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Chipless RFID = Design Procedure and...
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Chipless RFID = Design Procedure and Detection Techniques /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Chipless RFID/ by Reza Rezaiesarlak, Majid Manteghi.
Reminder of title:
Design Procedure and Detection Techniques /
Author:
Rezaiesarlak, Reza.
other author:
Manteghi, Majid.
Description:
VIII, 159 p. 148 illus., 80 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Microwaves. -
Online resource:
https://doi.org/10.1007/978-3-319-10169-9
ISBN:
9783319101699
Chipless RFID = Design Procedure and Detection Techniques /
Rezaiesarlak, Reza.
Chipless RFID
Design Procedure and Detection Techniques /[electronic resource] :by Reza Rezaiesarlak, Majid Manteghi. - 1st ed. 2015. - VIII, 159 p. 148 illus., 80 illus. in color.online resource.
Radio Frequency Identification Systems -- Mathematical Representation of the Scattered Fields from Chipless RFID Tags -- Chipless RFID Tag -- Identification of Chipless RFID Tags in the Reader -- Detection, Identification and Localization in Chipless RFID Systems.
This book examines the design of chipless RFID systems. The authors begin with the historical development of wireless identification systems and finally arrive at a representation of the chipless RFID system as a block diagram illustration. Chapter 2 is devoted to the theoretical bases for the design of chipless RFID tags and detection techniques in the reader. A rigorous mathematical formulation is presented based on the singularity expansion method (SEM) and characteristic mode theory (CMT) in order to study the scattered fields from an object in a general form. Th e authors attempt to explain some physical concepts behind the mathematical descriptions of the theories in this chapter. In Chapter 3, two design procedures based on complex natural resonance and CMT are presented for the design of the chipless RFID tag. By studying the effects of structural parameters on radiation and resonant behaviors of the tag, some design conclusions are presented in this chapter. Chapter 4 is dedicated to the time-frequency analysis of the scattered fields from chipless RFID tags. After some explanation of the time-frequency analysis techniques and issues relating to resolution in time and frequency, an efficient technique called short-time matrix pencil method (STMPM) is introduced and efficiently employed to study various scattering mechanisms. Th e performance of the proposed technique against noise is studied in this chapter. Finally in Chapter 5, an anti-collision algorithm is presented through which the positions and IDs of multiple multi-bit tags are extracted from the backscattered signal of the tags present in the reader area.
ISBN: 9783319101699
Standard No.: 10.1007/978-3-319-10169-9doiSubjects--Topical Terms:
636639
Microwaves.
LC Class. No.: TK7876-7876.42
Dewey Class. No.: 621.3
Chipless RFID = Design Procedure and Detection Techniques /
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Radio Frequency Identification Systems -- Mathematical Representation of the Scattered Fields from Chipless RFID Tags -- Chipless RFID Tag -- Identification of Chipless RFID Tags in the Reader -- Detection, Identification and Localization in Chipless RFID Systems.
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This book examines the design of chipless RFID systems. The authors begin with the historical development of wireless identification systems and finally arrive at a representation of the chipless RFID system as a block diagram illustration. Chapter 2 is devoted to the theoretical bases for the design of chipless RFID tags and detection techniques in the reader. A rigorous mathematical formulation is presented based on the singularity expansion method (SEM) and characteristic mode theory (CMT) in order to study the scattered fields from an object in a general form. Th e authors attempt to explain some physical concepts behind the mathematical descriptions of the theories in this chapter. In Chapter 3, two design procedures based on complex natural resonance and CMT are presented for the design of the chipless RFID tag. By studying the effects of structural parameters on radiation and resonant behaviors of the tag, some design conclusions are presented in this chapter. Chapter 4 is dedicated to the time-frequency analysis of the scattered fields from chipless RFID tags. After some explanation of the time-frequency analysis techniques and issues relating to resolution in time and frequency, an efficient technique called short-time matrix pencil method (STMPM) is introduced and efficiently employed to study various scattering mechanisms. Th e performance of the proposed technique against noise is studied in this chapter. Finally in Chapter 5, an anti-collision algorithm is presented through which the positions and IDs of multiple multi-bit tags are extracted from the backscattered signal of the tags present in the reader area.
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