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A Breezing Proof of the KMW Bound

Authors :
Coupette, Corinna
Lenzen, Christoph
Publication Year :
2020

Abstract

In their seminal paper from 2004, Kuhn, Moscibroda, and Wattenhofer (KMW) proved a hardness result for several fundamental graph problems in the LOCAL model: For any (randomized) algorithm, there are input graphs with $n$ nodes and maximum degree $\Delta$ on which $\Omega(\min\{\sqrt{\log n/\log \log n},\log \Delta/\log \log \Delta\})$ (expected) communication rounds are required to obtain polylogarithmic approximations to a minimum vertex cover, minimum dominating set, or maximum matching. Via reduction, this hardness extends to symmetry breaking tasks like finding maximal independent sets or maximal matchings. Today, more than $15$ years later, there is still no proof of this result that is easy on the reader. Setting out to change this, in this work, we provide a fully self-contained and $\mathit{simple}$ proof of the KMW lower bound. The key argument is algorithmic, and it relies on an invariant that can be readily verified from the generation rules of the lower bound graphs.<br />Comment: 20 pages, 6 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2002.06005
Document Type :
Working Paper
Full Text :
https://doi.org/10.1137/1.9781611976496.21