Phase Cancellation in Backscatter-Based Tag-to-Tag Communication Systems

被引:34
作者
Shen, Zhe [1 ,2 ]
Athalye, Akshay [1 ,3 ]
Djuric, Petar M. [1 ]
机构
[1] SUNY Stony Brook, Dept Elect & Comp Engn, Stony Brook, NY 11794 USA
[2] Google, Mountain View, CA 94043 USA
[3] Scandent LLC, New York, NY 10004 USA
基金
美国国家科学基金会;
关键词
Multiphase backscatter; RF identification (RFID); phase cancellation;
D O I
10.1109/JIOT.2016.2533398
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper, we investigate a unique phase cancellation problem that occurs in backscatter-based tag-to-tag (BBTT) communication systems. These are systems wherein two or more radio-less devices (tags) communicate with each other purely by reflecting (backscattering) an external signal (whether ambient or intentionally generated). A transmitting tag modulates baseband information onto the reflected signal using backscatter modulation. At the receiving tag, the backscattered signal is superimposed to the external excitation and the resulting signal is demodulated using envelope detection techniques. The relative phase difference between the backscatter signal and the external excitation signal at the receiving tag has a large impact on the envelope of the resulting signal. This often causes a complete cancellation of the baseband information contained in the envelope, and it results in a loss of communication between the two tags. This problem is ubiquitous in all BBTT systems and greatly impacts the reliability, robustness, and communication range of such systems. We theoretically analyze and experimentally demonstrate this problem for devices that use both ASK and PSK backscattering. We then present a solution to the problem based on the design of a new backscatter modulator for tags that enables multiphase backscattering. We also propose a new combination method that can further enhance the detection performance of BBTT systems. We examine the performance of the proposed techniques through theoretical analysis, computer simulations, and laboratory experiments with a prototype tag that we have developed.
引用
收藏
页码:959 / 970
页数:12
相关论文
共 17 条
[1]   Novel Semi-Passive RFID System for Indoor Localization [J].
Athalye, Akshay ;
Savic, Vladimir ;
Bolic, Miodrag ;
Djuric, Petar M. .
IEEE SENSORS JOURNAL, 2013, 13 (02) :528-537
[2]   Internet of Things: Applications and Challenges in Technology and Standardization [J].
Bandyopadhyay, Debasis ;
Sen, Jaydip .
WIRELESS PERSONAL COMMUNICATIONS, 2011, 58 (01) :49-69
[3]   Proximity Detection with RFID: A Step Toward the Internet of Things [J].
Bolic, Miodrag ;
Rostamian, Majed ;
Djuric, Petar M. .
IEEE PERVASIVE COMPUTING, 2015, 14 (02) :70-76
[4]   Coded QAM Backscatter Modulation for RFID [J].
Boyer, Colby ;
Roy, Sumit .
IEEE TRANSACTIONS ON COMMUNICATIONS, 2012, 60 (07) :1925-1934
[5]  
Djuric P. M., 2010, U.S. Patent, Patent No. [7 812 719, 7812719]
[6]  
Dobkin D., 2012, The rf in RFID: uhf RFID in practice
[7]  
Kellogg B, 2014, SIGCOMM'14: PROCEEDINGS OF THE 2014 ACM CONFERENCE ON SPECIAL INTEREST GROUP ON DATA COMMUNICATION, P607, DOI [10.1145/2619239.2626319, 10.1145/2740070.2626319]
[8]   Effects of Reader-to-Reader Interference on the UHF RFID Interrogation Range [J].
Kim, Do-Yun ;
Yoon, Hyun-Goo ;
Jang, Byung-Jun ;
Yook, Jong-Gwan .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2009, 56 (07) :2337-2346
[9]   POWER WAVES AND SCATTERING MATRIX [J].
KUROKAWA, K .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 1965, MT13 (02) :194-&
[10]   Ambient Backscatter: Wireless Communication Out of Thin Air [J].
Liu, Vincent ;
Parks, Aaron ;
Talla, Vamsi ;
Gollakota, Shyamnath ;
Wetherall, David ;
Smith, Joshua R. .
ACM SIGCOMM COMPUTER COMMUNICATION REVIEW, 2013, 43 (04) :39-50