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Improving Emergency Response and Human-Robotic Performance

机译:提高应急响应和人机性能

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Preparedness for chemical, biological, and radiological/nuclear incidents at nuclear power plants (NPPs) includes the deployment of well trained emergency response teams. While teams are expected to do well, data from other domains suggests that the timeliness and accuracy associated with incident response can be improved through collaborative human-robotic interaction. Many incident response scenarios call for multiple, complex procedure-based activities performed by personnel wearing cumbersome personal protective equipment (PPE) and operating under high levels of stress and workload. While robotic assistance is postulated to reduce workload and exposure, limitations associated with communications and the robot's ability to act independently have served to limit reliability and reduce our potential to exploit human-robotic interaction and efficacy of response. Recent work at the Idaho National Laboroaty (INL) on expanding robot capability has the potential to improve human-system response during disaster management and recovery. Specifically, increasing the range of higher level robot behaviors such as autonomous navigation and mapping, evolving new abstractions for sensor and control data, and developing metaphors for operator control have the potential to improve state-of-the-art in incident response. This paper discusses these issues and reports on experiments underway intelligence residing on the robot to enhance emergency response.
机译:核电厂(NPPS)的化学,生物学和放射性/核事件的准备包括部署训练有素的应急响应团队。虽然队伍预计会很好,来自其他领域的数据表明,通过协同人机器机器人相互作用可以提高与事故反应相关的及时性和准确性。许多事件响应情景呼叫由穿着繁琐的个人防护设备(PPE)的人员进行的基于多种复杂的过程的活动,并在高水平的压力和工作量下运行。虽然机器人援助发布以减少工作量和曝光,但与通信和机器人行动的能力相关的限制是为了限制可靠性并降低利用人机机器人相互作用和响应效果的潜力。在扩大机器人能力的爱达荷国家劳工(INL)的最新工作有可能在灾害管理和恢复过程中改善人工系统的反应。具体而言,增加诸如自主导航和映射的更高级别机器人行为的范围,用于传感器和控制数据的新抽象,以及用于操作者控制的开发隐喻具有可能改善入射响应的最先进的潜力。本文讨论了这些问题和报告对实验的智力居住在机器人上,以提高应急响应。

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