特征交互的连续变量特定分辨率

M. H. Zibaeenejad, Chi Zhang, J. Atlee
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引用次数: 6

摘要

由独立开发的特征组装而成的系统会受到特征交互的影响,即特征以令人惊讶的方式影响彼此的行为。由于要考虑的可能上下文的数量随着系统中功能的数量呈指数增长,因此试图为每个可能上下文中的每个交互实现适当的解决方案会导致功能交互问题。解决策略旨在通过提供解决整个交互类的默认策略来解决功能交互问题,从而减少解决大量交互所需的工作。然而,大多数此类方法采用粗粒度的解决策略(例如,特征优先级)或集中式仲裁器。我们的工作重点是采用特定于变量的默认解决策略,旨在解决运行时功能-系统输出上的冲突操作。在本文中,我们扩展了先前的工作,以实现耦合输出变量上交互的共同解析,并促进执行路径上的平滑连续解析。我们在PreScan模拟器中实施了我们的方法,并进行了涉及15个汽车特征的案例研究;这需要我们为三个输出变量设计和实现三个解决策略。案例研究的结果表明,该方法在有趣的场景中产生了平滑和连续的交互解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous variable-specific resolutions of feature interactions
Systems that are assembled from independently developed features suffer from feature interactions, in which features affect one another's behaviour in surprising ways. The Feature Interaction Problem results from trying to implement an appropriate resolution for each interaction within each possible context, because the number of possible contexts to consider increases exponentially with the number of features in the system. Resolution strategies aim to combat the Feature Interaction Problem by offering default strategies that resolve entire classes of interactions, thereby reducing the work needed to resolve lots of interactions. However most such approaches employ coarse-grained resolution strategies (e.g., feature priority) or a centralized arbitrator. Our work focuses on employing variable-specific default-resolution strategies that aim to resolve at runtime features- conflicting actions on a system's outputs. In this paper, we extend prior work to enable co-resolution of interactions on coupled output variables and to promote smooth continuous resolutions over execution paths. We implemented our approach within the PreScan simulator and performed a case study involving 15 automotive features; this entailed our devising and implementing three resolution strategies for three output variables. The results of the case study show that the approach produces smooth and continuous resolutions of interactions throughout interesting scenarios.
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