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An Approach for Autonomy: A Collaborative Communication Framework for Multi-Agent Systems

机译:自治的方法:多智能体系统的协作通信框架

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摘要

Research done during the last three years has studied the emersion properties of Complex Adaptive Systems (CAS). The deployment of Artificial Intelligence (AI) techniques applied to remote Unmanned Aerial Vehicles has led the author to investigate applications of CAS within the field of Autonomous Multi-Agent Systems. The core objective of current research efforts is focused on the simplicity of Intelligent Agents (IA) and the modeling of these agents within complex systems. This research effort looks at the communication, interaction, and adaptability of multi-agents as applied to complex systems control. The embodiment concept applied to robotics has application possibilities within multi-agent frameworks. A new framework for agent awareness within a virtual 3D world concept is possible where the vehicle is composed of collaborative agents. This approach has many possibilities for applications to complex systems. This paper describes the development of an approach to apply this virtual framework to the NASA Goddard Space Flight Center (GSFC) tetrahedron structure developed under the Autonomous Nano Technology Swarm (ANTS) program and the Super Miniaturized Addressable Reconfigurable Technology (SMART) architecture program. These projects represent an innovative set of novel concepts deploying adaptable, self-organizing structures composed of many tetrahedrons. This technology is pushing current applied Agents Concepts to new levels of requirements and adaptability.
机译:在过去三年中进行的研究已经研究了复杂自适应系统(CAS)的显现特性。应用于远程无人飞行器的人工智能(AI)技术的部署已导致作者研究了CAS在自主多代理系统领域中的应用。当前研究工作的核心目标集中在智能代理(IA)的简单性以及复杂系统中这些代理的建模上。这项研究工作着眼于应用于复杂系统控制的多智能体的通信,交互和适应性。应用于机器人的实施例概念在多主体框架内具有应用可能性。如果车辆由协作代理商组成,则可以在虚拟3D世界概念中建立一个新的代理商意识框架。这种方法对于应用于复杂系统有很多可能性。本文描述了将这种虚拟框架应用于在自主纳米技术群(ANTS)计划和超小型化可寻址可重构技术(SMART)体系结构计划下开发的NASA戈达德太空飞行中心(GSFC)四面体结构的方法的开发。这些项目代表了一组创新的新颖概念,这些概念部署了由许多四面体组成的自适应,自组织结构。这项技术正在将当前应用的“代理概念”推向更高的要求和适应性水平。

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