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Towards a methodology of system manifestation features-based pre-embodiment design

机译:迈向基于系统表现特征的实施前设计方法

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The main assumption is that complicated systems, such as cyber-physical systems (CPSs), can be modelled by specific compositions of system manifestation features (SMFs). SMFs are regarded as architectural domains of a system having significance from an operational viewpoint. As system modelling entities, SMFs represent both physical and computing transformations of domains. Based on mereo-operandi theory (MOT), a computational framework for using SMFs in pre-embodiment design of CPSs is proposed. MOT offers a theoretical platform for concurrent modelling of architectural elements and their operations. The traditional application feature technology' has been generalised in order to provide a methodological basis. The computational formalisation captures state transitions and input/output streams, in addition to spatiotemporal, physical and/or computational attributes of domains. Domain transformations are represented by flows of operation (FoOs) that consist of time-sequenced and logically constrained sets of units of operations (UoOs), and processed by various computational methods as procedures. The domains of SMFs are aggregated into a feasible architecture, and their UoOs are combined into FoOs. An application case is used to explain the concepts and to demonstrate feasibility of the proposed approach. Further research will focus on implementation of an SMFs-based pre-embodiment design system and testing its feasibility and usability with designers of CPSs.
机译:主要假设是,可以通过系统表现特征(SMF)的特定组成来建模复杂的系统,例如网络物理系统(CPS)。从操作的角度来看,SMF被视为具有重要意义的系统的体系结构领域。作为系统建模实体,SMF代表域的物理和计算转换。基于光子算符理论(MOT),提出了一种在SPS的实施前设计中使用SMF的计算框架。 MOT为架构元素及其操作的并发建模提供了理论平台。为了提供一种方法学基础,对传统的应用功能技术进行了概括。除了域的时空,物理和/或计算属性外,计算形式化还捕获状态转换和输入/输出流。域转换由操作流(FoO)表示,该操作流由按时间顺序排列并在逻辑上受约束的一组操作单元(UoOs)组成,并通过各种计算方法作为过程进行处理。 SMF的域被聚集到一个可行的体系结构中,并且它们的UoO被组合到FoO中。一个应用案例用于解释概念并证明所提出方法的可行性。进一步的研究将集中在基于SMF的实施前设计系统的实现上,并与CPS的设计人员一起测试其可行性和可用性。

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