DocumentCode :
1525273
Title :
Coding for Inductively Coupled Channels
Author :
Rosnes, Eirik ; Barbero, Ángela I. ; Ytrehus, Øyvind
Author_Institution :
Dept. of Inf., Univ. of Bergen, Bergen, Norway
Volume :
58
Issue :
8
fYear :
2012
Firstpage :
5418
Lastpage :
5436
Abstract :
Inductive coupling is a technique wherein one device (the reader) induces an electrical current in another device (the tag), thereby providing not only power for the tag, but also a communication channel. In this paper, we focus exclusively on the reader-to-tag channel. The first part of this paper presents modulation codes that possess a high minimum and a high average power. This is important, since the tag gets its entire power from the received signal, and the information should be modulated in a way that maximizes the power transferred to the tag. The presented modulation codes compare favorably to codes used in radio frequency identification applications today. The second part of the paper describes modulation codes with some error-correcting capabilities. In fact, most errors in the reader-to-tag channel are due to incorrect timing. Here, we propose to model the timing errors in the reader-to-tag communication channel by a simple bit-shift channel, and we will present optimal (in the sense of maximizing the code rate for a given block length) single bit-shift error-correcting codes for this simple bit-shift channel that also have large average power.
Keywords :
channel coding; error correction codes; radiofrequency identification; telecommunication channels; code rate; electrical current; error-correcting capability; incorrect timing; inductive coupling; inductively coupled channel coding; modulation codes; radio frequency identification applications; reader-to-tag channel; reader-to-tag communication channel; received signal; simple bit-shift channel; single bit-shift error-correcting codes; timing errors; Communication channels; Couplings; Encoding; Modulation; Radiofrequency identification; Signal to noise ratio; Timing; Bit-shift channel; constrained coding; error-correcting codes; inductive coupling; modulation codes; radio frequency identification (RFID); reader-to-tag channel; synchronization errors;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2012.2201370
Filename :
6205389
Link To Document :
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