基于组件的网络物理系统容错器件设计

Tianhua Xu, Zhiming Liu, T. Tang, Wei Zheng, Lin Zhao
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引用次数: 6

摘要

近十年来,安全关键系统中软件的复杂性显著增加,如何解决软件的复杂性,获得高可靠性的软件,对保证产品的整体质量起着重要作用。在这种背景下,基于组件的开发(CBD)已经成功地应用于软件工程领域的大型软件系统中。同样,系统安全分析(SSA)也在系统安全工程领域的关键系统中得到了广泛的应用。但他们经常孤立地使用自己的方法。此外,由于缺乏统一的正式框架来弥合CBD和SSA之间的差距,因此很难将它们整合到安全关键系统的统一严格开发过程中。本文提出了一种构件故障树和容错模式引导的容错软件体系结构(CFT3SA),它弥补了传统容错软件体系结构与传统容错软件体系结构之间的差距,实现了传统容错软件体系结构与传统容错软件体系结构的无缝集成。此外,组件故障树、容错模式的形式化定义为容错系统的系统验证和验证奠定了基础。以列车控制领域的Odemetry安全系统为例,对所提出的容错软件体系结构方案的可行性进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Component Based Design of Fault Tolerant Devices in Cyber Physical System
The complexity of software in safety critical systems has increased significantly over the last ten years so that how to tackle the complexity and gain high dependable software plays an important roles in ensuring the overall product quality. In this context, component based development (CBD) has been successfully applied to large scale software system in the fields of Software Engineering. Similarly, System Safety Analysis (SSA) has also gained wide used in critical systems in the fields of System Safety Engineering. But they often used their methodology in isolation. Furthermore, shortage of unified formal framework to bridge the gap between the CBD and SSA make it hard to integrate them into a unified rigorous development process for safety critical systems. This paper describes a new approach called Component Fault Tree and Fault Tolerant pattern guided Fault Tolerant Software Architecture (CFT3SA), which bridge the gap between CBD and SSA to realize the seamless integration of CBD and SSA. Furthermore, the formal definitions of Component Fault Tree, Fault tolerant Pattern underpin the systematical verification and validation of fault tolerant systems. A case study from the Odemetry Safe System in the train control domain has been used to valuate the feasibility of the proposed fault tolerant software architectural solution.
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