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Concurrent Architecture and Schedule Optimization of Time-triggered Automotive Systems

机译:并发架构和时间触发汽车系统的时间表优化

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This paper presents a methodology for the concurrent optimization of the architecture and scheduling of upcoming synchronous time-triggered automotive systems. A fully synchronous time-triggered system is highly predictable and therefore the best candidate for safety and drive-by-wire functions with strict real-time constraints. While the architecture of these systems has to be optimized in terms of resource allocation, task mapping, and message routing by taking multiple conflicting objectives into account, the scheduling has to be carried out such that application deadlines are satisfied. In case of stringent real-time constraints, available approaches that treat architecture optimization and scheduling as separate problems become inapplicable as most architectures do not permit a feasible schedule. As a remedy, a novel and efficient approach based on conflict refinement is presented. For a given architecture, either a schedule might be obtained or a conflict refinement is performed to determine and exclude the architecture decision that prevents a feasible schedule. In this paper, an extended architecture model is presented and the scheduling and refinement approaches are given for time-triggered architectures based on the FlexRay protocol. This approach can be extended to other protocols and scenarios. A case study of a realistic time-triggered system gives evidence of the efficiency of the proposed approach, solving a large design problem from the automotive domain.
机译:本文介绍了对即将到来的同步时间触发汽车系统的体系结构和调度的并发优化的方法。完全同步的时间触发系统是高度可预测的,因此是具有严格实时约束的安全和逐线功能的最佳候选者。虽然通过考虑多次冲突目标,必须在资源分配,任务映射和消息路由方面优化这些系统的架构,但必须执行调度,以便满足应用程序截止日期。在严格的实时约束的情况下,随着大多数架构不允许可行的时间表,将架构优化和调度作为单独问题的可用方法变得不可行。作为补救措施,提出了一种基于冲突改进的新颖和有效的方法。对于给定的架构,可以获得计划或执行冲突改进以确定和排除防止可行计划的架构决策。在本文中,提出了扩展的架构模型,并且对基于FlexRay协议的时间触发架构给出了调度和细化方法。这种方法可以扩展到其他协议和场景。对现实时间触发系统的案例研究提供了提出的方法的效率的证据,解决了来自汽车领域的大型设计问题。

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