Bandwidth dependence of emission spectra of selected pulsed-CW radars [[electronic resource] /] / Frank H. Sanders
| Bandwidth dependence of emission spectra of selected pulsed-CW radars [[electronic resource] /] / Frank H. Sanders |
| Autore | Sanders Frank H |
| Pubbl/distr/stampa | [Washington, D.C.] : , : [National Telecommunications and Information Administration], , [2005] |
| Descrizione fisica | v, 13 pages : digital, PDF file |
| Collana | NTIA technical memorandum |
| Soggetto topico | Radar transmitters |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910695168403321 |
Sanders Frank H
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| [Washington, D.C.] : , : [National Telecommunications and Information Administration], , [2005] | ||
| Lo trovi qui: Univ. Federico II | ||
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Comparison of radar spectra on varying azimuths relative to the base of the antenna rotary joint [[electronic resource] /] / Frank H. Sanders, Bradley J. Ramsey
| Comparison of radar spectra on varying azimuths relative to the base of the antenna rotary joint [[electronic resource] /] / Frank H. Sanders, Bradley J. Ramsey |
| Autore | Sanders Frank H |
| Pubbl/distr/stampa | [Washington, D.C.] : , : [National Telecommunications and Information Administration], , [2005] |
| Descrizione fisica | v, 7 pages : digital, PDF file |
| Altri autori (Persone) | RamseyBradley J |
| Collana | NTIA technical memorandum |
| Soggetto topico | Radar transmitters |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910695168503321 |
Sanders Frank H
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| [Washington, D.C.] : , : [National Telecommunications and Information Administration], , [2005] | ||
| Lo trovi qui: Univ. Federico II | ||
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Large aperture array radar systems for automotive applications / / Fabian Schwartau
| Large aperture array radar systems for automotive applications / / Fabian Schwartau |
| Autore | Schwartau Fabian |
| Edizione | [1st ed.] |
| Pubbl/distr/stampa | Göttingen, Germany : , : Cuvillier Verlag, , [2021] |
| Descrizione fisica | 1 online resource (145 pages) |
| Disciplina | 621.3 |
| Soggetto topico |
Automobiles - Navigation systems
Antenna arrays Radar transmitters Telecommunication |
| ISBN | 3-7369-6507-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Intro -- Abstract -- Kurzfassung -- Introduction -- Organization of the Thesis -- Contributions -- Notation -- 1.1 Organization of the Thesis -- 1.1 Organization of the Thesis -- 1.2 Contributions -- 1.3 Notation -- Fundamentals -- Signal Representation -- FMCW Radar -- Chirp Sequence Radar -- Radar Range Equation -- Multiple-Input Multiple-Output -- Resolution -- Far-Field Condition -- Beamforming -- Movement Compensation -- Array Factor and Radiation Pattern -- Array Factor using FFT -- Side Lobe Level -- Synthetic Aperture Radar -- Mono-static Virtual Aperture -- Cell-Averaging CFAR -- 2.1 Signal Representation -- 2.2 FMCW Radar -- 2.3 Chirp Sequence Radar -- 2.4 Radar Range Equation -- 2.5 Multiple-Input Multiple-Output -- 2.6 Resolution -- 2.7 Far-Field Condition -- 2.8 Beamforming -- 2.9 Movement Compensation -- 2.10 Array Factor and Radiation Pattern -- 2.11 Array Factor using FFT -- 2.12 Side Lobe Level -- 2.13 Synthetic Aperture Radar -- 2.14 Mono-static Virtual Aperture -- 2.15 Cell-Averaging CFAR -- 2.15 Cell-Averaging CFAR -- Large Aperture Automotive Radar -- State of the Art -- Radar Systems -- Array Pattern Synthesis -- Requirements -- Array Design -- Array Topology -- Optimization Algorithm -- Final Design -- Array Analysis -- Link-Budget -- Signal Processing Flow -- Summary -- 3.1 State of the Art -- 3.2 Requirements -- 3.3 Array Design -- 3.4 Array Analysis -- 3.5 Link-Budget -- 3.6 Signal Processing Flow -- 3.7 Summary -- Synchronization Demonstrator -- Hardware and Concept -- Radar Chips -- Module Hardware -- Module Synchronization -- Antenna Elements and Array -- Calibration -- System Parameters, Software and Signal Processing -- Simulations, Measurements and Results -- Summary -- 4.1 Hardware and Concept -- 4.2 Calibration -- 4.3 System Parameters, Software and Signal Processing -- 4.4 Simulations, Measurements and Results.
