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Information of Electromagnetic Scattering and Radiative Transfer in Natural Media(2011-2020Volume3)(精)

  • 作者:Jin Ya-Qiu
  • 出版社:科學
  • ISBN:9787030657862
  • 出版日期:2020/01/01
  • 裝幀:精裝
  • 頁數:773
人民幣:RMB 580 元      售價:
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內容大鋼
    本書作為《自然介質電磁散射與輻射傳輸信息》的第三卷,選自作者2011?2020年期間在國際學術刊物上發表的部分學術論文。
    本卷也作為近十年裡新成立的「復旦大學電磁波信息科學教育部重點實驗室」在電磁波與遙感領域的一個工作匯總。這一實驗室包含了以下三個領域:空間遙感、空間通信、高性能計算與電腦智能。本卷內容是作者在第一個領域「空間遙感」的部分工作成果。這些工作包含了極化散射與合成孔徑雷達(SAR)、SAR遙感信息的人工智慧獲取、星載微波輻射遙感與數據驗證、行星遙感與深空探測的信息理論方法、計算電磁學與天線輻射五個方面的研究成果。

作者介紹
Jin Ya-Qiu
    Jin Ya-Qiu(金亞秋),中國科學院院士、發展中國家科學院院士、國際宇航科學院院士、IEEE終身會士。1970年畢業於北京大學,1982年、1983年、1985年先後獲美國麻省理工學院(MIT)科學碩士(M.S.)、電氣工程師(E.E.)、博士(Ph.D.)學位。現任復旦大學教授、電磁波信息科學教育部重點實驗室主任、電磁大數據與智能遙感研究所所長。     他的研究領域為複雜自然環境中電磁波散射輻射傳輸與傳播、空間微波遙感與對地對空目標監測信息理論與技術、複雜系統中計算電磁學、目標信息智能感知與識別等。他提出了自然地表全極化電磁散射的理論建模、數值與成像模擬、特徵參數反演與目標重構,形成了「空間微波遙感全極化電磁散射與定量信息」的系統理論;發展了「自然介質矢量輻射傳輸理論」及其在地球環境星載微波遙感、探月與深空探測等領域的應用;發展了「複雜背景環境與特徵目標複合電磁散射」的理論建模、數值模擬、天地海環境目標特徵智能識別及其計算電磁學理論方法與技術應用。他是國家重點基礎研究(973)項目首席科學家、國家級重點基礎研究項目技術首席,並主持國家自然科學基金重點項目、重大儀器專項等。他在國內外學術刊物與學術會議上已發表學術論文800余篇,已出版18部學術專著與文集。     他作為第一位來自中國的科學家,任IEEE GRSS大獎評委會委員、IEEE GRSS執委會委員、IEEE會士評選委員會(GRSS)主席、IEEE GRSS傑出演講者、IGARSS'2016主席等,為中國在這些國際學術組織中取得重要席位。     他獲得IEEE GRSS傑出成就獎,他是該獎設立50多年來第一位獲得該項大獎的非歐美科學家;他還獲得IEEE GRSS教育獎、國家自然科學獎二等獎、光華科技獎一等獎、國家圖書獎、全國優秀科技工作者、首屆全國創新爭先獎、上海市科技功臣獎、三次教育部自然科學獎一等獎、國家973計劃先進個人等20多項科技獎勵。他是國家級有突出貢獻的中青年科技專家、上海市勞動模範。

