Massive and unobtrusive screening of people in public environments is becoming a critical task to guarantee safety in congested shared spaces, as well as to support early non-invasive diagnosis and response to disease outbreaks. Among various sensors and Internet of Things (IoT) technologies, thermal vision systems, based on low-cost infrared (IR) array sensors, allow to track thermal signatures induced by moving people. Unlike contact tracing applications that exploit short-range communications, IR-based sensing systems are passive, as they do not need the cooperation of the subject(s) and do not pose a threat to user privacy. The paper develops a signal processing framework that enables the joint analysis of subject mobility while automating the temperature screening process. The system consists of IR-based sensors that monitor both subject motions and health status through temperature measurements. Sensors are networked via wireless IoT tools and are deployed according to different configurations (wall- or ceiling-mounted setups). The system targets the joint passive localization of subjects by tracking their mutual distance and direction of arrival, in addition to the detection of anomalous body temperatures for subjects close to the IR sensors. Focusing on Bayesian methods, the paper also addresses best practices and relevant implementation challenges using on field measurements. The proposed framework is privacy-neutral, it can be employed in public and private services for healthcare, smart living and shared spaces scenarios without any privacy concerns. Different configurations are also considered targeting both industrial, smart space and living environments.
翻译:对公众环境中的人进行大规模和不受干扰的大规模筛查,正成为一项关键任务,以确保在拥挤的共享空间中的安全,并支持早期的非侵入性诊断和疾病爆发的早期反应。在各种Times(IoT)技术的传感器和互联网中,基于低成本红外线(IR)阵列传感器的热视系统,能够跟踪移动人员引起的热信号。与利用短程通信的接触追踪应用系统不同,IR的遥感系统是被动的,因为他们不需要该主题的合作,也不对用户隐私构成威胁。文件开发了一个信号处理框架,以便能够在温度检查过程自动化的同时对主题流动性进行联合分析。该系统由基于IR的传感器组成,通过温度测量来监测主题运动和健康状况。传感器通过无线的IoT工具联网,根据不同的配置(墙或天顶式设置)部署。该系统通过跟踪其相互的距离和抵达方向,以及发现智能空间空间定位对用户隐私的定位,除了检测到智能空间定位,同时能够对目标对象进行联合分析,同时对温度进行温度分析,同时对对象进行温度测量,并且使用与IR传感器使用最佳的地面上的最佳测量。