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QPAR: a Quasi-Passive and Reconfigurable Node for Green Next-Generation Optical Access Networks

机译:QPAR:用于绿色下一代光学接入网络的准无源和可重新配置节点

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摘要

Passive optical network (PON) is regarded as a promising solution for the broadband bandwidth bottleneck problem. However, due to its passive nature, legacy PON is limited by the static power distribution, which makes it power inefficient. To address this problem, we propose QPAR [4], a Quasi-Passive and Reconfigurable node, which enables dynamic power and wavelength assignment so as to save optical power budget in PON. In this paper, we study the power gains that can be achieved in PON employing QPAR, as well as different factors that may facilitate or prevent real QPAR deployments. We conduct extensive simulations to demonstrate the merits of QPAR. Results show that QPAR can achieve high optical power saving by intelligently redistributing the unnecessary power assigned to "close" optical network units (ONUs) in the network. The saved power can either be used to connect more ONUs, or extend the network reach without increasing the optical power budget.
机译:被动光网络(PON)被认为是宽带带宽瓶颈问题的有希望的解决方案。然而,由于其被动性,传统PON受到静态配电的限制,这使得IT功率低效。为了解决这个问题,我们提出了QPAR [4],一种准无源和可重新配置的节点,它能够实现动态功率和波长分配,以便在PON中保存光电预算。在本文中,我们研究了采用QPAR的PON中可以实现的电源增益,以及可能促进或阻止真实QPAR部署的不同因素。我们进行广泛的模拟以证明QPAR的优点。结果表明,QPAR通过智能地将分配给网络中的“关闭”光网络单元(ONU)的不必要的功率重新分配了高光功率,可以实现高光功率。保存的电源可用于连接更多的ONU,或者在不增加光功率预算的情况下扩展网络范围。

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