On the set multi-cover problem in geometric settings
Chandra Chekuri, Kenneth L. Clarkson, et al.
SCG 2009
The problem of maximizing a concave function f(x) in a simplex S can be solved approximately by a simple greedy algorithm. For given k, the algorithm can find a point x(k) on a k-dimensional face of S, such that f(x (k)) ≥ f(x *) - O(1/k). Here f(x *) is the maximum value of f in S. This algorithm and analysis were known before, and related to problems of statistics and machine learning, such as boosting, regression, and density mixture estimation. In other work, coming from computational geometry, the existence of ε-coresets was shown for the minimum enclosing ball problem, by means of a simple greedy algorithm. Similar greedy algorithms, that are special cases of the Frank-Wolfe algorithm, were described for other enclosure problems. Here these results are tied together, stronger convergence results are reviewed, and several coreset bounds are generalized or strengthened.
Chandra Chekuri, Kenneth L. Clarkson, et al.
SCG 2009
Kenneth L. Clarkson, K. Georg Hampel, et al.
VTC Spring 2007
Kenneth L. Clarkson, Ruosong Wang, et al.
ICML 2019
Kenneth L. Clarkson, Elad Hazan, et al.
Journal of the ACM