pwm调节交流/直流变换器的模型分析及智能anfis控制设计

M. K. Bourdoulis, John G. Spanomichos, A. Alexandridis
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引用次数: 7

摘要

提出了一种新的pwm调节交/直流变换器非线性智能控制器设计方法。首先,建立了整个系统的非线性模型,并在此基础上进行了无源分析。利用该模型,证明了系统始终具有独立于控制器方案的阻尼特性。这对于基于模糊逻辑的智能控制应用是一个重要的贡献,因为它可以克服这些设计的固有缺点,即保证闭环系统稳定性的能力。为此,提出采用非线性自适应神经模糊推理系统(ANFIS)控制器对pwm调节的交流/直流变换器进行灵活、快速、高效的调节。在测试系统上对所提出的基于ANFIS的控制器进行了性能仿真。所提出的ANFIS控制器的暂态响应表明,该控制器的性能优于传统的PI控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model analysis and intelligent-ANFIS control design for PWM-regulated ac/dc converters
A new design approach for nonlinear intelligent controllers for PWM-regulated ac/dc converters is proposed. First, the nonlinear model of the complete system is obtained, on which a passivity based analysis is conducted. Using this model, it is proven that the system always has the damping property independently from the controller scheme that one can apply. This is a significant contribution for fuzzy logic based intelligent control applications since it makes possible to overcome the inherent drawback of these designs, that is the ability to guarantee stability of the closed loop system. Thus, nonlinear adaptive neuro-fuzzy inference system (ANFIS) controllers are proposed to be used in order to obtain flexible, fast and efficient regulation of PWM-regulated ac/dc converters. The performance of the proposed ANFIS based controllers is simulated on a test system. The transient response of the proposed ANFIS controllers indicates an excellent performance which seems to enhance that of the conventional PI controllers.
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