基于概念格的软件再造

G. Snelting
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引用次数: 5

摘要

概念分析提供了一种识别具有共同属性的对象分组的方法。数学基础是由G. Birkhoff(1940)奠定的,他证明,对于某些“对象”和“属性”之间的每一个二元关系,都可以构造一个格,这使得对原始关系的结构有了显著的了解。这种关系总是可以从晶格中重构出来,因此概念分析在精神上类似于傅里叶分析。R. Wille(1982)和B. Ganter等人(1999)详细阐述了Birkhoff的结果,并将其转化为一种数据分析方法,该方法已经找到了各种应用,例如对伦勃朗画作的分析,代数结构的分类和吸毒成瘾者的行为。1993年,开始在程序理解和再工程领域应用概念分析的工作。概念分析已用于遗留代码的模块化,发现配置和类层次结构转换之间的干扰。近年来,概念格也被应用于动态规划行为的分析。在本文中,我们不提供数学和算法背景,而只是提供一个例子来解释概念格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Software reengineering based on concept lattices
Concept analysis provides a way to identify groupings of objects that have common attributes. The mathematical foundation was laid by G. Birkhoff (1940), who proved that, for every binary relation between certain "objects" and "attributes", a lattice can be constructed which allows remarkable insight into the structure of the original relation. The relation can always be reconstructed from the lattice, hence concept analysis is similar in spirit to Fourier analysis. R. Wille (1982) and B. Ganter et al. (1999) elaborated Birkhoff's result and transformed it into a data analysis method that has found a variety of applications, such as an analysis of Rembrandt's paintings, a classification of algebraic structures and the behaviour of drug addicts. In 1993, work on the application of concept analysis in the area of program understanding and reengineering was initiated. Concept analysis has been used for modularization of legacy code, finding interferences between configurations and transformation of class hierarchies. Recently, concept lattices have also been applied to analysis of dynamic program behaviour. In this paper, we do not present the mathematical and algorithmic background but merely present an example explaining concept lattices.
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