Optimized Zero and First Order Design of Micro Geodetic Networks

Main Article Content

Riyadh Z. Al zubaidy
Hussen A. Mahdi
Hind Sabah Hanooka

Abstract

Precision is one of the main elements that control the quality of a geodetic network, which defines as the measure of the network efficiency in propagation of random errors. This research aims to solve ZOD and FOD problems for a geodetic network using Rosenbrock Method to optimize the geodetic networks by using MATLAB programming language, to find the optimal design of geodetic network with high precision. ZOD problem was applied to a case study network consists of 19 points and 58 designed distances with a priori deviation equal to 5mm, to determine the best points in the network to consider as control points. The results showed that P55 and P73 having the minimum ellipse of error and considered as control points. FOD problem was applied to three cases of selected network to analyzed using the objective function of A-Optimality and D-Optimality, with selected range of movement of 300m to each point in each direction. The first case was a free network, the second case was with P55 and P73 as control points, and the third case was with P42 and P44 as control points. The results showed that the third case was the optimal design with high precision

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How to Cite
“Optimized Zero and First Order Design of Micro Geodetic Networks” (2012) Journal of Engineering, 18(12), pp. 1344–1364. doi:10.31026/j.eng.2012.12.05.
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Articles

How to Cite

“Optimized Zero and First Order Design of Micro Geodetic Networks” (2012) Journal of Engineering, 18(12), pp. 1344–1364. doi:10.31026/j.eng.2012.12.05.

Publication Dates

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