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Derivative estimation of triangular patch by using cubic least square method

Awang, Noorehan and O. K. Rahmat, Rahmita Wirza (2016) Derivative estimation of triangular patch by using cubic least square method. In: 24th National Symposium on Mathematical Sciences (SKSM24), 27-29 Sept. 2016, Primula Beach Hotel, Kuala Terengganu, Terengganu. pp. 1-7.

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Smooth surface reconstruction of scattered data built from Delaunay triangulation need the partial derivatives to be defined at the vertices of the triangles for all the data points. Partial derivatives at the vertices of triangular elements and at the midpoint of each side usually are unavailable therefore it is a needed to approximate the derivatives information at the vertices and at the midpoint of each side. The common method use to estimate partial derivatives was the quadratic approximation of least square method. This research focused to estimate partial derivatives by using cubic approximation of least square method and compare the surface obtained between quadratic and cubic approximation. The research also implement the use of interpolating surface of cubic Bezier triangular patch. The result of the study shows comparison of interpolating surface produced by different type of functions for quadratic and cubic least square. The maximum and minimum error was also calculated and maximum error between quadratic and cubic least square was generated when using saddle function while the minimum error is on the exponential function.

Item Type:Conference or Workshop Item (Paper)
Keyword:Least square method; Cubic; Triangular patch
Faculty or Institute:Faculty of Computer Science and Information Technology
Publisher:AIP Publishing
DOI Number:10.1063/1.4995925
ID Code:57538
Deposited By: Nabilah Mustapa
Deposited On:25 Oct 2017 10:54
Last Modified:25 Oct 2017 10:54

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