Efficient Sensor Placement Optimization for Shape Deformation Sensing of Antenna Structures with Fiber Bragg Grating Strain Sensors
Autor: | Baofu Tang, Jinzhu Zhou, Cai Zhiheng, Pengbing Zhao |
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Rok vydání: | 2018 |
Předmět: |
Computer science
optimal sensor placement Acoustics ComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION Physics::Optics 02 engineering and technology lcsh:Chemical technology Biochemistry Displacement (vector) Article Analytical Chemistry antenna deformation 0203 mechanical engineering Fiber Bragg grating ComputerSystemsOrganization_SPECIAL-PURPOSEANDAPPLICATION-BASEDSYSTEMS lcsh:TP1-1185 Electrical and Electronic Engineering Instrumentation ComputingMethodologies_COMPUTERGRAPHICS Strain (chemistry) information redundancy 021001 nanoscience & nanotechnology Atomic and Molecular Physics and Optics 020303 mechanical engineering & transports Transformation (function) Antenna (radio) Deformation (engineering) Trigonometry 0210 nano-technology shape sensing |
Zdroj: | Sensors (Basel, Switzerland) Sensors, Vol 18, Iss 8, p 2481 (2018) Sensors Volume 18 Issue 8 |
ISSN: | 1424-8220 |
Popis: | This paper investigates the problem of an optimal sensor placement for better shape deformation sensing of a new antenna structure with embedded or attached Fiber Bragg grating (FBG) strain sensors. In this paper, the deformation shape of the antenna structure is reconstructed using a strain&ndash displacement transformation, according to the measured discrete strain data from limited FBG strain sensors. Moreover, a two-stage sensor placement method is proposed using a derived relative reconstruction error equation. In this method, the initial sensor locations are determined using the principal component analysis based on orthogonal trigonometric (i.e., QR) decomposition, and then a new location is sequentially added into the initial sensor locations one by one by minimizing the relative reconstruction error considering information redundancy. The numerical simulations are conducted, and the comparisons show that the proposed method is advantageous in terms of the sensor distribution and computational cost. Experimental validation is performed using an antenna experimental platform equipped with an optimal FBG strain sensor configuration, and the reconstruction results show good agreements with those measured directly from displacement sensors. The proposed method has a large potential for the strain sensor placement of complex structures, and the proposed antenna structure with FBG strain sensors can be applied to the future wing-skin antenna or flexible space-based antenna. |
Databáze: | OpenAIRE |
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