AirborneCPS: A Simulator for Functional Dependencies in Cyber Physical Systems: A Traffic Collision Avoidance System Implementation

William Cook, Andrew Driscoll, B. Tenbergen
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引用次数: 4

Abstract

The term "Cyber Physical System" (CPS) has been used in the recent years to describe a system type, which makes use of powerful communication networks to functionally combine systems that were previously thought of as independent. The common theme of CPSs is that through communication, CPSs can make decisions together and achieve common goals. Yet, in contrast to traditional system types such as embedded systems, the functional dependence between CPSs can change dynamically at runtime. Hence, their functional dependence may cause unforeseen runtime behavior, e.g., when a CPS becomes unavailable, but others depend on its correct operation. During development of any individual CPS, this runtime behavior must hence be predicted, and the system must be developed with the appropriate level of robustness. Since at present, research is mainly concerned with the impact of functional dependence in CPS on development, the impact on runtime behavior is mere conjecture. In this paper, we present AirborneCPS, a simulation tool for functionally dependent CPSs which simulates runtime behavior and aids in the identification of undesired functional interaction.
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AirborneCPS:网络物理系统中功能依赖的模拟器:交通碰撞避免系统的实现
近年来,“网络物理系统”(CPS)一词被用来描述一种系统类型,它利用强大的通信网络在功能上组合以前被认为是独立的系统。cps的共同主题是,通过沟通,cps可以一起做决定,实现共同的目标。然而,与嵌入式系统等传统系统类型相比,cps之间的功能依赖关系可以在运行时动态变化。因此,它们的功能依赖性可能会导致不可预见的运行时行为,例如,当一个CPS不可用时,但其他CPS依赖于它的正确操作。在开发任何单独的CPS期间,必须预测这种运行时行为,并且必须使用适当级别的健壮性来开发系统。由于目前的研究主要关注CPS中功能依赖对开发的影响,因此对运行时行为的影响仅是推测。在本文中,我们提出了AirborneCPS,一个功能依赖的cps的仿真工具,它模拟运行时行为并帮助识别不希望的功能交互。
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