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A modelling simulation based engineering approach for socio-cyber-physical systems

机译:基于模型和仿真的社会网络物理系统工程方法

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Today, most large and complex systems such as aircrafts or power grids integrate physical and human aspects with computing and networking, and therefore constitute so-called socio-cyber-physical systems (SCPS). Their engineering, from prospective and conceptual studies (to determine the scope of the system) through design and construction to operation, maintenance and upgrades, necessitates the cooperation and coordination of many teams representing different disciplines and viewpoints. In addition, such systems are subject to many constraints such as tight budget and schedule; high dependability, safety and security; need to innovate; long lifetime; changing and uncertain environments. This paper presents a modelling and simulation (M&S) based engineering approach that can address the challenges of large and complex SCPS, and more generally, of systems of SCPS (SoS). Contrary to “classical” M&S approaches relying on deterministic behavioural models that can be developed only in the final stages of the design process, the proposed approach relies on constraints models that specify envelopes of required or assumed behaviours, and that can be applied at any phase of the system lifecycle. Also, in order to manage complexity and the variety of viewpoints, the approach supports models composition, whereby models from different teams or at different phases of the process can be aggregated (top-down or bottom-up) and verified for consistency.
机译:如今,大多数大型复杂系统(例如飞机或电网)都将物理和人的方面与计算和网络集成在一起,因此构成了所谓的社会网络物理系统(SCPS)。他们的工程从前瞻性和概念性研究(确定系统范围)到设计和施工,再到运营,维护和升级,需要许多代表不同学科和观点的团队进行合作和协调。此外,这样的系统还受到许多限制,例如预算和时间表紧迫;高可靠性,安全性和安全性;需要创新;寿命长;变化多端且不确定的环境。本文提出了一种基于建模和仿真(M&S)的工程方法,可以解决大型和复杂SCPS的挑战,更广泛地说,可以应对SCPS(SoS)系统的挑战。与“经典”的M&S方法依赖只能在设计过程的最后阶段开发的确定性行为模型相反,所提出的方法依赖于约束模型,该模型指定了必需或假定行为的包络,并且可以在任何阶段应用系统生命周期。此外,为了管理复杂性和观点的多样性,该方法支持模型的组成,从而可以汇总(自上而下或自下而上)来自不同团队或处于过程的不同阶段的模型,并验证其一致性。

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