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物联网边缘的电离辐射监测技术

Ionizing Radiation Monitoring Technology at the Verge of Internet of Things.

作者信息

Ahmad Muhammad Ikmal, Ab Rahim Mohd Hafizi, Nordin Rosdiadee, Mohamed Faizal, Abu-Samah Asma', Abdullah Nor Fadzilah

机构信息

Nuclear Science Programme, Department of Applied Physics, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.

Technical Support Division, Atomic Energy Licensing Board (AELB), Jalan Dengkil, Batu 24, Dengkil 43000, Selangor, Malaysia.

出版信息

Sensors (Basel). 2021 Nov 17;21(22):7629. doi: 10.3390/s21227629.

Abstract

As nuclear technology evolves, and continues to be used in various fields since its discovery less than a century ago, radiation safety has become a major concern to humans and the environment. Radiation monitoring plays a significant role in preventive radiological nuclear detection in nuclear facilities, hospitals, or in any activities associated with radioactive materials by acting as a tool to measure the risk of being exposed to radiation while reaping its benefit. Apart from in occupational settings, radiation monitoring is required in emergency responses to radiation incidents as well as outdoor radiation zones. Several radiation sensors have been developed, ranging from as simple as a Geiger-Muller counter to bulkier radiation systems such as the High Purity Germanium detector, with different functionality for use in different settings, but the inability to provide real-time data makes radiation monitoring activities less effective. The deployment of manned vehicles equipped with these radiation sensors reduces the scope of radiation monitoring operations significantly, but the safety of radiation monitoring operators is still compromised. Recently, the Internet of Things (IoT) technology has been introduced to the world and offered solutions to these limitations. This review elucidates a systematic understanding of the fundamental usage of the Internet of Drones for radiation monitoring purposes. The extension of essential functional blocks in IoT can be expanded across radiation monitoring industries, presenting several emerging research opportunities and challenges. This article offers a comprehensive review of the evolutionary application of IoT technology in nuclear and radiation monitoring. Finally, the security of the nuclear industry is discussed.

摘要

随着核技术的发展,自其在不到一个世纪前被发现以来,它持续应用于各个领域,辐射安全已成为人类和环境的主要关注点。辐射监测在核设施、医院或任何与放射性材料相关的活动中的预防性放射核检测中发挥着重要作用,它作为一种工具,在获取辐射益处的同时,测量暴露于辐射的风险。除了职业环境外,在辐射事故应急响应以及户外辐射区域也需要进行辐射监测。已经开发了多种辐射传感器,从简单的盖革 - 弥勒计数器到更大型的辐射系统,如高纯锗探测器,它们在不同环境中具有不同功能,但无法提供实时数据使得辐射监测活动的效果大打折扣。配备这些辐射传感器的载人车辆的部署显著缩小了辐射监测作业的范围,但辐射监测操作人员的安全仍受到威胁。最近,物联网(IoT)技术已被引入并为这些限制提供了解决方案。本综述阐明了对用于辐射监测目的的无人机物联网基本用途的系统理解。物联网中基本功能块的扩展可以在辐射监测行业中展开,带来了一些新出现的研究机遇和挑战。本文全面回顾了物联网技术在核与辐射监测中的演进应用。最后,讨论了核工业的安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/631e/8619633/842e6bae62a5/sensors-21-07629-g001.jpg

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