Doppler Radar Physiological Sensing / Wiley Series in Biomedical Engineering Bd.1 (ePub)
(Sprache: Englisch)
Presents a comprehensive description of the theory and practical implementation of Doppler radar-based physiological monitoring
This book includes an overview of current physiological monitoring techniques and explains the fundamental technology used in...
This book includes an overview of current physiological monitoring techniques and explains the fundamental technology used in...
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Presents a comprehensive description of the theory and practical implementation of Doppler radar-based physiological monitoring
This book includes an overview of current physiological monitoring techniques and explains the fundamental technology used in remote non-contact monitoring methods. Basic radio wave propagation and radar principles are introduced along with the fundamentals of physiological motion and measurement. Specific design and implementation considerations for physiological monitoring radar systems are then discussed in detail. The authors address current research and commercial development of Doppler radar based physiological monitoring for healthcare and other applications.
* Explains pros and cons of different Doppler radar architectures, including CW, FMCW, and pulsed Doppler radar
* Discusses nonlinear demodulation methods, explaining dc offset, dc information, center tracking, and demodulation enabled by dc cancellation
* Reviews advanced system architectures that address issues of dc offset, spectrum folding, motion interference, and range resolution
* Covers Doppler radar physiological measurements demonstrated to date, from basic cardiopulmonary rate extractions to more involved volume assessments
Doppler Radar Physiological Sensing serves as a fundamental reference for radar, biomedical, and microwave engineers as well as healthcare professionals interested in remote physiological monitoring methods.
This book includes an overview of current physiological monitoring techniques and explains the fundamental technology used in remote non-contact monitoring methods. Basic radio wave propagation and radar principles are introduced along with the fundamentals of physiological motion and measurement. Specific design and implementation considerations for physiological monitoring radar systems are then discussed in detail. The authors address current research and commercial development of Doppler radar based physiological monitoring for healthcare and other applications.
* Explains pros and cons of different Doppler radar architectures, including CW, FMCW, and pulsed Doppler radar
* Discusses nonlinear demodulation methods, explaining dc offset, dc information, center tracking, and demodulation enabled by dc cancellation
* Reviews advanced system architectures that address issues of dc offset, spectrum folding, motion interference, and range resolution
* Covers Doppler radar physiological measurements demonstrated to date, from basic cardiopulmonary rate extractions to more involved volume assessments
Doppler Radar Physiological Sensing serves as a fundamental reference for radar, biomedical, and microwave engineers as well as healthcare professionals interested in remote physiological monitoring methods.
Autoren-Porträt von Olga Boric-Lubecke, Victor M. Lubecke, Amy D. Droitcour, Byung-Kwon Park, Aditya Singh
Olga Boric-Lubecke, PhD, is a Professor of Electrical Engineering at the University of Hawaii at Manoa, and an IEEE Fellow. She is widely recognized as a pioneer and leader in microwave radar technologies for non-contact cardiopulmonary monitoring, and in the design of integrated circuits for biomedical applications.Victor M. Lubecke, PhD, is a Professor of Electrical Engineering at the University of Hawaii at Manoa. He is an emeritus IEEE Distinguished Microwave Lecturer and has over 25 years of experience in research and development of devices and methods for radio-based remote sensing systems.
Amy Droitcour, PhD, has spent ten years developing radar-based vital signs measurement technology through her dissertation research and leading product development as CTO of Kai Medical. She currently serves as Senior Vice President of R&D at Wave 80 Biosciences.
Byung-Kwon-Park, PhD, is a senior research engineer at the Mechatronics R&D Center in Korea.
Aditya Singh, PhD, is currently a postdoctoral researcher at the University of Hawaii Neuroscience and MRI research Program.
Bibliographische Angaben
- Autoren: Olga Boric-Lubecke , Victor M. Lubecke , Amy D. Droitcour , Byung-Kwon Park , Aditya Singh
- 2015, 1. Auflage, 304 Seiten, Englisch
- Verlag: John Wiley & Sons
- ISBN-10: 1119078431
- ISBN-13: 9781119078432
- Erscheinungsdatum: 15.12.2015
Abhängig von Bildschirmgröße und eingestellter Schriftgröße kann die Seitenzahl auf Ihrem Lesegerät variieren.
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- Dateiformat: ePub
- Größe: 19 MB
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Sprache:
Englisch
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