拟阵和背包均值问题的改进逼近算法

IF 0.6 4区 计算机科学 Q4 COMPUTER SCIENCE, THEORY & METHODS International Journal of Foundations of Computer Science Pub Date : 2023-02-03 DOI:10.1142/s012905412246008x
Ao Zhao, Yang Zhou, Qian Liu
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引用次数: 0

摘要

拟阵均值和背包均值都是经典[公式:见正文]均值问题的变体,在该问题中,我们分别用拟阵约束或背包约束代替基数约束。在本文中,我们用一种更简单、更有效的舍入方法,给出了拟阵均值问题的64近似算法和背包均值问题的[公式:见正文]近似算法。我们对前者的304近似比率和后者的20016近似比率进行了改进。在舍入过程中,子模(或拟阵)多面体的交的完整性的应用提供了强有力的理论支持。此外,我们将该方法推广到带罚分的拟阵均值问题,并给出了一致罚分和非均匀罚分问题的64和880近似算法。
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Improved Approximation Algorithms for Matroid and Knapsack Means Problems
Both matroid means and knapsack means are variations of the classic [Formula: see text]-means problem in which we replace the cardinality constraint by matroid constraint or knapsack constraint respectively. In this paper, we give a 64-approximation algorithm for the matroid means problem and a [Formula: see text]-approximation algorithm for the knapsack means problem by using a simpler and more efficient rounding method. We improve previous 304 approximate ratio for the former and 20016 approximate ratio for the latter. In the rounding process, the application of integrality of the intersection of submodular (or matroid) polyhedra provides strong theoretical support. Moreover, we extend this method to matroid means problem with penalties, and give 64 and 880-approximate algorithms for uniform penalties and nonuniform penalties problem.
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来源期刊
International Journal of Foundations of Computer Science
International Journal of Foundations of Computer Science 工程技术-计算机:理论方法
CiteScore
1.60
自引率
12.50%
发文量
63
审稿时长
3 months
期刊介绍: The International Journal of Foundations of Computer Science is a bimonthly journal that publishes articles which contribute new theoretical results in all areas of the foundations of computer science. The theoretical and mathematical aspects covered include: - Algebraic theory of computing and formal systems - Algorithm and system implementation issues - Approximation, probabilistic, and randomized algorithms - Automata and formal languages - Automated deduction - Combinatorics and graph theory - Complexity theory - Computational biology and bioinformatics - Cryptography - Database theory - Data structures - Design and analysis of algorithms - DNA computing - Foundations of computer security - Foundations of high-performance computing
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