Improved Wi-Fi Backscatter System for Multi-to-Multi Communication
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32797
Improved Wi-Fi Backscatter System for Multi-to-Multi Communication

Authors: Chang-Bin Ha, Yong-Jun Kim, Dong-Hyun Ha, Hyoung-Kyu Song

Abstract:

The conventional Wi-Fi backscatter system can only process one-to-one communication between the Wi-Fi reader and the Wi-Fi tag. For improvement of throughput of the conventional system, this paper proposes the multi-to-multi communication system. In the proposed system, the interference by the multi-to-multi communication is effectively cancelled by the orthogonal multiple access based on the identification code of the tag. Although the overhead is generated by the procedure for the multi-to-multi communication, because the procedure is processed by the Wi-Fi protocol, the overhead is insignificant for the entire communication procedure. From the numerical results, it is confirmed that the proposed system has nearly proportional increased throughput in according to the number of the tag that simultaneously participates in communication.

Keywords: Backscatter, Multi-to-multi communication, Orthogonality, Wi-Fi.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1338368

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 2025

References:


[1] A. M. Ortiz, D. Hussein, P. Soochang, S. N. Han, and N. Crespi, “The Cluster between Internet of Things and Social Networks: Review and Research Challenges,” Internet of Things Journal on IEEE, pp. 206-215, April 2014.
[2] IEEE 802.11n, Standard for Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications, Amendment 5: Enhancements for Higher Throughput, IEEE, 2009.
[3] IEEE 802.11n, Standard for Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications, High-speed Phyiscal Layer in the 5 GHZ Band, IEEE, 2009.
[4] C. Gennarelli, G. Riccio, P. Corona, and G. Ferrara, “Evaluation of the Field Backscattered by Loaded Trihedral Corner Reflectors,” Journal of Electromagnetic Waves and Applications, pp. 529-550, 2003.
[5] V. Liu, A. Parks, S. Gollakota, D. Wetherall, and J. R. Smith, “Ambient Backscatter: Wireless Communication Out of Thin Air,” SIGCOMM, pp. 39-50, October 2013.
[6] B. Kellogg, A. Parks, S. Gollakota, J. R. Smith, and D. Wetherall, “Wi-Fi Backscatter: Internet Connectivity for RF-Powered Devices,” SIGCOMM, pp. 607-618, October 2014.