Non-line-of-sight radar /:
Bringing together the essential underpinnings and techniques required to develop and field a viable NLOS radar, this book presents many examples, including electromagnetic radiation propagation in urban NLOS environments, predictive ray-tracing techniques, and more. --
Gespeichert in:
Hauptverfasser: | , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Boston :
Artech House,
[2019]
|
Schriftenreihe: | Artech House radar library.
|
Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | Bringing together the essential underpinnings and techniques required to develop and field a viable NLOS radar, this book presents many examples, including electromagnetic radiation propagation in urban NLOS environments, predictive ray-tracing techniques, and more. -- |
Beschreibung: | 1 online resource : illustrations |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781630815332 1630815330 |
Internformat
MARC
LEADER | 00000cam a2200000 i 4500 | ||
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245 | 1 | 0 | |a Non-line-of-sight radar / |c Brian C. Watson, Joseph R. Guerci. |
264 | 1 | |a Boston : |b Artech House, |c [2019] | |
264 | 4 | |c ©2019 | |
300 | |a 1 online resource : |b illustrations | ||
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588 | 0 | |a Online resource; title from PDF title page (EBSCO, viewed April 24, 2019) | |
504 | |a Includes bibliographical references and index. | ||
520 | |a Bringing together the essential underpinnings and techniques required to develop and field a viable NLOS radar, this book presents many examples, including electromagnetic radiation propagation in urban NLOS environments, predictive ray-tracing techniques, and more. -- |c Edited summary from book. | ||
505 | 0 | |a Intro -- 1 Introduction -- 1.1 Background -- 1.2 NLOS Radar Overview -- 1.3 Chapter Outline -- References -- 2 Review of Ground Surveillance Sensors -- 2.1 MTI Radar -- 2.2 Kalman Filter -- 2.2.1 Linear Kalman Filter -- 2.2.2 Extended Kalman Filter -- 2.3 Multiple Hypothesis Tracking -- 2.4 Bayesian Particle Filters -- 2.5 Track-Before-Detect -- References -- 3 Exploitation of Multipath Physics in Det -- 3.1 Introduction -- 3.2 Review of EM Propagation and Multipa -- 3.2.1 Diffraction Assumption -- 3.2.2 Ray Tracing -- 3.2.3 Modeling Antenna Directivity and G -- 3.2.4 Modeling Atmospheric Loss -- 3.2.5 Treatment of Diffuse Scattering -- 3.2.6 Modeling Surface Reflection Polari -- 3.2.7 Range-Doppler Processing -- 3.2.8 MTI Signal Processing -- 3.3 Geometric Analysis: A Basic EM Simul -- 3.4 Full Electromagnetic Simulations -- 3.5 Incorporating Building Geometries -- 3.6 Radar System Analysis for Multipath -- 3.7 Track Simulations of the City Model -- 3.7.1 Track 1 (Urban) Simulation of Towe -- 3.7.2 Track 2 (Street) Simulation of Tow -- 3.7.3 Track 3 (Interstate) of Tower Moun -- 3.7.4 Tower Simulation Summary -- 3.8 Simulations of Phoenix/Tempe and Com -- 3.9 NLOS Tracking -- 3.9.1 MER Data Collection Description -- 3.9.2 Validation of Multipath Signatures -- 3.9.3 KA-MAP NLOS Tracker -- 3.9.4 NLOS Tracker Results -- 3.10 Summary -- References -- 4 Terrain Databases -- 4.1 Terrain Databases -- 4.1.1 DTED -- 4.1.2 Land Cover -- 4.1.3 Scattering Power versus Incident A -- 4.2 Urban Databases -- 4.2.1 Extracting Building Geometries fro -- 4.2.2 Automatic Corner Detection Using I -- 4.2.3 Measuring Building Geometries from -- 4.2.4 Existing 3-D Urban Models -- References -- 5 High-Fidelity Modeling and Simulation -- 5.1 Geometrics Optics Simulations of Ter -- 5.1.1 Terrain Scattering LOS Calculation -- 5.1.2 Terrain Scattering LOS Calculation. | |
505 | 8 | |a 5.2 Diffraction -- 5.2.1 KED -- 5.2.2 UTD -- 5.3 SEKE -- 5.4 Radar Simulations Using Elliptical C -- 5.5 Commercial Software -- References -- 6 Computing Hardware Acceleration Strategi -- 6.1 GPU Computational Model -- 6.2 GPU Programming -- 6.3 FPGA -- 6.4 Ray-Tracing Line-of-Sight Algorithms -- 6.4.1 Shapes and Ray Intersections -- 6.4.2 Intersection Acceleration Algorith -- 6.5 GPU Ray-Tracing Example -- 6.6 FPGA Ray Tracing -- References -- About the Authors -- Index. | |
