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Component Identification and Evaluation for Legacy Systems -An Empirical Study-

机译:旧版系统的组件识别和评估-实证研究-

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In the field of software reengineering, many component identification approaches have been proposed for evolving legacy systems into component-based systems. Understanding the behaviors of various component identification approaches is the first important step to meaningfully employ them for legacy systems evolution, therefore we performed an empirical study on component identification technology with considerations of their similarity measures, clustering approaches and stopping criteria. We proposed a set of evaluation criteria and developed the tool CI-ETool to automate the process of component identification and evaluation. The experimental results revealed that many components of poor quality were produced by the employed component identification approaches; that is, many of the identified components were tightly coupled, weakly cohesive, or had inappropriate numbers of implementation classes and interface operations. Finally, we presented an analysis on the component identification approaches according to the proposed evaluation criteria, which suggested that the weaknesses of these clustering approaches were the major reasons that caused components of poor-quality.
机译:在软件工程领域,已经提出了许多用于将遗留系统发展为基于组件的系统的组件识别方法。了解各种组件识别方法的行为是有意义地将其用于遗留系统演进的第一步,因此,我们在考虑组件相似性度量,聚类方法和停止标准的基础上,对组件识别技术进行了实证研究。我们提出了一套评估标准,并开发了工具CI-ETool来自动进行组件识别和评估过程。实验结果表明,所采用的成分识别方法产生了许多质量较差的成分。也就是说,许多已确定的组件紧密耦合,内聚性很弱,或者实现类和接口操作的数量不合适。最后,我们根据提出的评估标准对成分识别方法进行了分析,这表明这些聚类方法的弱点是导致成分质量较差的主要原因。

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