首页> 外文会议>Robotics and Automation, 1997. Proceedings., 1997 IEEE International Conference on >Control of the distributed autonomous robotic system based on the biologically inspired immunological architecture
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Control of the distributed autonomous robotic system based on the biologically inspired immunological architecture

机译:基于生物学启发的免疫体系结构的分布式自主机器人系统的控制

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In this paper, we propose a new algorithm to control a distributed autonomous robotic system under dynamically changing environment based on immunological interaction between robots. Our algorithm can organize the robot population for dynamically changing multiple works. At first, we designed a control architecture for a multiple robotic system based on B-cell (which is main agent of immune system) interaction. Immune system has various kinds of B-cells, and B-cell interaction can organize its population balance against dynamically changing environment. We set the analogy between distributed autonomous robotic system and biological immune system. We verified the performance of our algorithm by computer simulation. As a simulation example there is considered the transportation of multiple objects to multiple locations against a deadline, with time-varying demand.
机译:在本文中,我们提出了一种新的算法来控制基于机器人免疫互动的动态变化环境下的分布式自主机器人系统。我们的算法可以组织机器人群体以动态变化多个工作。首先,我们设计了一种基于B细胞的多机器人系统的控制架构(其是免疫系统的主要代理)相互作用。免疫系统具有各种B细胞,B细胞相互作用可以组织其群体平衡,免受动态变化的环境。我们设定了分布式自主机器人系统和生物免疫系统之间的类比。我们通过计算机仿真验证了算法的性能。作为仿真示例,考虑到截止日期的多个位置的多个对象的运输,随着时间的需求。

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