Optimization-based freeform shape reconstruction
This paper proposes a novel method to reconstruct cylinder-like freeform shapes from the parallel projection of their contours. There are three main steps: 1) Transform the curved drawing into a straight line drawing by converting the curves into polylines using dynamic time warping. Triangular or q...
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sg-ntu-dr.10356-979902020-03-07T13:22:17Z Optimization-based freeform shape reconstruction Liu, Yang Lee, Yong Tsui School of Mechanical and Aerospace Engineering This paper proposes a novel method to reconstruct cylinder-like freeform shapes from the parallel projection of their contours. There are three main steps: 1) Transform the curved drawing into a straight line drawing by converting the curves into polylines using dynamic time warping. Triangular or quadrilateral faces are created by joining corresponding points on opposite curves. 2) Obtain the 3D coordinates of the vertices in the straight line drawing using an optimization-based method. 3) Recover the cross sections internal to the boundary and interpolate them to obtain the cylinder surface. Step 3 forms the main original contribution of this work. Our implementation of the method produces results that are consistent with human perception of the curved drawings as 3D shapes 2013-07-25T08:27:42Z 2019-12-06T19:49:06Z 2013-07-25T08:27:42Z 2019-12-06T19:49:06Z 2012 2012 Journal Article Liu, Y., & Lee, Y. T. (2012). Optimization-based freeform shape reconstruction. 3D Research, 3(3). 2092-6731 https://hdl.handle.net/10356/97990 http://hdl.handle.net/10220/12308 10.1007/3DRes.03(2012)3 en 3D research © 2012 3D Research Center, Kwangwoon University and Springer. |
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This paper proposes a novel method to reconstruct cylinder-like freeform shapes from the parallel projection of their contours. There are three main steps: 1) Transform the curved drawing into a straight line drawing by converting the curves into polylines using dynamic time warping. Triangular or quadrilateral faces are created by joining corresponding points on opposite curves. 2) Obtain the 3D coordinates of the vertices in the straight line drawing using an optimization-based method. 3) Recover the cross sections internal to the boundary and interpolate them to obtain the cylinder surface. Step 3 forms the main original contribution of this work. Our implementation of the method produces results that are consistent with human perception of the curved drawings as 3D shapes |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Liu, Yang Lee, Yong Tsui |
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Article |
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Liu, Yang Lee, Yong Tsui |
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Liu, Yang Lee, Yong Tsui Optimization-based freeform shape reconstruction |
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Liu, Yang |
title |
Optimization-based freeform shape reconstruction |
title_short |
Optimization-based freeform shape reconstruction |
title_full |
Optimization-based freeform shape reconstruction |
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Optimization-based freeform shape reconstruction |
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Optimization-based freeform shape reconstruction |
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optimization-based freeform shape reconstruction |
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2013 |
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https://hdl.handle.net/10356/97990 http://hdl.handle.net/10220/12308 |
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