Schedule integration for time-triggered systems

Florian Sagstetter, M. Lukasiewycz, S. Chakraborty
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引用次数: 11

Abstract

This paper presents a framework for schedule integration of time-triggered systems tailored to the automotive domain. In-vehicle networks might be very large and complex and hence obtaining a schedule for a fully synchronous system becomes a challenging task since all bus and processor constraints as well as end-to-end-timing constraints have to be taken concurrently into account. Existing optimization approaches apply the schedule optimization to the entire network, limiting their application due to scalability issues. In contrast, the presented framework obtains the schedule for the entire network, using a two-step approach where for each cluster a local schedule is obtained first and the local schedules are then merged to the global schedule. This approach is also in accordance with the design process in the automotive industry where different subsystems are developed independently to reduce the design complexity and are finally combined in the integration stage. In this paper, a generic framework for schedule integration of time-triggered systems is presented. Further, we show how this framework is implemented for a FlexRay network using an Integer Linear Programming (ILP) approach which might also be easily adapted to other protocols. A realistic case study and a scalability analysis give evidence of the applicability and efficiency of our approach.
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时间触发系统的计划集成
本文提出了一种针对汽车领域的时间触发系统调度集成框架。车载网络可能非常庞大和复杂,因此获得一个完全同步系统的时间表成为一项具有挑战性的任务,因为所有总线和处理器的约束以及端到端时间的约束都必须同时考虑。现有的优化方法将调度优化应用于整个网络,由于可伸缩性问题限制了它们的应用。相比之下,该框架使用两步方法获得整个网络的调度,其中每个集群首先获得一个本地调度,然后将本地调度合并到全局调度中。这种方法也符合汽车行业的设计流程,不同的子系统独立开发,以减少设计的复杂性,最终在集成阶段进行组合。本文提出了时间触发系统调度集成的通用框架。此外,我们展示了如何使用整数线性规划(ILP)方法为FlexRay网络实现该框架,该方法也可以很容易地适应其他协议。一个实际的案例研究和可扩展性分析证明了我们的方法的适用性和有效性。
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