Enhancing the requirements engineering of configurable systems by the ongoing use of variability models

IF 2.1 3区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
Chin Khor, Robyn R. Lutz
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引用次数: 0

Abstract

Software systems and product lines often use configurable features to specify a portfolio of product variants from a common core. Typically, their requirements also include constraints on which combinations of features are valid. Especially for larger systems and systems where the specifications are scattered among documents, the analysis of a new product’s variability-related requirements is challenging. To address this, we introduce a scalable, tool-supported framework that uses a variability model to automate checks for missing and inconsistent features and constraints. Our approach also extends and scales traditional variability requirements engineering by incorporating combinatorial interaction testing techniques to build valid product variants covering all configurations in the variability model and to automatically discover faulty feature settings in failed builds. Results from evaluation on two configurable systems show that our framework is effective both at early detection of missing, incorrect, and inconsistent variability requirements and at later finding faulty feature configurations.

Abstract Image

持续使用可变性模型,加强可配置系统的需求工程设计
软件系统和产品线通常使用可配置功能来指定一个共同核心的产品变体组合。通常,它们的需求还包括对哪些功能组合有效的限制。特别是对于较大的系统和规范分散在不同文档中的系统,分析新产品的可变性相关要求具有挑战性。为了解决这个问题,我们引入了一个可扩展的工具支持框架,该框架使用可变性模型来自动检查缺失和不一致的特征和约束。我们的方法还扩展和扩展了传统的可变性需求工程,通过结合组合交互测试技术来构建有效的产品变体,涵盖可变性模型中的所有配置,并在失败的构建中自动发现错误的功能设置。对两个可配置系统的评估结果表明,我们的框架在早期检测缺失、不正确和不一致的可变性需求以及后期发现错误的功能配置方面都很有效。
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来源期刊
Requirements Engineering
Requirements Engineering 工程技术-计算机:软件工程
CiteScore
7.10
自引率
10.70%
发文量
27
审稿时长
>12 weeks
期刊介绍: The journal provides a focus for the dissemination of new results about the elicitation, representation and validation of requirements of software intensive information systems or applications. Theoretical and applied submissions are welcome, but all papers must explicitly address: -the practical consequences of the ideas for the design of complex systems -how the ideas should be evaluated by the reflective practitioner The journal is motivated by a multi-disciplinary view that considers requirements not only in terms of software components specification but also in terms of activities for their elicitation, representation and agreement, carried out within an organisational and social context. To this end, contributions are sought from fields such as software engineering, information systems, occupational sociology, cognitive and organisational psychology, human-computer interaction, computer-supported cooperative work, linguistics and philosophy for work addressing specifically requirements engineering issues.
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