Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/4718
Title: Capacity of Multilayer Diffusion-based Molecular Communication (DBMC) Channel
Authors: Md Mustam, S.
Syed Yusof, S. K.
Zubair, S.
Issue Date: 24-May-2016
Publisher: ACM
Citation: Md Mustam, S., Syed Yusof, S. K., & Zubair, S. (2016, May). Capacity of multilayer diffusion-based molecular communication (DBMC) channel. In Proceedings of the 9th EAI International Conference on Bio-inspired Information and Communications Technologies (formerly BIONETICS) (pp. 93-99).
Abstract: In diffusion-based molecular communication (DBMC) system, information is encoded in the variation of molecules such as amounts, time shifts, or different molecule types, at a transmitter nanomachine (TN). These molecules are then released and propagated through a channel towards a receiver nanomachine (RN). One of the most important performance matrices in evaluating this system from an information theory perspective is channel capacity. This paper provides a derivation of capacity expression for multilayer DBMC channel in which the propagation of molecules from the TN to the RN through multiple channels follows the Brownian motion and modeled by Fick's equations. The Fourier transforms is employed to convert time to frequency domain functions. The results show that the maximum capacity can be obtained by increasing both the bandwidth and the average transmitted power, and decreasing the TN-RN distance.
Description: BICT'15: Proceedings of the 9th EAI International Conference on Bio-inspired Information and Communications Technologies (formerly BIONETICS)May 2016 Pages 93–99https://doi.org/10.4108/eai.3-12-2015.2262502
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/4718
Appears in Collections:Telecommunication Engineering

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