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Improving Worst-Case Delay Analysis for Traffic of Additional Stream Reservation Class in Ethernet-AVB Network

机译:改进以太网-AVB网络中附加流预留类流量的最坏情况时延分析

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摘要

With the increase in the number of Electronic Control Units (ECUs) and future requirements for vehicle functions, two SR (Stream Reservation) traffic classes may not be sufficient to ensure fulfilment of constraints for multiple traffic types with individual timing requirements transmitted in the Ethernet-AVB (Audio Video Bridging) networks. The goal of this paper is to determine the worst-case delay for an additional SR traffic class under the CBS (Credit-Based Shaper) algorithm. Delay evaluation is based on the impact analysis of CBS on different priority flows, particularly depending on when the credits of both SR class A and B drain from the worst-case perspective. More specifically, both the impact of CBS and the evolution trends of credit on different priority class flows are first analyzed from the worst-case perspective. Then, for an additional SR class, two types of worst-case delay models are established with the CBS configuration suggestions. Finally, an approach to calculate the worst-case queuing delay is proposed. Moreover, the worst-case end-to-end delay is determined by the network calculus approach and simulation. Numerical results show that the delay bounds of our models are tighter than those of other models, which is beneficial to the development of Ethernet-AVB for in-vehicle networking.
机译:随着电子控制单元(ECU)数量的增加以及对车辆功能的未来要求,两种SR(流预留)流量类别可能不足以确保满足多种流量类型的约束条件,并且在以太网中传输的各个计时要求AVB(音频视频桥接)网络。本文的目的是确定基于CBS(基于信用的整形器)算法下附加SR流量类别的最坏情况延迟。延迟评估基于CBS对不同优先级流的影响分析,尤其是从最坏情况的角度来看,取决于SR类A和B的信用何时流失。更具体地说,首先从最坏情况的角度分析CBS的影响和信贷对不同优先级流的演变趋势。然后,对于附加的SR类,使用CBS配置建议建立了两种类型的最坏情况延迟模型。最后,提出了一种计算最坏情况排队延迟的方法。此外,最坏情况的端到端延迟由网络演算方法和仿真确定。数值结果表明,我们的模型的时延界限比其他模型更严格,这有利于车载网络Ethernet-AVB的发展。

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