The Largest Critical Sets of Latin Squares

Keith Hermiston
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引用次数: 1

Abstract

Latin squares are combinatorial constructions that have found widespread application in communication systems through frequency hopping designs, error correcting codes and encryption algorithms. In this paper, a new, upper bound on the cardinality of the critical sets of all Latin squares of order n is presented. The bound is based on composite group structure and the summatory prime factorisation function (with multiplicities). The new bound aligns with all known, calculated cardinalities of largest critical sets. The proof addresses a long standing, open problem in discrete mathematics and impacts the assurance of systems based on Latin squares. The new bound also reveals a previously unknown, generative relationship between the smallest critical sets scs(n) and the largest critical sets lcs(n) of Latin squares.
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拉丁方的最大临界集
拉丁平方是一种组合结构,通过跳频设计、纠错码和加密算法在通信系统中得到了广泛的应用。本文给出了所有n阶拉丁平方的临界集的基数的一个新的上界。该界是基于复合群结构和求和质因数分解函数(具有多重性)。新的边界与所有已知的、计算过的最大临界集的基数对齐。该证明解决了离散数学中一个长期存在的开放问题,并影响了基于拉丁平方的系统的保证。新的界还揭示了拉丁平方的最小临界集scs(n)和最大临界集lcs(n)之间的一个以前未知的生成关系。
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