用于验证和测量的组件可测试性模型

J. Gao, Ming-Chih Shih
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引用次数: 74

摘要

由于组件是基于组件的系统的主要构建块,因此开发高质量的组件对于基于组件的软件工程变得非常关键。为了生成高质量的组件,我们必须注意组件的可测试性,以确保可重用组件不仅可以被组件供应商测试,而且可以很容易地被组件用户验证。因此,组件的可测试性分析、验证和测量成为测试组件和基于组件的系统中非常重要的研究课题。基于组件可测试性分析模型,对组件的可测试性进行了定量分析。工程师可以在组件开发过程中使用该模型来验证和测量组件的可测试性。在此可测性模型的基础上,讨论了部件的可测性验证,提出了可测性测量的五角星模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A component testability model for verification and measurement
Since components are the major building blocks for component-based systems, developing high quality components is becoming very critical for in component-based software engineering. To generate high quality components, we must pay attention to component testability to ensure that reusable components not only can be tested by component vendors, but also can be easily validated by component users. Therefore, component testability analysis, verification and measurement become very important research topic in testing components and component-based systems. This paper discusses the component testability in a quantifiable approach based on a component testability analysis model. Engineers can use this model to verify and measure component testability during a component development process. Based on this testability model, the paper discusses component testability verification, and proposes a pentagram model for testability measurement.
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