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A Virtual Reality Glovebox with Dynamic Safety Modeling for Improved Criticality Regulation Visualization

机译:具有动态安全建模的虚拟现实手套箱,可提高临界监管可视化

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Technicians working in gloveboxes must vigilantly keep track of the locations of the radioactive materials they work with in order to make sure they do not inadvertently perform an action that can lead to a technical criticality safety violation. The administrative consequences of these mistakes can result in halting work in a facility and can be costly. The process currently used to ensure safe operations requires every two technicians to be monitored and documented by a third technician, thus resulting in large overhead costs. This work aims to help reduce the possibility of incurring an administrative criticality violation by tracking the dynamics of nuclear materials located inside a glovebox. Emerging technologies in sensing and virtual/augmented reality were combined with knowledge of nuclear criticality regulations to create a prototype Interactive Electronic Work Control System. Visual and depth sensors are used to detect the dynamically changing location of fissile materials in a glovebox during simulated working conditions. These measurements are then fed into a representative criticality safety model to determine appropriate separation distances between different materials. A visual depiction of these models is overlaid on representations of physical objects using virtual reality technologies to enhance the operator's perception of criticality safety regulations.
机译:在手套箱中工作的技术人员必须保持术语跟踪他们工作的放射性物质的位置,以确保它们不会无意中执行可能导致技术关键安全违规行为的动作。这些错误的行政后果可能导致设施中的工作萎缩,并且可能是昂贵的。目前用于确保安全操作的过程需要由第三技术人员监控和记录每两个技术人员,从而导致大的开销成本。这项工作旨在通过跟踪位于手套箱内的核材料的动态来帮助减少产生行政致力于违规的可能性。感应和虚拟/增强现实的新兴技术与核关键性规定的知识相结合,以创建原型交互式电子工作控制系统。视觉和深度传感器用于在模拟工作条件下检测在手套箱中的裂变材料的动态变化位置。然后将这些测量送入代表性临界安全模型中以确定不同材料之间的适当分离距离。这些模型的视觉描绘覆盖了使用虚拟现实技术的物理对象的表示,以提高操作员对关键安全法规的看法。

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