目錄
Chapter 1  Polarimetric Scattering and SAR Image Information
  Scattering Simulation and Reconstruction of a 3-D Complex Target Using Downward-Looking Step-Frequency Radar
  Postearthquake Building Damage Assessment Using Multi-Mutual Information from Pre-Event Optical Image and Postevent SAR Image
  Numerical Simulation of Tomographic-SAR Imaging and Object Reconstruction Using Compressive Sensing with L1/2-norm
Regularization
  Automatic Recognition of Isolated Buildings on Single-Aspect SAR Image Using Range Detector
  Simulation of ISAR Imaging for a Space Target and Reconstruction Under Sparse Sampling via Compressed Sensing
  Impact of Cross-polarization Isolation on Polarimetric Target Decomposition and Target Detection
  Imaging and Structural Feature Decomposition of a Complex Target Using Multi-Aspect Polarimetric Scattering
  Iterative ADMM for Inverse FE–BI Problem: A Potential Solution to Radio Tomography of Asteroids
  Polarimetric–Anisotropic Decomposition and Anisotropic Entropies of High-Resolution SAR Images
  A Preliminary Study on SAR Advanced Information Retrieval and Scene Reconstruction
  Simulation of Synthetic Aperture Radar Imaging of Dynamic Wakes of Submerged Body
  A Study of Ship Rotation Effects on SAR Image
  Target Decomposition and Recognition from Wide-angle SAR Imaging Based on a Gaussian Amplitude-Phase Model
  Wishart–Bayesian Reconstruction of Quad-Pol from Compact-Pol SAR Image
  Polarimetric SAR Image Factorization
  The Iterative Reweighted Alternating Direction Method of Multipliers for Separating Structural Layovers in SAR Tomography
  Three-Dimensional Reconstruction from a Multiview Sequence of Sparse ISAR Imaging of a Space Target
  Ship Wake Components: Isolation, Reconstruction, and Characteristics Analysis in Spectral, Spatial, and TerraSAR-X Image Domains
  Fast Sparse Spectral Estimation for Super-resolution SAR Sparse Imaging
Chapter 2  Artificial Intelligence for Remote Sensing and Target Recognition
  Polarimetric SAR Image Classification Using Deep Convolutional Neural Networks
  Complex-Valued Convolutional Neural Network and Its Application in Polarimetric SAR Image Classification
  Target Classification Using the Deep Convolutional Networks for SAR Images
  Radar Image Colorization: Converting Single-Polarization to Fully Polarimetric Using Deep Neural Networks
  SAR Despeckling Neural Network with Logarithmic Convolutional Product Model
  A Generalized Gaussian Coherent Scatterer Model for Correlated SAR Texture
  Multimode Remotely Sensed Intelligent Information and Target Recognition: Physical Intelligence in Microwave Vision
  Reciprocal Translation between SAR and Optical Remote Sensing Images with Cascaded-Residual Adversarial Networks
Chapter 3  Microwave Remote Sensing of Earth
  Monitoring and Early Warning the Debris Flow and Landslides Using VHF Radar Pulse Echoes from Layering Land Media
  Detection of Snow and Frost in Southern China in January 2008 Using AMSR-E Scattering and Polarization Indexes
  Data Validation of Chinese Microwave FY-3A for Retrieval of Atmospheric Temperature and Humidity Profiles during Phoenix Typhoon, 2008
  Case Studies of Drought-Flooding Variations for Validating FY-3B/ MWRI Data with Intercalibration of Aqua/AMSR-E
  A Backscattering Model of Rainfall Over Rough Sea Surface for Synthetic Aperture Radar
  Information Chain of Fine-Quantitative Remote Sensing based on Scattering, Radiative Transfer and Imaging
  Asymmetry in Stimulated Emission Polarizat
  Theoretical Modeling, Numerical Simulation, and Retrievals from Chang』E-1 Data for Microwave Exploration of Lunar Surface/Subsurface
  Diurnal change of MW and IR Thermal Emissions from Lunar Craters with Relevance to Rock Abundance
  Simulation of Radar Echoes from Mars』 Surface/Subsurface and Inversion of Surface Media Parameters
  Inversion of Dielectric Properties of the Lunar Regolith Media with Temperature Profiles Using Chang』E Microwave Radiometer Observations
  Simulation of Multiangular Radar Echoes for Speed Measurement During CE-3 Landing on the Lunar Sinus Iridum Surface
  Radar Sounder Survey of Seasonal and Diurnal Water Flows on Mars Surface: Simulation and SHARAD Observation
  Dielectric Inversion of Lunar PSR Media with Topographic Mapping and Comment on 「Quantification of Water Ice in the Hermite—A Crater of the Lunar North Pole」
  No Water–Ice Invertable in PSR of Hermite—A Crater Based on Mini-RF Data and Two-Layers Model
  Brightness Temperature of Lunar Surface for Calibration of Multichannel Millimeter-Wave Radiometer of Geosynchronous FY-4M
  A Radiative Transfer Model for MW Cold and IR Hot Spots of Chang』e and Diviner Observations
  Parameter Inversions of Multi-Layer Media of Mars Polar Region with Validation of SHARAD Data
  A Discussion on the Effective Permittivity of Multi-Component Medium Derived by Maxwell–Garnett, Strong Fluctuation and Quasicrystalline-CP Modeling
  A Real-Time Model of the Seasonal Temperature of Lunar Polar Region and Data Validation
  A Numerical Model of CPR of Rough Surface with Discrete Scatterers for Analysis of Mini-RF Data
  Average Brightness Temperature of Lunar Surface for Calibration of Multi-Channel Millimeter-Wave Radiometer from 89GHz to 183GHz and Data Validation
  The Diurnal and Seasonal Heat Flows and Temperature Distribution in Lunar PSR Based on the Diviner Infrared Data
  Simulation and Data Analysis of the Temperature Distribution and Variation in the Permanent Shaded Region of the Moon
  Low Loss-Tangent at Mare Serenitatis Retrieved from Observations of CE-2 MW Radiometer and Arecibo VHF Radar
Chapter 5  Computational Electromagnetics and Antenna
  An Inversion of Planetary Rough Surface Permittivity from Radar Sounder Observations
  Scattering Simulation and Reconstruction of A 3D Complex Target Above an Underlying Surface Using SIMO Radar with Plane Array
  The Contour Deformation Method for Calculating the High-Frequency Scattered Field by the Fock Current on the Surface of the 3-D Convex Cylinder
  A Frequency-Independent Method for Computing the Physical Optics-Based Electromagnetic Fields Scattered from a Hyperbolic Surface
  Space-Borne Deployable P-Band Dual-Circular-Polarization Flexible Antenna Array
  Circularly Polarised OAM Antenna Using an Aperture-Coupled Uniform Circular Array
  The Fast Solver for Calculating the Scattered Fields from the Multiscale Scatterers
  Isolation Enhancement of Wideband Vehicular Antenna Array Using Fractal Decoupling Structure
  An Efficient Method on ISAR Image Reconstruction via Norm Regularization
  Fast ISAR Imaging based on High Frequency Scattered Fields from Quadratic Patches
  Fast Calculation of Scattering in Planar Uniaxial Anisotropic Multilayers
  Generation of Wideband Vortex Beam with Different OAM Modes Using Third-Order Meta-Frequency Selective Surface
  The Two-Dimensional Numerical Steepest Descent Path Method for Calculating the Physical Optics Scattered Fields from Different Quadratic Patches
  The Fast Physical Optics Method on Calculating the Scattered Fi
  A Novel Miniaturized Electromagnetic Bandgap Structure for Wideband SSN Suppression in High-Speed PCB
  Design and Analysis of Linear to Circular Polarization Converter with Third Order Meta-Frequency Selective Surfaces
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