Strengthening architectures of smart CPS by modeling them as runtime product-lines

T. Bures, P. Hnetynka, F. Plášil
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引用次数: 17

Abstract

Smart Cyber-Physical Systems (CPS) are complex distributed decentralized systems of cooperating mobile and stationary devices which closely interact with the physical environment. Although Component-Based Development (CBD) might seem as a viable solution to target the complexity of smart CPS, existing component models scarcely cope with the open-ended and very dynamic nature of smart CPS. This is especially true for design-time modeling using hierarchical explicit architectures, which traditionally provide an excellent means of coping with complexity by providing multiple levels of abstractions and explicitly specifying communication links between component instances. In this paper we propose a modeling method (materialized in the SOFA NG component model) which conveys the benefits of explicit architectures of hierarchical components to the design of smart CPS. Specifically, we base our method on modeling systems as reference architectures of Software Product Lines (SPL). Contrary to traditional SPL, which is a fully design-time approach, we create SPL configurations at runtime. We do so in a decentralized way by translating the configuration process to the process of establishing component ensembles (i.e. dynamic cooperation groups of components) of our DEECo component model.
通过将智能CPS建模为运行时产品线来加强它们的架构
智能信息物理系统(CPS)是由移动和固定设备组成的复杂的分布式分散系统,与物理环境密切交互。尽管基于组件的开发(CBD)似乎是针对智能CPS复杂性的可行解决方案,但现有的组件模型几乎无法应对智能CPS的开放式和非常动态的特性。对于使用分层显式体系结构的设计时建模尤其如此,这种体系结构通过提供多层抽象和显式指定组件实例之间的通信链接,传统上提供了一种处理复杂性的极好方法。在本文中,我们提出了一种建模方法(在SOFA NG组件模型中具体化),该方法将分层组件的显式架构的优点传达给智能CPS的设计。具体地说,我们的方法基于作为软件产品线(SPL)参考架构的系统建模。传统的SPL是一种完全的设计时方法,与之相反,我们在运行时创建SPL配置。通过将配置过程转换为建立DEECo组件模型的组件集成(即组件的动态合作组)的过程,我们以分散的方式做到了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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