Improved spectral convergence rates for graph Laplacians on epsilon-graphs and k-NN graphs
October 29, 2019 Β· Declared Dead Β· π arXiv.org
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Authors
Jeff Calder, Nicolas Garcia Trillos
arXiv ID
1910.13476
Category
math.PR
Cross-listed
cs.LG,
math.SP,
stat.ML
Citations
40
Venue
arXiv.org
Last Checked
6 months ago
Abstract
In this paper we improve the spectral convergence rates for graph-based approximations of Laplace-Beltrami operators constructed from random data. We utilize regularity of the continuum eigenfunctions and strong pointwise consistency results to prove that spectral convergence rates are the same as the pointwise consistency rates for graph Laplacians. In particular, for an optimal choice of the graph connectivity $\varepsilon$, our results show that the eigenvalues and eigenvectors of the graph Laplacian converge to those of the Laplace-Beltrami operator at a rate of $O(n^{-1/(m+4)})$, up to log factors, where $m$ is the manifold dimension and $n$ is the number of vertices in the graph. Our approach is general and allows us to analyze a large variety of graph constructions that include $\varepsilon$-graphs and $k$-NN graphs.
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