Geo tagged internet of things (iot) device for radiation monitoring

Geo tagged internet of things (iot) device for radiation monitoring
复制标题

用于辐射监测的地理标记物联网 (iot) 设备

DOI:
10.1109/icacci.2017.8125878
复制
发表时间:
2017
期刊:
2017 International Conference on Advances in Computing, Communications and Informatics (ICACCI)
影响因子:
--
通讯作者:
N. Bharathi
N. Bharathi
中科院分区:
--
文献类型:
--
作者:
Manigandan Muniraj;Abdul Rehman Qureshi;D. Vijayakumar;A. Viswanathan;N. Bharathi

文献摘要

被引文献

相似文献

电离辐射用于诊断和有益目的的使用增加、核反应堆的迅速发展以及放射性废物的风险,对从事辐射工作的人员和公众提出了重大的安全和健康问题。虽然一些辐射暴露是可以接受的,但应进行辐射监测,以将辐射暴露水平保持在最低水平。在本文中,我们打算使用辐射传感器监测和测量特定区域暴露的辐射水平,并将数据发送到云,有关当局可以从云中访问这些值。为了实现这些目标,我们使用GM计数器,这是一种辐射传感器,可以检测和测量辐射环境中存在的辐射量。GM计数器连接到NodeMCU,将检测到的辐射和测量到的辐射更新到辐射物联网平台,该平台可以通过网络存储和检索数据。此外,GPS模块与NodeMCU接口,以定位在这种辐射环境下从辐射源发射的辐射的位置数据。辐射值通过配置有辐射物联网平台的Web服务器进行真实的远程监测,以远程监测辐射水平并映射此类辐射的位置。
The heightened utilization of ionizing radiation for diagnostic and beneficial purposes, the expeditious progress in nuclear reactors, as well as the risks of radioactive waste have raised significant safety and health concerns for the people working with radiation and the general public. While some exposure to radiation is acceptable, radiation monitoring should be done to keep the levels of radiation exposure to a minimum. In this paper, we intend to monitor and measure the radiation levels that a specific area is exposed to using a radiation sensor, and to send the data to a cloud from where the values can be accessed by the concerned authorities. In order to meet the objectives we utilize GM counters, which are radiation sensors that detect and measure the amount of radiation present in the radiation environment. The GM counter is interfaced to a NodeMCU to update the detected and measured radiation to a radiation IoT platform that can store and retrieve data across a network. Further, a GPS module is interfaced with the NodeMCU to locate the location data of the radiation emitted from the radiation sources under such radiation environment. The radiation values are remotely monitored in real time through web server configured with the radiation IoT platform to remote monitor the radiation level and mapping the location of such radiations.