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书名 偏振遥感物理/高瞻系列/中外物理学精品书系
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出版社 北京大学出版社
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偏振信号是地表与大气系统反射信号的重要组成部分,是利用遥感信息反演地表与大气信息的重要信号来源。但目前的光学遥感研究多集中于非偏振遥感,对偏振遥感研究较少,从而忽略了遥感反演中的一项重要数据源。针对此,本书作者进行了长期系统研究,结合多年偏振遥感的成果,从偏振遥感的物理基础、偏振遥感在地物参数反演的应用、偏振遥感在大气参数反演的应用及偏振遥感应用的新领域四个方面展开,系统地介绍了偏振遥感反演地表参数、大气参数及导航等的基础、原理、方法及结果验证。
本书是立志从事光学偏振遥感新领域研究者的入门书,是遥感、地球观测、测绘、国土等领域学者了解偏振遥感全貌的参考书,为相关领域从业人员借助偏振遥感手段解决其自身面临的相关问题提供了一个新视野、新手段、新方法、新途径,可作为从事偏振遥感科研、教学人员了解偏振遥感理论、技术和方法的指南,也可为相关技术研究人员提供有价值的参考。
作者简介
晏磊,北京大学教授,中国感光学会遥感专业委员会主任,中国测绘学会摄影测量与遥感专业委员会副主任,IEEE Senior Member,国际知名期刊IJRS(international Journalof Remote Sensing)专家指导委员会主席,创建了空间信息集成与3S工程应用北京市重点实验室(北京大学)。
作者长期致力于偏振遥感领域研究,于2008年系统地提出了地物偏振遥感波谱理论,于2011年建立了大气偏振遥感理论,于2016年发现了天空偏振矢量场效应规律。成果获国家技术发明二等奖1项,省部级一等奖2项,国家知识产权局优秀发明专利奖1项,日内瓦国际发明金奖1项。
目录
Chapter 1 Physical Rationale of Polarized Remote Sensing
1.1 Polarization of Light
1.2 Light Polarization on the Surface of Media
1.3 Characteristics of Polarization
1.4 Physical Rationale for Polarized Remote Sensing and Its Three Parts
1.5 Organization of Chapters
References
Chapter 2 Physical Characteristics of Multi-angle Polarized Reflectance
2.1 The Physical Basis of Physical Detection Geometry of Polarized Reflectance and Multi-angle Polarized Reflectance
2.2 Multi-angle Polarization Reflectance Analytical Instruments and the Methods of Measurement
2.3 The Incidence Angle and the Mechanism Underpinning Multi-angle Reflectance of the Ground Object
2.4 Analysis of the Characteristics of the Multi-angle Non-polarized Spectrum and Its DOP
References
Chapter 3 Multi-spectral Chemical Characteristics of Surface Polarization Reflection
3.1 DOP Spectra and Non-polarized Spectra
3.2 Reflectance Spectral Model in the 2元-Spatial Orientation of a Rock Surface
3.3 Spectral Parameter Inversion
3.4 Relationship Between the Composition of a Rock and the DOP
References
Chapter 4 Surface Roughness and Density Structure of Polarization Reflectance
4.1 Rock Surface Roughness and Its Spectral Relationship with the Multi-angle DOP
4.2 Surface Roughness Effects on the DOP of Different Scattering Angles
4.3 Relationship Between Reflectance Rate and Density of Ground Objects
4.4 Estimation of Substance Composition of Lunar Surface Rocks
References
Chapter 5 Signal-to-Background High Contrast Ratio Filtering of Polarimetric Reflection
5.1 Polarimetric Reflection Radio Filtering of Water Bodies with Dark Backgrounds (Weak Light Intensification)
5.2 Strong Water Body Sun Glint Polarization Separation (Bright Light Attenuation) and Measuring the Density of Water
5.3 The Polarization Reflection Filtering Characteristics of Bare Soil
5.4 The High Signal-to-Background Ratio Filtering Relationship Between Polarization and Bare Soil Moisture Content
References
Chapter 6 Characteristics of Radiative Transfer on Surface Polarization
6.1 Characteristics of Polarimetric Reflectance of the Vegetation Canopy
6.2 DOP Models of the Reflected Light from the Vegetation Canopy
6.3 Polarimetric Properties of a Single Leaf
6.4 Polarimetric Reflectance Characteristics of Different Crops
References
Chapter 7 The Nature and Physical Characteristics of the Full-sky Polarization Pattern
7.1 Theory of Sky Polarization Patterns
7.2 Measurement of the Sky Polarization Pattern and Its Parameter Distribution
7.3 Impacts on the DOP of the Sky Under Different Conditions
7.4 The Applicability of Different Polarization Angles
References
Chapter 8 Neutral Point Areas of Atmospheric Polarization and Land-Atmosphere Parameter Separation
8.1 Theory of Neutral Point Areas in Atmospheric Polarization
8.2 Observation of Neutral Point Areas in the Atmosphere Based on Polarization Pattern
8.3 Separation of Object and Atmospheric Effects Based on Neutral Point Areas of Atmospheric Polarization
8.4 Basic Experiment to Measure Separation of Object and Atmospheric Effects Based on Neutral Points
References
Chapter 9 Atmospheric Polarization Characteristics and Multi-angle Stereotopography
9.1 Physical Basis of Atmospheric Scattering
9.2 Single Scattering Characteristics of Non-spherical Aerosol and
Polarization Observation Evidence
9.3 Multiple Scattering Based on Non-spherical Models and a Plane Distribution of the Full-sky Multi-angle Polarization Field
9.4 Separation Inversion of Non-spherical Aerosols and Land Surface Information Based on Sky Polarization Field Theory
9.5 Separation Inversion and Experimental Validation of Non-spherical Aerosol over Ocean and Land Surfaces: Information Based on Sky Polarization Pattern Theory
References
Chapter 10 Bionic Polarization for Automatic Navigation Using th
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