A New Semisupervised-Entropy Framework of Hyperspectral Image Classification Based on Random Forest

Author:

Sun Mengmeng1,Wang Chunyang12ORCID,Wang Shuangting12,Zhao Zongze12,Li Xiao1

Affiliation:

1. School of Surveying and Land Information Engineering, Henan Polytechnic University, Jiaozuo 454000, China

2. Henan Province Engineering Technology Research Center of Space Big-Data Acquisition Equipment Development and Application, Henan Polytechnic University, Jiaozuo 454000, China

Abstract

The purposes of the algorithm presented in this paper are to select features with the highest average separability by using the random forest method to distinguish categories that are easy to distinguish and to select the most divisible features from the most difficult categories using the weighted entropy algorithm. The framework is composed of five parts:(1)random samples selection with(2)probabilistic output initial random forest classification processing based on the number of votes;(3)semisupervised classification, which is an improvement of the supervision classification of random forest based on the weighted entropy algorithm;(4)precision evaluation; and(5)a comparison with the traditional minimum distance classification and the support vector machine (SVM) classification. In order to verify the universality of the proposed algorithm, two different data sources are tested, which are AVIRIS and Hyperion data. The results show that the overall classification accuracy of AVIRIS data is up to 87.36%, the kappa coefficient is up to 0.8591, and the classification time is 22.72s. Hyperion data is up to 99.17%, the kappa coefficient is up to 0.9904, and the classification time is 8.16s. Classification accuracy is obviously improved and efficiency is greatly improved, compared with the minimum distance and the SVM classifier and the CART classifier.

Funder

Natural Science Foundation of Henan Province

Publisher

Hindawi Limited

Subject

General Computer Science

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