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Schedulability analysis of Ethernet Audio Video Bridging networks with scheduled traffic support

机译:具有计划流量支持的以太网音频视频桥接网络的可调度性分析

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The IEEE Audio Video Bridging (AVB) technology is nowadays under consideration in several automation domains, such as, automotive, avionics, and industrial communications. AVB offers several benefits, such as open specifications, the existence of multiple providers of electronic components, and the real-time support, as AVB provides bounded latency to real-time traffic classes. In addition to the above mentioned properties, in the automotive domain, comparing with the existing in-vehicle networks, AVB offers significant advantages in terms of high bandwidth, significant reduction of cabling costs, thickness and weight, while meeting the challenging EMC/EMI requirements. Recently, an improvement of the AVB protocol, called the AVB ST, was proposed in the literature, which allows for supporting scheduled traffic, i.e., a class of time-sensitive traffic that requires time-driven transmission and low latency. In this paper, we present a schedulability analysis for the real-time traffic crossing through the AVB ST network. In addition, we formally prove that, if the bandwidth in the network is allocated according to the AVB standard, the schedulability test based on response time analysis will fail for most cases even if, in reality, these cases are schedulable. In order to provide guarantees based on analysis test a bandwidth over-reservation is required. In this paper, we propose a solution to obtain a minimized bandwidth over-reservation. To the best of our knowledge, this is the first attempt to formally spot the limitation and to propose a solution for overcoming it. The proposed analysis is applied to both the AVB standard and the AVB ST. The analysis results are compared with the results of several simulative assessments, obtained using OMNeT++, on both automotive and industrial case studies. The comparison between the results of the analysis and the simulation ones shows the effectiveness of the analysis proposed in this work.
机译:如今,IEEE音频视频桥接(AVB)技术正在汽车,航空电子和工业通信等多个自动化领域中得到考虑。由于AVB为实时流量类别提供了有限的延迟,因此AVB具有一些好处,例如开放规范,存在多个电子组件提供者以及实时支持。除了上述特性外,在汽车领域,与现有的车载网络相比,AVB在高带宽,显着降低电缆成本,厚度和重量的同时还提供了显着的优势,同时满足了极高的EMC / EMI要求。最近,在文献中提出了一种称为AVB ST的AVB协议的改进,该协议允许支持调度的流量,即一类对时间敏感的流量,需要时间驱动传输和低延迟。在本文中,我们提出了通过AVB ST网络进行实时流量穿越的可调度性分析。此外,我们正式证明,如果网络中的带宽是根据AVB标准分配的,则即使实际上是可调度的,在大多数情况下,基于响应时间分析的可调度性测试也将失败。为了提供基于分析测试的保证,需要带宽超额保留。在本文中,我们提出了一种解决方案,以获得最小的带宽超额保留。据我们所知,这是正式发现限制并提出解决方案的首次尝试。拟议的分析适用于AVB标准和AVB ST。在汽车和工业案例研究中,将分析结果与使用OMNeT ++获得的若干模拟评估的结果进行了比较。分析结果与仿真结果之间的比较表明,本文提出的分析是有效的。

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