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Energy-Saving Mechanism in WDM/TDM-PON Based on Upstream Network Traffic

机译:基于上行网络流量的WDM / TDM-PON节能机制

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One of the main challenges of Passive Optical Networks (PONs) is the resource (bandwidth and wavelength) management. Since it has been shown that access networks consume a significant part of the overall energy of the telecom networks, the resource management schemes should also consider energy minimization strategies. To sustain the increased bandwidth demand of emerging applications in the access section of the network, it is expected that next generation optical access networks will adopt the wavelength division/time division multiplexing (WDM/TDM) technique to increase PONs capacity. Compared with traditional PONs, the architecture of a WDM/TDM-PON requires more transceivers/receivers, hence they are expected to consume more energy. In this paper, we focus on the energy minimization in WDM/TDM-PONs and we propose an energy-efficient Dynamic Bandwidth and Wavelength Allocation mechanism whose objective is to turn off, whenever possible, the unnecessary upstream traffic receivers at the Optical Line Terminal (OLT). We evaluate our mechanism in different scenarios and show that the proper use of upstream channels leads to relevant energy savings. Our proposed energy-saving mechanism is able to save energy at the OLT while maintaining the introduced penalties in terms of packet delay and cycle time within an acceptable range. We might highlight the benefits of our proposal as a mechanism that maximizes the channel utilization. Detailed implementation of the proposed algorithm is presented, and simulation results are reported to quantify energy savings and effects on network performance on different network scenarios.
机译:无源光网络(PON)的主要挑战之一是资源(带宽和波长)管理。由于已经证明接入网消耗了电信网络总能量的很大一部分,因此资源管理方案还应该考虑能量最小化策略。为了满足网络接入部分新兴应用对带宽的不断增长的需求,预计下一代光接入网络将采用波分/时分复用(WDM / TDM)技术来增加PON的容量。与传统PON相比,WDM / TDM-PON的架构需要更多的收发器/接收器,因此预计它们将消耗更多的能量。在本文中,我们专注于WDM / TDM-PON中的能量最小化,并提出了一种节能高效的动态带宽和波长分配机制,其目的是在可能的情况下关闭光线路终端处不必要的上行流量接收器( OLT)。我们评估了在不同情况下的机制,并表明正确使用上游渠道可以节省相关能源。我们提出的节能机制能够在OLT上节省能量,同时将引入的有关数据包延迟和循环时间的惩罚保持在可接受的范围内。我们可能会强调建议的好处,因为该机制可以最大程度地利用渠道。提出了该算法的详细实现,并报告了仿真结果,以量化节能量以及在不同网络场景下对网络性能的影响。

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