DocumentCode
3762429
Title
ETAP: Enable Lightweight Anonymous RFID Authentication with O(1) Overhead
Author
Min Chen;Shigang Chen
Author_Institution
Dept. of Comput. &
fYear
2015
Firstpage
267
Lastpage
278
Abstract
Radio frequency identification (RFID) technologies are making their way into retail products, library books, debit cards, passports, driver licenses, car plates, medical devices, etc. The widespread use of tags in traditional ways of deployment raises a privacy concern: They make their carriers trackable. To protect the privacy of the tag carriers, we need to invent new mechanisms that keep the usefulness of tags while doing so anonymously. Many tag applications such as toll payment require authentication. This paper studies the problem of anonymous authentication. Since low-cost tags have extremely limited hardware resource, we propose an asymmetric design principle that pushes most complexity to more powerful RFID readers. Thus, we develop a lightweight technique that generates dynamic tokens for anonymous authentication. Instead of implementing complicated and hardware-intensive cryptographic hash functions, our authentication protocol only requires tags to perform several simple and hardware-efficient operations such as bitwise XOR, one-bit left circular shift, and bit flip. The theoretic analysis and randomness tests demonstrate that our protocol can ensure the privacy of the tags. Moreover, our protocol reduces the communication overhead and online computation overhead to O(1) per authentication for both tags and readers, which compares favorably with the prior art.
Keywords
"Authentication","Protocols","Servers","Radiofrequency identification","Privacy","Hardware","Cryptography"
Publisher
ieee
Conference_Titel
Network Protocols (ICNP), 2015 IEEE 23rd International Conference on
ISSN
1092-1648
Type
conf
DOI
10.1109/ICNP.2015.21
Filename
7437135
Link To Document