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Modeling and analysis of watchful sleep mode with different sleep period variation patterns in PON power management

机译:PON电源管理中具有不同睡眠周期变化模式的注意睡眠模式的建模与分析

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Reducing power consumption in an access network has become an increasingly imperative design goal, due to the fact that information and telecommunication technologies contribute to an increasingly large proportion of greenhouse gas emissions. The passive optical network (PON) is considered as the most attractive and promising technology to provide low-cost services to end users in a power-efficient way due to the passive nature of remote nodes. However, it is necessary to further reduce the energy consumption of PONs, with the wide deployment of PONs and the rapid growth of data transfer rates in PONs. In this paper, we focus on the watchful sleep mode with different sleep period variation patterns for multiple optical network units (ONUs). This is because, in the traditional operational mode, ONUs have to continually listen to and inspect traffic from the OLT and hence always remain active even when there is no/light traffic, which contributes to the majority of energy wastage to the PON. We first modeled the watchful sleep mode based on the Markov chain model in order to analyze the effect of each key parameter on system performances in terms of the energy-saving efficiency and data packet delay. Due to the fact that the sleep state is the key to power-saving, we designed four different sleep period variation patterns (e.g., constant, linear_1, linear_2, and exponential patterns) to study the impact of these different patterns on the integrated performance in terms of the normalized cost value. Through extensive simulations, we found that, in the watchful sleep mode, the effect of the number (n) of (sleep, listen) state pairs would be insignificant, and the effects of other parameters on the performances are analyzed comprehensively. The minimum normalized cost value can be obtained under the four different sleep period variation patterns, which represent the optimal trade-off between the above two conflicting performances indexes.
机译:由于信息和电信技术在温室气体排放中所占的比例越来越大这一事实,降低接入网的功耗已成为当务之急的设计目标。由于远程节点的无源特性,无源光网络(PON)被认为是以省电的方式向终端用户提供低成本服务的最有吸引力和最有前途的技术。然而,随着PON的广泛部署和PON中数据传输速率的快速增长,有必要进一步降低PON的能耗。在本文中,我们重点关注多个光网络单元(ONU)具有不同睡眠周期变化模式的注意睡眠模式。这是因为,在传统的操作模式下,ONU必须不断侦听和检查来自OLT的流量,因此即使没有/轻流量,ONU也始终保持活动状态,这导致PON浪费了大部分能量。我们首先基于Markov链模型对观察睡眠模式进行建模,以便从节能效率和数据包延迟方面分析每个关键参数对系统性能的影响。由于睡眠状态是节电的关键,我们设计了四种不同的睡眠周期变化模式(例如,恒定,linear_1,linear_2和指数模式)来研究这些不同模式对集成性能的影响。标准化成本值。通过广泛的仿真,我们发现,在警觉的睡眠模式下,(睡眠,监听)状态对的数量(n)的影响微不足道,并且对其他参数对性能的影响进行了综合分析。可以在四种不同的睡眠周期变化模式下获得最小的标准化成本值,这表示上述两个相互矛盾的性能指标之间的最佳折衷。

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