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Applications of multi-agent slime mould computing

机译:多Agent煤泥模具计算的应用

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The giant single-celled slime mould Physarum polycephalum has inspired rapid developments in unconventional computing substrates since the start of this century. This is primarily due to its simple component parts and the distributed nature of the 'computation' which it approximates during its growth, foraging and adaptation to a changing environment. Slime mould functions as a living embodied computational material which can be influenced (or programmed) by the placement of external stimuli. The goal of exploiting this material behaviour for unconventional computation led to the development of a multi-agent approach to the approximation of slime mould behaviour. The basis of the model is a simple dynamical pattern formation mechanism which exhibits self-organised formation and subsequent adaptation of collective transport networks. The system exhibits emergent properties such as relaxation and minimisation and it can be considered as a virtual computing material, influenced by the external application of spatial concentration gradients. In this paper we give an overview of this multi-agent approach to unconventional computing. We describe its computational mechanisms and different generic application domains, together with concrete example applications of material computation. We examine the potential exploitation of the approach for computational geometry, path planning, combinatorial optimisation, data smoothing and statistical applications.
机译:自本世纪初以来,巨大的单孔粘液模具Physarum polycephalum激发了非常规计算基质的快速发展。这主要是由于其简单的组成部分以及它在生长,觅食和适应不断变化的环境过程中近似的“计算”的分布式特性。粘液霉菌起着生动的计算材料的作用,可以受到外部刺激的放置的影响(或编程)。利用这种材料行为进行非常规计算的目的导致了开发多代理方法来逼近粘液模子行为。该模型的基础是一种简单的动态模式形成机制,该机制表现出自组织形成和随后对集体运输网络的适应。该系统展现出诸如松弛和最小化之类的新兴属性,并且可以将其视为虚拟计算材料,受空间浓度梯度的外部应用影响。在本文中,我们概述了这种用于非常规计算的多主体方法。我们描述了其计算机制和不同的通用应用领域,以及材料计算的具体示例应用。我们研究了该方法在计算几何,路径规划,组合优化,数据平滑和统计应用中的潜在利用。

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