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Towards the Use of Granularity Theory for Determining the Size of Atomic Method Fragments for Use in Situational Method Engineering

机译:运用粒度理论确定用于情景方法工程中的原子方法片段的大小

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Situational method engineering defends the idea that methodologies should be constructed by assembling pre-existing method fragments from a repository. The structure of the repository, the kinds of fragments that it can store, as well as the possible relationships among them, are dictated by an underlying metamodel. One of the aspects that must be studied is that of the granularity of the individual method fragments in the context of the metamodel to which the fragments are conformant. This becomes especially relevant in a service-oriented method engineering context, where interoperability and composability of fragments from multiple repositories is a key issue. This paper applies some theoretical works on granularity to the study of both the granularity and the size of method fragments, recommending some best practices that should be adopted in order that the resultant method fragments are atomic and therefore likely to be consistent in quality thus leading to higher quality constructed methodologies and paving the way for easier composition and interoperation of fragments.
机译:情境方法工程捍卫了应该通过从存储库中组装预先存在的方法片段来构建方法论的想法。存储库的结构,它可以存储的片段类型以及它们之间的可能关系由基础元模型决定。必须研究的方面之一是各个方法片段在与片段相符的元模型的上下文中的粒度。这在面向服务的方法工程环境中尤为重要,在该环境中,来自多个存储库的片段的互操作性和可组合性是关键问题。本文将一些关于粒度的理论研究应用于方法片段的粒度和大小的研究,并建议了一些最佳实践,以便使所得方法片段具有原子性,因此质量上可能保持一致,从而导致更高质量的构建方法论,为片段的更容易组成和互操作铺平了道路。

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