Please use this identifier to cite or link to this item: http://ir.futminna.edu.ng:8080/jspui/handle/123456789/10040
Title: Deformation Analysis Based on Designed Experiments and Kalman Filter
Authors: Eyo, Etim
Bayrak, Temel
Musa, Tajul
Onuigbo, Ifeanyi
Kuta, Abdullahi
Odumosu, Joseph Olayemi
Keywords: deformation monitoring
designed experiments
Kalman filter
kinematic model.
RTK GPS
Issue Date: 2014
Publisher: Croatian Geodetic Society
Citation: Etim EYO, Temel BAYRAK, Tajul MUSA, Ifeanyi ONUIGBO, Abdullahi KUTA and Joseph ODUMOSU (2014). Deformation Analysis Based on Designed Experiments and Kalman Filter. Geodetski List, 4, 253–268
Abstract: This paper is focused on the deformation monitoring of survey control points in the Gidan Kwano main campus, Federal University of Technology, Minna, Nigeria. The main objectives are to develop and test a kinematic deformation analysis model using simulated GPS test data. RTK GPS was the main equipment deployed for the monitoring. The kinematic deformation analysis model developed for this study was based on Kalman filtering technique. In order to verify the developed kinematic model, designed experiments, with artificially introduced deformations, were performed to test centimetre-level horizontal movements on four points (GPS 01, GPS 08, GPS 09 and GPS 12). The developed kinematic model was used to determine six unknown parameters of movements, namely position displacements (dx, dy), velocities (Vx, Vy) and accelerations (ax, ay). The results of the computed movement parameters of the control points show that the introduced deformations were detected by the kinematic deformation model. The model also detected that there was no deformation introduced to point GPS 09. Some of the discrepancies in the computed results can be attributed to centering errors during observations
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/10040
Appears in Collections:Surveying & Geoinformatics

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