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650 | 0 | |a Signal processing. |0 http://id.loc.gov/authorities/subjects/sh85122397 | |
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700 | 1 | |a Guerci, J. R., |e author. | |
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Datensatz im Suchindex
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adam_text | |
any_adam_object | |
author | Watson, Brian C. Guerci, J. R. |
author_facet | Watson, Brian C. Guerci, J. R. |
author_role | aut aut |
author_sort | Watson, Brian C. |
author_variant | b c w bc bcw j r g jr jrg |
building | Verbundindex |
bvnumber | localFWS |
callnumber-first | T - Technology |
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callnumber-sort | TK 46575 |
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contents | Intro -- 1 Introduction -- 1.1 Background -- 1.2 NLOS Radar Overview -- 1.3 Chapter Outline -- References -- 2 Review of Ground Surveillance Sensors -- 2.1 MTI Radar -- 2.2 Kalman Filter -- 2.2.1 Linear Kalman Filter -- 2.2.2 Extended Kalman Filter -- 2.3 Multiple Hypothesis Tracking -- 2.4 Bayesian Particle Filters -- 2.5 Track-Before-Detect -- References -- 3 Exploitation of Multipath Physics in Det -- 3.1 Introduction -- 3.2 Review of EM Propagation and Multipa -- 3.2.1 Diffraction Assumption -- 3.2.2 Ray Tracing -- 3.2.3 Modeling Antenna Directivity and G -- 3.2.4 Modeling Atmospheric Loss -- 3.2.5 Treatment of Diffuse Scattering -- 3.2.6 Modeling Surface Reflection Polari -- 3.2.7 Range-Doppler Processing -- 3.2.8 MTI Signal Processing -- 3.3 Geometric Analysis: A Basic EM Simul -- 3.4 Full Electromagnetic Simulations -- 3.5 Incorporating Building Geometries -- 3.6 Radar System Analysis for Multipath -- 3.7 Track Simulations of the City Model -- 3.7.1 Track 1 (Urban) Simulation of Towe -- 3.7.2 Track 2 (Street) Simulation of Tow -- 3.7.3 Track 3 (Interstate) of Tower Moun -- 3.7.4 Tower Simulation Summary -- 3.8 Simulations of Phoenix/Tempe and Com -- 3.9 NLOS Tracking -- 3.9.1 MER Data Collection Description -- 3.9.2 Validation of Multipath Signatures -- 3.9.3 KA-MAP NLOS Tracker -- 3.9.4 NLOS Tracker Results -- 3.10 Summary -- References -- 4 Terrain Databases -- 4.1 Terrain Databases -- 4.1.1 DTED -- 4.1.2 Land Cover -- 4.1.3 Scattering Power versus Incident A -- 4.2 Urban Databases -- 4.2.1 Extracting Building Geometries fro -- 4.2.2 Automatic Corner Detection Using I -- 4.2.3 Measuring Building Geometries from -- 4.2.4 Existing 3-D Urban Models -- References -- 5 High-Fidelity Modeling and Simulation -- 5.1 Geometrics Optics Simulations of Ter -- 5.1.1 Terrain Scattering LOS Calculation -- 5.1.2 Terrain Scattering LOS Calculation. 5.2 Diffraction -- 5.2.1 KED -- 5.2.2 UTD -- 5.3 SEKE -- 5.4 Radar Simulations Using Elliptical C -- 5.5 Commercial Software -- References -- 6 Computing Hardware Acceleration Strategi -- 6.1 GPU Computational Model -- 6.2 GPU Programming -- 6.3 FPGA -- 6.4 Ray-Tracing Line-of-Sight Algorithms -- 6.4.1 Shapes and Ray Intersections -- 6.4.2 Intersection Acceleration Algorith -- 6.5 GPU Ray-Tracing Example -- 6.6 FPGA Ray Tracing -- References -- About the Authors -- Index. |
ctrlnum | (OCoLC)1090291486 |
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dewey-ones | 621 - Applied physics |
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dewey-search | 621.3848 |
dewey-sort | 3621.3848 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Electronic eBook |
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id | ZDB-4-EBA-on1090291486 |
illustrated | Illustrated |
indexdate | 2024-11-27T13:29:24Z |
institution | BVB |
isbn | 9781630815332 1630815330 |
language | English |
oclc_num | 1090291486 |
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series | Artech House radar library. |
series2 | Artech House radar series |
