Reaction Diffusion and Chemotaxis for Decentralized Gathering on FPGAs

Author:

Girau Bernard1,Torres-Huitzil César2,Vlassopoulos Nikolaos3,Barrón-Zambrano José Hugo2

Affiliation:

1. LORIA/University Nancy 1, Cortex Group, Campus Scientifique, Vandoeuvre-les-Nancy, France

2. Cinvestav Tamaulipas, Information Technology Laboratory, Victoria, Mexico

3. INRIA Nancy Grand Est, Maia group, Villers-les-Nancy, France

Abstract

We consider here the feasibility of gathering multiple computational resources by means of decentralized and simple local rules. We study such decentralized gathering by means of a stochastic model inspired from biology: the aggregation of theDictyostelium discoideumcellular slime mold. The environment transmits information according to a reaction-diffusion mechanism and the agents move by following excitation fronts. Despite its simplicity this model exhibits interesting properties of self-organization and robustness to obstacles. We first describe the FPGA implementation of the environment alone, to perform large scale and rapid simulations of the complex dynamics of this reaction-diffusion model. Then we describe the FPGA implementation of the environment together with the agents, to study the major challenges that must be solved when designing a fast embedded implementation of the decentralized gathering model. We analyze the results according to the different goals of these hardware implementations.

Publisher

Hindawi Limited

Subject

Hardware and Architecture

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