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Measuring delays of ethernet communication for distributed real-time applications using carrier sense

机译:使用载波侦听为分布式实时应用测量以太网通信的延迟

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Ethernet is emerging for many distributed real-time applications in industrial environments. It is also considered for substation automation in power systems with regard to IEC 61850 offering many advantages over conventional parallel wiring with analog signals. Mission-critical for protection and control systems as well as other demanding applications is the end-to-end delay of messages. Beside the frame duration of an Ethernet message on the physical layer, the overall delay is affected by processing times of communication stacks and applications significantly. A timing analysis of Ethernet frames is possible with standard network interface cards (NICs) but a high-resolution is only given with specific hardware or professional network analyzers. Furthermore, to determine stack processing delays, immediate signals are required from the application prior to the transmission and after retrieval additionally. This paper proposes a method to measure delays of Ethernet communication with a common transceiver. The achievable timing resolution is less than 0.1μs using a typical micro-controller unit (MCU).
机译:以太网正在工业环境中的许多分布式实时应用中兴起。相对于IEC 61850,它也被认为是电力系统中变电站自动化的理想之选,与传统的带有模拟信号的并行接线相比,具有许多优势。对于保护和控制系统以及其他要求苛刻的应用而言,关键任务是消息的端到端延迟。除了物理层上以太网消息的帧持续时间外,总体延迟还受到通信堆栈和应用程序处理时间的显着影响。可以使用标准网络接口卡(NIC)进行以太网帧的时序分析,但只有特定的硬件或专业的网络分析仪才能提供高分辨率。此外,为了确定堆栈处理延迟,需要在发送之前和另外检索之后从应用程序请求立即信号。本文提出了一种用于测量与通用收发器的以太网通信延迟的方法。使用典型的微控制器单元(MCU)可获得的时序分辨率小于0.1μs。

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