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Distributed computing environment software maintenance: problems of measurement and research

机译:分布式计算环境软件维护:测量和研究问题

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Historically, the largest single life cycle computer system cost has been for maintaining information system software. More recently, the computing world has begun to undergo a significant transformation from centralized computer architectures to non-centralized or distributed computer architectures. The paper discusses a new area of research on software maintenance (and development in general), focusing on the issue of whether and to what extent the emerging technology of distributed computer operating environments directly affects software maintenance. Based on trade journal articles, the issue appears to depend on two diametrics of information system architectures: component simplicity and system complexity. The smaller (but more numerous) the system components, the easier they are to deal with individually (i.e., lower software maintenance costs) but the more difficult it is to deal with the overall system (i.e., higher software maintenance costs). This research was based on a new conceptual model for information systems complexity based on component number and variety, interaction number and variety and the overall rate of change. By applying this complexity model to distributed computing environments, this research sought empirical data from to determine whether the complexity of a distributed computer system has a greater effect on software maintenance than component simplicity, and what the related explanatory factors are.
机译:从历史上看,最大的单一生命周期计算机系统成本已经用于维护信息系统软件。最近,计算世界已经开始从集中式计算机架构到非集中式或分布式计算机架构进行重大转型。本文讨论了一个新的软件维护研究领域(以及一般的发展),重点是分布式计算机操作环境的新兴技术是否直接影响软件维护的问题。基于贸易期刊文章,该问题似乎取决于信息系统架构的两个径向:组件简单性和系统复杂性。系统组件越小,它们越容易处理(即,较低的软件维护成本),但要处理整体系统(即,软件维护成本更高)越困难。本研究基于新的概念模型,用于信息系统复杂性,基于组件数量和各种,交互数量和多样性以及整体变化率。通过将该复杂性模型应用于分布式计算环境,本研究寻求经验数据来确定分布式计算机系统的复杂性是否对软件维护具有比组件简单更大的效果,以及相关的解释因素是什么。

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