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Bistatic SAR data processing algorithms [[electronic resource] /] / Xiaolan Qiu, Chibiao Ding, and Donghui Hu
Bistatic SAR data processing algorithms [[electronic resource] /] / Xiaolan Qiu, Chibiao Ding, and Donghui Hu
Autore Qiu Xiaolan
Pubbl/distr/stampa Singapore, : Wiley, : Science Press, [2013]
Descrizione fisica 1 online resource (552 p.)
Disciplina 621.3848/5
Altri autori (Persone) DingChibiao
HuDonghui
Soggetto topico Bistatic radar
Signal processing
Synthetic aperture radar
Algorithms
ISBN 1-118-18811-X
1-118-18809-8
1-118-18810-1
Classificazione TEC036000
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; About the Authors; Preface; Acknowledgements; List of Acronyms; Chapter 1: Introduction; 1.1 Overview of SAR Development; 1.2 Brief Introduction of Bistatic SAR; 1.3 Contents of the Book; References; Chapter 2: Signal Processing Basis of SAR; 2.1 Range Resolution of SAR; 2.2 Azimuth Resolution of SAR; 2.3 SAR Resolution Cell; 2.4 SAR Processing Model - Single-Point Target Imaging; 2.5 Brief Introduction to Efficient SAR Imaging Algorithms; 2.6 Summary; References; Chapter 3: Basic Knowledge of Bistatic SAR Imaging; 3.1 Bistatic SAR Configurations
3.2 Radar Equation of Bistatic SAR3.3 Spatial Resolution of Bistatic SAR; 3.4 Summary; References; Chapter 4: Echo Simulation of Bistatic SAR; 4.1 Introduction; 4.2 Traditional Monostatic SAR Raw Data Simulation; 4.3 Raw Data Simulation for Translational Invariant Bistatic SAR; 4.4 Summary; References; Chapter 5: Imaging Algorithms for Translational Invariant Bistatic SAR; 5.1 Introduction; 5.2 Imaging Algorithms Based on Monostatic Transform; 5.3 Imaging Algorithms Based on Range History Simplification; 5.4 Imaging Algorithms Based on Analytical Explicit Spectrums
5.5 Imaging Algorithms Based on Accurate Implicit Spectrums5.6 Comparison of the Algorithms; 5.7 Summary; References; Chapter 6: Imaging Algorithm for Translational Variant Bistatic SAR; 6.1 Introduction; 6.2 Imaging Algorithms for One-Stationary Bistatic SAR; 6.3 Imaging Algorithms for Translational Variant Bistatic SAR with Constant Velocities; 6.4 Summary; References; Chapter 7: Bistatic SAR Parameter Estimation and Motion Compensation; 7.1 Introduction; 7.2 Analyzing the Effects of Motion Errors; 7.3 Estimation of Doppler Parameters; 7.4 Principle and Methods of SAR Motion Compensation
7.5 SummaryReferences; Index
Record Nr. UNINA-9910786218703321
Qiu Xiaolan  
Singapore, : Wiley, : Science Press, [2013]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Bistatic SAR data processing algorithms / / Xiaolan Qiu, Chibiao Ding, and Donghui Hu
Bistatic SAR data processing algorithms / / Xiaolan Qiu, Chibiao Ding, and Donghui Hu
Autore Qiu Xiaolan
Edizione [1st ed.]
Pubbl/distr/stampa Singapore, : Wiley, : Science Press, [2013]
Descrizione fisica 1 online resource (552 p.)
Disciplina 621.3848/5
Altri autori (Persone) DingChibiao
HuDonghui
Soggetto topico Bistatic radar
Signal processing
Synthetic aperture radar
Algorithms
ISBN 1-118-18811-X
1-118-18809-8
1-118-18810-1
Classificazione TEC036000
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title Page; Copyright; About the Authors; Preface; Acknowledgements; List of Acronyms; Chapter 1: Introduction; 1.1 Overview of SAR Development; 1.2 Brief Introduction of Bistatic SAR; 1.3 Contents of the Book; References; Chapter 2: Signal Processing Basis of SAR; 2.1 Range Resolution of SAR; 2.2 Azimuth Resolution of SAR; 2.3 SAR Resolution Cell; 2.4 SAR Processing Model - Single-Point Target Imaging; 2.5 Brief Introduction to Efficient SAR Imaging Algorithms; 2.6 Summary; References; Chapter 3: Basic Knowledge of Bistatic SAR Imaging; 3.1 Bistatic SAR Configurations
3.2 Radar Equation of Bistatic SAR3.3 Spatial Resolution of Bistatic SAR; 3.4 Summary; References; Chapter 4: Echo Simulation of Bistatic SAR; 4.1 Introduction; 4.2 Traditional Monostatic SAR Raw Data Simulation; 4.3 Raw Data Simulation for Translational Invariant Bistatic SAR; 4.4 Summary; References; Chapter 5: Imaging Algorithms for Translational Invariant Bistatic SAR; 5.1 Introduction; 5.2 Imaging Algorithms Based on Monostatic Transform; 5.3 Imaging Algorithms Based on Range History Simplification; 5.4 Imaging Algorithms Based on Analytical Explicit Spectrums
5.5 Imaging Algorithms Based on Accurate Implicit Spectrums5.6 Comparison of the Algorithms; 5.7 Summary; References; Chapter 6: Imaging Algorithm for Translational Variant Bistatic SAR; 6.1 Introduction; 6.2 Imaging Algorithms for One-Stationary Bistatic SAR; 6.3 Imaging Algorithms for Translational Variant Bistatic SAR with Constant Velocities; 6.4 Summary; References; Chapter 7: Bistatic SAR Parameter Estimation and Motion Compensation; 7.1 Introduction; 7.2 Analyzing the Effects of Motion Errors; 7.3 Estimation of Doppler Parameters; 7.4 Principle and Methods of SAR Motion Compensation
7.5 SummaryReferences; Index
Record Nr. UNINA-9910828765403321
Qiu Xiaolan  
Singapore, : Wiley, : Science Press, [2013]
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Synthetic aperture radar polarimetry / / Jakob van Zyl, Yunjin Kim
Synthetic aperture radar polarimetry / / Jakob van Zyl, Yunjin Kim
Autore Van Zyl Jakob <1967->
Edizione [1st ed.]
