A Material Spectral Feature Degradation Characterization Model Based on Weighted Joint Regression Network

Author:

Wu Hulin,Deng Xianming,Zhang Yixiang,Zhu Fan,Zhang Tiancai,Liu Jun

Abstract

Abstract A characterization model of material spectral feature degradation based on weighted joint regression network was proposed. This model fully combines the advantages of several classical regression networks and takes full account of L1 and L2 regularization. It overcomes the phenomenon that the model parameters obtained by Lasso regression are approaching 1 or 0, which leads to too many features being sparse to 0, and Ridge regression has insufficient regularization degree and the regression coefficient decays too slowly. It not only ensures the correctness of the calculation of training data, but also ensures the generalization ability of test data, and takes into account the fitting ability and prediction ability of the model. The test results show that, based on the verified weighted joint regression network, the degradation law of the spectral image fusion degree between the material sample and the desert natural environment is modeled, and the correlation coefficient is better than 0.99.

Publisher

IOP Publishing

Reference12 articles.

1. Two improved algorithms for hyperspectral target detection based on morphology[J];Deng;Natural Science Journal of Sun Yat-sen University,2017

2. Spatial and spectral scale effects in hyperspectral target detection[J];Shi;Journal of Remote Sensing,2015

3. An improved multi-small target detection algorithm in hyperspectral images[J];Yin;Acta Electronica Sinica,2010

4. Hyperspectral anomaly detection algorithm based on Extended mathematical morphology[J];Li;Acta Electronica Sinica,2008

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