vi
Preface
support for the applications of IoT systems in smart logistics, car networking, food
traceability, anti-counterfeiting, and other livelihood fields.
This book has the advantages of reasonable chapter arrangement, clear structure,
rich content, good illustrations, and texts. It contains not only basic theories about
photoelectric sensing, but also related research and analysis of dynamic detection
system design and testing, especially “physical anti-collision” is innovative and has
application value, which is very suitable for scientific research personnel in the
IoT and optoelectronic engineering related industries. After years of hard work, the
authors’ scientific research team has published more than 30 high-level SCI-indexed
papers in related fields, applied for more than 10 authorized invention patents, and
obtained important academic achievements including the 16th China Patent Award
and Jiangsu Science and Technology Progress Award, four national standards and
Jiangsu provincial standards were formulated, which contributed a solid theoretical
and practical foundation for the publication of this book.
This book is divided into six chapters. They reflect a frontier innovation research
direction of the current research field of IoT applications and RFID system detection,
and the latest achievements of the authors’ research team in the field of RFID physical
anti-collision technology and semi-physical simulation of IoT system. The main
contents of this book include an overview of RFID system anti-collision technology,
design for RFID system physical anti-collision experimental verification system,
physical theory of RFID system physical anti-collision, image theory of RFID system
physical anti-collision, optimization algorithm and physical anti-collision of RFID
system as well as deep learning and RFID system physical anti-collision.
Nanjing, China
October 2020
Xiaolei Yu
Zhimin Zhao
Xuezhou Zhang
Preface
support for the applications of IoT systems in smart logistics, car networking, food
traceability, anti-counterfeiting, and other livelihood fields.
This book has the advantages of reasonable chapter arrangement, clear structure,
rich content, good illustrations, and texts. It contains not only basic theories about
photoelectric sensing, but also related research and analysis of dynamic detection
system design and testing, especially “physical anti-collision” is innovative and has
application value, which is very suitable for scientific research personnel in the
IoT and optoelectronic engineering related industries. After years of hard work, the
authors’ scientific research team has published more than 30 high-level SCI-indexed
papers in related fields, applied for more than 10 authorized invention patents, and
obtained important academic achievements including the 16th China Patent Award
and Jiangsu Science and Technology Progress Award, four national standards and
Jiangsu provincial standards were formulated, which contributed a solid theoretical
and practical foundation for the publication of this book.
This book is divided into six chapters. They reflect a frontier innovation research
direction of the current research field of IoT applications and RFID system detection,
and the latest achievements of the authors’ research team in the field of RFID physical
anti-collision technology and semi-physical simulation of IoT system. The main
contents of this book include an overview of RFID system anti-collision technology,
design for RFID system physical anti-collision experimental verification system,
physical theory of RFID system physical anti-collision, image theory of RFID system
physical anti-collision, optimization algorithm and physical anti-collision of RFID
system as well as deep learning and RFID system physical anti-collision.
Nanjing, China
October 2020
Xiaolei Yu
Zhimin Zhao
Xuezhou Zhang
