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- W2135940404 abstract "Wavelets and radial basis functions (RBFs) lead to two distinct ways of representing signals in terms of shifted basis functions. RBFs, unlike wavelets, are nonlocal and do not involve any scaling, which makes them applicable to nonuniform grids. Despite these fundamental differences, we show that the two types of representation are closely linked together ...through fractals. First, we identify and characterize the whole class of self-similar radial basis functions that can be localized to yield conventional multiresolution wavelet bases. Conversely, we prove that for any compactly supported scaling function /spl phi/(x), there exists a one-sided central basis function /spl rho//sub +/(x) that spans the same multiresolution subspaces. The central property is that the multiresolution bases are generated by simple translation of /spl rho//sub +/ without any dilation. We also present an explicit time-domain representation of a scaling function as a sum of harmonic splines. The leading term in the decomposition corresponds to the fractional splines: a recent, continuous-order generalization of the polynomial splines." @default.
- W2135940404 created "2016-06-24" @default.
- W2135940404 creator A5017511611 @default.
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- W2135940404 date "2002-03-01" @default.
- W2135940404 modified "2023-10-02" @default.
- W2135940404 title "Wavelets, fractals, and radial basis functions" @default.
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- W2135940404 doi "https://doi.org/10.1109/78.984733" @default.
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