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    Microwave Noncontact Motion Sensing and Analysis

    AvChangzhi Li,Jenshan Lin

    Inbunden, Engelska, 2013

    Del 230 i serien Wiley Series in Microwave and Optical Engineering

    1 498 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    An authoritative guide to the theory, technologies, and state-of-the-art applications in microwave noncontact sensing and analysisEngineering researchers have recently developed exciting advances in microwave noncontact sensing and analysis, with new applications in fields ranging from medicine to structural engineering, manufacturing to transportation. This book provides an authoritative look at the current state-of-the-art in the field.Drawing upon their years of experience in both cutting-edge research and industry applications, the authors address microwave radar for both noncontact vital sign detection and mechanical movement measurement. They explore key advances in everyday applications of microwave and Doppler radar, especially in the areas of radio frequency technologies, microelectronic fabrication processes, and signal processing hardware and algorithms.Microwave Noncontact Motion Sensing and Analysis: Reviews the theory and technical basics, from electromagnetic propagation to signal processingDiscusses all major types of motion sensing radar, including Doppler, pulse, and FMCWExplores important advances in detection and analysis techniquesUses numerous case studies to illustrate current applications in an array of fieldsProvides integrated coverage of human vital sign detection, through-wall radar, and Doppler vibrometryOffers a well-informed look at emerging technologies and the shape of things to comeAn important resource for engineers and researchers with a professional interest in micro-wave sensing technology, Microwave Noncontact Motion Sensing and Analysis is also a source of insight and guidance for professionals in healthcare, transportation safety, the military, and law enforcement.

    Produktinformation

    • Utgivningsdatum:2013-12-27
    • Mått:159 x 234 x 20 mm
    • Vikt:504 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Wiley Series in Microwave and Optical Engineering
    • Antal sidor:240
    • Förlag:John Wiley & Sons Inc
    • ISBN:9780470642146

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik
    • Övrig teknik och tillämpad vetenskap inom Naturvetenskap och teknik
    • Geografi inom Naturvetenskap och teknik

    Mer om författaren

    Changzhi Li, PhD, is Assistant Professor in the Electrical and Computer Engineering Department, Texas Tech University. His research interests include biomedical applications of microwave/RF, wireless sensor, and RF/analog circuits.Jenshan Lin, PhD, is a Professor in the Department of Electrical and Computer Engineering, University of Florida. Before joining the University of Florida, he worked for AT&T/Lucent Bell Laboratories and Agere Systems.

    Innehållsförteckning

    • Preface xi1 Introduction 11.1 Background, 11.2 Recent Progress on Microwave Noncontact Motion Sensors, 21.2.1 Microwave/Millimeter-Wave Interferometer and Vibrometer, 21.2.2 Noncontact Vital Sign Detection, 31.3 About This Book, 42 Theory of Microwave Noncontact Motion Sensors 72.1 Introduction to Radar, 72.1.1 Antennas, 82.1.2 Propagation and Antenna Gain, 102.1.3 Radio System Link and Friis Equation, 132.1.4 Radar Cross Section and Radar Equation, 152.1.5 Radar Signal-To-Noise Ratio, 162.1.6 Signal-Processing Basics, 172.2 Mechanism of Motion Sensing Radar, 182.2.1 Doppler Frequency Shift, 182.2.2 Doppler Nonlinear Phase Modulation, 192.2.3 Pulse Radar, 262.2.4 FMCW Radar, 272.2.5 Comparison of Different Detection Mechanisms, 292.3 Key Theory and Techniques of Motion Sensing Radar, 312.3.1 Null and Optimal Detection Point, 312.3.2 Complex Signal Demodulation, 332.3.3 Arctangent Demodulation, 342.3.4 Double-Sideband Transmission, 362.3.5 Optimal Carrier Frequency, 432.3.6 Sensitivity: Gain and Noise Budget, 493 Hardware Development of Microwave Motion Sensors 533.1 Radar Transceiver, 533.1.1 Bench-Top Radar Systems, 533.1.2 Board Level Radar System Integration, 613.1.3 Motion Sensing Radar-On-Chip Integration, 633.1.4 Pulse-Doppler Radar and Ultra-Wideband Technologies, 853.1.5 FMCW Radar, 893.2 Radar Transponders, 923.2.1 Passive Harmonic Tag, 933.2.2 Active Transponder for Displacement Monitoring, 953.3 Antenna Systems, 993.3.1 Phased Array Systems, 993.3.2 Broadband Antenna, 1003.3.3 Helical Antenna, 1034 Advances in Detection and Analysis Techniques 1074.1 System Design and Optimization, 1074.1.1 Shaking Noise Cancellation Using Sensor Node Technique, 1074.1.2 DC-Coupled Displacement Radar, 1114.1.3 Random Body Movement Cancellation Technique, 1164.1.4 Nonlinear Detection of Complex Vibration Patterns, 1244.1.5 Motion Sensing Based on Self-Injection-Locked Oscillators, 1314.2 Numerical Methods: Ray-Tracing Model, 1364.3 Signal Processing, 1414.3.1 MIMO, MISO, SIMO Techniques, 1414.3.2 Spectral Estimation Algorithms, 1424.3.3 Joint Time–Frequency Signal Analysis, 1535 Applications and Future Trends 1575.1 Application Case Studies, 1585.1.1 Assisted Living and Smart Homes, 1585.1.2 Sleep Apnea Diagnosis, 1645.1.3 Wireless Infant Monitor, 1695.1.4 Measurement of Rotational Movement, 1735.1.5 Battlefield Triage and Enemy Detection, 1785.1.6 Earthquake and Fire Emergency Search and Rescue, 1795.1.7 Tumor Tracking in Radiation Therapy, 1805.1.8 Structural Health Monitoring, 1855.2 Development of Standards and State of Acceptance, 1945.3 Future Development Trends, 1965.4 Microwave Industry Outlook, 202References 203Index 215