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http://dx.doi.org/10.7735/ksmte.2014.23.2.178

Fabrication of a Multiplexing Sensor Probe for Measuring the Blade Deflection of a Wind Power Generator  

Kim, Ji-Dea (Lab. of Machining and Measurement, Chungnam National University)
Lee, Dong-Ju (Dept. of Mechanical Engineering, Chungnam National University)
Publication Information
Journal of the Korean Society of Manufacturing Technology Engineers / v.23, no.2, 2014 , pp. 178-185 More about this Journal
Abstract
This paper describes a fabrication multiplexing sensor probe that employs a fiber Bragg grating(FBG) based on multiple measurements to determine the blade deflection of a wind power generator the reliability analysis of this probe is also presented. To diminish the temperature sensitivity of the FBG sensor, we form multiple CFRPs onto the upper and lower layers of the FBG and package it with an epoxy resin. As a result, the depth of the CFRP is 1mm, and the temperature sensitivity is $2.39pm/^{\circ}C$. We construct a sensor network utilizing the fabricated sensor with a blade beam model. As the number of pendulums is increased on the fore-end of the beam, the strain value is measured. The strain variation is calculated from the measurement of the load on the blade beam model by monitoring the strain of the FBG sensor. When the linear equation is applied, the strain error is 0.4% and when the finite difference method is used, the tip deflection error is 3.3%. The displacement error derived from the strain value of the FBG sensor is 4.39%. The calculated result between the measured value of the dead-end of the beam and the strain is less than 2.46% tip distortion error. Therefore, our proposed multiplexing sensor probe is a low-cost and high-reliability solution for a commercial wind power generator.
Keywords
Multiplexing sensor probe; FBG sensor; Wind power blade; Measuring deflection; Strain variation; CFRP;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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