首页> 外文会议>7th World Multiconference on Systemics, Cybernetics and Informatics(SCI 2003) vol.11: Communication, Network and Control Systems, Technologies and Applications: II >Holarchical Systems and Emotional Holons: Biologically-Inspired System Designs for Control of Autonomous Aerial Vehicles
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Holarchical Systems and Emotional Holons: Biologically-Inspired System Designs for Control of Autonomous Aerial Vehicles

机译:整体系统和情感瓜子:自主飞行器控制的生物启发系统设计

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The BEES (Bio-inspired Engineering for Exploration Systems) for Mars project at NASA Ames Research Center has the goal of developing bio-inspired flight control strategies to enable aerial explorers for Mars scientific investigations. This paper presents a summary of our ongoing research into biologically inspired system designs for control of unmanned autonomous aerial vehicle communities for Mars exploration. First, we present cooperative design considerations for robotic explorers based on the holarchical nature of biological systems and communities. Second, an outline of an architecture for cognitive decision making and control of individual robotic explorers is presented, modeled after the emotional nervous system of cognitive biological systems.
机译:NASA艾姆斯研究中心的火星BEES(探索系统的生物启发工程)项目的目标是开发生物启发的飞行控制策略,以使空中探索者能够进行火星科学研究。本文介绍了我们正在进行的对受生物启发的系统设计的研究的摘要,这些系统设计用于控制无人驾驶自动飞行器社区进行火星探测。首先,我们基于生物系统和社区的整体性质,提出了针对机器人探索者的合作设计考虑。其次,以认知生物系统的情绪神经系统为模型,提出了用于单个机器人探索者的认知决策和控制的架构概述。

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