Department of Computer Science and Engineering, York University, 4700 Keele Street, Toronto, ON M3J 1P3, Canada.
IEEE Trans Nanobioscience. 2012 Sep;11(3):304-14. doi: 10.1109/TNB.2012.2186460. Epub 2012 Feb 3.
We consider a confined space molecular communication system, where molecules or information carrying particles are used to transfer information on a microfluidic chip. Considering that information-carrying particles can follow two main propagation schemes: passive transport, and active transport, it is not clear which achieves a better information transmission rate. Motivated by this problem, we compare and analyze both propagation schemes by deriving a set of analytical and mathematical tools to measure the achievable information rates of the on-chip molecular communication systems employing passive to active transport. We also use this toolbox to optimize design parameters such as the shape of the transmission area, to increase the information rate. Furthermore, the effect of separation distance between the transmitter and the receiver on information rate is examined under both propagation schemes, and a guidepost to design an optimal molecular communication setup and protocol is presented.
我们考虑了一种受限空间分子通信系统,其中分子或携带信息的粒子被用于在微流控芯片上传输信息。考虑到携带信息的粒子可以遵循两种主要的传播方案:被动传输和主动传输,因此不清楚哪种方案能实现更好的信息传输速率。受此问题的启发,我们通过推导出一组分析和数学工具来比较和分析这两种传播方案,以测量采用从被动到主动传输的片上分子通信系统的可实现信息速率。我们还使用这个工具包来优化设计参数,例如传输区域的形状,以提高信息速率。此外,在这两种传播方案下,我们还研究了发射器和接收器之间的分离距离对信息速率的影响,并提出了设计最佳分子通信设置和协议的指南。