Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling

In the process of research on the flow velocity distribution in a partially filled pipe, the under-sampling of measurement data often occurs. For the first time, this problem is solved by the improved non-uniform B-spline curve fitting approximation (NBSC) method. The main innovation of this method...

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Main Authors: Yulin Jiang, Qingmin Pu, Wenbin Ding
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Advances in Mathematical Physics
Online Access:http://dx.doi.org/10.1155/2020/6961286
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spelling doaj-a0f7b3add25446b8a3c92dbf5a5b29e42021-07-02T07:14:34ZengHindawi LimitedAdvances in Mathematical Physics1687-91201687-91392020-01-01202010.1155/2020/69612866961286Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-SamplingYulin Jiang0Qingmin Pu1Wenbin Ding2College of Information Engineering, Zhongshan Polytechnic, Zhongshan 528400, ChinaCollege of Information Engineering, Zhongshan Polytechnic, Zhongshan 528400, ChinaCollege of Electronic and Engineering, Jiujiang University, Jiujiang 332000, ChinaIn the process of research on the flow velocity distribution in a partially filled pipe, the under-sampling of measurement data often occurs. For the first time, this problem is solved by the improved non-uniform B-spline curve fitting approximation (NBSC) method. The main innovation of this method is to reconstruct the flow velocity distribution fitting curve with a small amount of non-uniform feature points containing flow velocity information. First, the curvature of a whole discrete sampled data is analyzed, then the weighted threshold is set, and the sampled points that satisfy the threshold are extracted as the initial velocity distribution feature points. Next the node vectors were constructed according to the initial feature points, and the initial interpolation fitting curves are generated. Secondly, by using the relative deviation between the initial approximation curve and each sampled point, new feature points were added where the curve allowable deviation exceeded the specified tolerance, and then a new interpolation fitting curve was obtained. The above procedure was repeated until the fitting curve reached expected accuracy, thus the appropriate feature points were determined. Experimental results showed that, in the case of the same approximation deviation, the proposed NBSC method can solve the problem of under-sampling of measurement data better.http://dx.doi.org/10.1155/2020/6961286
collection DOAJ
language English
format Article
sources DOAJ
author Yulin Jiang
Qingmin Pu
Wenbin Ding
spellingShingle Yulin Jiang
Qingmin Pu
Wenbin Ding
Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling
Advances in Mathematical Physics
author_facet Yulin Jiang
Qingmin Pu
Wenbin Ding
author_sort Yulin Jiang
title Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling
title_short Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling
title_full Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling
title_fullStr Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling
title_full_unstemmed Reconstruction of Velocity Distribution in Partially-Filled Pipe Based on Non-Uniform Under-Sampling
title_sort reconstruction of velocity distribution in partially-filled pipe based on non-uniform under-sampling
publisher Hindawi Limited
series Advances in Mathematical Physics
issn 1687-9120
1687-9139
publishDate 2020-01-01
description In the process of research on the flow velocity distribution in a partially filled pipe, the under-sampling of measurement data often occurs. For the first time, this problem is solved by the improved non-uniform B-spline curve fitting approximation (NBSC) method. The main innovation of this method is to reconstruct the flow velocity distribution fitting curve with a small amount of non-uniform feature points containing flow velocity information. First, the curvature of a whole discrete sampled data is analyzed, then the weighted threshold is set, and the sampled points that satisfy the threshold are extracted as the initial velocity distribution feature points. Next the node vectors were constructed according to the initial feature points, and the initial interpolation fitting curves are generated. Secondly, by using the relative deviation between the initial approximation curve and each sampled point, new feature points were added where the curve allowable deviation exceeded the specified tolerance, and then a new interpolation fitting curve was obtained. The above procedure was repeated until the fitting curve reached expected accuracy, thus the appropriate feature points were determined. Experimental results showed that, in the case of the same approximation deviation, the proposed NBSC method can solve the problem of under-sampling of measurement data better.
url http://dx.doi.org/10.1155/2020/6961286
work_keys_str_mv AT yulinjiang reconstructionofvelocitydistributioninpartiallyfilledpipebasedonnonuniformundersampling
AT qingminpu reconstructionofvelocitydistributioninpartiallyfilledpipebasedonnonuniformundersampling
AT wenbinding reconstructionofvelocitydistributioninpartiallyfilledpipebasedonnonuniformundersampling
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