SAR Demonstrator -- Concept and Hardware -- Synthetic Virtual Aperture -- Radar Module -- XY-Table -- Software and Signal Processing -- Measurements -- Synchronization Demonstrator Scenario -- Outdoor Scenario -- Summary -- 5.1 Concept and Hardware -- 5.2 Software and Signal Processing -- 5.3 Measurements -- 5.4 Summary -- Module Position Tolerance Compensation -- Causes and Displacement Estimates -- Impact on the System -- Calibration Algorithm -- Simulation -- Summary -- 6.1 Causes and Displacement Estimates -- 6.2 Impact on the System -- 6.3 Calibration Algorithm -- 6.4 Simulation -- 6.5 Summary -- Conclusions and Future Work -- Appendices -- Appendix Antenna Element Positions -- Appendix Antenna Element Weights -- Appendix Synchronization Demonstrator Components -- Appendix HPBW of a Corner Reflector -- Analytical Comparison to a Plate -- Simulation and Fitting -- List of References -- List of Symbols -- List of Publications. |
| Record Nr. | UNINA-9910795380803321 |
Schwartau Fabian
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| Göttingen, Germany : , : Cuvillier Verlag, , [2021] | ||
| Lo trovi qui: Univ. Federico II | ||
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Large aperture array radar systems for automotive applications / / Fabian Schwartau
| Large aperture array radar systems for automotive applications / / Fabian Schwartau |
| Autore | Schwartau Fabian |
| Edizione | [1st ed.] |
| Pubbl/distr/stampa | Göttingen, Germany : , : Cuvillier Verlag, , [2021] |
| Descrizione fisica | 1 online resource (145 pages) |
| Disciplina | 621.3 |
| Soggetto topico |
Automobiles - Navigation systems
Antenna arrays Radar transmitters Telecommunication |
| ISBN | 3-7369-6507-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Intro -- Abstract -- Kurzfassung -- Introduction -- Organization of the Thesis -- Contributions -- Notation -- 1.1 Organization of the Thesis -- 1.1 Organization of the Thesis -- 1.2 Contributions -- 1.3 Notation -- Fundamentals -- Signal Representation -- FMCW Radar -- Chirp Sequence Radar -- Radar Range Equation -- Multiple-Input Multiple-Output -- Resolution -- Far-Field Condition -- Beamforming -- Movement Compensation -- Array Factor and Radiation Pattern -- Array Factor using FFT -- Side Lobe Level -- Synthetic Aperture Radar -- Mono-static Virtual Aperture -- Cell-Averaging CFAR -- 2.1 Signal Representation -- 2.2 FMCW Radar -- 2.3 Chirp Sequence Radar -- 2.4 Radar Range Equation -- 2.5 Multiple-Input Multiple-Output -- 2.6 Resolution -- 2.7 Far-Field Condition -- 2.8 Beamforming -- 2.9 Movement Compensation -- 2.10 Array Factor and Radiation Pattern -- 2.11 Array Factor using FFT -- 2.12 Side Lobe Level -- 2.13 Synthetic Aperture Radar -- 2.14 Mono-static Virtual Aperture -- 2.15 Cell-Averaging CFAR -- 2.15 Cell-Averaging CFAR -- Large Aperture Automotive Radar -- State of the Art -- Radar Systems -- Array Pattern Synthesis -- Requirements -- Array Design -- Array Topology -- Optimization Algorithm -- Final Design -- Array Analysis -- Link-Budget -- Signal Processing Flow -- Summary -- 3.1 State of the Art -- 3.2 Requirements -- 3.3 Array Design -- 3.4 Array Analysis -- 3.5 Link-Budget -- 3.6 Signal Processing Flow -- 3.7 Summary -- Synchronization Demonstrator -- Hardware and Concept -- Radar Chips -- Module Hardware -- Module Synchronization -- Antenna Elements and Array -- Calibration -- System Parameters, Software and Signal Processing -- Simulations, Measurements and Results -- Summary -- 4.1 Hardware and Concept -- 4.2 Calibration -- 4.3 System Parameters, Software and Signal Processing -- 4.4 Simulations, Measurements and Results.
