arXiv · 1702.00170
A new sampling density condition for shift-invariant spaces
Abstract
Let $X=\{x_i:i\in\mathbb{Z}\}$, $\dots 0$. Under certain conditions on $ϕ$, it is proved that if there exists a positive integer $ν$ such that $$δ_ν:=\sup\limits_{i\in\mathbb{Z}}(x_{i+ν}-x_i)<\dfracν{2π}\left(\dfrac{c_{k}^2}{M_{2k}}\right)^{\frac{1}{4k}},$$ then every function belonging to a shift-invariant space $V(ϕ)$ can be reconstructed stably from its nonuniform sample values $\{f^{(j)}(x_i):j=0,1,\dots, k-1, i\in\mathbb{Z}\}$, where $c_k$ is a Wirtinger-Sobolev constant and $M_{2k}$ is a constant in Bernstein-type inequality of $V(ϕ)$. Further, when $k=1$, the maximum gap $δ_ν<ν$ is sharp for certain shift-invariant spaces.
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A. Antony Selvan. 2017-02-01. A new sampling density condition for shift-invariant spaces. https://arxiv.org/abs/1702.00170
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