Fr. 179.00

Semi-physical Verification Technology for Dynamic Performance of Internet of Things System

English · Hardback

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Description

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This book combines semi-physical simulation technology with an Internet of Things (IOT) application system based on novel mathematical methods such as the Fisher matrix, artificial neural networks, thermodynamic analysis, support vector machines, and image processing algorithms. The dynamic testing and semi-physical verification of the theory and application were conducted for typical IOT systems such as RFID systems, Internet of Vehicles systems, and two-dimensional barcode recognition systems. The findings presented are of great scientific significance and have wide application potential for solving bottlenecks in the development of RFID technology and IOT engineering. The book is a valuable resource for postgraduate students in fields such as computer science and technology, control science and engineering, and information science. Moreover, it is a useful reference resource for researchers in IOT and RFID-related industries, logistics practitioners, and system integrators.

List of contents

Research progress of semi-physical verification technology based on photoelectric sensing.- Multi-antenna optimal receiving theory and semi-physical verification of RFID-MIMO system.- Thermodynamic analysis and semi-physical verification of the effect of temperature on dynamic performance of RFID.- Adaptive analysis and semi - physical verification of RFID multi-tag geometric distribution based on Fisher matrix.- Application of artificial neural network in RFID multi-tag distribution optimization and semi - physical verification.- Optimal distribution and semi-physical verification of RFID multi-tag based on image processing.- Application of semi-physical verification technology in other fields of internet of things.

About the author

Xiaolei Yu obtained his doctorate degree in Electrical and Electronic Engineering as a joint student of the University of Melbourne and Nanjing University of Aeronautics and Astronautics in 2011. He is now an Assistant Professor at Nanjing University of Aeronautics and Astronautics as well as the Chief Executive Engineer of China National RFID Product Quality Supervision and Testing Center (Jiangsu). His research interests include intelligent sensor networks, signal detection technology, adaptive algorithms, and image processing algorithms. He holds 15 patents and has published more than 40 academic papers, including 20 SCI papers in leading academic journals and international conferences.

Summary

This book combines semi-physical simulation technology with an Internet of Things (IOT) application system based on novel mathematical methods such as the Fisher matrix, artificial neural networks, thermodynamic analysis, support vector machines, and image processing algorithms. The dynamic testing and semi-physical verification of the theory and application were conducted for typical IOT systems such as RFID systems, Internet of Vehicles systems, and two-dimensional barcode recognition systems. The findings presented are of great scientific significance and have wide application potential for solving bottlenecks in the development of RFID technology and IOT engineering. The book is a valuable resource for postgraduate students in fields such as computer science and technology, control science and engineering, and information science. Moreover, it is a useful reference resource for researchers in IOT and RFID-related industries, logistics practitioners, and system integrators.

Product details

Authors Donghu Wang, Donghua Wang, Xiaole Yu, Xiaolei Yu, Zhimin Zhao
Publisher Springer, Berlin
 
Original title 9984296, Sprache=Deutsch, Rang=1, Kommentar=Automatisch uebernommene Bezeichnung
Languages English
Product format Hardback
Released 01.01.2018
 
EAN 9789811317583
ISBN 978-981-1317-58-3
No. of pages 246
Dimensions 160 mm x 239 mm x 22 mm
Weight 558 g
Illustrations XV, 246 p. 158 illus., 100 illus. in color.
Subjects Natural sciences, medicine, IT, technology > Technology > Electronics, electrical engineering, communications engineering

B, Vibration, engineering, Electrical Engineering, Civil Engineering, Dynamics, Microwaves, RF and Optical Engineering, Microwaves, RF Engineering and Optical Communications, Communications Engineering, Networks, Electronics, Microelectronics, Electronics and Microelectronics, Instrumentation, Mechanics of solids, Dynamical systems, Electronics engineering, Vibration, Dynamical Systems, Control, Optical engineering, Microwaves, Microwave technology

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