Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area
The data synchronous acquisition is crucial to the seafloor subsidence monitoring system for gas hydrate mining areas based on microelectromechanical sensors (MEMS). Because the independent and high-precision time reference sources on land cannot be used on the seafloor, especially in the deep sea,...
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doaj-45058dc0994a4fff9da280e4a592bcb42020-11-25T02:14:01ZengMDPI AGSensors1424-82202019-10-011919431910.3390/s19194319s19194319Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining AreaJiawang Chen0Chen Cao1Yongqiang Ge2Huangchao Zhu3Chunying Xu4Yan Sheng5Lieyu Tian6Hanquan Zhang7Ocean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaOcean College, Zhejiang University, Zhoushan 316021, ChinaGuangzhou Marine Geological Survey, Guangzhou 510075, ChinaGuangzhou Marine Geological Survey, Guangzhou 510075, ChinaGuangzhou Marine Geological Survey, Guangzhou 510075, ChinaThe data synchronous acquisition is crucial to the seafloor subsidence monitoring system for gas hydrate mining areas based on microelectromechanical sensors (MEMS). Because the independent and high-precision time reference sources on land cannot be used on the seafloor, especially in the deep sea, a relative time synchronization method based on input/output (I/O) and controller area network (CAN) bus was proposed to realize the internal time synchronization of the system. To demonstrate the feasibility of the proposed method, tests including the deformation test of the MEMS sensor array under high pressure, synchronous accuracy test, and landslide and collapse simulation tests were carried out. The synchronization method was performed once every 24 h, and the time drift was reduced to 0.38 ms from more than 30 ms, demonstrating that method can achieve consistent internal time of the system. The method does not require additional hardware devices and has adjustable accuracy.https://www.mdpi.com/1424-8220/19/19/4319data acquisitiontime synchronizationsubsidence monitoringsubmarine gas hydrate mining area |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiawang Chen Chen Cao Yongqiang Ge Huangchao Zhu Chunying Xu Yan Sheng Lieyu Tian Hanquan Zhang |
spellingShingle |
Jiawang Chen Chen Cao Yongqiang Ge Huangchao Zhu Chunying Xu Yan Sheng Lieyu Tian Hanquan Zhang Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area Sensors data acquisition time synchronization subsidence monitoring submarine gas hydrate mining area |
author_facet |
Jiawang Chen Chen Cao Yongqiang Ge Huangchao Zhu Chunying Xu Yan Sheng Lieyu Tian Hanquan Zhang |
author_sort |
Jiawang Chen |
title |
Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area |
title_short |
Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area |
title_full |
Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area |
title_fullStr |
Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area |
title_full_unstemmed |
Experimental Research on Data Synchronous Acquisition Method of Subsidence Monitoring in Submarine Gas Hydrate Mining Area |
title_sort |
experimental research on data synchronous acquisition method of subsidence monitoring in submarine gas hydrate mining area |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2019-10-01 |
description |
The data synchronous acquisition is crucial to the seafloor subsidence monitoring system for gas hydrate mining areas based on microelectromechanical sensors (MEMS). Because the independent and high-precision time reference sources on land cannot be used on the seafloor, especially in the deep sea, a relative time synchronization method based on input/output (I/O) and controller area network (CAN) bus was proposed to realize the internal time synchronization of the system. To demonstrate the feasibility of the proposed method, tests including the deformation test of the MEMS sensor array under high pressure, synchronous accuracy test, and landslide and collapse simulation tests were carried out. The synchronization method was performed once every 24 h, and the time drift was reduced to 0.38 ms from more than 30 ms, demonstrating that method can achieve consistent internal time of the system. The method does not require additional hardware devices and has adjustable accuracy. |
topic |
data acquisition time synchronization subsidence monitoring submarine gas hydrate mining area |
url |
https://www.mdpi.com/1424-8220/19/19/4319 |
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