spelling | Watson, Brian C., author. Non-line-of-sight radar / Brian C. Watson, Joseph R. Guerci. Boston : Artech House, [2019] ©2019 1 online resource : illustrations text txt rdacontent computer c rdamedia online resource cr rdacarrier Artech House radar series Online resource; title from PDF title page (EBSCO, viewed April 24, 2019) Includes bibliographical references and index. Bringing together the essential underpinnings and techniques required to develop and field a viable NLOS radar, this book presents many examples, including electromagnetic radiation propagation in urban NLOS environments, predictive ray-tracing techniques, and more. -- Edited summary from book. Intro -- 1 Introduction -- 1.1 Background -- 1.2 NLOS Radar Overview -- 1.3 Chapter Outline -- References -- 2 Review of Ground Surveillance Sensors -- 2.1 MTI Radar -- 2.2 Kalman Filter -- 2.2.1 Linear Kalman Filter -- 2.2.2 Extended Kalman Filter -- 2.3 Multiple Hypothesis Tracking -- 2.4 Bayesian Particle Filters -- 2.5 Track-Before-Detect -- References -- 3 Exploitation of Multipath Physics in Det -- 3.1 Introduction -- 3.2 Review of EM Propagation and Multipa -- 3.2.1 Diffraction Assumption -- 3.2.2 Ray Tracing -- 3.2.3 Modeling Antenna Directivity and G -- 3.2.4 Modeling Atmospheric Loss -- 3.2.5 Treatment of Diffuse Scattering -- 3.2.6 Modeling Surface Reflection Polari -- 3.2.7 Range-Doppler Processing -- 3.2.8 MTI Signal Processing -- 3.3 Geometric Analysis: A Basic EM Simul -- 3.4 Full Electromagnetic Simulations -- 3.5 Incorporating Building Geometries -- 3.6 Radar System Analysis for Multipath -- 3.7 Track Simulations of the City Model -- 3.7.1 Track 1 (Urban) Simulation of Towe -- 3.7.2 Track 2 (Street) Simulation of Tow -- 3.7.3 Track 3 (Interstate) of Tower Moun -- 3.7.4 Tower Simulation Summary -- 3.8 Simulations of Phoenix/Tempe and Com -- 3.9 NLOS Tracking -- 3.9.1 MER Data Collection Description -- 3.9.2 Validation of Multipath Signatures -- 3.9.3 KA-MAP NLOS Tracker -- 3.9.4 NLOS Tracker Results -- 3.10 Summary -- References -- 4 Terrain Databases -- 4.1 Terrain Databases -- 4.1.1 DTED -- 4.1.2 Land Cover -- 4.1.3 Scattering Power versus Incident A -- 4.2 Urban Databases -- 4.2.1 Extracting Building Geometries fro -- 4.2.2 Automatic Corner Detection Using I -- 4.2.3 Measuring Building Geometries from -- 4.2.4 Existing 3-D Urban Models -- References -- 5 High-Fidelity Modeling and Simulation -- 5.1 Geometrics Optics Simulations of Ter -- 5.1.1 Terrain Scattering LOS Calculation -- 5.1.2 Terrain Scattering LOS Calculation. 5.2 Diffraction -- 5.2.1 KED -- 5.2.2 UTD -- 5.3 SEKE -- 5.4 Radar Simulations Using Elliptical C -- 5.5 Commercial Software -- References -- 6 Computing Hardware Acceleration Strategi -- 6.1 GPU Computational Model -- 6.2 GPU Programming -- 6.3 FPGA -- 6.4 Ray-Tracing Line-of-Sight Algorithms -- 6.4.1 Shapes and Ray Intersections -- 6.4.2 Intersection Acceleration Algorith -- 6.5 GPU Ray-Tracing Example -- 6.6 FPGA Ray Tracing -- References -- About the Authors -- Index. Radar. http://id.loc.gov/authorities/subjects/sh85110293 Signal processing. http://id.loc.gov/authorities/subjects/sh85122397 Radar https://id.nlm.nih.gov/mesh/D011825 Radar. Traitement du signal. radar. aat TECHNOLOGY & ENGINEERING Mechanical. bisacsh Radar fast Signal processing fast Technology, Engineering, Agriculture Technologie, Ingenieurswissenschaft, Landwirtschaft Technologie, ingénierie et agriculture Electronics & communications engineering Elektronik, Nachrichtentechnik Ingénierie électronique et technologie des communications Communications engineering / telecommunications Nachrichtententechnik, Telekommunikation Technologie des communications / télécommunications Radar technology Radar Technologie des radars Guerci, J. R., author. has work: Non-line-of-sight radar (Text) https://id.oclc.org/worldcat/entity/E39PCGJDgHQ6f6g3V3h4qRTcxC https://id.oclc.org/worldcat/ontology/hasWork Print version: Watson, Brian C. Non-line-of-sight radar. Boston : Artech House, 2019 9781630815318 (OCoLC)1061820130 Artech House radar library. http://id.loc.gov/authorities/names/n84729160 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=2099865 Volltext |
