首页> 外文会议>Future Computing, Service Computation, Cognitive, Adaptive, Content, Patterns, 2009. COMPUTATIONWORLD '09 >Towards Energy Homeostasis in an Autonomous Self-Reconfigurable Modular Robotic Organism
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Towards Energy Homeostasis in an Autonomous Self-Reconfigurable Modular Robotic Organism

机译:自主自主重构的模块化机器人生物体内的能量稳态

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This paper presents a novel approach to artificial energy homeostasis in self-reconfigurable modular robots. Using self-monitoring and self-sufficiency principles, energy harvesting in a system of distributed energy sources is proposed. In conjunction with this, we propose an artificial immune system that incorporates on-board power management system for adaptive real time detection of errors which acts as an indicator to a robot to harvest energy from other robots within the local vicinity. Early experiments show that the Artificial Immune System affords a high level of error detection within the power module and will prove to be beneficial in maintaining overall performance of a robotic unit for long periods of time.
机译:本文提出了一种可自我重构的模块化机器人中人工能量稳态的新方法。利用自我监控和自我满足的原理,提出了分布式能源系统中的能量收集。与此结合,我们提出了一种人工免疫系统,该系统结合了用于自适应实时检测错误的机载电源管理系统,可作为机器人从附近其他机器人收集能量的指示器。早期的实验表明,人工免疫系统在电源模块内提供了高水平的错误检测功能,并且将证明对于长时间保持机器人单元的整体性能是有益的。

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