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HYBRID ARTIFICIAL NEURAL NETWORK AND FUZZY LOGIC FOR FUNCTION APPROXIMATION

机译:混合人工神经网络和功能逼近的模糊逻辑。

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The problem of intelligent hybrid systems investigated in this study. Intelligent systems consist of fuzzy systems (FS) and neural networks (NN). This intelligent system has specific properties (modeling, ability of learning, obtaining empirical rules, solving optimizing tasks, classifying ?) fitting certain type of applications. The combination of NN and FS systems makes fuzzy-NN system, neuron-fuzzy system. Such type of combination of systems is known as the hybrid intelligent systems (HIS). There are programs created in C++ and Matlab for these purposes, where many demo applications were made for different HIS in the area of system control and modeling. There are three programs have developed; Neural Network program (NNP), fuzzy program (FP) and Neural networks fuzzy program ( NNFP), to investigate the effect of these approaches on ANN learning using several datasets. The results have explored that Neural networks fuzzy (NNF) give quite better results in terms of small errors and convergence rate. compared to NN and FUZZY. The aim of the paper is to prove that the process of hybridization between the algorithms gives better results than the use of separate algorithms. This is known as the soft computing. This is implementation on the approximation functions.
机译:本研究研究了智能混合系统的问题。智能系统由模糊系统(FS)和神经网络(NN)组成。这种智能系统具有适合某些类型应用程序的特定属性(建模,学习能力,获得经验规则,解决优化任务,分类?)。 NN和FS系统的结合使模糊神经网络系统,神经元模糊系统成为可能。这种类型的系统组合称为混合智能系统(HIS)。有一些用C ++和Matlab创建的程序用于这些目的,其中许多演示应用程序是针对系统控制和建模领域中的不同HIS编写的。已经开发了三个程序;神经网络程序(NNP),模糊程序(FP)和神经网络模糊程序(NNFP),以研究这些方法对使用多个数据集的ANN学习的影响。结果表明,神经网络模糊(NNF)在小误差和收敛速度方面给出了更好的结果。与NN和FUZZY相比。本文的目的是证明算法之间的混合过程比使用单独的算法能提供更好的结果。这就是所谓的软计算。这是在逼近函数上的实现。

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