Motion and gesture sensing with radar /:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Norwood, MA
Artech House
[2022]
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Schlagworte: | |
Online-Zugang: | Volltext |
Beschreibung: | 1 online resource : illustrations.. |
ISBN: | 9781630818241 1630818240 9781630818234 1630818232 |
Internformat
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245 | 1 | 0 | |a Motion and gesture sensing with radar / |c Jian Wang, Jaime Lien. |
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505 | 0 | |a Motion and Gesture Sensing with Radar -- Contents -- Preface -- 1 Introduction -- 1.1 Radar Basics and Types -- 1.2 Frequency Bands and Civil Applicatio -- 1.3 Radar Standardization -- 1.4 Book Outline -- References -- 2 Radar System Architecture and Range Equation -- 2.1 Basic Hardware Components of Radar -- 2.1.1 Transmitter/Receiver (Transceiver) -- 2.1.2 Waveform Generator -- 2.1.3 Antennas -- 2.2 LFM Radar Architecture -- 2.3 Receiver Noise -- 2.4 Dynamic Range -- 2.5 Radar Range Equation -- 2.6 Radar System Integration -- References -- 3 Radar Signal Model and Demodulation | |
505 | 8 | |a 3.1 Signal Modeling -- 3.1.1 Point Target -- 3.1.2 Distributed Target -- 3.2 Radar Waveforms and Demodulation -- 3.2.1 Matched Filter -- 3.2.2 Ambiguity Function -- 3.3 Frequency Modulated Waveforms -- 3.3.1 Conventional FMCW Waveforms -- 3.3.2 LFM Chirp Train (Fast Chirp) -- 3.3.3 Stretch Processing -- 3.4 Phase Coded Waveforms -- 3.4.1 Golay Codes -- 3.5 Summary -- References -- 4 Radar Signal Processing -- 4.1 Range Processing (Fast Time Processi -- 4.1.1 Minimum Range and Maximum Unambigu -- 4.1.2 Pulse Compression -- 4.1.3 Range Resolution -- 4.1.4 Range Accuracy | |
505 | 8 | |a 4.1.5 Time Sidelobes Control -- 4.2 Doppler Processing (Slow Time Proces -- 4.2.1 Sampling Frequency in Slow Time Do -- 4.2.2 CIT Window Size -- 4.2.3 MTI and Clutter Cancellation -- 4.2.4 Moving Target Detector (Filter Ban -- 4.2.5 Doppler (Radial Velocity) Resoluti -- 4.2.6 Doppler (Radial Velocity) Accuracy -- 4.2.7 Doppler Sidelobes Control -- 4.3 Summary -- References -- 5 Array Signal Processing -- 5.1 Array Manifold and Model -- 5.2 Conventional Beamforming -- 5.2.1 Uniform Array and FFT Based Beamfoming -- 5.2.2 Array Resolution, Accuracy, and Sidelobes Control | |
505 | 8 | |a 5.2.3 Digital Beamforming Versus Analog Beamforming -- 5.3 High-Resolution Methods -- 5.4 MIMO -- 5.4.1 Virtual Array -- 5.4.2 Basic MIMO Waveforms -- 5.4.3 Summary -- References -- 6 Motion and Presence Detection -- 6.1 Introduction -- 6.2 Detection Theory -- 6.2.1 Hypothesis Testing and Decision Rules -- 6.2.2 Neyman-Pearson Criterion and Likelihood Ratio Test -- 6.3 Signal and Noise Models -- 6.3.1 Target RCS Fluctuations -- 6.3.2 Noise -- 6.4 Threshold Detection -- 6.4.1 Optimal Detection of Nonfluctuating Target -- 6.4.2 Detection Performance -- 6.4.3 Impact of Target Fluctuation | |
505 | 8 | |a 6.5 Constant False Alarm Rate Detection -- 6.5.1 Cell-Averaging CFAR -- 6.5.2 Greatest-of and Least-of CFAR -- 6.5.3 Ordered Statistics CFAR -- 6.6 Clutter Rejection -- 6.6.1 Regions of Interest -- 6.6.2 Doppler Filtering -- 6.6.3 Spatial Filtering -- 6.6.4 Adaptive and Machine Learned Clutter Filters -- 6.7 Interference -- 6.8 Detection Pipeline Design -- References -- 7 Radar Machine Learning -- 7.1 Machine Learning Fundamentals -- 7.1.1 Supervised Learning -- 7.1.2 Linear Regression -- 7.1.3 Logistic Regression -- 7.1.4 Beyond Linear Models -- 7.1.5 Neural Networks | |
