DocumentCode :
55699
Title :
Channel Codes for Reliability Enhancement in Molecular Communication
Author :
Po-Jen Shih ; Chia-Han Lee ; Ping-Cheng Yeh ; Kwang-Cheng Chen
Author_Institution :
Dept. of EE, Nat. Taiwan Univ., Taipei, Taiwan
Volume :
31
Issue :
12
fYear :
2013
fDate :
Dec-13
Firstpage :
857
Lastpage :
867
Abstract :
Molecular communications emerges as a promising scheme for communications between nanoscale devices. In diffusion-based molecular communications, molecules as information symbols diffusing in the fluid environments suffer from molecule crossovers, i.e., the arriving order of molecules is different from their transmission order, leading to intersymbol interference (ISI). In this paper, we introduce a new family of channel codes, called ISI-free codes, which improve the communication reliability while keeping the decoding complexity fairly low in the diffusion environment modeled by the Brownian motion. We propose general encoding/decoding schemes for the ISI-free codes, working upon the modulation schemes of transmitting a fixed number of identical molecules at a time. In addition, the bit error rate (BER) approximation function of the ISI-free codes is derived mathematically as an analytical tool to decide key factors in the BER performance. Compared with the uncoded systems, the proposed ISI-free codes offer good performance with reasonably low complexity for diffusion-based molecular communication systems.
Keywords :
Brownian motion; decoding; encoding; error statistics; intersymbol interference; molecular communication (telecommunication); telecommunication network reliability; BER; Brownian motion; ISI-free codes; bit error rate; channel codes; communication reliability; decoding complexity; encoding-decoding; fluid environments; information symbols; intersymbol interference; molecular communication; molecule crossovers; nanoscale devices; reliability enhancement; transmission order; Approximation methods; Bit error rate; Complexity theory; Decoding; Iterative decoding; Molecular communication; Receivers; Molecular communications; channel coding; diffusion; inter-symbol interference (ISI);
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2013.SUP2.12130018
Filename :
6708566
Link To Document :
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