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The development and application of composite complexity models and a relative complexity metric in a software maintenance environment

机译:软件维护环境中复合复杂度模型和相对复杂度度量的开发与应用

摘要

A great deal of effort is now being devoted to the study, analysis, prediction, and minimization of software maintenance expected cost, long before software is delivered to users or customers. It has been estimated that, on the average, the effort spent on software maintenance is as costly as the effort spent on all other software costs. Software design methods should be the starting point to aid in alleviating the problems of software maintenance complexity and high costs. Two aspects of maintenance deserve attention: (1) protocols for locating and rectifying defects, and for ensuring that noe new defects are introduced in the development phase of the software process; and (2) protocols for modification, enhancement, and upgrading. This article focuses primarily on the second aspect, the development of protocols to help increase the quality and reduce the costs associated with modifications, enhancements, and upgrades of existing software. This study developed parsimonious models and a relative complexity metric for complexity measurement of software that were used to rank the modules in the system relative to one another. Some success was achieved in using the models and the relative metric to identify maintenance-prone modules.
机译:在将软件交付给用户或客户之前很久,现在已投入大量精力来研究,分析,预测和最小化软件维护预期成本。据估计,平均而言,花在软件维护上的工作与花在所有其他软件成本上的工作一样昂贵。软件设计方法应作为减轻软件维护复杂性和高成本问题的起点。维护的两个方面值得关注:(1)定位和纠正缺陷的协议,并确保在软件过程的开发阶段不会引入新的缺陷; (2)修改,增强和升级的协议。本文主要关注第二方面,即协议的开发,以帮助提高质量并减少与现有软件的修改,增强和升级相关的成本。这项研究开发了简化模型和相对复杂性度量,用于软件的复杂性度量,这些度量用于对系统中的模块进行相互排名。通过使用模型和相对度量来识别易于维护的模块,已经取得了一些成功。

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  • 作者

    Hops J. M.; Sherif J. S.;

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  • 年度 1994
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