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Applying Trajectory approach with static priority queuing for improving the use of available AFDX resources

机译:将轨迹方法与静态优先级排队一起应用,以改善可用AFDX资源的使用

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摘要

AFDX (Avionics Full Duplex Switched Ethernet) standardized as ARINC 664 is a major upgrade for avionics systems. The mandatory certification implies a worst-case delay analysis of all the flows transmitted on the AFDX network. Up to now, this analysis is done thanks to a tool based on a Network Calculus approach. The more recent Trajectory approach has been proposed for the computation of worst-case response time in distributed systems. It has been shown that the worst-case delay analysis of an AFDX network can be improved using an optimized Trajectory approach. This paper extends this optimized approach with the integration of static priority QoS policies. This extension makes possible to compute the bounds needed for deterministic avionics flows (high priority) when (lower priority) non avionics flows are added. Moreover, the paper provides an analysis of the pessimism of the obtained bounds.
机译:标准化为ARINC 664的AFDX(航空电子全双工交换式以太网)是航空电子系统的重大升级。强制性认证意味着对AFDX网络上传输的所有流进行最坏情况的延迟分析。到目前为止,借助基于网络演算方法的工具可以完成此分析。已经提出了最新的轨迹方法来计算分布式系统中最坏情况的响应时间。已经表明,使用优化的轨迹方法可以改善AFDX网络的最坏情况延迟分析。本文通过静态优先级QoS策略的集成扩展了这种优化方法。当添加(较低优先级)非航空电子流时,此扩展使计算确定性航空电子流(高优先级)所需的界限成为可能。此外,本文对获得的边界的悲观性进行了分析。

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