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首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Traffic grooming for IP-Over-WDM networks: Energy and delay perspectives
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Traffic grooming for IP-Over-WDM networks: Energy and delay perspectives

机译:WDM IP网络的流量梳理:能量和延迟方面的观点

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As energy consumption has become a major concern of networks, traffic grooming studies on Internet protocol over wavelength division multiplexing (IP-over-WDM) networks have been revisited for energy-efficient optical network applications. Traffic grooming techniques can save on the number of installed lightpaths and corresponding IP router line cards at the cost of traffic processing overhead. Energy awareness in networking device development has initiated improvement of the energy ?? traffic proportionality of networking devices. Accordingly, networks will consist of networking devices with a wide range of energy ?? traffic proportionalities. Therefore, previously known traffic grooming techniques may not achieve energy-efficient networking in high energy ?? traffic proportional networks. Moreover, the traffic grooming technique tends to prefer longer paths, which are responsible for longer transmission delays. These two concerns trigger investigation of new aspects of heuristic traffic grooming algorithms for green and low delay optical networks consisting of network devices with diverse energy ?? traffic proportionalities. This paper demonstrates that a heuristic traffic grooming algorithm enhanced by comparison with direct bypass routing improves both energy and delay performances in a high energy ?? traffic proportionality regime. A hottest-first sorting policy in flow provisioning can further improve delay performance even in a low energy ?? traffic proportionality regime.
机译:由于能量消耗已经成为网络的主要关注点,因此针对能量高效的光网络应用,已经重新讨论了基于波分复用(IP-over-WDM)网络的Internet协议的流量疏导研究。流量疏导技术可以节省流量安装开销,节省已安装的光路和相应的IP路由器线卡的数量。联网设备开发中的能源意识已开始改善能源?网络设备的流量比例。因此,网络将由具有广泛能量的联网设备组成。交通比例。因此,先前已知的流量疏导技术可能无法在高能量的情况下实现节能网络。流量比例网络。此外,流量疏导技术倾向于使用更长的路径,这会导致更长的传输延迟。这两个问题触发了对绿色和低延迟光网络(由具有多种能量的网络设备组成)的启发式流量疏导算法新方面的研究。交通比例。本文证明,与直接旁路路由相比,改进的启发式流量疏导算法可以改善高能量下的能量和延迟性能。交通比例制度。即使在低能耗的情况下,流供应中最热门的优先排序策略也可以进一步提高延迟性能。交通比例制度。

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