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Buried Wireless Sensor Network for Monitoring Pipeline Joint Leakage Caused by Large Ground Movements
Tzu Hsuan Lin
, Yan Wu
, Kenichi Soga
, Brad Parker Wham
, Chalermpat Pariya-Ekkasut
, Blake Berger
, Thomas D. O'Rourke
土木工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
13
引文 斯高帕斯(Scopus)
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Keyphrases
Wireless Sensor Networks
100%
Ground Movement
100%
Wireless Sensor Network System
100%
Pipeline Joint
100%
Joint Leakage
100%
Sensing Nodes
75%
Data Reporting
50%
Reporting Period
50%
Earthquake
25%
High Performance
25%
Antenna Gain
25%
Wireless Communication
25%
System Work
25%
Experiment Results
25%
Low Power
25%
Penetration Depth
25%
Shortest Distance
25%
Transceiver
25%
Radio Frequency
25%
Relay Node
25%
Ground Deformation
25%
Sub-terahertz (sub-THz)
25%
Water Leakage
25%
Wireless Devices
25%
Transmit Power
25%
Electromagnetic Signal
25%
Signal Strength
25%
Data Communication
25%
System Configuration
25%
Band Frequency
25%
Burial Depth
25%
Packet Loss Rate
25%
Average Power Consumption
25%
Omnidirectional Antenna
25%
Pipeline Rupture
25%
Receiving Sensitivity
25%
Structural Assessment
25%
Radio Link Budget
25%
Large Ground Deformation
25%
Cell Battery
25%
Buried Utilities
25%
Delta Cell
25%
Engineering
Wireless Sensor Network
100%
Ground Movement
100%
Pipe Joints
100%
Network System
80%
Sensing Node
60%
Simulation Result
20%
Electric Power Utilization
20%
Nodes
20%
Radio Frequency
20%
Wireless Communication
20%
Influencing Factor
20%
Penetration Depth
20%
Antenna Gain
20%
Transceiver
20%
Relay Node
20%
Average Power
20%
Full Scale
20%
Packet Loss
20%
Signal Strength
20%
Wireless Device
20%
Link Budget
20%
Radio Link
20%