Signal processing for passive bistatic radar / Mateusz Malanowski
Material type:
TextSeries: Artech House radar libraryPublisher: Norwood, MA : Artech House, [2019]Description: 1 online resource (Online resource) : illustrationsContent type: - text
- computer
- online resource
- 9781630816643
- 1630816647
- Bistatic radar
- Signal processing
- 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
- Computing & Information Technology
- EDV und Informationstechnologie
- Informatique et technologies de l'information
- Computer science
- Informatik
- Informatique
- Signal processing
- Signalverarbeitung
- Traitement de signal
- 621.38485 23
- TK6592.B57
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
eBook
|
e-Library | EBSCO Technology | Available |
Description based on print version record
Includes bibliographical references and index
Intro; Signal Processing for Passive Bistatic Radar; Contents; Preface ix; Chapter 1 Introduction 1; 1.1 BOOK CONTENT; 1.2 HISTORICAL BACKGROUND; Chapter 2 Passive Bistatic Radar Principles 9; 2.1 INTRODUCTION; 2.2 PASSIVE RADAR GEOMETRY; 2.3 BISTATIC RANGE EQUATION; 2.4 EVALUATION OF THE ILLUMINATING SIGNAL USINGTHE AMBIGUITY FUNCTION; 2.5 ILLUMINATORS OF OPPORTUNITY; 2.6 SUMMARY; Chapter 3 Beamforming 85; 3.1 INTRODUCTION; 3.2 UNIFORM LINEAR ARRAY (ULA); 3.3 UNIFORM CIRCULAR ARRAY (UCA); 3.4 COMPARISON OF ULA AND UCA; 3.5 ARRAYS OPERATING IN A WIDE FREQUENCY BAND; 3.6 ADAPTIVE BEAMFORMING
3.7 DIGITAL SIGNAL RECONSTRUCTION3.8 NUMERICAL RESULTS; 3.9 SOME PRACTICAL REMARKS; 3.10 SUMMARY; Chapter 4 Correlation Processing 129; 4.1 INTRODUCTION; 4.2 SIGNAL MODEL AND CORRELATION PROCESSING; 4.3 PRACTICAL CALCULATION OF THE CROSSAMBIGUITYFUNCTION; 4.4 REDUCTION OF DETERMINISTIC SIDELOBES; 4.5 INTEGRATION GAIN; 4.6 EXTENDED SIGNAL MODEL AND CORRELATION PROCESSING; 4.7 NUMERICAL RESULTS; 4.8 SUMMARY; Chapter 5 Clutter Filtering 171; 5.1 INTRODUCTION; 5.2 ITERATIVE ALGORITHMS; 5.3 BLOCK ALGORITHMS; 5.4 NUMERICAL RESULTS; 5.5 SUMMARY; Chapter 6 Detection and Estimation 203
6.1 INTRODUCTION6.2 TARGET DETECTION IN PASSIVE RADAR; 6.3 BISTATIC PARAMETER ESTIMATION IN PASSIVE RADAR; 6.4 SUMMARY; Chapter 7 Bistatic Tracking 231; 7.1 INTRODUCTION; 7.2 KALMAN FILTERING; 7.3 THE TRACKING ALGORITHM; 7.4 NUMERICAL RESULTS; 7.5 SUMMARY; Chapter 8 Target Localization 251; 8.1 INTRODUCTION; 8.2 MULTISTATIC TARGET LOCALIZATION; 8.3 DOABASEDLOCALIZATION; 8.4 SUMMARY; Chapter 9 Cartesian Tracking 287; 9.1 INTRODUCTION; 9.2 EXTENDED KALMAN FILTER; 9.3 TWOSTAGETRACKING ALGORITHM; 9.4 NUMERICAL RESULTS; 9.5 SUMMARY; Chapter 10 Examples of Passive Radar Systems 311
10.1 INTRODUCTION10.2 ERA, CZECH REPUBLIC; 10.3 FRAUNHOFER FHR, GERMANY; 10.4 HENSOLDT, GERMANY; 10.5 PITRADWAR,POLAND; 10.6 THALES, ONERA, FRANCE; 10.7 UNIVERSITY OF PISA, CNIT, ITALY; 10.8 WARSAW UNIVERSITY OF TECHNOLOGY, POLAND; 10.9 SUMMARY; Chapter 11 Conclusions 345; 11.1 THE FUTURE OF PASSIVE RADAR; Acronyms and Abbreviations 353; About the Author 357; Index 359
Added to collection customer.56279.3