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The Design of an IEEE 1588 End-to-End Transparent Ethernet Switch

机译:IEEE 1588端到端透明以太网交换机的设计

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摘要

In measurement and control systems there is often a need to synchronise distributed clocks. Traditionally, synchronisation has been achieved using a dedicated medium to convey time information, typically using the IRIG-B serial protocol. The precision time protocol (IEEE 1588) has been designed as an improvement to current methods of synchronisation within a distributed network of devices. IEEE 1588 is a message based protocol that can be implemented across packet based networks including, but not limited to, Ethernet. Standard Ethernet switches introduce a variable delay to packets that inhibits path delay measurements. Transparent switches have been introduced to measure and adjust for packet delay, thus removing the negative effects that these variations cause.This thesis describes the hardware and firmware design of an IEEE 1588 transparent end-to-end Ethernet switch for Tekron International Ltd based in Lower Hutt, New Zealand. This switch has the ability to monitor all Ethernet traffic, identify IEEE 1588 timing packets, measure the delay that these packets experience while passing through the switch, and account for this delay by adjusting a time-interval field of the packet as it is leaving the switch. This process takes place at the operational speed of the port, and without introducing significant delay. Time-interval measurements can be made using a high-precision timestamp unit with a resolution of 1 ns. The total jitter introduced by this measurement process is just 4.5 ns through a single switch.
机译:在测量和控制系统中,经常需要同步分布式时钟。传统上,通常使用IRIG-B串行协议,使用专用介质传输时间信息来实现同步。精确时间协议(IEEE 1588)已被设计为对设备分布式网络中当前同步方法的改进。 IEEE 1588是基于消息的协议,可以在包括但不限于以太网的基于分组的网络中实现。标准以太网交换机为数据包引入了可变延迟,从而抑制了路径延迟的测量。引入了透明交换机来测量和调整数据包延迟,从而消除了这些变化所带来的负面影响。本文介绍了位于美国Lower的Tekron International Ltd.的IEEE 1588透明端到端以太网交换机的硬件和固件设计。新西兰赫特。该交换机具有监视所有以太网流量,识别IEEE 1588定时数据包,测量这些数据包在通过交换机时所经历的延迟以及通过调整数据包离开网络时的时间间隔字段来解决此延迟的功能。开关。此过程以端口的运行速度进行,并且不会造成明显的延迟。可以使用分辨率为1 ns的高精度时间戳单位进行时间间隔测量。通过单个开关,此测量过程引入的总抖动仅为4.5 ns。

著录项

  • 作者

    Gordon Caleb;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en_NZ
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