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Molecular Communication: Modeling and Simulations

Molecular communication : Modeling and Simulations Department of Chemical Engineering and Material Science* School of Information and Computer Science** University of California, Irvine 1. Introduction to the Proposed Summer Research This proposal is intended to address research challenges in Molecular communication [4], a new and interdisciplinary research area that spans the nanotechnology, bioengineering, and communication technology. Molecular communication allows nanomachines ( , nano-scale devices) to communicate using molecules as a communication carrier. One of the applications of Molecular communication is to nano-medicine [2], where nanomachines use Molecular communication to interact with cells and tissues at a Molecular scale, or nanomachines do so to interact with other nanomachines.

Data Communication Molecular Communication Electrical/optical signals Carriers Chemical signals Wires, airborne Environment Aqueous High speed (3x105 km/s) and Communication Slow (10-1 km/s) and short Long range (m – km) Characteristics Range (nm – m) High accuracy and high System Low accuracy due to stochastic energy consumption Characteristics Nature, and energy efficient

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  Communication, Modeling, Simulation, Molecular, Stochastic, Modeling and simulation, Molecular communication, To stochastic

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