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Effects of tactile cueing on concurrent performance of military and robotics tasks in a simulated multitasking environment

机译:在模拟多任务环境中,触觉提示对军事和机器人任务同时执行的影响

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This study examined the concurrent performance of military gunnery, robotics control and communication tasks in a simulated environment. More specifically, the study investigated how aided target recognition (AiTR) capabilities (delivered either through tactile or tactile + visual cueing) for the gunnery task might benefit overall performance. Results showed that AiTR benefited not only the gunnery task, but also the concurrent robotics and communication tasks. The participants' spatial ability was found to be a good indicator of their gunnery and robotics task performance. However, when AiTR was available to assist their gunnery task, those participants of lower spatial ability were able to perform their robotics tasks as well as those of higher spatial ability. Finally, participants' workload assessment was significantly higher when they teleoperated (i.e. remotely operated) a robot and when their gunnery task was unassisted. These results will further understanding of multitasking performance in military tasking environments. These results will also facilitate the implementation of robots in military settings and will provide useful data to military system designs.
机译:这项研究检查了在模拟环境中军火,机器人控制和通讯任务的并行性能。更具体地说,该研究调查了用于火炮任务的辅助目标识别(AiTR)功能(通过触觉或触觉+视觉提示来提供)如何使整体性能受益。结果表明,AiTR不仅使炮手任务受益,而且使同时进行的机器人和通信任务受益。参与者的空间能力被认为是他们的火炮和机器人技术任务表现的良好指标。但是,当AiTR可以协助他们的火力任务时,那些空间能力较低的参与者能够执行机器人任务,而空间能力较高的参与者也可以执行机器人任务。最后,当参与者远程操作(即远程操作)机器人并且不执行炮火任务时,他们的工作量评估显着更高。这些结果将进一步了解军事任务环境中的多任务性能。这些结果还将有助于在军事环境中实施机器人,并将为军事系统设计提供有用的数据。

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