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An embedded deep learning system for augmented reality in firefighting applications

机译:消防应用中增强现实的嵌入式深度学习系统

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Firefighting is a dynamic activity, in which numerous operations occur simultaneously. Maintaining situational awareness (i.e., knowledge of current conditions and activities at the scene) is critical to the accurate decision-making necessary for the safe and successful navigation of a fire environment by firefighters. Conversely, the disorientation caused by hazards such as smoke and extreme heat can lead to injury or even fatality. This research implements recent advancements in technology such as deep learning, point cloud and thermal imaging, and augmented reality platforms to improve a firefighter’s situational awareness and scene navigation through improved interpretation of that scene. We have designed and built a prototype embedded system that can leverage data streamed from cameras built into a firefighter’s personal protective equipment (PPE) to capture thermal, RGB color, and depth imagery and then deploy already developed deep learning models to analyze the input data in real time. The embedded system analyzes and returns the processed images via wireless streaming, where they can be viewed remotely and relayed back to the firefighter using an augmented reality platform that visualizes the results of the analyzed inputs and draws the firefighter’s attention to objects of interest, such as doors and windows otherwise invisible through smoke and flames.
机译:消防是一种动态活动,其中许多操作同时发生。保持态势意识(即现场当前条件和活动的知识)对于通过消防员安全和成功导航火灾环境的准确决策至关重要。相反,由烟雾和极热的危害引起的迷失方向可能导致伤害甚至死亡。该研究实现了最近的技术进步,如深度学习,点云和热成像,以及增强现实平台,通过改善对该场景的解释来改善消防员的情境意识和场景导航。我们设计并建立了一个原型嵌入式系统,可以利用从摄像机内置的摄像机流式传输到消防员的个人防护设备(PPE)中的数据来捕获热,RGB颜色和深度图像,然后部署已开发的深度学习模型,以分析输入数据即时的。嵌入式系统分析并通过无线流返回处理的图像,在那里可以使用增强的现实平台来远程播放并将其转回消防员,这些平台可视化分析的输入结果,并将消防员注意到感兴趣的对象(如)门和窗户否则通过烟雾和火焰看不见。

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