Max-Throughput for (Conservative) k-of-n Testing
Abstract
We define a variant of k-of-n testing that we call conservative k-of-n testing. We present a polynomial-time, combinatorial algorithm for the problem of maximizing throughput of conservative k-of-n testing, in a parallel setting. This extends previous work of Kodialam and Condon et al., who presented combinatorial algorithms for parallel pipelined filter ordering, which is the special case where k=1 (or k = n). We also consider the problem of maximizing throughput for standard k-of-n testing, and show how to obtain a polynomial-time algorithm based on the ellipsoid method using previous techniques.
Cite
@article{arxiv.1109.3401,
title = {Max-Throughput for (Conservative) k-of-n Testing},
author = {Lisa Hellerstein and Özgür Özkan and Linda Sellie},
journal= {arXiv preprint arXiv:1109.3401},
year = {2012}
}
Comments
17 pages. An extended abstract of this paper appeared in the Proceedings of the 22nd International Symposium on Algorithms and Computation (ISAAC 2011)