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    Chipless Radio Frequency Identification Reader Signal Processing

    AvNemai Chandra Karmakar,Prasanna Kalansuriya

    Inbunden, Engelska, 2016

    Del i serien Wiley Series in Microwave and Optical Engineering

    1 457 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Presents a comprehensive overview and analysis of the recent developments in signal processing for Chipless Radio Frequency Identification SystemsThis book presents the recent research results on Radio Frequency Identification (RFID) and provides smart signal processing methods for detection, signal integrity, multiple-access and localization, tracking, and collision avoidance in Chipless RFID systems. The book is divided into two sections: The first section discusses techniques for detection and denoising in Chipless RFID systems. These techniques include signal space representation, detection of frequency signatures using UWB impulse radio interrogation, time domain analysis, singularity expansion method for data extraction, and noise reduction and filtering techniques. The second section covers collision and error correction protocols, multi-tag identification through time-frequency analysis, FMCW radar based collision detection and multi-access for Chipless RFID tags as we as localization and tag tracking. Describes the use of UWB impulse radio interrogation to remotely estimate the frequency signature of Chipless RFID tags using the backscatter principleReviews the collision problem in both chipped and Chipless RFID systems and summarizes the prevailing anti-collision algorithms to address the problemProposes state-of-the-art multi-access and signal integrity protocols to improve the efficacy of the system in multiple tag reading scenariosFeatures an industry approach to the integration of various systems of the Chipless RFID reader-integration of physical layers, middleware, and enterprise softwareChipless Radio Frequency Identification Reader Signal Processing is primarily written for researchers in the field of RF sensors but can serve as supplementary reading for graduate students and professors in electrical engineering and wireless communications.

    Produktinformation

    • Utgivningsdatum:2016-04-22
    • Mått:163 x 239 x 23 mm
    • Vikt:590 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Wiley Series in Microwave and Optical Engineering
    • Antal sidor:292
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119215752

    Utforska kategorier

    • Elektronik och kommunikationer inom Naturvetenskap och teknik

    Mer om författaren

    Nemai Karmakar, PhD, is the lead researcher at the RFID and Antenna Research Group at Monash University, Australia. He received his PhD in ITEE from the University of Queensland, Australia, in February 1999. Dr. Karmakar is a pioneer in fully printable Chipless RFID tags, readers, signal processing, and smart antennas. He has published more than 350 scientific journal and conference articles, 9 books, 35 book chapters, and 9 patent applications.Prasanna Kalansuriya, PhD, is an electrical engineer at Clarinox Technologies, Australia. He obtained a PhD in electrical and computer systems engineering at Monash University, Australia in 2014. In 2012, he was a visiting researcher with the Auto-ID Laboratory, Massachusetts Institute of Technology, Cambridge, MA.Rubayet E Azim is working toward her PhD on Chipless RFID signal processing in electrical and computer systems engineering at Monash University, Australia.Randika Koswatta, PhD, is a RF design engineer with Hawk Measurement Systems in Melbourne, Australia. He obtained his PhD from the Electrical and Computer Systems Engineering Department of Monash University, Australia in 2013 and completed a bachelor’s degree in electrical and electronics engineering with first class honors from the University of Peradeniya, Sri Lanka in 2007.

