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Integrating adjustable autonomy in an intelligent control framework

机译:集成在智能控制框架中的可调自主权

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Currently, multiple humans are needed to operate a single uninhabited aerial vehicle (UAV). In the near future, combat techniques will involve single operators controlling multiple uninhabited ground and air vehicles. This situation creates both technological hurdles as well as interaction design challenges that must be addressed to support future fighters. In particular, the system will need to negotiate with the operator about proper task delegation, keeping the operator appropriately apprised of autonomous actions. This in turn implies that the system must know what the user is doing, what needs to be done in the present situation, and the comparative strengths for of the human and the system in each task. Towards building such systems, we are working on an Intelligent Control Framework (ICF) that provides a layer of intelligence to support future warfighters in complex task environments. The present paper presents the Adjustable Autonomy Module (AAM) in ICF. The AAM encapsulates some capabilities for user plan recognition, situation reasoning, and authority delegation control. The AAM has the knowledge necessary to support operator-system dialogue about autonomy changes, and it also provides the system with the ability to act on this knowledge. Combined with careful interaction design, planning and plan-execution capabilities, the AAM enables future design and development of effective human-robot teams.
机译:目前,需要多个人类来操作单个无人居住的空中车辆(UAV)。在不久的将来,战斗技术将涉及单个操作员控制多个无人机的地面和空气车辆。这种情况创造了技术障碍以及必须解决的互动设计挑战,以支持未来的战士。特别是,该系统需要与运营商谈判有关适当的任务委派,并使操作员适当地了解自主行动。这反过来又意味着系统必须知道用户正在做的事情,在当前情况下需要做些什么,以及每个任务中的人类和系统的比较优势。对于建立此类系统,我们正在研究一个智能控制框架(ICF),提供一层智能,以支持复杂任务环境中的未来作战者。本文介绍了ICF中可调自主模块(AAM)。 AAM封装了用户计划识别,情况推理和权威委派控制的一些功能。 AAM具有支持对自主变化的操作员系统对话所需的知识,并且还提供了对这种知识行事的能力。结合仔细的交互设计,规划和计划执行能力,AAM使未来的设计和开发有效的人体机器人团队。

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