Virtual networks in an integrated time-triggered architecture

R. Obermaisser, P. Peti, H. Kopetz
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引用次数: 36

Abstract

Depending on the physical structuring of large distributed safety-critical real-time systems, one can distinguish federated and integrated system architectures. This paper investigates the communication services of an integrated system architecture, which combines the complexity management advantages of federated systems with the functional integration and hardware benefits of an integrated approach. A major challenge is the need to accommodate the communication services to the different types of integrated application subsystems that range from ultra-dependable control applications (e.g., an x-by-wire system) to non safety-critical applications such as multimedia or comfort systems. In particular, the encapsulation of the communication activities of different application subsystems is required not only to prevent error propagation from non safety-critical application subsystems to higher levels of criticality, but also to facilitate complexity management and permit independent development activities. This paper introduces virtual networks as the encapsulated communication infrastructure of an application subsystem in the integrated DECOS architecture. Virtual networks are constructed as overlay networks on top of the time-triggered communication system of a base architecture. Each virtual network runs a corresponding communication protocol that is determined either by a legacy platform or selected to meet the requirements of the application subsystem. Encapsulation mechanisms ensure that the temporal properties of each virtual network are known a priori and independent from the communication activities in other virtual networks. By assigning to each application subsystem a dedicated virtual network and by ensuring that the virtual network abstractions hold also in the case of faults, the integrated architecture supports the benefits of a federated system, such as fault isolation, complexity management, independent development, and intellectual property protection. In addition, virtual networks promise massive cost savings through the reduction of physical networks and reliability improvements with respect to wiring and connectors.
集成时间触发架构中的虚拟网络
根据大型分布式安全关键型实时系统的物理结构,可以区分联邦系统架构和集成系统架构。本文研究了集成系统体系结构中的通信服务,该体系结构将联邦系统的复杂性管理优势与集成方法的功能集成和硬件优势相结合。一个主要的挑战是需要适应不同类型的集成应用子系统的通信服务,从超可靠的控制应用(例如,x线传系统)到非安全关键应用(例如多媒体或舒适系统)。特别是,需要对不同应用程序子系统的通信活动进行封装,不仅要防止错误从非安全关键应用程序子系统传播到更高级别的关键应用程序子系统,而且还要促进复杂性管理并允许独立的开发活动。本文介绍了虚拟网络作为集成DECOS体系结构中应用子系统的封装通信基础设施。虚拟网络是在基本体系结构的时间触发通信系统之上构建的覆盖网络。每个虚拟网络都运行相应的通信协议,该协议由遗留平台决定,或者选择以满足应用程序子系统的需求。封装机制确保每个虚拟网络的时间属性是先验的,并且独立于其他虚拟网络中的通信活动。通过为每个应用程序子系统分配专用的虚拟网络,并确保虚拟网络抽象在故障情况下也能保持,集成体系结构支持联邦系统的优点,例如故障隔离、复杂性管理、独立开发和知识产权保护。此外,虚拟网络承诺通过减少物理网络和提高布线和连接器的可靠性来节省大量成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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