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A threshold search based memetic algorithm for the disjunctively constrained knapsack problem

by Zequn Wei ID: arxiv-paper--2101.04753

The disjunctively constrained knapsack problem consists in packing a subset of pairwisely compatible items in a capacity-constrained knapsack such that the total profit of the selected items is maximized while satisfying the knapsack capacity. DCKP has numerous applications and is however computatio...

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@misc{arxiv_paper__2101.04753,
  author = {Zequn Wei},
  title = {A threshold search based memetic algorithm for the disjunctively constrained knapsack problem Paper},
  year = {2026},
  howpublished = {\url{https://arxiv.org/abs/2101.04753v1}},
  note = {Accessed via Free2AITools Knowledge Fortress}
}
APA Style
Zequn Wei. (2026). A threshold search based memetic algorithm for the disjunctively constrained knapsack problem [Paper]. Free2AITools. https://arxiv.org/abs/2101.04753v1

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πŸ“ Executive Summary

"The disjunctively constrained knapsack problem consists in packing a subset of pairwisely compatible items in a capacity-constrained knapsack such that the total profit of the selected items is maximized while satisfying the knapsack capacity. DCKP has numerous applications and is however computationally challenging (NP-hard). In this work, we present a threshold search based memetic algorithm for solving the DCKP that combines the memetic framework with threshold search to find high quality ..."

❝ Cite Node

@article{Wei2021A,
  title={A threshold search based memetic algorithm for the disjunctively constrained knapsack problem},
  author={Zequn Wei and Jin-Kao Hao},
  journal={arXiv preprint arXiv:arxiv-paper--2101.04753},
  year={2021}
}

πŸ‘₯ Collaborating Minds

Zequn Wei Jin-Kao Hao

Abstract & Analysis

The disjunctively constrained knapsack problem consists in packing a subset of pairwisely compatible items in a capacity-constrained knapsack such that the total profit of the selected items is maximized while satisfying the knapsack capacity. DCKP has numerous applications and is however computationally challenging (NP-hard). In this work, we present a threshold search based memetic algorithm for solving the DCKP that combines the memetic framework with threshold search to find high quality solutions. Extensive computational assessments on two sets of 6340 benchmark instances in the literature demonstrate that the proposed algorithm is highly competitive compared to the state-of-the-art methods. In particular, we report 24 and 354 improved best-known results (new lower bounds) for Set I (100 instances) and for Set II (6240 instances), respectively. We analyze the key algorithmic components and shed lights on their roles for the performance of the algorithm. The code of our algorithm will be made publicly available.

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id
arxiv-paper--2101.04753
source
arxiv
author
Zequn Wei
tags
arxiv:cs.NE

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