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基于SVM模型的星载GNSS-R内陆水体识别方法研究

赵艳敏 南洪涛 董超 孙波

无线电工程2024,Vol.54Issue(1):121-128,8.
无线电工程2024,Vol.54Issue(1):121-128,8.DOI:10.3969/j.issn.1003-3106.2024.01.016

基于SVM模型的星载GNSS-R内陆水体识别方法研究

Research on Inland Water Body Recognition Method Based on SVM Model for Spaceborne GNSS-R

赵艳敏 1南洪涛 2董超 1孙波1

作者信息

  • 1. 山东农业大学信息科学与工程学院,山东泰安 271018
  • 2. 中国空间技术研究院载人航天总体部,北京 100094
  • 折叠

摘要

Abstract

Inland water body detection is one of the important research directions in the field of remote sensing,covering river morphology change monitoring,real-time flood monitoring,surface water change analysis and other fields.Support Vector Machine(SVM)performs well for resolving nonlinear classification problems and can get a low error rate.A method of inland water body recognition based on Global Navigation Satellite System Reflectometry(GNSS-R)signals is proposed,which uses satellite-borne GNSS-R Signal to Noise Ratio(SNR)as pixels to construct remote sensing images,and applies the Synthetic Minority Oversampling Technique(SMOTE)to perform data processing.On this basis,the water body information is extracted by the SVM model,which is verified by the Cyclone Global Navigation Satellite System(CYGNSS)data in the Congo Basin.The results show that the classification accuracy without SMOTE algorithm processing is 65.1%and the water body classification accuracy is 5.39%,while after SVM model and SMOTE algorithm processing,the data classification accuracy is improved to 96.49%and the water body classification accuracy is improved to 96.32%.The accuracy and water body precision rates are improved,which shows the effectiveness of the spaceborne GNSS-R inland water body identification method based on SVM.

关键词

全球导航卫星系统反射/内陆水体探测/支持向量机/信噪比

Key words

GNSS-R/inland water body detection/SVM/SNR

分类

天文与地球科学

引用本文复制引用

赵艳敏,南洪涛,董超,孙波..基于SVM模型的星载GNSS-R内陆水体识别方法研究[J].无线电工程,2024,54(1):121-128,8.

基金项目

山东省自然科学基金(ZR2021MD082,ZR2021MD096)Shandong Provincial Natural Science Foundation of China(ZR2021MD082,ZR2021MD096) (ZR2021MD082,ZR2021MD096)

无线电工程

1003-3106

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