650 | 0 | |a Radar |x Automatic detection. |0 http://id.loc.gov/authorities/subjects/sh85110296 | |
650 | 0 | |a Motion detectors. |0 http://id.loc.gov/authorities/subjects/sh2013001738 | |
650 | 0 | |a Gesture recognition (Computer science) |0 http://id.loc.gov/authorities/subjects/sh2021008099 | |
650 | 6 | |a Radar |x Détection automatique. | |
650 | 6 | |a Détecteurs de mouvement. | |
650 | 7 | |a Gesture recognition (Computer science) |2 fast | |
650 | 7 | |a Motion detectors |2 fast | |
650 | 7 | |a Radar |x Automatic detection |2 fast | |
700 | 1 | |a Lien, Jaime, |e author. |0 http://id.loc.gov/authorities/names/no2023006607 | |
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Datensatz im Suchindex
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adam_text | |
any_adam_object | |
author | Wang, Jian Lien, Jaime |
author_GND | http://id.loc.gov/authorities/names/no2023006607 |
author_facet | Wang, Jian Lien, Jaime |
author_role | aut aut |
author_sort | Wang, Jian |
author_variant | j w jw j l jl |
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bvnumber | localFWS |
callnumber-first | T - Technology |
callnumber-label | TK6575 2022EB |
callnumber-raw | TK6575 2022eb |
callnumber-search | TK6575 2022eb |
callnumber-sort | TK 46575 42022EB |
callnumber-subject | TK - Electrical and Nuclear Engineering |
collection | ZDB-4-EBA |
contents | Motion and Gesture Sensing with Radar -- Contents -- Preface -- 1 Introduction -- 1.1 Radar Basics and Types -- 1.2 Frequency Bands and Civil Applicatio -- 1.3 Radar Standardization -- 1.4 Book Outline -- References -- 2 Radar System Architecture and Range Equation -- 2.1 Basic Hardware Components of Radar -- 2.1.1 Transmitter/Receiver (Transceiver) -- 2.1.2 Waveform Generator -- 2.1.3 Antennas -- 2.2 LFM Radar Architecture -- 2.3 Receiver Noise -- 2.4 Dynamic Range -- 2.5 Radar Range Equation -- 2.6 Radar System Integration -- References -- 3 Radar Signal Model and Demodulation 3.1 Signal Modeling -- 3.1.1 Point Target -- 3.1.2 Distributed Target -- 3.2 Radar Waveforms and Demodulation -- 3.2.1 Matched Filter -- 3.2.2 Ambiguity Function -- 3.3 Frequency Modulated Waveforms -- 3.3.1 Conventional FMCW Waveforms -- 3.3.2 LFM Chirp Train (Fast Chirp) -- 3.3.3 Stretch Processing -- 3.4 Phase Coded Waveforms -- 3.4.1 Golay Codes -- 3.5 Summary -- References -- 4 Radar Signal Processing -- 4.1 Range Processing (Fast Time Processi -- 4.1.1 Minimum Range and Maximum Unambigu -- 4.1.2 Pulse Compression -- 4.1.3 Range Resolution -- 4.1.4 Range Accuracy 4.1.5 Time Sidelobes Control -- 4.2 Doppler Processing (Slow Time Proces -- 4.2.1 Sampling Frequency in Slow Time Do -- 4.2.2 CIT Window Size -- 4.2.3 MTI and Clutter Cancellation -- 4.2.4 Moving Target Detector (Filter Ban -- 4.2.5 Doppler (Radial Velocity) Resoluti -- 4.2.6 Doppler (Radial Velocity) Accuracy -- 4.2.7 Doppler Sidelobes Control -- 4.3 Summary -- References -- 5 Array Signal Processing -- 5.1 Array Manifold and Model -- 5.2 Conventional Beamforming -- 5.2.1 Uniform Array and FFT Based Beamfoming -- 5.2.2 Array Resolution, Accuracy, and Sidelobes Control 5.2.3 Digital Beamforming Versus Analog Beamforming -- 5.3 