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An Adjustable Autonomy Management Module for Multi-agent Systems

机译:用于多主体系统的可调式自治管理模块

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The design and development of software agents that perform adjustable autonomous actions in dynamic environments is a challenging research issue. Adjustable autonomous agents operate according to a spectrum of autonomy states. The autonomy states are dynamically adjusted to improve the agents’ performance and avoid autonomy surprises. For instance, the agents need to be guided or improvise when they encounter unplanned events. In this paper, we propose an Adjustable Autonomy Management (AAM) module for multi-agent systems. We integrate the AAM module within a BDI agent’s architecture to form an adjustable autonomous agent. The AAM module enables the agent to internally adjust its autonomy and handles external autonomy adjustments. We apply the agents in an autonomous Unmanned Aerial Vehicle (UAV) system. We test the UAV in a dynamic environment via experimenting aerial surveillance missions. The test results show that the agent-based UAV system successfully operates in the dynamic environment and performs the aerial surveillance missions. Subsequently, the AAM module is able to manage agents’ autonomy, reduce human workload and reduce adjustable autonomy disturbance.
机译:在动态环境中执行可调自主动作的软件代理的设计和开发是一个具有挑战性的研究问题。可调式自治代理根据一系列自治状态进行操作。动态调整自治状态以提高座席的绩效并避免自治突击。例如,当代理商遇到计划外事件时,需要对其进行指导或即兴发挥。在本文中,我们提出了一种用于多主体系统的可调整自治管理(AAM)模块。我们将AAM模块集成到BDI代理的体系结构中,以形成可调整的自治代理。 AAM模块使代理能够在内部调整其自治权并处理外部自治权调整。我们在自动无人驾驶飞机(UAV)系统中应用代理。我们通过试验空中监视任务在动态环境中测试无人机。测试结果表明,基于代理的无人机系统可以在动态环境中成功运行并执行空中监视任务。随后,AAM模块能够管理座席的自主权,减少人员工作量并减少可调整的自主权干扰。

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