Sunny Ali Imam, Zhao Aobo, Li Li, Kanteh Sakiliba Sambu
Nuclear AMRC, Advanced Manufacturing Park, Brunel Way, Rotherham S60 5WG, UK.
Solartech-UK Ltd., 11 Llansannor Drive, Cardiff, Wales CF10 4BW, UK.
Sensors (Basel). 2020 Dec 31;21(1):214. doi: 10.3390/s21010214.
Wireless Sensor Networks (WSNs) are promising technologies for exploiting in harsh environments such as can be found in the nuclear industry. Nuclear storage facilities can be considered harsh environments in that, amongst other variables, they can be dark, congested, and have high gamma radiation levels, which preclude operator access. These conditions represent significant challenges to sensor reliability, data acquisition and communications, power supplies, and longevity. Installed monitoring of parameters such as temperature, pressure, radiation, humidity, and hydrogen content within a nuclear facility may offer significant advantages over current baseline measurement options. This paper explores Commercial Off-The-Shelf (COTS) components to comprise an installed Internet of Things (IoT)-based multipurpose monitoring system for a specific nuclear storage situation measuring hydrogen concentration and temperature. This work addresses two major challenges of developing an installed remote sensing monitor for a typical nuclear storage scenario to detect both hydrogen concentrations and temperature: (1) development of a compact, cost-effective, and robust multisensor system from COTS components, and (2) validation of the sensor system for detecting temperature and hydrogen gas release. The proof of concept system developed in this study not only demonstrates the cost reduction of regular monitoring but also enables intelligent data management through the IoT by using ThingSpeak in a harsh environment.
无线传感器网络(WSNs)是有望应用于恶劣环境的技术,比如在核工业领域中能遇到的环境。核储存设施可被视为恶劣环境,因为在诸多变量中,它们可能光线昏暗、空间拥挤,且伽马辐射水平高,这使得操作人员无法进入。这些条件对传感器的可靠性、数据采集与通信、电源供应以及使用寿命构成了重大挑战。对核设施内的温度、压力、辐射、湿度和氢气含量等参数进行实时监测,可能比当前的基线测量选项具有显著优势。本文探讨了商用现货(COTS)组件,以构建一个基于物联网(IoT)的已安装多用途监测系统,用于特定核储存环境下氢气浓度和温度的测量。这项工作解决了为典型核储存场景开发已安装遥感监测器以检测氢气浓度和温度的两个主要挑战:(1)利用COTS组件开发一个紧凑、经济高效且坚固的多传感器系统;(2)验证该传感器系统用于检测温度和氢气释放的能力。本研究中开发的概念验证系统不仅展示了常规监测成本的降低,还通过在恶劣环境中使用ThingSpeak实现了通过物联网进行智能数据管理。