spellingShingle | Watson, Brian C. Guerci, J. R. Non-line-of-sight radar / Artech House radar library. Intro -- 1 Introduction -- 1.1 Background -- 1.2 NLOS Radar Overview -- 1.3 Chapter Outline -- References -- 2 Review of Ground Surveillance Sensors -- 2.1 MTI Radar -- 2.2 Kalman Filter -- 2.2.1 Linear Kalman Filter -- 2.2.2 Extended Kalman Filter -- 2.3 Multiple Hypothesis Tracking -- 2.4 Bayesian Particle Filters -- 2.5 Track-Before-Detect -- References -- 3 Exploitation of Multipath Physics in Det -- 3.1 Introduction -- 3.2 Review of EM Propagation and Multipa -- 3.2.1 Diffraction Assumption -- 3.2.2 Ray Tracing -- 3.2.3 Modeling Antenna Directivity and G -- 3.2.4 Modeling Atmospheric Loss -- 3.2.5 Treatment of Diffuse Scattering -- 3.2.6 Modeling Surface Reflection Polari -- 3.2.7 Range-Doppler Processing -- 3.2.8 MTI Signal Processing -- 3.3 Geometric Analysis: A Basic EM Simul -- 3.4 Full Electromagnetic Simulations -- 3.5 Incorporating Building Geometries -- 3.6 Radar System Analysis for Multipath -- 3.7 Track Simulations of the City Model -- 3.7.1 Track 1 (Urban) Simulation of Towe -- 3.7.2 Track 2 (Street) Simulation of Tow -- 3.7.3 Track 3 (Interstate) of Tower Moun -- 3.7.4 Tower Simulation Summary -- 3.8 Simulations of Phoenix/Tempe and Com -- 3.9 NLOS Tracking -- 3.9.1 MER Data Collection Description -- 3.9.2 Validation of Multipath Signatures -- 3.9.3 KA-MAP NLOS Tracker -- 3.9.4 NLOS Tracker Results -- 3.10 Summary -- References -- 4 Terrain Databases -- 4.1 Terrain Databases -- 4.1.1 DTED -- 4.1.2 Land Cover -- 4.1.3 Scattering Power versus Incident A -- 4.2 Urban Databases -- 4.2.1 Extracting Building Geometries fro -- 4.2.2 Automatic Corner Detection Using I -- 4.2.3 Measuring Building Geometries from -- 4.2.4 Existing 3-D Urban Models -- References -- 5 High-Fidelity Modeling and Simulation -- 5.1 Geometrics Optics Simulations of Ter -- 5.1.1 Terrain Scattering LOS Calculation -- 5.1.2 Terrain Scattering LOS Calculation. 5.2 Diffraction -- 5.2.1 KED -- 5.2.2 UTD -- 5.3 SEKE -- 5.4 Radar Simulations Using Elliptical C -- 5.5 Commercial Software -- References -- 6 Computing Hardware Acceleration Strategi -- 6.1 GPU Computational Model -- 6.2 GPU Programming -- 6.3 FPGA -- 6.4 Ray-Tracing Line-of-Sight Algorithms -- 6.4.1 Shapes and Ray Intersections -- 6.4.2 Intersection Acceleration Algorith -- 6.5 GPU Ray-Tracing Example -- 6.6 FPGA Ray Tracing -- References -- About the Authors -- Index. Radar. http://id.loc.gov/authorities/subjects/sh85110293 Signal processing. http://id.loc.gov/authorities/subjects/sh85122397 Radar https://id.nlm.nih.gov/mesh/D011825 Radar. Traitement du signal. radar. aat TECHNOLOGY & ENGINEERING Mechanical. bisacsh Radar fast Signal processing fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85110293 http://id.loc.gov/authorities/subjects/sh85122397 https://id.nlm.nih.gov/mesh/D011825 |
title | Non-line-of-sight radar / |
title_auth | Non-line-of-sight radar / |
title_exact_search | Non-line-of-sight radar / |
title_full | Non-line-of-sight radar / Brian C. Watson, Joseph R. Guerci. |
title_fullStr | Non-line-of-sight radar / Brian C. Watson, Joseph R. Guerci. |
title_full_unstemmed | Non-line-of-sight radar / Brian C. Watson, Joseph R. Guerci. |
title_short | Non-line-of-sight radar / |
title_sort | non line of sight radar |
topic | Radar. http://id.loc.gov/authorities/subjects/sh85110293 Signal processing. http://id.loc.gov/authorities/subjects/sh85122397 Radar https://id.nlm.nih.gov/mesh/D011825 Radar. Traitement du signal. radar. aat TECHNOLOGY & ENGINEERING Mechanical. bisacsh Radar fast Signal processing fast |
topic_facet | Radar. Signal processing. Radar Traitement du signal. radar. TECHNOLOGY & ENGINEERING Mechanical. Signal processing |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=2099865 |
work_keys_str_mv | AT watsonbrianc nonlineofsightradar AT guercijr nonlineofsightradar |