DocumentCode :
72609
Title :
Diffusion-Based Nanonetworking: A New Modulation Technique and Performance Analysis
Author :
Arjmandi, Hamidreza ; Gohari, Amin ; Kenari, Masoumeh Nasiri ; Bateni, F.
Author_Institution :
Electr. Eng. Dept., Sharif Univ. of Technol., Tehran, Iran
Volume :
17
Issue :
4
fYear :
2013
fDate :
Apr-13
Firstpage :
645
Lastpage :
648
Abstract :
In this letter, a new molecular modulation scheme for nanonetworks is proposed. To evaluate the scheme, a system model based on the Poisson distribution is introduced. The error probability of the proposed scheme as well as that of two previously known schemes, the concentration and molecular shift keying modulations, are derived for the Poisson model by taking into account the error propagation effect of previously decoded symbols. The proposed scheme is shown to outperform the previously introduced schemes. This is due to the fact that the decoding of the current symbol in the proposed scheme does not encounter propagation of error, as the decoding of the current symbol does not depend on the previously transmitted and decoded symbols. Finally, fundamental limits on the probability of error of a practical set of encoders and decoders are derived using information theoretical tools.
Keywords :
Poisson distribution; decoding; diffusion; encoding; error statistics; molecular communication (telecommunication); phase shift keying; CSK; MSK; Poisson distribution; Poisson model; concentration shift keying; decoder; diffusion-based nanonetworking; encoder; error probability; error propagation effect; information theory; molecular modulation scheme; molecular shift keying modulation; performance analysis; symbol decoding; Bismuth; Decoding; Interference; Modulation; Molecular communication; Receivers; Transmitters; Nanonetworking; Poisson distribution; modulation; molecular communication;
fLanguage :
English
Journal_Title :
Communications Letters, IEEE
Publisher :
ieee
ISSN :
1089-7798
Type :
jour
DOI :
10.1109/LCOMM.2013.021913.122402
Filename :
6471723
Link To Document :
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