High-Resolution Methods -- 5.4 MIMO -- 5.4.1 Virtual Array -- 5.4.2 Basic MIMO Waveforms -- 5.4.3 Summary -- References -- 6 Motion and Presence Detection -- 6.1 Introduction -- 6.2 Detection Theory -- 6.2.1 Hypothesis Testing and Decision Rules -- 6.2.2 Neyman-Pearson Criterion and Likelihood Ratio Test -- 6.3 Signal and Noise Models -- 6.3.1 Target RCS Fluctuations -- 6.3.2 Noise -- 6.4 Threshold Detection -- 6.4.1 Optimal Detection of Nonfluctuating Target -- 6.4.2 Detection Performance -- 6.4.3 Impact of Target Fluctuation 6.5 Constant False Alarm Rate Detection -- 6.5.1 Cell-Averaging CFAR -- 6.5.2 Greatest-of and Least-of CFAR -- 6.5.3 Ordered Statistics CFAR -- 6.6 Clutter Rejection -- 6.6.1 Regions of Interest -- 6.6.2 Doppler Filtering -- 6.6.3 Spatial Filtering -- 6.6.4 Adaptive and Machine Learned Clutter Filters -- 6.7 Interference -- 6.8 Detection Pipeline Design -- References -- 7 Radar Machine Learning -- 7.1 Machine Learning Fundamentals -- 7.1.1 Supervised Learning -- 7.1.2 Linear Regression -- 7.1.3 Logistic Regression -- 7.1.4 Beyond Linear Models -- 7.1.5 Neural Networks |
ctrlnum | (OCoLC)1376016954 |
dewey-full | 621.3848 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.3848 |
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-on1376016954 |
illustrated | Illustrated |
indexdate | 2024-11-27T13:30:42Z |
institution | BVB |
isbn | 9781630818241 1630818240 9781630818234 1630818232 |
language | English |
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record_format | marc |
spelling | Wang, Jian author. Motion and gesture sensing with radar / Jian Wang, Jaime Lien. Norwood, MA Artech House [2022] ©2022 1 online resource : illustrations.. text txt rdacontent computer c rdamedia online resource cr rdacarrier Print version record. Motion and Gesture Sensing with Radar -- Contents -- Preface -- 1 Introduction -- 1.1 Radar Basics and Types -- 1.2 Frequency Bands and Civil Applicatio -- 1.3 Radar Standardization -- 1.4 Book Outline -- References -- 2 Radar System Architecture and Range Equation -- 2.1 Basic Hardware Components of Radar -- 2.1.1 Transmitter/Receiver (Transceiver) -- 2.1.2 Waveform Generator -- 2.1.3 Antennas -- 2.2 LFM Radar Architecture -- 2.3 Receiver Noise -- 2.4 Dynamic Range -- 2.5 Radar Range Equation -- 2.6 Radar System Integration -- References -- 3 Radar Signal Model and Demodulation 3.1 Signal Modeling -- 3.1.1 Point Target -- 3.1.2 Distributed Target -- 3.2 Radar Waveforms and Demodulation -- 3.2.1 Matched Filter -- 3.2.2 Ambiguity Function -- 3.3 Frequency Modulated Waveforms -- 3.3.1 Conventional FMCW Waveforms -- 3.3.2 LFM Chirp Train (Fast Chirp) -- 3.3.3 Stretch Processing -- 3.4 Phase Coded Waveforms -- 3.4.1 Golay Codes -- 3.5 Summary -- References -- 4 Radar Signal Processing -- 4.1 Range Processing (Fast Time Processi -- 4.1.1 Minimum Range and Maximum Unambigu -- 4.1.2 Pulse Compression -- 4.1.3 Range Resolution -- 4.1.4 Range Accuracy 4.1.5 Time Sidelobes Control -- 4.2 Doppler Processing (Slow Time Proces -- 4.2.1 Sampling Frequency in Slow Time Do -- 4.2.2 CIT Window Size -- 4.2.3 MTI and Clutter Cancellation -- 4.2.4 Moving Target Detector (Filter Ban -- 4.2.5 Doppler (Radial Velocity) Resoluti -- 4.2.6 Doppler (Radial Velocity) Accuracy -- 4.2.7 Doppler Sidelobes Control -- 4.3 Summary -- References -- 5 Array Signal Processing -- 5.1 Array Manifold and Model -- 5.2 Conventional Beamforming -- 5.2.1 Uniform Array and FFT Based Beamfoming -- 5.2.2 Array Resolution, Accuracy, and Sidelobes Control 5.2.3 Digital Beamforming Versus Analog Beamforming -- 5.3 High-Resolution Methods -- 5.4 MIMO -- 5.4.1 Virtual Array -- 5.4.2 Basic MIMO Waveforms -- 5.4.3 Summary -- References -- 6 Motion and Presence Detection -- 6.1 Introduction -- 6.2 Detection Theory -- 6.2.1 Hypothesis Testing and Decision Rules -- 6.2.2 Neyman-Pearson Criterion and Likelihood Ratio Test -- 6.3 Signal and Noise Models -- 6.3.1 Target RCS Fluctuations -- 6.3.2 Noise -- 6.4 Threshold Detection -- 6.4.1 Optimal Detection of Nonfluctuating Target -- 6.4.2 Detection Performance -- 6.4.3 Impact of Target Fluctuation 6.5 Constant False Alarm Rate Detection -- 6.5.1 Cell-Averaging CFAR -- 6.5.2 Greatest-of and Least-of CFAR -- 6.5.3 Ordered Statistics CFAR -- 6.6 Clutter Rejection -- 6.6.1 Regions of Interest -- 6.6.2 Doppler Filtering -- 6.6.3 Spatial Filtering -- 6.6.4 Adaptive and Machine Learned Clutter Filters -- 6.7 Interference -- 6.8 Detection Pipeline Design -- References -- 7 Radar Machine Learning -- 7.1 Machine Learning Fundamentals -- 7.1.1 Supervised Learning -- 7.1.2 Linear Regression -- 7.1.3 Logistic Regression -- 7.1.4 Beyond Linear Models -- 7.1.5 Neural Networks Radar Automatic detection. http://id.loc.gov/authorities/subjects/sh85110296 Motion detectors. http://id.loc.gov/authorities/subjects/sh2013001738 Gesture recognition (Computer science) http://id.loc.gov/authorities/subjects/sh2021008099 Radar Détection automatique. Détecteurs de mouvement. Gesture recognition (Computer science) fast Motion detectors fast Radar Automatic detection fast Lien, Jaime, author. http://id.loc.gov/authorities/names/no2023006607 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=3854831 Volltext |
spellingShingle | Wang, Jian Lien, Jaime Motion and gesture sensing with radar / Motion and Gesture Sensing with Radar -- Contents -- Preface -- 1 Introduction -- 1.1 Radar Basics and Types -- 1.2 Frequency Bands and Civil Applicatio -- 1.3 Radar Standardization -- 1.4 Book Outline -- References -- 2 Radar System Architecture and Range Equation -- 2.1 Basic Hardware Components of Radar -- 2.1.1 Transmitter/Receiver (Transceiver) -- 2.1.2 Waveform Generator -- 2.1.3 Antennas -- 2.2 LFM Radar Architecture -- 2.3 Receiver Noise -- 2.4 Dynamic Range -- 2.5 Radar Range Equation -- 2.6 Radar System Integration -- References -- 3 Radar Signal Model and Demodulation 3.1 Signal Modeling -- 3.1.1 Point Target -- 3.1.2 Distributed Target -- 3.2 Radar Waveforms and Demodulation -- 3.2.1 Matched Filter -- 3.2.2 Ambiguity Function -- 3.3 Frequency Modulated Waveforms -- 3.3.1 Conventional FMCW Waveforms -- 3.3.2 LFM Chirp Train (Fast Chirp) -- 3.3.3 Stretch Processing -- 3.4 Phase Coded Waveforms -- 3.4.1 Golay Codes -- 3.5 Summary -- References -- 4 Radar Signal Processing -- 4.1 Range Processing (Fast Time Processi -- 4.1.1 Minimum Range and Maximum Unambigu -- 4.1.2 Pulse Compression -- 4.1.3 Range Resolution -- 4.1.4 Range Accuracy 4.1.5 Time Sidelobes Control -- 4.2 Doppler Processing (Slow Time Proces -- 4.2.1 Sampling Frequency in Slow Time Do -- 4.2.2 CIT Window Size -- 4.2.3 MTI and Clutter Cancellation -- 4.2.4 Moving Target Detector (Filter Ban -- 4.2.5 