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引用次数: 33

摘要

时间触发以太网将实时和非实时流量统一到一个单一的通信架构中。我们建立了一个FPGA TT-以太网交换机和FPGA TT以太网通信控制器的原型实现,支持100 Mbit/sec的网络带宽。时间触发的以太网引入了两类消息:i)标准事件触发的以太网消息,表示为ET消息;ii)时间触发的以太网消息,表示为TT消息。所有TT消息都是定期传输的,并以网络上没有冲突的方式预先调度。网络根据直通范例处理这些消息。包含TT以太网通信控制器的计算机节点建立并维护全局时基。但是,包含标准以太网控制器的节点可以连接到TT以太网系统,并且可以在不影响TT消息的时间属性的情况下发送ET消息。TT以太网的全局时间格式采用UTC时间格式,与IEEE 1588标准的时间格式兼容。在这些工作中,我们介绍了如何部署IEEE 1588以同步TT以太网控制器,这需要它们之间的紧密同步。此外,基于IEEE 1588时钟同步的协议将在标准以太网控制器上实现,以便它们可以建立和维护全局时基。
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Time-Triggered Ethernet and IEEE 1588 Clock Synchronization
The time-triggered Ethernet unifies real-time and non-real-time traffic into a single communication architecture. We have built a prototype implementation of an FPGA TT-Ethernet switch and an FPGA TT Ethernet communication controller supporting a network bandwidth of 100 Mbit/sec. Time-Triggered Ethernet introduces two message classes, i) the standard event-triggered Ethernet messages, denoted as ET messages, and ii) the time-triggered Ethernet messages, denoted as TT messages. All TT messages are transmitted periodically and are scheduled a priori in a way that there are no conflicts on the network. The network handles these messages according to the cut-through paradigm. Computer nodes containing TT Ethernet communication controllers establish and maintain global time base. However nodes containing standard Ethernet controllers can be connected to a TT Ethernet system and can send ET messages without affecting the temporal properties of the TT messages. The global time format of the TT Ethernet deploys the UTC time format which is compatible with the time format of the IEEE 1588 standard. In these work we present how we deploy the IEEE 1588 in order to synchronize the TT Ethernet controllers which require a tight synchronization among them. Additionally the IEEE 1588 clock synchronization based protocol will be implemented at standard Ethernet controllers such that they can be establish and maintain a global time base.
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