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ONU buffer reduction for power efficiency in Passive Optical Networks

机译:减少ONU缓冲区以提高无源光网络的功率效率

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Power efficiency will be one of the primary factors dictating the choice of future network deployments. Passive Optical Networks (PONs) in general consume less power and are well positioned to be the technology of choice for future access networks. In a PON, the Optical Network Units (ONUs), that provide the interface between the end user and the Optical Line Terminal (OLT), consume a substantial amount of power. Typically, 2 MB or more buffer capacity is used in an ONU for holding upstream packets. This consumes around 1.29 W of leakage power when idle. In the current work, we show the relationship between buffer capacity and leakage power consumption. This motivated us to propose buffer reduction as a strategy to reduce power consumption of an ONU. We propose three schemes viz. Zero Buffers (ZBs), Node Proportional Buffers (NBs) and Rate Proportional Buffers (RBs). They impose aggressive buffer capacity restrictions on the ONU to reduce power consumption. Having said that, these schemes cannot be realized without modifications to the basic network operation. We propose mechanisms required to support the buffer reduction schemes. Through simulations we explore the relationship between power consumption and network performance. We also present the comparison of the proposed schemes in terms of network performance with different network loads. Simulation results indicate that despite buffer size reduction, an acceptable level of application level performance can be achieved. We show that buffer reduction as a strategy is viable and can cut down more than 90% of leakage power consumed by packet buffers at the ONU.
机译:功率效率将成为决定未来网络部署选择的主要因素之一。通常,无源光网络(PON)消耗的功率更少,并且很容易成为未来接入网络的首选技术。在PON中,提供最终用户和光线路终端(OLT)之间接口的光网络单元(ONU)消耗大量功率。通常,ONU中使用2 MB或更大的缓冲区容量来保存上游数据包。闲置时消耗约1.29 W的泄漏功率。在当前的工作中,我们展示了缓冲器容量与泄漏功耗之间的关系。这促使我们提出减少缓冲区作为减少ONU功耗的策略。我们提出了三种方案。零缓冲区(ZB),节点比例缓冲区(NB)和速率比例缓冲区(RB)。它们对ONU设置了严格的缓冲区容量限制,以减少功耗。话虽如此,这些方案如果不修改基本网络操作就无法实现。我们提出了支持缓冲区减少方案所需的机制。通过仿真,我们探索了功耗与网络性能之间的关系。我们还介绍了在不同网络负载下网络性能方面所提方案的比较。仿真结果表明,尽管减小了缓冲区大小,但仍可以达到可接受的应用程序级别性能。我们表明,减少缓冲区作为一种策略是可行的,并且可以减少ONU数据包缓冲区消耗的泄漏功率的90%以上。

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