首页> 外文期刊>Journal of marine science and technology >SOFT COMPUTING TECHNOLOGIES IN DESIGN OF FUZZY CONTROLLER FOR ACTIVE VIBRATION ISOLATION SYSTEMS
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SOFT COMPUTING TECHNOLOGIES IN DESIGN OF FUZZY CONTROLLER FOR ACTIVE VIBRATION ISOLATION SYSTEMS

机译:主动隔振系统模糊控制器设计中的软计算技术

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摘要

In the paper, we develop a two-phase design approach for a fuzzy logic controller (FLC) of an active vibration isolation system, which adopts two components of soft computing techniques, namely fuzzy logic control theory and neural networks. First, we design a fuzzy logic controller for an active vibration isolation system using fuzzy logic control theory. We conduct numerical simulations of an active vibration isolation system with three kinds of exciting loads. The results indicate that the performance of the fuzzy logic controller is very good, but its control rule surface does not measure up in practical terms. Secondly in the neural network, trained by Quick-prop with Newton's method, is used to model an approximation of this fuzzy logic controller, termed the neural network fuzzy controller (NNFC). The control performance indicates that the NNFC has the same performance as the FLC designed in the first phase and its control rule surface is improved and more suitable for actual use. The results indicate that the proposed design approach provides a robust, controllable, practical, and low-cost solution for a FLC of an active vibration isolation system.
机译:在本文中,我们开发了一种主动振动隔离系统的模糊逻辑控制器(FLC)的两阶段设计方法,该方法采用了软计算技术的两个组成部分,即模糊逻辑控制理论和神经网络。首先,我们使用模糊逻辑控制理论为主动隔振系统设计了模糊控制器。我们对具有三种激励负载的主动隔振系统进行了数值模拟。结果表明,模糊逻辑控制器的性能很好,但其控制规则面在实践中并未达到标准。其次,在神经网络中,由Quick-prop进行牛顿方法训练,用于对这种模糊逻辑控制器的近似模型进行建模,称为神经网络模糊控制器(NNFC)。控制性能表明,NNFC具有与第一阶段设计的FLC相同的性能,并且其控制规则表面得到了改进,更适合实际使用。结果表明,所提出的设计方法为主动隔振系统的FLC提供了鲁棒,可控,实用且低成本的解决方案。

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