Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System

The seasonal roadbed of the frozen soil often frost, heave, thaw and settle under the circumstance of frozen and thawed. Among all the factors that cause such damage, temperature and humidity levels are the most significant. According to the problems like too simple measure and monitoring methods, h...

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Main Authors: MENG Shang-jiu, LI Xiang, SUN Yi-qiang, WANG Miao
Format: Article
Language:zho
Published: Harbin University of Science and Technology Publications 2018-06-01
Series:Journal of Harbin University of Science and Technology
Subjects:
Online Access:https://hlgxb.hrbust.edu.cn/#/digest?ArticleID=1534
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author MENG Shang-jiu
LI Xiang
SUN Yi-qiang
WANG Miao
author_facet MENG Shang-jiu
LI Xiang
SUN Yi-qiang
WANG Miao
author_sort MENG Shang-jiu
collection DOAJ
description The seasonal roadbed of the frozen soil often frost, heave, thaw and settle under the circumstance of frozen and thawed. Among all the factors that cause such damage, temperature and humidity levels are the most significant. According to the problems like too simple measure and monitoring methods, hard to have all space-time monitoring and measure of roadbed and so on in the past, we use remote wireless transmission technique to design two-parameter of monitoring and measure system of temperature and humility in the roadbed of seasonal frozen soil based on the GPRS(General Packet Radio Service) communication technique which can real-timely monitor and measure the change of temperature and humility of the roadbed. The system uses special-purpose soil sensors of temperature and humility as collection terminals; uses STC89C52 single chip as the main controller to achieve remote transmission and storage of data of temperature and humility by editing AT commands to control GPRS network connection and data sending and receiving. We have tested this system and prove that it is a system of high-precision of collection, stabilization, reliability, simple operation which can be used for real-time and undamaged monitoring and measure of temperature and humility of inner-roadbed of seasonal frozen soil.
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institution Kabale University
issn 1007-2683
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publisher Harbin University of Science and Technology Publications
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series Journal of Harbin University of Science and Technology
spelling doaj-art-7ed0bc89733f4c8e93f07939b636cf672025-08-23T07:23:23ZzhoHarbin University of Science and Technology PublicationsJournal of Harbin University of Science and Technology1007-26832018-06-012303667110.15938/j.jhust.2018.03.012Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring SystemMENG Shang-jiu0LI Xiang1SUN Yi-qiang2WANG Miao3Disaster Prevention Research Center for Civil Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaDisaster Prevention Research Center for Civil Engineering, Harbin University of Science and Technology, Harbin 150080, China; School of Measure-control Technology and Communication Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaDisaster Prevention Research Center for Civil Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaDisaster Prevention Research Center for Civil Engineering, Harbin University of Science and Technology, Harbin 150080, ChinaThe seasonal roadbed of the frozen soil often frost, heave, thaw and settle under the circumstance of frozen and thawed. Among all the factors that cause such damage, temperature and humidity levels are the most significant. According to the problems like too simple measure and monitoring methods, hard to have all space-time monitoring and measure of roadbed and so on in the past, we use remote wireless transmission technique to design two-parameter of monitoring and measure system of temperature and humility in the roadbed of seasonal frozen soil based on the GPRS(General Packet Radio Service) communication technique which can real-timely monitor and measure the change of temperature and humility of the roadbed. The system uses special-purpose soil sensors of temperature and humility as collection terminals; uses STC89C52 single chip as the main controller to achieve remote transmission and storage of data of temperature and humility by editing AT commands to control GPRS network connection and data sending and receiving. We have tested this system and prove that it is a system of high-precision of collection, stabilization, reliability, simple operation which can be used for real-time and undamaged monitoring and measure of temperature and humility of inner-roadbed of seasonal frozen soil. https://hlgxb.hrbust.edu.cn/#/digest?ArticleID=1534seasonal of frozen soiltemperature and humidity monitoringgprs communication
spellingShingle MENG Shang-jiu
LI Xiang
SUN Yi-qiang
WANG Miao
Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System
Journal of Harbin University of Science and Technology
seasonal of frozen soil
temperature and humidity monitoring
gprs communication
title Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System
title_full Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System
title_fullStr Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System
title_full_unstemmed Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System
title_short Design of the Frozen Soil Roadbed Temperature and Humidity Wireless Monitoring System
title_sort design of the frozen soil roadbed temperature and humidity wireless monitoring system
topic seasonal of frozen soil
temperature and humidity monitoring
gprs communication
url https://hlgxb.hrbust.edu.cn/#/digest?ArticleID=1534
work_keys_str_mv AT mengshangjiu designofthefrozensoilroadbedtemperatureandhumiditywirelessmonitoringsystem
AT lixiang designofthefrozensoilroadbedtemperatureandhumiditywirelessmonitoringsystem
AT sunyiqiang designofthefrozensoilroadbedtemperatureandhumiditywirelessmonitoringsystem
AT wangmiao designofthefrozensoilroadbedtemperatureandhumiditywirelessmonitoringsystem