SAR Demonstrator -- Concept and Hardware -- Synthetic Virtual Aperture -- Radar Module -- XY-Table -- Software and Signal Processing -- Measurements -- Synchronization Demonstrator Scenario -- Outdoor Scenario -- Summary -- 5.1 Concept and Hardware -- 5.2 Software and Signal Processing -- 5.3 Measurements -- 5.4 Summary -- Module Position Tolerance Compensation -- Causes and Displacement Estimates -- Impact on the System -- Calibration Algorithm -- Simulation -- Summary -- 6.1 Causes and Displacement Estimates -- 6.2 Impact on the System -- 6.3 Calibration Algorithm -- 6.4 Simulation -- 6.5 Summary -- Conclusions and Future Work -- Appendices -- Appendix Antenna Element Positions -- Appendix Antenna Element Weights -- Appendix Synchronization Demonstrator Components -- Appendix HPBW of a Corner Reflector -- Analytical Comparison to a Plate -- Simulation and Fitting -- List of References -- List of Symbols -- List of Publications. |
| Record Nr. | UNINA-9910809882703321 |
Schwartau Fabian
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| Göttingen, Germany : , : Cuvillier Verlag, , [2021] | ||
| Lo trovi qui: Univ. Federico II | ||
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Waveform design and diversity for advanced radar systems / / edited by Fulvio Gini, Antonio De Maio and Lee Patton
| Waveform design and diversity for advanced radar systems / / edited by Fulvio Gini, Antonio De Maio and Lee Patton |
| Pubbl/distr/stampa | London, U.K., : Institution of Engineering and Technology, 2012 |
| Descrizione fisica | 1 online resource (573 p.) |
| Disciplina | 621.3848 |
| Altri autori (Persone) |
De MaioAntonio
GiniFulvio PattonLee |
| Collana | IET radar, sonar and navigation series |
| Soggetto topico |
Radar transmitters
Radio waves Radio - Transmitter-receivers |
| ISBN |
1-62198-325-0
1-283-63788-X 1-84919-266-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Contents; Waveform diversity: a way forward to the future of the radar - A. De Maio, A. Farina, F. Gini, L. Patton and M.Wicks; 1. Classical radar waveform design - Nadav Levanon; 2. Information theory and radar waveform design - Mark R. Bell and Mir Hamza Mahmood; 3. Multistatic ambiguity function and sensor placement strategies - Ivan Bradaric, Gerard T. Capraro and Michael C.Wicks; 4. MIMO radar waveform design - Ming Xue, Jian Li and Petre Stoica; 5. Passive bistatic radar waveforms - Hugh D. Griffiths and Chris J. Baker
6. Biologically inspired waveform diversity - Chris J. Baker, Hugh D. Griffiths and Alessio Balleri7. Continuous waveforms for automotive radar systems - Hermann Rohling and Matthias Kronauge; 8. Multistatic and waveform-diverse radar pulse compression - Shannon D. Blunt, Thomas Higgins, Aaron K. Shackelford and Karl Gerlach; 9. Optimal channel selection in a multistatic radar system - M.S. Greco, P. Stinco, F. Gini, A. Farina and M. Rangaswamy; 10. Waveform design for non-cooperative radar networks - Antonio De Maio, Silvio De Nicola, Alfonso Farina and Michael C. Wicks 11. Waveform design based on phase conjugation and time reversal - Lucio Bellomo, Marc Saillard, Sébastien Pioch, Frédéric Barbaresco and Marc Lesturgie12. Space-time diversity for active antenna systems - J.-P. Guyvarch, L. Savy and F. Le Chevalier; 13. Autocorrelation constraints in radar waveform optimization for detection - Lee K. Patton and Brian D. Rigling; 14. Adaptive waveform design for radar target classification - Nathan A. Goodman 15. Adaptive waveform design for tracking - Antonia Papandreou-Suppappola, Jason Jun Zhang, Bhavana Chakraborty, Ying Li, Darryl Morrell and Sandeep P. Sira16. Adaptive polarization design for target detection and tracking - Martin Hurtado, Sandeep Gogineni and Arye Nehorai; 17. Knowledge-aided transmit signal and receive filter design in signal-dependent clutter - A. Aubry, A. De Maio, A. Farina and M.Wicks; Notation; Index |
| Record Nr. | UNINA-9911006514203321 |
| London, U.K., : Institution of Engineering and Technology, 2012 | ||
| Lo trovi qui: Univ. Federico II | ||
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