    Innehållsförteckning

    • PREFACE xi 1 INTRODUCTION 11.1 Chipless RFID 11.2 Chipless RFID Tag Reader 71.3 Conclusion 12References 132 Signal Space Representation of Chipless RFID Signatures 152.1 Wireless Communication Systems and Chipless RFID Systems 152.1.1 The Conventional Digital Wireless Communication System 152.1.2 Chipped RFID System 162.1.3 Chipless RFID System 172.2 The Geometric Representation of Signals in a Signal Space 182.2.1 Representing Transmit Signals Using Orthonormal Basis Functions 182.2.2 Receiving Signals and Decoding Information 202.3 Novel Model for the Representation of Chipless RFID Signatures 222.3.1 Signal Space Representation of Frequency Signatures 242.3.2 Application of New Model 272.4 Performance Analysis 322.5 Experimental Results Using the Complete Tag 342.6 Conclusion 36References 383 Time-Domain Analysis of Frequency Signature-Based Chipless RFID 393.1 Limitations of Current Continuous-Wave Swept Frequency Interrogation and Reading Methods for Chipless RFID 393.2 UWB-IR Interrogation of Time-Domain Reflectometry-Based Chipless RFID 433.3 Time-Domain Analysis of Frequency Signature-Based Chipless RFID 473.4 Analysis of Backscatter from a Multiresonator Loaded Chipless Tag 473.4.1 System Description and Mathematical Model for Backscatter Analysis 493.4.2 Chipless RFID Tag Design 533.5 Simulation Results 553.6 Processing Results 563.7 Analysis of Backscatter from a Multipatch-Based Chipless Tag 593.7.1 System Model and Expressions for Backscatter 593.7.2 The Design and Operation of the Multipatch-Based Chipless RFID 613.8 Electromagnetic Simulation of System 623.8.1 Four-Patch Backscattering Chipless Tag 623.8.2 Investigation into Reading Distance and Orientation of Tag 663.8.3 Measurement Results 673.9 Conclusion 68References 704 Singularity Expansion Method for Data Extraction for Chipless RFID 714.1 Introduction 714.2 The SEM 724.2.1 The Complex Frequency Domain 744.2.2 Extraction of Poles and Residues 774.2.3 Matrix Pencil Algorithm 774.2.4 Case Study 814.3 Application of SEM for Chipless RFID 844.4 Conclusion 89References 915 Denoising and Filtering Techniques for Chipless RFID 935.1 Introduction 935.2 Matrix Pencil Algorithm]Based Filtering 955.3 Noise Suppression Through Signal Space Representation 995.4 SSI 1035.5 Wavelet-Based Filtering of Noise 1075.6 Conclusion 108References 1096 Collision and Error Correction Protoco ls in Chipless RFID 1116.1 Introduction 1116.2 RFID System and Collision 1136.2.1 Reader–Reader Collision 1146.2.2 Reader–Tag Collision 1146.2.3 Tag–Tag Collision 1156.3 Applications that Involve Multiple Tags 1156.4 Anticollision Algorithm in Chipped RFID Tags 1186.4.1 SDMA 1196.4.2 FDMA 1226.4.3 CDMA 1236.4.4 Time Division Multiple Access: TDMA 1256.5 Anticollision Algorithm for Chipless RFID 1286.5.1 Linear Block Coding 1296.5.2 Correlative Signal Processing-Based Approach 1316.5.3 Walsh-Domain Matched Filtering 1316.5.4 Spatial Focusing (SDMA) 1326.5.5 Other Anticollision/Multi-Access Methods 1346.6 Collision Detection and Multiple Access for Chipless RFID System 1356.7 Introducing Block Coding in Chipless RFID 1386.7.1 Coding 1396.7.2 Block Coding for Collision Detection 1416.7.3 Block Coding for Improving Data Integrity 1446.7.4 Advantages and Challenges of Block Coding 1466.8 Conclusion 148References 1487 Multi-Tag Identification Through Time–Frequency Analysis 1537.1 Introduction 1537.2 t–f Analysis and Chipless RFID Systems 1547.3 FrFT: Background Theory 1577.3.1 Linear Frequency Modulated Signal 1577.3.2 FrFT 1617.4 System Description 1677.4.1 ADS Simulation Environment 1707.4.2 Postprocessing in MATLAB 1717.5 Results and Discussion 1747.6 Conclusion 180References 1808 FMCW RADAR-Based Multi-Tag Identification 1838.1 Introduction 1838.2 Background Theory 1868.2.1 Overview of FMCW RADAR 1868.2.2 FMCW RADAR Technique for Chipless RFID Systems: Multi-Tag Identification 1898.3 System Description 1968.3.1 ADS Simulation Environment 1968.3.2 Postprocessing in MATLAB 1998.4 Results and Discussion 2018.4.1 Collision Detection and Range Extraction 2028.4.2 Tag Identification 2068.5 Conclusion 212References 2139 Chipless Tag Localization 2159.1 Introduction 2159.2 Significance of Localization 2169.3 Tag localization: Chipless Versus Conventional RFID 2179.4 Conventional RFID Tag Localization Techniques 2189.4.1 RTOF Estimation 2189.4.2 RSS-Based Localization 2209.4.3 Phase Evaluation Method 2209.5 Chipless RFID Tag Localization 2219.6 Benefits of Chipless Tag Localization 2229.7 Proposed Localization for Chipless RFID Tags 2239.7.1 Backscattered Signal from Chipless Tag 2239.7.2 Maximum Detection Range 2259.7.3 Localization of Tag 2289.7.4 Ranging of Tag 2309.7.5 Positioning of Tag 2319.8 Results and Discussion 2339.8.1 Simulation Environment 2339.8.2 Experimental Setup 2349.8.3 Results and Discussion 2369.8.4 Unknown Tag Localization 2409.9 Conclusion 241References 24210 State-of-the-Art Chipless RFID Reader 24710.1 Introduction 24710.2 Challenges in Mass Deployment 24910.3 Smart RFID Reader 25210.3.1 Physical Layer (Front End) 25310.3.2 IT Layer (Back End) 25510.4 Various Smart Readers 26110.5 Conclusion 263References 264Index 265