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Design space exploration for deterministic ethernet-based architecture of automotive systems

机译:基于确定性以太网的汽车系统架构设计空间探索

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Time Triggered Ethernet (TTE) is a time-triggered network technology with large bandwidth and services for deterministic, safety-relevant communication. Hence, it has gained increasing attention from domains such as aerospace, automotive and industrial applications. In this work, we aim to solve the problem of task mapping and communication scheduling in automotive design. The system model is a dataflow task communication model mapped to a target architecture based on TIE. The design variables are the mapping of tasks onto the end systems in the architecture and the scheduling of all frames. The constraints include the schedulability of tasks and signals, as well as the latency constraints of the critical paths as specified by the designer. It can be shown that the problem is NP· hard. Therefore, we develop a heuristic to solve this problem. The heuristic contains four steps and all of them (except scheduling) are formulated using Integer Linear Programming (ILP). We present experimental results on an industrial benchmark and two synthetic benchmarks which show the efficiency and scalability of our approach.
机译:时间触发以太网(TTE)是一个具有大带宽和服务的时间触发网络技术,用于确定性,安全相关通信。因此,它从航空航天,汽车和工业应用等领域获得了越来越多的关注。在这项工作中,我们的目标是解决汽车设计中任务映射和通信调度问题。系统模型是基于领带的目标架构映射到目标架构的数据流任务通信模型。设计变量是任务的映射到架构中的终端系统和所有帧的调度。约束包括任务和信号的调度性,以及设计者指定的关键路径的延迟约束。可以表明问题是NP·难。因此,我们开发了一个启发式来解决这个问题。启发式包含四个步骤,所有这些步骤(调度除外)都使用整数线性编程(ILP)配制。我们在工业基准和两个合成基准测试中提出了实验结果,展示了我们方法的效率和可扩展性。

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