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Broadband data transport protocol for metro Ethernet services

机译:用于城域以太网服务的宽带数据传输协议

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Ethernet is seizing a great role in packet-based metro networks. With the growth of carrier-grade Ethernet it is becoming essential to have a transport protocol that can aid the QoS mechanisms offered by metro Ethernet services while simultaneously taking advantage of the full available bandwidth. For the past three decades much work has been performed to make up for the shortcomings of standard TCP. Most of this work has been based on the tweaking of the additive increase multiplicative decrease (AIMD) parameters. The Ethernet Services transport protocol (ESTP) takes a different approach by making the AIMD parameters vary dynamically based on the traffic policing parameters and congestion feedback that is available at the transport layer. This capability helps the transport protocol make efficient decisions influenced by the network conditions and therefore increasing the utilization efficiency and the overall transmission throughput. It is demonstrated that the increase can be achieved while maintaining fairness over different priority transmissions and a significant increase in utilization is obtained. Two types of scheduling modes are analyzed: strict priority and weighted fair scheduling.
机译:以太网在基于分组的城域网中扮演着重要角色。随着运营商级以太网的发展,拥有一种传输协议既可以帮助城域以太网服务提供的QoS机制,又同时利用全部可用带宽变得至关重要。在过去的三十年中,已经进行了许多工作来弥补标准TCP的不足。这项工作大部分是基于对加性增减性(AIMD)参数的调整。以太网服务传输协议(ESTP)通过使AIMD参数根据传输层上可用的流量监管参数和拥塞反馈动态变化来采用不同的方法。此功能可帮助传输协议做出受网络条件影响的有效决策,从而提高利用率和总体传输吞吐量。事实证明,在保持不同优先级传输的公平性的同时,可以实现增加,并且利用率得到了显着提高。分析了两种调度模式:严格优先级和加权公平调度。

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