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Url canonique : www.lavoisier.fr/livre/physique/technologies-for-smart-sensors-and-sensor-fusion-devices-circuits-and-systems/yallup/descriptif_3008014
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Technologies for Smart Sensors and Sensor Fusion Devices, Circuits, and Systems Series

Langue : Anglais

Coordonnateurs : Yallup Kevin, Iniewski Krzysztof

Couverture de l’ouvrage Technologies for Smart Sensors and Sensor Fusion

Exciting new developments are enabling sensors to go beyond the realm of simple sensing of movement or capture of images to deliver information such as location in a built environment, the sense of touch, and the presence of chemicals. These sensors unlock the potential for smarter systems, allowing machines to interact with the world around them in more intelligent and sophisticated ways.

Featuring contributions from authors working at the leading edge of sensor technology, Technologies for Smart Sensors and Sensor Fusion showcases the latest advancements in sensors with biotechnology, medical science, chemical detection, environmental monitoring, automotive, and industrial applications. This valuable reference describes the increasingly varied number of sensors that can be integrated into arrays, and examines the growing availability and computational power of communication devices that support the algorithms needed to reduce the raw sensor data from multiple sensors and convert it into the information needed by the sensor array to enable rapid transmission of the results to the required point.

Using both SI and US units, the text:

  • Provides a fundamental and analytical understanding of the underlying technology for smart sensors
  • Discusses groundbreaking software and sensor systems as well as key issues surrounding sensor fusion
  • Exemplifies the richness and diversity of development work in the world of smart sensors and sensor fusion

Offering fresh insight into the sensors of the future, Technologies for Smart Sensors and Sensor Fusion not only exposes readers to trends but also inspires innovation in smart sensor and sensor system development.

Microfluidics and Biosensors. Chemical and Environmental Sensors. Automotive and Industrial Sensors. Software and Sensor Systems.

Electrical, mechanical, biomedical, mechatronics, and systems engineers involved in healthcare, industrial production, defense and military, and communications.

Dr. Kevin Yallup graduated from Cambridge University, UK with a degree in natural sciences, specializing in solid state physics. He received his Ph.D from University of Leuven, Belgium. Currently, he is chief technical officer at Alberta Centre for Advanced MNT Products, Edmonton, Canada. He possesses over 15 years of experience in MNT product development in a number of industries and has held engineering management roles at Technology for Industry Ltd., CDT Ltd., Kymata Ltd., BCO Technologies (NI) Ltd., National Semiconductor, and Analog Devices. Additionally, he has worked with various universities and companies to take a technology through to full commercialization.

Dr. Krzysztof (Kris) Iniewski is managing R&D at Redlen Technologies Inc., Vancouver, British Columbia, Canada, a leading manufacturer of high resolution cadmium zinc telluride semiconductor radiation detectors. He is also president of CMOS Emerging Technologies Research Inc., Coquitlam, British Columbia, Canada, an organization hosting high-tech events on communications, microsystems, optoelectronics, and sensors. A popular speaker and consultant, he has published over 100 research papers, written and edited several books, and held faculty and management positions at University of Toronto, Ontario, Canada; University of Alberta, Edmonton, Canada; Simon Fraser University, Burnaby, British Columbia, Canada; and PMC-Sierra Inc., Burnaby, British Columbia, Canada.

Date de parution :

17.8x25.4 cm

Disponible chez l'éditeur (délai d'approvisionnement : 14 jours).

96,92 €

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Date de parution :

Ouvrage de 492 p.

17.8x25.4 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

232,80 €

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Mots-clés :

Swift Heavy Ion; Microsensors; Whispering Gallery; Sensor Systems; Whispering Gallery Mode; Sensor Software; Etched Tracks; Industrial Sensors; Droplet Based Microfluidics; Automotive Sensors; Etched Ion Track; Environmental Sensors; GMR Sensor; Chemical Sensors; Double Deionized Water; Biosensors; Polymer Foils; Microfluidics; Membrane Formation Processes; Sensor Fusion; BJT; Smart Sensors; Bipolar Transistors; Xuefei Sun; Remote RF; Ryan T; Kelly; PVDF Film; Craig Priest; BSS Method; Elain Fu; Zeolite Layer; Barry Lutz; Unvoiced Speech; Paul Yager; Human Activity Recognition; Fahmida S; Tulip; Proposed Data Fusion; Syed K; Islam; IEEE Sensor; Ashraf B; Islam; Droplet Extraction; Kimberly C; MacArthur; Contact Angle Hysteresis; Khandaker A; Mamun; Minimize MSE; Nicole McFarlane; Pet Foil; Robert D; Black; Contact Angle; Kent B; Pfeifer; Steven M; Thornberg; Shiquan Tao; Christoph Sielmann; John Berring; Suresha Mahadeva; John Robert Busch; Konrad Walus; Boris Stoeber; Serge Vincent; Xuan Du; Tao Lu; Dietmar Fink; W.R; Fahrner; K; Hoppe; G; Muñoz Hernandez; H; García Arellano; A; Kiv; J; Vacik; L; Alfonta; Leonardo Tomazeli Duarte; Christian Jutten; Russell Binions; Kirill V; Poletkin; Christopher Shearwood; Alexandr I; Chernomorsky; Ulrike Wallrabe; Antonio J; Lpez-Martýn; Alfonso Carlosena; Thomas Schlegl; Hubert Zangl; Donald P; Butler; Zeynep Çelik-Butler; Josep Altet; Diego Mateo; Jose Silva-Martinez; Omid Sarbishei; Majid Janidarmian; Atena Roshan Fekr; Benjamin Nahill; Zeljko Zilic; Katarzyna Radecka; Brett Y; Smolenski; Catherine M; Vannicola; Nikolaos P; Preve; Jun Nishimura; Tadahiro Kuroda; John Kosinski; Orazio Aiello; Franco Fiori; W.H; Fahrner