DocumentCode
2374490
Title
Sampling schemes for 2-D signals with finite rate of innovation using kernels that reproduce polynomials
Author
Shukla, Pancham ; Dragotti, Pier Luigi
Author_Institution
Commun. & Signal Process. Group, Imperial Coll. London, UK
Volume
2
fYear
2005
fDate
11-14 Sept. 2005
Abstract
In this paper, we propose new sampling schemes for classes of 2-D signals with finite rate of innovation (FRI). In particular, we consider sets of 2-D Diracs and bilevel polygons. As opposed to using only sine or Gaussian kernels [I. Maravic et al, 2004], we allow the sampling kernel to be any function that reproduces polynomials. In the proposed sampling schemes, we exploit the polynomial approximation properties of the sampling kernels in association with other relevant techniques such as complex-moments [P. Milanfar et al, 1995], annihilating filter method [M. Vetterli et al, 2002], and directional derivatives. Specifically, for the bilevel polygons, we propose two different methods: the first uses a global reconstruction algorithm and complex moments, while the second is based on directional derivatives and local reconstruction algorithms. The trade-off between these two reconstruction modalities is also briefly discussed.
Keywords
Gaussian processes; filtering theory; image reconstruction; image sampling; polynomial approximation; 2D signal sampling schemes; Gaussian kernels; bilevel polygons; complex moments; filter method; finite rate of innovation; polynomial approximation; reconstruction algorithm; sampling kernel; Educational institutions; Filters; Image reconstruction; Kernel; Polynomials; Reconstruction algorithms; Sampling methods; Signal processing; Signal sampling; Technological innovation;
fLanguage
English
Publisher
ieee
Conference_Titel
Image Processing, 2005. ICIP 2005. IEEE International Conference on
Print_ISBN
0-7803-9134-9
Type
conf
DOI
10.1109/ICIP.2005.1530090
Filename
1530090
Link To Document