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Gateway Strategies for Embedding of Automotive CAN-Frames into Ethernet-Packets and Vice Versa

机译:用于将汽车CAN框架嵌入以太网数据包和反之亦然的网关策略

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摘要

Today's automotive communication architectures are composed of up to five special purpose communication technologies with dedicated features to interconnect hundreds of comfort-, safety-, and infotainment-related distributed functions. In the future, the number and complexity of such highly distributed functions will further increase and the outcome of this are stronger requirements to the underlying communication architectures. Ethernet and IP, both standardized and widely used in other industrial sectors, could be one solution to handle the upcoming requirements and could homogenize the variety of communication technologies. This paper focuses on a transformation concept to connect a CAN-based network to an Ethernet/IP-based network and vice versa. It highlights several variants which optimize different objectives, like the protocol header overhead or the latency'of messages. Moreover, it presents measured results for different network utilizations and a currently deployed automotive CAN subnetwork.
机译:当今的汽车通信体系结构由多达五种特殊用途的通信技术组成,这些技术具有专用功能,可以互连数百种与舒适性,安全性和信息娱乐相关的分布式功能。将来,这种高度分散的功能的数量和复杂性将进一步增加,其结果是对底层通信体系结构的更强要求。标准化的以太网和IP在其他工业领域中已广泛使用,可能是满足即将到来的需求的一种解决方案,并且可以使各种通信技术同质化。本文着重于将基于CAN的网络连接到基于Ethernet / IP的网络的转换概念,反之亦然。它着重介绍了几种可以优化不同目标的变体,例如协议标头开销或消息等待时间。此外,它还提供了针对不同网络利用率和当前部署的汽车CAN子网的测量结果。

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