基于信息块驱动RFLP结构的多学科网络物理系统产品模型

Yatish Bathla
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引用次数: 2

摘要

网络物理系统(CPS)是新兴和未来智能服务的基础,因为它将计算实体与周围的物理世界进行协作。CPS需要一个系统级的产品模型,它需要先进的工程建模,可能的解决方案是多学科的CPS。在多学科CPS的功能逻辑层,行为表示允许模型的概念级虚拟执行。本文利用自身的研究成果,在需求功能逻辑物理(RFLP)结构产品模型的功能层提出了信息块实体,并通过信息内容(Information Content, IC)解释了扩展信息块驱动RFLP结构的网络CPS单元实体之间的通信。然后,解释了信息块在支持RFLP和CPS网络结构驱动实体的主动信息内容(AIC)中的作用。最后,讨论了AIC、信息块驱动RFLP结构与产品CPS中网络单元之间的通信。在这里,虚拟执行的复杂产品模型根据工业4.0范式使用网络物理生产系统转换为现实世界的网络物理系统。
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Info-Chunk Driven RFLP Structure Based Product Model for Multidisciplinary Cyber Physical Systems
Cyber Physical System (CPS) forms the basis of emerging and future smart services as it collaborates computational entities with the surrounding physical world. CPS demands a system level product model where it requires advanced engineering modeling and the possible solution is multidisciplinary CPS. In functional-logical level of multidisciplinary CPS, behavior representation allows concept level virtual execution of the model. Using own former research results, this paper proposes Info-Chunk entities in the functional level of Requirement Functional Logical Physical (RFLP) structure product model and then explains the communication between the cyber CPS unit entities with extended Info-Chunk driven RFLP structure by the Information Content (IC). Then, it explains the role of Info-Chunk in the active information content (AIC) which supports driving entities in RFLP and CPS cyber structures. Finally, communication between AIC, Info-Chunk driven RFLP structure and cyber units in the CPS of the product is discussed. Here, virtually executed complex models of products are converted into real world cyber physical systems using cyber physical production systems in accordance with the paradigm Industry-4.0.
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