硬件加速分布式普适应用的仿生代理框架

O. Brousse, J. Guillot, G. Sassatelli, Thierry Gil, M. Robert, J. Moreno, A. Villa, E. Sanchez
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引用次数: 4

摘要

本文描述了一个支持仿生机制的面向智能体的框架,该框架利用了Perplexus IST欧洲项目中开发的普适平台固有的硬件并行性。提出的框架是一种灵活和模块化的方法来描述和模拟复杂的现象,如生物学上似是而非的神经网络或文化传播。与此框架相关联,并基于Perplexus平台节点的多处理器架构,描述了一个能够加速可并行代理的工具套件。因此,这种贡献结合了基于代理的编程的软件灵活性和多处理器硬件执行的效率。这个框架已经通过两个实验成功地进行了测试:一个是由机器人组成的概念验证应用程序,机器人可以根据环境自主改善自己的行为,另一个是脉冲神经网络模拟。这些结果证明了该框架及其相关方法在复杂现象模拟的背景下是相关的。
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A Bio-Inspired Agent Framework for Hardware Accelerated Distributed Pervasive Applications
This paper describes an agent oriented framework supporting bio-inspired mechanisms which takes profit of the intrinsic hardware parallelism of the pervasive platform developed within the Perplexus IST European project. The proposed framework is a flexible and modular means to describe and simulate complex phenomena such as biologically plausible neural networks or culture dissemination. Associated to this framework and based on the multiprocessor architecture of the Perplexus platform nodes, a tool suite capable of accelerating parallelizable agents is described. Therefore, this contribution combines the software flexibility of agent-based programming with the efficiency of multiprocessor hardware execution. This framework has been successfully tested with two experiments: a proof of concept application made of robots that autonomously improve their behaviours according to their environment and a spiking neural network simulation. These results prove that the framework and its associated methodology are relevant in the context of the simulation of complex phenomena.
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