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火星探测的微波遥感技术
引用本文:金亚秋,法文哲,徐丰.火星探测的微波遥感技术[J].空间科学学报,2008,28(3):264-272.
作者姓名:金亚秋  法文哲  徐丰
作者单位:复旦大学波散射与遥感信息教育部重点实验室,上海,200433;复旦大学波散射与遥感信息教育部重点实验室,上海,200433;复旦大学波散射与遥感信息教育部重点实验室,上海,200433
基金项目:国家自然科学基金项目资助
摘    要:从微波遥感的角度出发,综述目前国际上对火星的探测现状,列出对微波遥感探测有影响的火星表层土壤、岩层的结构、分布及其介电特性等参数的已有研究结果,分析对火星地壳表层水(或冰)存在可能性及其分布状态的研究动向.结合地球表面微波遥感技术的最新进展,提出用主动与被动微波遥感探测火星表面浅层土壤物质状态和分层结构的可行性分析,初步研讨了火星表层是否有水(或冰)存在的探测方案. 

关 键 词:火星探测  微波遥感  火星土壤层  水冰探测
收稿时间:1900-01-01

Overview of the Advance for Mars Exploration Using Microwave Remote Sensing
JIN Yaqiu,FA Wenzhe,XU Feng.Overview of the Advance for Mars Exploration Using Microwave Remote Sensing[J].Chinese Journal of Space Science,2008,28(3):264-272.
Authors:JIN Yaqiu  FA Wenzhe  XU Feng
Institution:Key Laboratory of Wave Scattering and Remote Sensing Information, Ministry of Education, Fudan University, Shanghai 200433
Abstract:Exploration of Mars and other planets is a great mission in development of space remote sensing and deep space exploration.A brief review of the Mars exploration,e.g.available research results such as the distribution,structure and dielectric properties of Martian subsurface layers and the possibility of water existence etc.,is presented.Microwave remote sensing technology shows great potential in future Mars exploration mission.Based on the advancement of both active and passive remote sensing in Earth science,some approaches to explore Martian regolith layers and possible detection of water existence in Martian subsurface layers are proposed.Scattering model of inhomogeneous media with rough interfaces for Mars exploration,imaging mechanism and numerical simulation are developed.The Mueller matrix solution of inhomogeneous media under pulse incidence are numerically simulated to illustrate funtional dependence on the planet characteristic parameters. Microwave radiometry and multi-data fusion technolonogy for Mars exploration are also presented. Some examples and technical key points are discussed.
Keywords:Mars exploration  Microwave remote sensing  Martian subsurface layers  Detection of water existence
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