English

How Do You Want Your Greedy: Simultaneous or Repeated?

Data Structures and Algorithms 2021-07-15 v2 Machine Learning Optimization and Control

Abstract

We present SimultaneousGreedys, a deterministic algorithm for constrained submodular maximization. At a high level, the algorithm maintains \ell solutions and greedily updates them in a simultaneous fashion. SimultaneousGreedys achieves the tightest known approximation guarantees for both kk-extendible systems and the more general kk-systems, which are (k+1)2/k=k+O(1)(k+1)^2/k = k + \mathcal{O}(1) and (1+k+2)2=k+O(k)(1 + \sqrt{k+2})^2 = k + \mathcal{O}(\sqrt{k}), respectively. This is in contrast to previous algorithms, which are designed to provide tight approximation guarantees in one setting, but not both. We also improve the analysis of RepeatedGreedy, showing that it achieves an approximation ratio of k+O(k)k + \mathcal{O}(\sqrt{k}) for kk-systems when allowed to run for O(k)\mathcal{O}(\sqrt{k}) iterations, an improvement in both the runtime and approximation over previous analyses. We demonstrate that both algorithms may be modified to run in nearly linear time with an arbitrarily small loss in the approximation. Both SimultaneousGreedys and RepeatedGreedy are flexible enough to incorporate the intersection of mm additional knapsack constraints, while retaining similar approximation guarantees: both algorithms yield an approximation guarantee of roughly k+2m+O(k+m)k + 2m + \mathcal{O}(\sqrt{k+m}) for kk-systems and SimultaneousGreedys enjoys an improved approximation guarantee of k+2m+O(m)k+2m + \mathcal{O}(\sqrt{m}) for kk-extendible systems. To complement our algorithmic contributions, we provide a hardness result which states that no algorithm making polynomially many oracle queries can achieve an approximation better than k+1/2+εk + 1/2 + \varepsilon. We also present SubmodularGreedy.jl, a Julia package which implements these algorithms and may be downloaded at https://github.com/crharshaw/SubmodularGreedy.jl . Finally, we test the effectiveness of these algorithms on real datasets.

Keywords

Cite

@article{arxiv.2009.13998,
  title  = {How Do You Want Your Greedy: Simultaneous or Repeated?},
  author = {Moran Feldman and Christopher Harshaw and Amin Karbasi},
  journal= {arXiv preprint arXiv:2009.13998},
  year   = {2021}
}

Comments

Included analysis of RepeatedGreedy and open source Julia package

R2 v1 2026-06-23T18:52:43.113Z