实时以太网建模与设计方法综述:从AVB到TSN

Li-Ming Deng, Guoqi Xie, Hong Liu, Yunbo Han, Renfa Li, Keqin Li
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引用次数: 33

摘要

随着实时关键系统的发展,日益增长的通信数据流量对通信网络提出了高带宽、低时延的要求。因此,人们提出了各种实时以太网协议,但这些协议之间并不兼容。IEEE 802.1工作组于2005年开发了名为音视频桥接(AVB)的标准化协议,后来将其更名为时间敏感网络(TSN)。TSN既增加了新的功能,又保留了AVB原有的功能。提出实时以太网建模和设计方法是满足高带宽、低延迟通信需求的关键。本文综述了从AVB到TSN的建模,主要包括:(1)AVB和TSN建模;(2)端到端延迟建模;(3)实时调度建模;(4)可靠性建模;(5)安全建模。基于这些模型,本文综述了从AVB到TSN的实时以太网设计方法的最新进展:(1)从AVB到TSN的端到端延迟分析;(2) AVB到TSN的实时调度;(3) TSN的可靠性感知设计;(4) TSN的安全感知设计。以上四点中,后两点仅针对TSN,因为AVB缺乏可靠性和安全机制。本文进一步以汽车用例为例,讨论TSN在汽车中的应用。最后,本文讨论了TSN的未来发展趋势。通过对最新进展和未来趋势的综述,我们希望为对AVB和TSN实时以太网建模和设计方法感兴趣的研究人员提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Survey of Real-Time Ethernet Modeling and Design Methodologies: From AVB to TSN
With the development of real-time critical systems, the ever-increasing communication data traffic puts forward high-bandwidth and low-delay requirements for communication networks. Therefore, various real-time Ethernet protocols have been proposed, but these protocols are not compatible with each other. The IEEE 802.1 Working Group developed standardized protocols named Audio Video Bridging (AVB) in 2005, and renamed it Time-Sensitive Networking (TSN) later. TSN not only adds new features but also retains the original functions of AVB. Proposing real-time Ethernet modeling and design methodologies is the key to meeting high-bandwidth and low-delay communication requirements. This article surveys the modeling from AVB to TSN, mainly including: (1) AVB and TSN modeling; (2) end-to-end delay modeling; (3) real-time scheduling modeling; (4) reliability modeling; and (5) security modeling. Based on these models, this article surveys the recent advances in real-time Ethernet design methodologies from AVB to TSN: (1) end-to-end delay analysis from AVB to TSN; (2) real-time scheduling from AVB to TSN; (3) reliability-aware design for TSN; and (4) security-aware design for TSN. Among the above four points, the last two points are only for TSN, because AVB lacks reliability and security mechanisms. This article further takes the automotive use case as an example to discuss the application of TSN in automobiles. Finally, this article discusses the future trends of TSN. By surveying the recent advances and future trends, we hope to provide references for researchers interested in real-time Ethernet modeling and design methodologies for AVB and TSN.
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