Title :
Robust N-dimensional orientation estimation using quadrature filters and tensor whitening
Author :
Knutsson, Hans ; Andersson, Mats
Author_Institution :
Comput. Vision Lab., Linkoping Univ., Sweden
Abstract :
It is shown how estimates of local structure and orientation can be obtained using a set of spherically separable quadrature filters. The method is applicable to signals of any dimensionality the only requirement being that the filter set spans the corresponding orientation space. The estimates produced are second order tensors, the size of the tensors corresponding to the dimensionality of the input signal. A central part of the algorithm is an operation termed `tensor whitening´ reminiscent of classical whitening procedures. This operation compensates exactly for any biases introduced by non-uniform filter orientation distributions and/or non-uniform filter output certainties. Examples of processing of 2D-images, 3D-volumes and 2D-image sequences are given. Sensitivity to noise and missing filter outputs are analyzed in different situations. Estimation accuracy as a function of filter orientation distributions are studied. The studies provide evidence that the algorithm is robust and preferable to other algorithms in a wide range of situations
Keywords :
estimation theory; image processing; multidimensional digital filters; tensors; 2D-image sequences; 2D-images; 3D-volumes; algorithm; classical whitening; filter output; input signal dimensionality; local structure; noise sensitivity; nonuniform filter orientation distributions; quadrature filters; robust N-dimensional orientation estimation; second order tensors; tensor whitening; Computer vision; Convolution; Fault tolerant systems; Filtering theory; Filters; Laboratories; Neural networks; Noise robustness; Signal analysis; Tensile stress;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 1994. ICASSP-94., 1994 IEEE International Conference on
Conference_Location :
Adelaide, SA
Print_ISBN :
0-7803-1775-0
DOI :
10.1109/ICASSP.1994.389457