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A comparison of time synchronization in AVB and FlexRay in-vehicle networks

机译:AVB和FlexRay内车内网络时间同步的比较

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Ethernet gains more and more interest by the automotive industry which uses already a couple of different in-vehicle networks. Together with an demand for the integration of the IP protocol and a steadily increasing bandwidth requirements, Ethernet based networks are researched for the usage in this area to cope with future needs [1]. Especially Ethernet AVB promises an interesting networking solution for multiple application areas. In addition to the continuously rising communication demands of different industry's AVB provides different enhancements for Quality of Service (QoS) within Ethernet based networks. Timing sensitive applications, e.g. synchronous multimedia transport or real time control loops, require the predictable behavior that is addressed by this standard. The authors built up a QoS-based gateway interconnecting FlexRay and AVB. Most automotive network technologies used within automotive are time-triggered since many applications require a timely handling. Therefore the time synchronization methods are an essential part and the evaluation starts with the comparison of both time synchronization protocols. Since AVB is not originally designed to be used in in-vehicle networks yet, it has also to be proven if the protocol is able to fulfill the demands for automotive networks. The authors focus mainly on the average speed of time message distribution since vehicle network communication have to be established very fast. The comparison of the time accuracy shall shown if it is possible to keep the timing constraints of FlexRay when embedding those frames within Ethernet frames and to built up a global common time base. The results show that 802.1AS together with certain requirements to the AVB environment can provide almost similar timing guarantees in comparison to FlexRay which was proved by a demonstrator system.
机译:以太网的收益越来越受到这已经使用几个不同的车载网络的汽车行业更多的利益。与IP协议的整合和不断增加的带宽需求的共同需求,基于以太网的网络进行了研究在这方面的使用,以应付未来的需求[1]。特别是以太网AVB承诺为多个应用领域的一个有趣的网络解决方案。除了不同行业的AVB的连续上涨通信需求,基于以太网的网络中提供服务质量(QoS)的不同的增强。时间敏感的应用,例如同步多媒体传输或实时控制回路,需要由该标准涉及的可预测的行为。作者建立了基于QoS的网关互联FlexRay和房室传导阻滞。汽车内使用的大多数汽车网络技术是时间触发的,因为许多应用都需要及时处理。因此,时间同步的方法是一个重要组成部分,并评估与的两个时间同步协议的比较开始。由于AVB不是最初设计在车载网络中使用的是,它也具有协议是否能够满足对汽车网络的需求得到证实。作者主要集中在时间的消息发布的平均速度,因为车辆的网络通信必须要非常快的建立。时间精度的比较应示出是否可以嵌入内的以太网帧,并建立了一个全球共同的时基的那些帧时保留的FlexRay的定时限制。结果表明,802.1AS连同一定要求的AVB环境可以相比的FlexRay其通过一个演示系统被证明提供了几乎类似的定时保证。

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