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Similarity and Logic Gate-Based Tree-Seed Algorithms for Binary Optimization

机译:二进制优化的基于相似度和逻辑门的树种子算法

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摘要

This paper focuses on solving binary optimization problems by using Tree-Seed Algorithm, TSA for short. While TSA is firstly proposed for solving optimization problems with continuously-structured solution space, TSA is modified to solve binary optimization problems, which is a subfield of discrete optimization, by using logic gates (LogicTSA) and similarity measurement techniques (SimTSA). In order to improve performance of these methods, a hybrid variant (SimLogicTSA) is also proposed. The performance of the proposed algorithms is investigated on uncapacitated facility location problems (UFLPs), which are pure binary optimization problems. The experimental results on 15 test instances are compared with each other and state-of-art algorithms. The comparisons demonstrate that hybrid variant of the algorithm is better than the other variants of the algorithm and state-of-art algorithms in terms of solution quality and robustness.
机译:本文着重于通过使用TSE的Tree-Seed算法解决二进制优化问题。虽然TSA最初是为解决具有连续结构的解决方案空间的优化问题而提出的,但通过使用逻辑门(LogicTSA)和相似性测量技术(SimTSA),对TSA进行了修改,以解决二进制优化问题,该问题是离散优化的子领域。为了提高这些方法的性能,还提出了一种混合变量(SimLogicTSA)。在无能力设施位置问题(UFLP)上研究了所提出算法的性能,后者是纯二进制优化问题。将15个测试实例的实验结果相互比较,并比较了最新算法。比较表明,在解决方案质量和鲁棒性方面,该算法的混合变体优于该算法的其他变体和最新算法。

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