放射性源运输的智能规划 提高安全性和效率的先进工具
Rajiv Khadka1, Xingyue Yang, Kevin Kenney
1Idaho National Laboratory, 1955 N. Fremont Ave. Idaho Falls, ID 83415, USA.
Health physics
|February 3, 2026
概括
在生命周期结束时 (EOL) 管理高活性放射性源是复杂的. 一个新的软件解决方案使用LiDAR和动态路线规划来实现更安全,更有效的放射性物质处理和运输.
科学领域:
- 核工程 核工程是指核工程.
- 环境科学 环境科学
- 计算机科学 计算机科学
背景情况:
- 高活性放射性源的寿命终止 (EOL) 管理面临着重大的安全,后勤和监管挑战.
- 传统的场地评估和运输规划方法往往不足,缺乏准确性和适应性.
- 现有的方法可能会导致无效和增加安全风险在处理放射性材料.
研究的目的:
- 引入一种新的软件解决方案,旨在克服放射性源EOL管理中传统方法的局限性.
- 提高放射性源运输和处理的安全性,效率和监管合规性.
- 为详细的场地评估和精确规划提供一个全面的工具.
主要方法:
- 集成基于光检测和距离 (LiDAR) 的3D环境建模,用于详细地形可视化.
- 开发智能动态路线规划算法,以优化运输路径.
- 实现可定制的测量功能和以用户为中心的虚拟导航工具.
- 包括交互式危险可视化和实时碰撞检测功能.
主要成果:
- 该软件可实现准确的3D环境建模和详细的现场评估.
- 动态路线规划和虚拟导航有助于精确规划操作.
- 交互式危险识别和碰撞检测增强了安全协议.
- 现实世界的应用证明了运营效率的提高和风险的最小化.
结论:
- 这种新的软件解决方案显著改善了放射性源EOL管理.
- 该工具提高了运营效率,最大限度地降低了风险,并确保了监管合规.
- 这项技术有可能彻底改变放射性物质的处理和推进实践的现状.
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