DocumentCode
3605435
Title
Energy-Efficient Communication in the Presence of Synchronization Errors
Author
Yu-Chih Huang ; Niesen, Urs ; Gupta, Piyush
Author_Institution
Dept. of Commun. Eng., Nat. Taipei Univ., Taipei, Taiwan
Volume
61
Issue
11
fYear
2015
Firstpage
6131
Lastpage
6144
Abstract
Communication systems are traditionally designed to have tight transmitter-receiver synchronization. This requirement has negligible overhead in the high-signal-to-noise ratio (SNR) regime. However, in many applications, such as wireless sensor networks, communication needs to happen primarily in the energy-efficient regime of low SNR, where requiring tight synchronization can be highly suboptimal. In this paper, we model the noisy channel with synchronization errors as a duplication/deletion/substitution channel. For this channel, we propose a new communication scheme that requires only loose transmitter-receiver synchronization. We show that the proposed scheme is asymptotically optimal for the Gaussian channel with synchronization errors in terms of energy efficiency as measured by the rate per unit energy. In the process, we also establish that the lack of synchronization causes negligible loss in energy efficiency. We further show that, for a general discrete memoryless channel with synchronization errors and a general input cost function admitting a zero-cost symbol, the rate per unit cost achieved by the proposed scheme is within a factor two of the information-theoretic optimum.
Keywords
Gaussian channels; radio receivers; radio transmitters; synchronisation; wireless channels; wireless sensor networks; Gaussian channel; deletion channel; duplication channel; energy-efficient communication; general discrete memoryless channel; general input cost function; high-signal-to-noise ratio regime; information-theoretic optimum; noisy channel; rate-per-unit energy; substitution channel; transmitter-receiver synchronization errors; wireless sensor networks; zero-cost symbol; Clocks; Cost function; Memoryless systems; Receivers; Synchronization; Transmitters; Upper bound; Asynchronous communication; capacity per unit cost; duplication-deletion channel;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2015.2476793
Filename
7243314
Link To Document