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Open AccessJournal ArticleDOI

Detecting Approximate Reflection Symmetry in a Point Set Using Optimization on Manifold

TLDR
The robustness of the approach is shown by varying the amount of distortion in a perfect reflection symmetry pattern where the authors perturb each point by a different amount of perturbation, and the effectiveness of the method is demonstrated by applying it to the problem of 2-D and 3-D reflection symmetry detection.
Abstract
We propose an algorithm to detect approximate reflection symmetry present in a set of volumetrically distributed points belonging to $\mathbb {R}^d$ containing a distorted reflection symmetry pattern. We pose the problem of detecting approximate reflection symmetry as the problem of establishing correspondences between the points which are reflections of each other and we determine the reflection symmetry transformation. We formulate an optimization framework in which the problem of establishing the correspondences amounts to solving a linear assignment problem and the problem of determining the reflection symmetry transformation amounts to solving an optimization problem on a smooth Riemannian product manifold. The proposed approach estimates the symmetry from the geometry of the points and is descriptor independent. We evaluate the performance of the proposed approach on the standard benchmark dataset and achieve the state-of-the-art performance. We further show the robustness of our approach by varying the amount of distortion in a perfect reflection symmetry pattern where we perturb each point by a different amount of perturbation. We demonstrate the effectiveness of the method by applying it to the problem of 2-D (two-dimensional) and 3-D reflection symmetry detection along with comparisons.

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Citations
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Journal ArticleDOI

3DSymm: Robust and Accurate 3D Reflection Symmetry Detection

TL;DR: This work proposes a descriptor-free approach, in which, the problem of reflection symmetry detection as an optimization problem and provide a closed-form solution, and shows that the proposed method achieves state-of-the-art performance on the standard dataset.
Posted Content

R-PointHop: A Green, Accurate and Unsupervised Point Cloud Registration Method.

TL;DR: R-PointHop as discussed by the authors determines a local reference frame (LRF) for every point using its nearest neighbors and finds its local attributes by point downsampling, neighborhood expansion, attribute construction and dimensionality reduction steps.
Journal ArticleDOI

R-PointHop: A Green, Accurate, and Unsupervised Point Cloud Registration Method

TL;DR: R-PointHop as discussed by the authors determines a local reference frame (LRF) for every point using its nearest neighbors and finds local attributes by point downsampling, neighborhood expansion, attribute construction and dimensionality reduction steps.
Journal ArticleDOI

Reflection symmetry aware image retargeting

TL;DR: A novel image Retargeting approach which preserves the reflection symmetry present in the image during the image retargeting process and shows better preservation of symmetry axis, preservation of shape of the symmetric object, and quality of image retTargeting when compared to the existing methods.
Journal ArticleDOI

Reflection symmetry detection of shapes based on shape signatures

TL;DR: Wang et al. as mentioned in this paper presented two shape signature-based reflection symmetry detection methods with their theoretical underpinning and empirical evaluation, which can effectively deal with compound shapes which are challenging for traditional contour-based methods.
References
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Book ChapterDOI

Intrinsic regularity detection in 3D geometry

TL;DR: This paper employs multidimensional scaling to reduce the problem of intrinsic structure detection to a simpler problem of 2D grid detection and presents a range of applications including scan completion, shape editing, super-resolution, and structural correspondence.
Proceedings ArticleDOI

Automatic symmetry plane estimation of bilateral objects in point clouds

TL;DR: This paper shows how an adequate parameterization, used in an ICP-like scheme, can lead to a simpler, more accurate and faster algorithm, and reinterpret the problem in a probabilistic framework, and use the maximum likelihood principle to define the optimal symmetry plane.
Proceedings ArticleDOI

A probabilistic framework for partial intrinsic symmetries in geometric data

TL;DR: This paper presents a novel algorithm for partial intrinsic symmetry detection in 3D geometry based on a Markov random field model, which obtains a probability distribution over all possible intrinsic matches of a shape to itself, which reveals the symmetry structure of the object.
Journal ArticleDOI

Efficient 3D reflection symmetry detection

TL;DR: A novel and efficient view-based reflection symmetry detection method based on the viewpoint entropy features of a set of sample views of a 3D model that demonstrates better accuracy, efficiency, robustness and versatility of the algorithm than state-of-the-art approaches.
Journal ArticleDOI

Skeleton-based intrinsic symmetry detection on point clouds

TL;DR: This paper exploits the properties of curve skeletons, such as homotopy to the input shape, approximate isometry-invariance, and skeleton-to-surface mapping, for the detection task of intrinsic symmetry detection on imperfect 3D point cloud data.
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