Inverse Synthetic Aperture Radar Imaging With MATLAB Algorithms. Caner Ozdemir

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Tank target in ISAR simulation for the look‐aspect dir...Figure 10.12 LP‐ISAR images of the “Military Tank” target for the radar look...Figure 10.13 CP‐ISAR images of the “Military Tank” target for the radar look...Figure 10.14 Pauli images of the “Military Tank” target for the radar look d...Figure 10.15 Various scattering mechanism from different parts of Military T...

      11 Chapter 11Figure 11.1 Geometry for determination of far‐ and near‐field regions of a r...Figure 11.2 Geometry for 3D near‐field ISAR imaging.Figure 11.3 Geometrical explanation of Fourier slice theorem.Figure 11.4 Geometry for 2D near‐field ISAR imaging.Figure 11.5 A set of point targets used in near‐field ISAR simulation.Figure 11.6 Numerically collected backscattered electric field in (a) fϕ...Figure 11.7 ISAR images for the point targets in Figure 11.5 by applying (a)...Figure 11.8 (a) Back‐hoe loader target, (b) a scene from the measurement, an...Figure 11.9 2D near‐field ISAR image of back‐hoe loader target (a) standard ...Figure 11.10 A scene from the 2D near‐field ISAR imaging measurement.Figure 11.11 Anechoic chamber geometry for 2D near‐field imaging of a small‐...Figure 11.12 2D near‐field ISAR image of hand‐gun target using (a) focusing ...

      12 Chapter 12Figure 12.1 Geometry for the GPR problem. (a) monostatic scenario, (b) bista...Figure 12.2 (a) Geometry for the A‐scan GPR measurement, (b) example of a me...Figure 12.3 (a) Geometry for the B‐scan GPR measurement, (b) example of a me...Figure 12.4 (a) Geometry for the C‐scan GPR measurement, (b) a measured exam...Figure 12.5 Geometry for (a) the stripmap SAR problem, (b) the B‐scan GPR pr...Figure 12.6 Flow chart representation of SAR based ωk migration algori...Figure 12.7 (a) Configuration of two closely placed pipes buried in sand med...Figure 12.8 The B‐scan GPR geometry for the BPA formulation.Figure 12.9 Flow chart representation of SAR based filtered BPA.Figure 12.10 Focused image after SAR based BPA.Figure 12.11 A typical application geometry for TWIR.Figure 12.12 SAR set‐up for TWIR problem. (a) with linear array antennas, an...Figure 12.13 An example of SAR‐based TWIR application. (a) measurement geome...Figure 12.14 (a) The pattern of a typical stand‐alone antenna, (b) The patte...Figure 12.15 (a) The conventional ISAR scenario based on two‐way EM backscatt...Figure 12.16 The path of the radiated signal which is scattered off a point ...Figure 12.17 An example showing the effect of the u‐to‐x transformation. (a)...Figure 12.18 (a) Aircraft's CAD model used for ASAR imaging example. (b) The...Figure 12.19 2D ASAR image slices in the xy plane for different z cuts.Figure 12.20 2D projected ASAR image obtained by summing up all z – slices....Figure 12.21 (a) The conventional ISAR scenario based on two‐way EM backscat...Figure 12.22 Conceptual comparison of different radar imaging scenarios.Figure 12.23 The geometry for ACSAR imaging.Figure 12.24 The geometry for generating the ACSAR image of a ship‐like plat...Figure 12.25 2D projected ACSAR images of a ship platform in (a) Ru plane...Figure 12.26 2D projected ACSAR images of a ship platform. (a) projected y −...Figure 12.27 Applying ACSAR approach to the GPR problem.Figure 12.28 2D projected ACSAR images of buried bottle beneath the sand sur...

      Guide

      1  Cover Page

      2  Series Page

      3  Title Page

      4  Copyright Page

      5  Dedication Page

      6  Preface to the Second Edition

      7  Acknowledgments

      8  Acronyms

      9  Table of Contents

      10  Begin Reading

      11  Appendix

      12  Index

      13  Wiley Series in Microwave and Optical Engineering

      14  WILEY END USER LICENSE AGREEMENT

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