions occurring in the power system and guarantees stability converge. The robustness of the proposed stabilizer has been tested on a single machine infinite bus model. Nonlinear simulation studies show the better performance of the proposed stabilizer and confirm the superiority over adaptive type-2 fuzzy synergetic (AFSPSS), adaptive type-2 fuzzy (AFPSS) and the conventional (CPSS) stabilizers.
机译:本文介绍了一种新的间接自适应型-2模糊滑模控制器作为电力系统稳定剂,其用于电力系统受潮出低频振荡(PSS)。所提出的控制器的设计是基于滑模控制(SMC)和自适应型-2模糊控制的集成。类型2模糊逻辑系统被用于近似未知系统的功能和PI控制术语被用来消除滑模控制的设计颤动动作。利用Lyapunov稳定性理论,适应法律的开发,以使控制器自适应照顾的变化,由于电力系统,并保证稳定收敛发生的不同的操作条件。所提出的稳定剂的鲁棒性已经在一个单机无穷大母线模型进行测试。非线性模拟研究表明,该稳定的性能更好,并确认了自适应型-2模糊协同(AFSPSS),自适应型-2模糊(AFPSS)和常规(CPSS)稳定剂的优越性。

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