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SysML based Design for Variability enabling the Reusability of Legacy Systems towards the support of Diverse Standard Compliant Implementations or Standard Updates: The Case of IEEE-802.15.6 Standard for e-Health Applications

机译:基于SysML的可变性设计使传统系统可重用,以支持各种符合标准的实现或标准更新:电子卫生应用的IEEE-802.15.6标准案例

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摘要

The aim of this paper is to provide a consistent development path enabling the re-usability of in house legacy systems or architectures towards their re-design, in order to ensure compliance with evolving standards, by using the new features of SysML for modelling variants. Modern standards evolve quickly, include advanced functionalities and operations and support diverse implementations. System industries need to cope with such standards changes by modifying their current technologies. This paper shows how a novel engineering process (SysML modelling) could be employed to define consistently the specification and the migration procedure of legacy systems to their variants. Within this work SysML characteristics such as package and block diagrams, are employed, with an emphasis on variability modelling, as a basis for standard compliant architecture implementation, thus providing design flexibility and reusability at several abstraction levels. As an illustration of our proposed method we present models of two variant Physical Layer structures for IEEE-802.15.6 Standard for e-Health Applications. The advanced SysML features are used to target the re-usability of a legacy Narrow-Band (NB) physical layer subsystem for the Wireless Body Area Network standard and to implement the alternative Ultra-Wide Band (UWB). Therefore, we contend that such methods bring potential benefits to those needing to ensure compliance when producing product variants.
机译:本文的目的是提供一个一致的开发路径,通过使用SysML的新功能来对变体进行建模,从而确保内部旧有系统或体系结构可以重新使用,以进行重新设计,从而确保符合不断发展的标准。现代标准发展迅速,包括高级功能和操作并支持多种实现。系统行业需要通过修改其当前技术来应对此类标准更改。本文展示了如何采用新颖的工程流程(SysML建模)来一致地定义规范和遗留系统向其变体的移植过程。在这项工作中,采用了SysML特性(如封装和框图),并着重于可变性建模,将其作为符合标准的体系结构实现的基础,从而在多个抽象级别提供了设计灵活性和可重用性。为了说明我们提出的方法,我们介绍了两种适用于电子医疗应用IEEE-802.15.6标准的物理层结构的模型。先进的SysML功能用于针对无线人体局域网标准的传统窄带(NB)物理层子系统的可重用性,并实现替代性的超宽带(UWB)。因此,我们认为,此类方法为生产产品变体时需要确保合规性的那些方法带来了潜在的好处。

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