Pubbl/distr/stampa Hoboken, N.J., : Wiley, 2011
Descrizione fisica 1 online resource (334 p.)
Disciplina 621.3848/5
Altri autori (Persone) KimYun-jin
Collana JPL space science and technology series
Soggetto topico Synthetic aperture radar
Polarimetric remote sensing
ISBN 1-282-24257-1
9786613813695
1-118-11609-7
1-118-11610-0
1-118-11607-0
Classificazione TEC036000
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto SYNTHETIC APERTURERADAR POLARIMETRY; CONTENTS; NOTE FROM THE SERIES EDITOR; FOREWORD; PREFACE; ACKNOWLEDGMENTS; AUTHORS; 1 SYNTHETIC APERTURE RADAR (SAR) IMAGING BASICS; 1.1 Basic Principles of Radar Imaging; 1.2 Radar Resolution; 1.3 Radar Equation; 1.4 Real Aperture Radar; 1.5 Synthetic Aperture Radar; 1.6 Radar Image Artifacts and Noise; 1.6.1 Range and Azimuth Ambiguities; 1.6.2 Geometric Effects and Projections; 1.6.3 Signal Fading and Speckle; 1.7 Summary; References; 2 BASIC PRINCIPLES OF SAR POLARIMETRY; 2.1 Polarization of Electromagnetic Waves
2.2 Mathematical Representations of Scatterers2.3 Implementation of a Radar Polarimeter; 2.4 Polarization Response; 2.5 Optimum Polarizations; 2.5.1 General (Bistatic) Case; 2.5.2 Backscatter (Monostatic) Case; 2.5.3 Special Case: Single Scatterer in Backscatter (Monostatic) Case; 2.5.4 Special Case: Multiple Scatterers with Reflection Symmetry; 2.5.5 A Numerical Example; 2.6 Contrast Enhancement; 2.6.1 Numerical Example; 2.6.2 Image Example; 2.7 Summary; References; 3 ADVANCED POLARIMETRIC CONCEPTS; 3.1 Vector-Matrix Duality of Scatterer Representation
3.2 Eigenvalue- and Eigenvector-Based Polarimetric Parameters3.2.1 Parameters Used to Describe Randomness in Scattering; 3.2.2 Alpha Angle; 3.3 Decomposition of Polarimetric Scattering; 3.3.1 Scattering Decomposition in the Incoherent Case Using Orthonormal Bases; 3.3.2 Model-Based Scattering Decomposition in the Incoherent Case; 3.4 Image Classification; 3.4.1 Supervised Classification; 3.4.2 Physics-Based Unsupervised Classification; 3.4.3 Combined Unsupervised and Bayes Classification Algorithms; 3.5 Polarimetric SAR Interferometry; 3.6 Summary; References; 4 POLARIMETRIC SAR CALIBRATION
4.1 Polarimetric Radar System Model4.2 Cross Talk Estimation and Removal; 4.3 Copolarized Channel Imbalance Calibration; 4.4 Absolute Radiometric Calibration; 4.4.1 Effect of Topography on Scattering Area; 4.4.2 Effect of Topography on Antenna Pattern Corrections; 4.4.3 AIRSAR Image Example; 4.5 Faraday Rotation; 4.6 Summary; References; 5 APPLICATIONS: MEASUREMENT OF SURFACE SOIL MOISTURE; 5.1 Surface Electrical and Geometrical Properties; 5.1.1 Geometrical Properties; 5.1.2 Electrical Properties; 5.1.3 Penetration Depth; 5.1.4 Soil Moisture Profile; 5.2 Scattering from Bare Rough Surfaces
5.2.1 First-Order Small-Perturbation Model5.2.2 The Integral Equation Model; 5.3 Example Bare Surface Soil Moisture Inversion Models; 5.3.1 The First-Order Small-Perturbation Model; 5.3.2 Algorithm Proposed by Oh et al. (1992); 5.3.3 Algorithm Proposed by Dubois et al.; 5.3.4 Algorithm Proposed by Shi et al. (1997); 5.4 Comparison of the Performance of Bare Surface Inversion Models; 5.5 Parameterizing Scattering Models; 5.6 Inverting the IEM Model; 5.6.1 Using a Data Cube; 5.7 Scattering from Vegetated Terrain; 5.7.1 Scattering from the Vegetation Layer (Scattering Path 1)
5.7.2 Backscatter from the Underlying Ground Surface (Scattering Path 4)
Record Nr. UNINA-9910139579703321
Van Zyl Jakob <1967->  
Hoboken, N.J., : Wiley, 2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui