Title :
A Finite Element Skeleton approach as the articulation insensitivity shape descriptor
Author :
Ning Ding ; Huihuan Qian ; Yangsheng Xu
Author_Institution :
Mech. & Autom. Eng. Dept., Chinese Univ. of Hong Kong, Hong Kong, China
Abstract :
This paper presents a novel shape representation approach, Finite Element Skeleton (FES), based on studies of planar shape analysis from the perspective of Finite Element Method (FEM). First, we derive the shape contour of an object in image with edge detection approach. Then, the approach builds connections of all pixels on the shape contour with the inner center point of the shape, and models these virtual connections as bendable beam elements. Finally, we obtain a multi-degree-of-freedom (MDOF) model of the original shape. By this model, we can calculate its natural frequency, which is one of mechanical properties that directly related to the geometric shape, and employed it as the shape representation. FES shape descriptor possesses the natural properties on translation and rotation invariant. Especially, FES descriptor has the feature of articulation insensitivity which is the most important property of a shape descriptor to ensure a good performance of the intra-class similarity measurement. Experimental results validated that the proposed FES descriptor is capable of identifying shape for object recognition.
Keywords :
edge detection; finite element analysis; image representation; shape recognition; FEM; FES; articulation insensitivity shape descriptor; bendable beam elements; edge detection approach; finite element method; finite element skeleton approach; geometric shape; intraclass similarity measurement; multidegree-of-freedom model; object recognition; planar shape analysis; shape contour; shape representation approach; Equations; Finite element analysis; Mathematical model; Object recognition; Shape; Skeleton; Vectors;
Conference_Titel :
Intelligent Control and Automation (WCICA), 2014 11th World Congress on
DOI :
10.1109/WCICA.2014.7053609