研究目的
Investigating the usability of fiber Bragg grating sensors for the fatigue life monitoring of overhead transmission lines caused by Aeolian vibration.
研究成果
The on-line fatigue life monitoring system which combines the CFD method and the S-N curves for the aluminum wire is used to calculate the fatigue life of overhead transmission lines, which can be a simple way to evaluate conductor lifespan under Aeolian vibration. The fiber-optic acceleration sensor showed a good correlation with the piezoelectric accelerometer measured results, proving its good performance in overhead transmission lines surveillance.
研究不足
The study focuses on the fatigue life monitoring of overhead transmission lines caused by Aeolian vibration, and the proposed method's effectiveness in other conditions or for different types of conductors is not explored.
1:Experimental Design and Method Selection:
An on-line monitoring system based on a fiber-optic acceleration sensor is designed to analyze the fatigue life of overhead transmission lines in Aeolian vibration surveillance. Fiber Bragg Grating (FBG) sensor is used to measure alternating bending amplitude of overhead transmission lines. A Cumulative Fatigue Damage (CFD) method, based on alternating bending amplitude for vibration and the Stress-Cycle (S-N) curves, is proposed to calculate the fatigue life of overhead transmission lines.
2:Sample Selection and Data Sources:
A case study of the one-month measurement data of Aeolian vibration for 1000kV Ultra-High Voltage (UHV) transmission lines is presented.
3:List of Experimental Equipment and Materials:
Fiber-optic acceleration sensor, FBG demodulator, Optical Fiber Composite Overhead Ground Wire (OPGW), Optical Phase Conductor (OPPC), and fiber-optic acceleration sensors.
4:Experimental Procedures and Operational Workflow:
The variation of the reflected wave of the conductor is measured by fiber-optic acceleration sensors. The demodulator located in substation received the light signals through OPGW/OPPC. The CMD which is installed on the tower can receive the data of wavelengths from the fiber-optic acceleration sensor by RS
5:Data Analysis Methods:
4 The CFD method and the S-N curves for the aluminum wire are used to calculate the fatigue life of overhead transmission lines.
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