arXiv:2506.22526math.OCcs.AI2025-06被引 1

用改进的离散突变策略提升整数规划求解效率

Correlated Mutations for Integer Programming

  • 改用l1范数和双几何分布,构建更适配整数变量的突变机制
  • 实验表明双几何分布比截断正态分布更适合无界整数搜索
  • 适合研究整数优化启发式算法的学者与工程应用者

尽管整数规划(IP)的理论复杂度已大幅降低,启发式方法仍是主流求解工具。本文为整数进化策略(IES)奠定基础,这类随机搜索启发式原本设计用于连续空间。现有方法通过离散化和修补连续算子来处理IP,仍依赖ℓ₂-范数。本文转向ℓ₁-范数,考虑合适的步长,并探索在整数格点上量化相关性的替代度量。聚焦于无界整数决策变量的突变分布,对比均匀、二项式分布的理论性质后,选定截断正态(TN)与双几何(DG)分布。分析其熵函数等理论特性,提出可扩展的相关突变生成方法。大量数值模拟显示,DG分布优于其他策略,在非可分二次整数规划中表现更优。结论表明,将默认的TN分布替换为DG虽有理论与实践优势,真正关键的改进在于采用ℓ₁-范数替代ℓ₂-范数。

原文摘要 · Abstract (English)

Even with the recent theoretical advancements that dramatically reduced the complexity of Integer Programming (IP), heuristics remain the dominant problem-solvers for this difficult category. This study seeks to establish the groundwork for Integer Evolution Strategies (IESs), a class of randomized search heuristics inherently designed for continuous spaces. IESs already excel in treating IP in practice, but accomplish it via discretization and by applying sophisticated patches to their continuous operators, while persistently using the $\ell_2$-norm as their operation pillar. We lay foundations for discrete search, by adopting the $\ell_1$-norm, accounting for the suitable step-size, and questioning alternative measures to quantify correlations over the integer lattice. We focus on mutation distributions for unbounded integer decision variables. We briefly discuss a couple of candidate discrete probabilities induced by the uniform and binomial distributions, which we show to possess less appealing theoretical properties, and then narrow down to the Truncated Normal (TN) and Double Geometric (DG) distributions. We explore their theoretical properties, including entropy functions, and propose a procedure to generate scalable correlated mutation distributions. Our investigations are accompanied by extensive numerical simulations, which consistently support the claim that the DG distribution is better suited for unbounded integer search. We link our theoretical perspective to empirical evidence indicating that an IES with correlated DG mutations outperformed other strategies over non-separable quadratic IP. We conclude that while the replacement of the default TN distribution by the DG is theoretically justified and practically beneficial, the truly crucial change lies in adopting the $\ell_1$-norm over the $\ell_2$-norm.

整数规划进化算法随机优化突变策略

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