2015 · 73 citations · 26 references
Graph SparsityEngineeringStreaming ModelComputational ComplexityComputer-aided DesignGraph ProcessingGraph DrawingGomory-chvátal TheoryDiscrete MathematicsCombinatorial OptimizationComputational GeometryGeometric ModelingGeometric Graph TheoryCut ProblemsHypergraph TheoryComputer ScienceGraph AlgorithmInteger ProgrammingGraph TheoryNatural SciencesSketching Model
Sketching and streaming algorithms are in the forefront of current research directions for cut problems in graphs. In the streaming model, we show that (1--ε)-approximation for Max-Cut must use n{1-O(ε)} space; moreover, beating 4/5-approximation requires polynomial space. For the sketching model, we show that every r-uniform hypergraph admits a (1+ ε)-cut-sparsifier (i.e., a weighted subhypergraph that approximately preserves all the cuts) with O(ε-2n(r+log n)) edges. We also make first steps towards sketching general CSPs (Constraint Satisfaction Problems).
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Mikkel Thorup, Uri Zwick · Journal of the ACM · 2005 · 609 citations
Engineering, Undirected Weighted Graph, Computational Complexity +18
David Peleg, Alejandro A. Schäffer · Journal of Graph Theory · 1989 · 417 citations