IJCAI 2024poster0 citations

Improved Parallel Algorithm for Non-Monotone Submodular Maximization under Knapsack Constraint

Tan D. Tran, Canh V. Pham, Dung T. K. Ha, Phuong N. H. Pham

Abstract

This work proposes an efficient parallel algorithm for non-monotone submodular maximization under a knapsack constraint problem over the ground set of size n. Our algorithm improves the best approximation factor of the existing parallel one from 8 to 7 with O(log n) adaptive complexity. The key idea of our approach is to create an alternate threshold algorithmic framework. This new strategy alternately constructs two disjoint candidate solutions within a constant number of sequence rounds. Then, the algorithm boosts solution quality without sacrificing the adaptive complexity. Extensive experimental studies on three applications, Revenue Maximization, Image Summarization, and Maximum Weighted Cut, show that our algorithm not only significantly increases solution quality but also requires comparative adaptivity to state-of-the-art algorithms.

Constraint Satisfaction and Optimization: CSO: Constraint optimization problemsConstraint Satisfaction and Optimization: CSO: ApplicationsConstraint Satisfaction and Optimization: CSO: Constraint learning and acquisitionData Mining: DM: Big data and scalability
BibTeX
@inproceedings{ijcai2024p217,
  title     = {Improved Parallel Algorithm for Non-Monotone Submodular Maximization under Knapsack Constraint},
  author    = {Tran, Tan D. and Pham, Canh V. and Ha, Dung T. K. and Pham, Phuong N. H.},
  booktitle = {Proceedings of the Thirty-Third International Joint Conference on
               Artificial Intelligence, {IJCAI-24}},
  publisher = {International Joint Conferences on Artificial Intelligence Organization},
  editor    = {Kate Larson},
  pages     = {1961--1969},
  year      = {2024},
  month     = {8},
  note      = {Main Track},
  doi       = {10.24963/ijcai.2024/217},
  url       = {https://doi.org/10.24963/ijcai.2024/217},
}
Improved Parallel Algorithm for Non-Monotone Submodular Maximization under Knapsack Constraint · IJCAI 2024