Doppler (Radial Velocity) Resoluti -- 4.2.6 Doppler (Radial Velocity) Accuracy -- 4.2.7 Doppler Sidelobes Control -- 4.3 Summary -- References -- 5 Array Signal Processing -- 5.1 Array Manifold and Model -- 5.2 Conventional Beamforming -- 5.2.1 Uniform Array and FFT Based Beamfoming -- 5.2.2 Array Resolution, Accuracy, and Sidelobes Control 5.2.3 Digital Beamforming Versus Analog Beamforming -- 5.3 High-Resolution Methods -- 5.4 MIMO -- 5.4.1 Virtual Array -- 5.4.2 Basic MIMO Waveforms -- 5.4.3 Summary -- References -- 6 Motion and Presence Detection -- 6.1 Introduction -- 6.2 Detection Theory -- 6.2.1 Hypothesis Testing and Decision Rules -- 6.2.2 Neyman-Pearson Criterion and Likelihood Ratio Test -- 6.3 Signal and Noise Models -- 6.3.1 Target RCS Fluctuations -- 6.3.2 Noise -- 6.4 Threshold Detection -- 6.4.1 Optimal Detection of Nonfluctuating Target -- 6.4.2 Detection Performance -- 6.4.3 Impact of Target Fluctuation 6.5 Constant False Alarm Rate Detection -- 6.5.1 Cell-Averaging CFAR -- 6.5.2 Greatest-of and Least-of CFAR -- 6.5.3 Ordered Statistics CFAR -- 6.6 Clutter Rejection -- 6.6.1 Regions of Interest -- 6.6.2 Doppler Filtering -- 6.6.3 Spatial Filtering -- 6.6.4 Adaptive and Machine Learned Clutter Filters -- 6.7 Interference -- 6.8 Detection Pipeline Design -- References -- 7 Radar Machine Learning -- 7.1 Machine Learning Fundamentals -- 7.1.1 Supervised Learning -- 7.1.2 Linear Regression -- 7.1.3 Logistic Regression -- 7.1.4 Beyond Linear Models -- 7.1.5 Neural Networks Radar Automatic detection. http://id.loc.gov/authorities/subjects/sh85110296 Motion detectors. http://id.loc.gov/authorities/subjects/sh2013001738 Gesture recognition (Computer science) http://id.loc.gov/authorities/subjects/sh2021008099 Radar Détection automatique. Détecteurs de mouvement. Gesture recognition (Computer science) fast Motion detectors fast Radar Automatic detection fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85110296 http://id.loc.gov/authorities/subjects/sh2013001738 http://id.loc.gov/authorities/subjects/sh2021008099 |
title | Motion and gesture sensing with radar / |
title_auth | Motion and gesture sensing with radar / |
title_exact_search | Motion and gesture sensing with radar / |
title_full | Motion and gesture sensing with radar / Jian Wang, Jaime Lien. |
title_fullStr | Motion and gesture sensing with radar / Jian Wang, Jaime Lien. |
title_full_unstemmed | Motion and gesture sensing with radar / Jian Wang, Jaime Lien. |
title_short | Motion and gesture sensing with radar / |
title_sort | motion and gesture sensing with radar |
topic | Radar Automatic detection. http://id.loc.gov/authorities/subjects/sh85110296 Motion detectors. http://id.loc.gov/authorities/subjects/sh2013001738 Gesture recognition (Computer science) http://id.loc.gov/authorities/subjects/sh2021008099 Radar Détection automatique. Détecteurs de mouvement. Gesture recognition (Computer science) fast Motion detectors fast Radar Automatic detection fast |
topic_facet | Radar Automatic detection. Motion detectors. Gesture recognition (Computer science) Radar Détection automatique. Détecteurs de mouvement. Motion detectors Radar Automatic detection |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=3854831 |
work_keys_str_mv | AT wangjian motionandgesturesensingwithradar AT lienjaime motionandgesturesensingwithradar |