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Formal timing analysis of CAN-to-Ethernet gateway strategies in automotive networks

机译:汽车网络中CAN到以太网网关策略的正式时序分析

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摘要

Due to increased bandwidth and scalability demands, Ethernet technology is finding its way into recent in-vehicle networks. Tomorrow's heterogeneous networks will feature legacy buses [e.g. controller area network (CAN) or FlexRay] as well as high-speed Ethernet devices, connected by switches and gateways. As Ethernet offers significantly larger frame sizes than CAN, the efficient transmission of CAN data over an Ethernet backbone depends heavily on the way this data is multiplexed into Ethernet frames. This article focuses on the timing impact introduced by various CAN/Ethernet multiplexing strategies at the gateways. We present a formal analysis method to derive upper bounds on end-to-end latencies for complex multiplexing strategies, which is key for the design of safety-critical real-time systems. We capture complex inter-domain signal paths spanning multiple buses, gateways, and switches and show the applicability in a realistic automotive setup.
机译:由于增加的带宽和可扩展性需求,以太网技术正在进入最近的车载网络。明天的异构网络将采用传统总线[例如控制器局域网(CAN)或FlexRay]以及通过交换机和网关连接的高速以太网设备。由于以太网提供的帧大小比CAN大得多,因此通过以太网主干网进行CAN数据的有效传输在很大程度上取决于将数据多路复用到以太网帧中的方式。本文重点介绍网关上各种CAN /以太网多路复用​​策略引入的时序影响。我们提出了一种形式化分析方法,可得出复杂多路复用策略的端到端延迟上限,这对设计安全关键型实时系统至关重要。我们捕获了跨越多个总线,网关和交换机的复杂域间信号路径,并显示了在实际汽车设置中的适用性。

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