Convolution Filtering of Continuous Signed Distance Fields for Polygonal Meshes

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Date
2015
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Copyright © 2015 The Eurographics Association and John Wiley & Sons Ltd.
Abstract
Signed distance fields obtained from polygonal meshes are commonly used in various applications. However, they can have discontinuities causing creases to appear when applying operations such as blending or metamorphosis. The focus of this work is to efficiently evaluate the signed distance function and to apply a smoothing filter to it while preserving the shape of the initial mesh. The resulting function is smooth almost everywhere, while preserving the exact shape of the polygonal mesh. Due to its low complexity, the proposed filtering technique remains fast compared to its main alternatives providing ‐continuous distance field approximation. Several applications are presented such as blending, metamorphosis and heterogeneous modelling with polygonal meshes.Signed distance fields obtained from polygonal meshes are commonly used in various applications. However, they can have discontinuities causing creases to appear when applying operations such as blending or metamorphosis. The focus of this work is to efficiently evaluate the signed distance function and to apply a smoothing filter to it while preserving the shape of the initial mesh. The resulting function is smooth almost everywhere, while preserving the exact shape of the polygonal mesh. Due to its low complexity, the proposed filtering technique remains fast compared to its main alternatives providing ‐continuous distance field approximation. Several applications are presented such as blending, metamorphosis and heterogeneous modelling with polygonal meshes.
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@article{
10.1111:cgf.12599
, journal = {Computer Graphics Forum}, title = {{
Convolution Filtering of Continuous Signed Distance Fields for Polygonal Meshes
}}, author = {
Sanchez, Mathieu
and
Fryazinov, Oleg
and
Fayolle, Pierre‐Alain
and
Pasko, Alexander
}, year = {
2015
}, publisher = {
Copyright © 2015 The Eurographics Association and John Wiley & Sons Ltd.
}, DOI = {
10.1111/cgf.12599
} }
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