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基于神经网络方法的极化雷达地表参数反演
引用本文:杨虎,郭华东,王长林,李新武,岳焕印.基于神经网络方法的极化雷达地表参数反演[J].遥感学报,2002,6(6):451-455.
作者姓名:杨虎  郭华东  王长林  李新武  岳焕印
作者单位:中国科学院,遥感应用研究所遥感信息科学重点实验室,北京,100101
基金项目:国家自然科学基金重点项目(49989001),国家863计划项目(2001AA132040),中国科学院知识创新工程项目(KZCX2-312)资助。
摘    要:人工神经网络(Artificial Neural Network)是一个由独立处理单元以一定拓扑结构高度连接而成的并行分布式信息处理结构,适于解决各种非线性问题,积分方程(Integrated Equation Model)单散射模型可模拟各种地表参数条件下裸露地表后向散射系数,以IEM为基础生成训练数据,用L波段的C波段SIR-CHH,VV极化单散射后向散射系数数据为神经网络输入,通过后向反馈(BP)神经网络模型可同时反演得到裸露地表条件下地表介电常数,地表相关长度和均方根高度等地表参数。

关 键 词:极化雷达  积分方程模型  BP神经网络  地表参数反演  微波遥感  土壤水分
文章编号:1007-4619(2002)06-0451-05
收稿时间:5/1/2002 12:00:00 AM
修稿时间:2002年5月1日

Polarimetric SAR Surface Parameters Inversion Based on Neural Network
YANG Hu,GUO Hua-dong,WANG Chang-lin,LI Xing-wu and YUE Huan-yin.Polarimetric SAR Surface Parameters Inversion Based on Neural Network[J].Journal of Remote Sensing,2002,6(6):451-455.
Authors:YANG Hu  GUO Hua-dong  WANG Chang-lin  LI Xing-wu and YUE Huan-yin
Abstract:Surface parameters inversion by using Polarimetric SAR includes the inversion of the soil surface permeability , correlation length and RMS height. The retrieval of scattering parameters can be viewed as a mapping problem from the domain of measured signals to the range of surface/medium characteristics that quantify the observed medium. To date, parameter inversion has been based largely on empirical models. Empirical models have usually avoided the nonuniqueness problem by limiting the validity of the model to a single parameter and a narrow range. This limit on the range of validity requires that multiple empirical models be created-one model for each parameter. In this study, the Spaceborn Imaging Radar SIR-C data at L and C band was used to perform the inversion of bare surface parameters. A BP neural network based on IEM model was developed to carry out the inversion, and a test method was also developed. The combination of a scattering model (IEM) and NN makes it possible to perform inversion with higher accuracy and in real time. Backscat-tering coefficients computed from the model inverted surface parameters was proved to be good, compared with the real backscattering coefficients from radar image.
Keywords:IEM model  polarimetric SAR  neural network  surface parameters inversion
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