Collaborative Cyber-Physical Systems (CCPS) are systems that contain tightly coupled physical and cyber components, massively interconnected subsystems, and collaborate to achieve a common goal. The safety of a single Cyber-Physical System (CPS) can be achieved by following the safety standards such as ISO 26262 and IEC 61508 or by applying hazard analysis techniques. However, due to the complex, highly interconnected, heterogeneous, and collaborative nature of CCPS, a fault in one CPS's components can trigger many other faults in other collaborating CPSs. Therefore, a safety assurance technique based on fault criticality analysis would require to ensure safety in CCPS. This paper presents a Fault Criticality Matrix (FCM) implemented in our tool called CPSTracer, which contains several data such as identified fault, fault criticality, safety guard, etc. The proposed FCM is based on composite hazard analysis and content-based relationships among the hazard analysis artifacts, and ensures that the safety guard controls the identified faults at design time; thus, we can effectively manage and control the fault at the design phase to ensure the safe development of CPSs. To validate our approach, we introduce a case study on the Platooning system (a collaborative CPS). We perform the criticality analysis of the Platooning system using FCM in our developed tool. After the detailed fault criticality analysis, we investigate the results to check the appropriateness and effectiveness with two research questions. Also, by performing simulation for the Platooning, we showed that the rate of collision of the Platooning system without using FCM was quite high as compared to the rate of collisions of the system after analyzing the fault criticality using FCM.
翻译:合作网络-物理系统(CCPS)是包含紧密结合的物理和网络组成部分的系统,大规模相互连接的子系统,并为实现共同目标进行合作。一个单一的网络-物理系统(CPCS)的安全可以通过遵循ISO 2626262和IEC 61508等安全标准来实现,也可以采用危险分析技术。然而,由于CPS的复杂、高度相互关联、差异和协作性质,一个CPS组件的缺陷可以触发其他合作的CPS的很多其他缺陷。因此,基于过错临界度分析的安全保障技术将需要确保CCPS的安全。本文展示了一个称为CPSTracer(FCM)的违约临界度矩阵,该系统包含若干数据,如已查明的过失、过错临界度、安全保卫等。 拟议的FCMS基于综合危害分析和基于内容的关系,确保安全警卫队在设计时控制已查明的错误;因此,我们在设计阶段管理和控制过错以确保CPS的安全性分析,在使用C-C的准确性分析后,我们用C-C节的准确性分析方法来验证我们的CFPL系统。</s>