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Performance Evaluation of GBE and GBit AFDX Networks for Automotive Control Systems

机译:汽车控制系统GBE和GBit AFDX网络的性能评估

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The Gigabit Ethernet (GBE) will play an important role in vehicle next generation architectural design. The question is "Can we use the GBE and its full duplex version (AFDX) for the powertrain and the chassis within the vehicle domains" and in general for critical real-time systems?" Many authors believe that the CAN and the FlexRay are the only networks that are mandatory for the above-cited domains, and the Ethernet, the Wi-Fi and their gigabit versions can support only the body and the In-Vehicle Infotainment (IVI) domains. This article try to give a response to this question by computing the end-to-end delay to demonstrate that when using GBE, Gigabit AFDX, and WiGiG networks this delay is less than the five-millisecond deadline required by the SAE benchmark for the powertrain and the chassis, as critical domains of any vehicle. The next vehicle generations will be equipped also by ADAS and V2X communications, considered as new domains. These new domains will use the full duplex Ethernet backbone, in order to eliminate gateway equipment in each network segment, reducing the latencies induced by these equipments.
机译:千兆以太网(GBE)在下一代汽车架构设计中将发挥重要作用。问题是“我们可以在汽车领域内的动力总成和底盘上使用GBE及其全双工版本(AFDX)吗?一般而言,对于关键的实时系统,我们可以使用GBE及其全双工版本吗?”许多作者认为CAN和FlexRay是其中的佼佼者。只有以上提到的域所必需的网络,以及以太网,Wi-Fi及其千兆版本只能支持主体域和车载信息娱乐(IVI)域。通过计算端到端延迟,以证明在使用GBE,千兆AFDX和WiGiG网络时,此延迟小于SAE基准要求动力总成和底盘(所有车辆的关键领域)要求的五毫秒截止期限。下一代汽车还将配备被视为新域的ADAS和V2X通信,这些新域将使用全双工以太网主干,以消除每个网段中的网关设备,从而减少延迟由这些设备引起的。

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