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Early wake-up decision algorithm for ONUs in TDM-PONs with sleep mode

机译:具有睡眠模式的TDM-PON中ONU的早期唤醒决策算法

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摘要

Recent IEEE and ITU-T standards for time division multiplexing-passive optical networks (TDM-PONs) with sleep mode recommend that the optical line terminal (OLT) in a TDM-PON should be in charge of invoking the optical network units (ONUs) to move into the sleep state in the absence of frames. It is considered that, upon upstream frame arrival, a sleeping ONU can leave the sleep state, in which an ONU turns off its transmitter or both its transmitter and receiver, immediately, prior to its assigned sleep interval length. In this paper, we refer to this approach as immediate early wake-up (IMEW). According to the standards, the OLT may or may not allow an ONU to trigger an early wake-up function (EWF) upon the upstream frames' arrival. If the OLT does not allow the EWF [we refer to this as not support early wake-up (NSEW)], an ONU should stay in the sleep state during its assigned sleep duration and buffer all the upstream frames while it is in this state. In IMEW, the upstream frames experience a small delay, but the ONU's energy consumption increases remarkably. Conversely, in NSEW, an ONU consumes less energy compared to IMEW at the price of increasing the upstream frame delay and the possibility of having its buffer overflow. In this paper, the limitations of IMEW and NSEW have motivated us to propose a novel early wake-up decision (EWuD) algorithm that aims at meeting the upstream frame delay requirement while reducing the ONUs' energy consumption as much as possible. The role of the EWuD algorithm is to select an appropriate time for triggering EWF, taking into consideration two factors: 1) buffer overflow probability and 2) delay requirement violation of upstream frames. We evaluate EWuD performances using our TDM-PON OPNET modular-based simulation model under a wide range of scenarios. The findings demonstrate that our proposed EWuD can successfully meet the delay requirements of all upstream frames while reducing the ONUs' energy consumption significant- y.
机译:具有睡眠模式的时分多路复用无源光网络(TDM-PON)的最新IEEE和ITU-T标准建议TDM-PON中的光线路终端(OLT)应该负责调用光网络单元(ONU)在没有帧的情况下进入睡眠状态。可以认为,在上游帧到达时,睡眠的ONU可以离开睡眠状态,在这种状态下,ONU立即在其分配的睡眠间隔长度之前关闭其发送器或发送器和接收器。在本文中,我们将此方法称为立即早期唤醒(IMEW)。根据标准,OLT可能会或可能不会允许ONU在上游帧到达时触发早期唤醒功能(EWF)。如果OLT不允许EWF [我们将其称为不支持早期唤醒(NSEW)],则ONU应在其分配的睡眠期间内保持睡眠状态,并在处于此状态时缓冲所有上行帧。在IMEW中,上游帧会遇到较小的延迟,但是ONU的能耗会显着增加。相反,在NSEW中,与IMEW相比,ONU消耗的能量更少,但代价是增加了上游帧延迟和缓冲区溢出的可能性。本文中,IMEW和NSEW的局限性促使我们提出一种新颖的早期唤醒决策(EWuD)算法,旨在满足上行帧延迟要求,同时尽可能降低ONU的能耗。 EWuD算法的作用是选择一个合适的时间来触发EWF,同时考虑两个因素:1)缓冲区溢出概率和2)违反上游帧的延迟要求。我们使用TDM-PON OPNET基于模块化的仿真模型在多种情况下评估EWuD性能。研究结果表明,我们提出的EWuD可以成功满足所有上行帧的延迟要求,同时显着降低ONU的能耗。

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