DocumentCode :
53208
Title :
Diffusion-Based Clock Synchronization for Molecular Communication Under Inverse Gaussian Distribution
Author :
Lin Lin ; Chengfeng Yang ; Maode Ma ; Shiwei Ma
Author_Institution :
Sch. of Mechatron. Eng. & Autom., Shanghai Univ., Shanghai, China
Volume :
15
Issue :
9
fYear :
2015
fDate :
Sept. 2015
Firstpage :
4866
Lastpage :
4874
Abstract :
Nanonetworks are expected to expand the capabilities of individual nanomachines by allowing them to cooperate and share information by molecular communication. The information molecules are released by the transmitter nanomachine and diffuse across the aqueous channel as a Brownian motion holding the feature of a strong random movement with a large propagation delay. In order to ensure an effective real-time cooperation, it is necessary to keep the clock synchronized among the nanomachines in the nanonetwork. This paper proposes a model on a two-way message exchange mechanism with the molecular propagation delay based on the inverse Gaussian distribution. The clock offset and clock skew are estimated by the maximum-likelihood estimation. Simulation results by MATLAB show that the mean square errors of the estimated clock offsets and clock skews can be reduced and converge with a number of rounds of message exchanges. The comparison of the proposed scheme with a clock synchronization method based on symmetrical propagation delay demonstrates that our proposed scheme can achieve better performance in terms of accuracy.
Keywords :
Gaussian distribution; maximum likelihood estimation; molecular communication (telecommunication); synchronisation; Brownian motion; diffusion-based clock synchronization method; inverse Gaussian distribution; maximum-likelihood estimation; molecular communication; molecular propagation delay; two-way message exchange mechanism; Clocks; Gaussian distribution; Maximum likelihood estimation; Molecular communication; Nanobioscience; Propagation delay; Synchronization; Molecular communication; clock synchronization; inverse Gaussian distribution; maximum likelihood estimation; molecular communication;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2015.2429673
Filename :
7101796
Link To Document :
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