基于遗传算法优化的极限学习机组合预测模型

Zhiheng Yu, Chengli Zhao
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引用次数: 3

摘要

在研究了前馈神经网络工作原理的基础上,分析了BP神经网络和极限学习机(ELM)的网络结构和学习机理,提出了一种基于遗传算法优化学习机极限的GA-ELM预测模型。采用遗传算法选择ELM神经网络的权值和阈值,并利用最优权值和阈值确定隐含层与输出层之间的连接权值。进一步,将该模型与灰色系统模型相结合,对GM残差进行校正,建立GM- ga - elm组合预测模型。通过与BP模型、GA-BP模型和标准ELM模型的比较,进一步验证了该模型具有更好的预测精度和运行时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Combination Forecasting Model of Extreme Learning Machine Based on Genetic Algorithm Optimization
After studying the working principle of feed-forward neural network and analyzing network structure and the learning mechanism of BP neural network and the extreme learning machine (ELM), a prediction model, GA-ELM, is proposed based on genetic algorithm to optimize the learning machine limit. The genetic algorithm is used to select the weights and thresholds of ELM neural network, and the optimal weights and thresholds are used to determine the connection weights between the hidden layer and the output layer. Further, this model is combined with the grey system model to correct the residual of GM, and then GM-GA-ELM combination forecasting model is established. Compared with BP model, GA-BP model and standard ELM model, it is further verified that the predicting accuracy and running time of the proposed model are better.
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