Baena-Navarro R, Torres-Hoyos F, Uc-Rios C, Colmenares-Quintero R F
Universidad Internacional Iberoamericana, 24560, Campeche, Mexico; Department of Systems Engineering, Universidad Cooperativa de Colombia 230002, Montería, Colombia.
Department of Physics, Universidad de Córdoba 230002, Montería, Colombia; Department of Systems Engineering, Universidad Cooperativa de Colombia 230002, Montería, Colombia.
Appl Radiat Isot. 2020 Dec;166:109359. doi: 10.1016/j.apradiso.2020.109359. Epub 2020 Jul 27.
Ionizing and non-ionizing radiations are part of our daily life, and when organisms are exposed to them for a long time, they may experience their lethal or sublethal effects. For this reason, technologies have been created to quantify them. In this study, Internet of Things (IoT) was used through connecting gamma meters and a low-cost UV radiation device. The validation of this structure was performed with meters calibrated in certified laboratories. The validation results matched those obtained by the other devices, with an error of 2%.
电离辐射和非电离辐射是我们日常生活的一部分,当生物体长时间暴露于这些辐射时,可能会受到致死或亚致死效应。因此,人们开发了各种技术来对它们进行量化。在本研究中,通过连接伽马计和低成本紫外线辐射设备来使用物联网(IoT)。该结构的验证是使用在认证实验室校准过的仪器进行的。验证结果与其他设备获得的结果相符,误差为2%。