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Bacterial colony: Information processing and computational behavior

机译:细菌菌落:信息处理和计算行为

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A bacterium presents rudimentary, though powerful, cognitive functions, such as sensing the environment, processing information and contextual interpretation. When part of a colony, bacteria show collective memory, distributed information storage and processing, collective decision making abilities, cooperation and competition, various communication methods and learning at different levels. These features and capabilities allow us to view bacteria colonies as complex adaptive systems, from which much inspiration can be taken to the design of bioinspired tools and algorithms for problem solving and the modeling of biological phenomena. Despite some effort has been taken in this direction, emphasizing applications in optimization, the present paper brings a discussion of bacteria as useful information processing systems under an intelligent agent framework. The main benefits of this discussion, thus, are the presentation of an intelligent agent-based perspective of bacteria, the stress of the main communication skills and mechanisms of bacteria, and a structured discussion of their main information processing and learning. Our hope is that this paper paves the conceptual ground for the design of novel bacteria inspired algorithms with applications over several areas, from the mining of large databases, to the design of sophisticated decision-making mechanisms for collective robotics.
机译:细菌具有基本的认知功能,但功能强大,例如感知环境,处理信息和上下文解释。在一个殖民地中,细菌表现出集体记忆,分布式信息存储和处理,集体决策能力,合作与竞争,各种交流方法和不同层次的学习能力。这些特征和功能使我们可以将细菌菌落视为复杂的适应性系统,从中可以汲取很多灵感来设计用于解决问题和生物现象建模的受生物启发的工具和算法。尽管已经朝着这个方向进行了一些努力,强调了优化中的应用,但本文还是将细菌作为智能代理框架下的有用信息处理系统进行了讨论。因此,本次讨论的主要好处是提出了一种基于智能体的细菌观点,强调了细菌的主要沟通技巧和机制,并对其细菌的主要信息处理和学习进行了结构化的讨论。我们的希望是,本文为新颖的细菌启发算法的设计铺平了概念基础,该算法在从大型数据库的挖掘到集体机器人技术的复杂决策机制设计等多个领域的应用中均得到了应用。

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