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An Energy Saving Scheme for Multilane-Based High-Speed Ethernet

机译:基于多通道的高速以太网的节能方案

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In this paper, we propose a scheme for partially dynamic lane control for energy saving in multilane-based high-speed Ethernet. In this scheme, among the given transmission lanes, at least one lane is always operating, and the remaining lanes are dynamically activated to alleviate the network performance in terms of queuing delay and packet loss in the range of acceptance. The number of active lanes is determined by the decision algorithm based on the information regarding traffic and queue status. The reconciliation sublayer adjusts the transmission lane with the updated number of lanes received from the algorithm, which guarantees no processing delay in the media access control layer, no overhead, and minimal delay of the exchanging control frames. The proposed scheme is simulated in terms of queuing delay, packet loss rate, lane changes, and energy saving using an OPNET simulator. Our results indicate that energy savings of around 55% (or, when the offered load is less than 0.25, a significant additional savings of up to 75%) can be obtained with a queuing delay of less than 1 ms, a packet loss of less than 10–4, and a control packet exchange time of less than 0.5 μs in random traffic.
机译:在本文中,我们提出了一种基于多车道的高速以太网中的部分动态车道控制方案,以节省能源。在该方案中,在给定的传输通道中,至少一个通道始终处于运行状态,其余通道被动态激活,以在接受范围内的排队延迟和数据包丢失方面降低网络性能。活动车道的数量由决策算法根据有关流量和队列状态的信息确定。协调子层使用从算法接收的更新的通道数来调整传输通道,从而确保媒体访问控制层中没有处理延迟,没有开销,并且交换控制帧的延迟最小。使用OPNET模拟器,从排队延迟,丢包率,车道变化和节能等方面对所提出的方案进行了仿真。我们的结果表明,在不到1 ms的排队延迟,数据包丢失的情况下,可以节省大约55%的能量(或者,当提供的负载小于0.25时,可以节省多达75%的大量额外费用)。小于10–4,并且在随机流量中控制包交换时间小于0.5μs。

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