In order to meet the need of three-dimensional radiation field monitoring, a new technique of three-dimensional radiation field monitoring has been proposed and the system model has been built based on mesh network after investigating into wireless monitoring system characteristics of radiation feild in nuclear power plant. The model uses detecting nodes to collect the timely data in radiation field and accomplishes data preprocessing, and finally present results in monitoring platform in the form of three-dimensional radiation field. The essay will also demonstrate the study of the layout of detecting nodes. The application of this system reduces accidents probability and workers’ pressure by gathering environment parameters and transmitting real time monitoring data stably. It could also present the radiation intensity and other parameters distribution visually in the monitoring hall, with mesh topology technology in the region where exists security threats toward staff.
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2013 21st International Conference on Nuclear Engineering
July 29–August 2, 2013
Chengdu, China
Conference Sponsors:
- Nuclear Engineering Division
ISBN:
978-0-7918-5578-2
PROCEEDINGS PAPER
Study of Three-Dimensional Radiation Field Monitoring System Based on Mesh Network
Qian Yu,
Qian Yu
North China Electric Power University, Beijing, China
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XiaoLei Cheng,
XiaoLei Cheng
North China Electric Power University, Beijing, China
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XiYing Zhang
XiYing Zhang
North China Electric Power University, Beijing, China
Search for other works by this author on:
Qian Yu
North China Electric Power University, Beijing, China
XiaoLei Cheng
North China Electric Power University, Beijing, China
XiYing Zhang
North China Electric Power University, Beijing, China
Paper No:
ICONE21-15726, V001T01A022; 5 pages
Published Online:
February 7, 2014
Citation
Yu, Q, Cheng, X, & Zhang, X. "Study of Three-Dimensional Radiation Field Monitoring System Based on Mesh Network." Proceedings of the 2013 21st International Conference on Nuclear Engineering. Volume 1: Plant Operations, Maintenance, Engineering, Modifications, Life Cycle and Balance of Plant; Nuclear Fuel and Materials; Radiation Protection and Nuclear Technology Applications. Chengdu, China. July 29–August 2, 2013. V001T01A022. ASME. https://doi.org/10.1115/ICONE21-15726
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