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A Low-Energy Rate-Adaptive Bit-Interleaved Passive Optical Network

机译:低能量速率自适应比特交织无源光网络

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Energy consumption of customer premises equipment (CPE) has become a serious issue in the new generations of time-division multiplexing passive optical networks, which operate at 10 Gb/s or higher. It is becoming a major factor in global network energy consumption, and it poses problems during emergencies when CPE is battery-operated. In this paper, a low-energy passive optical network (PON) that uses a novel bit-interleaving downstream protocol is proposed. The details about the network architecture, protocol, and the key enabling implementation aspects, including dynamic traffic interleaving, rate-adaptive descrambling of decimated traffic, and the design and implementation of a downsampling clock and data recovery circuit, are described. The proposed concept is shown to reduce the energy consumption for protocol processing by a factor of 30. A detailed analysis of the energy consumption in the CPE shows that the interleaving protocol reduces the total energy consumption of the CPE significantly in comparison to the standard 10 Gb/s PON CPE. Experimental results obtained from measurements on the implemented CPE prototype confirm that the CPE consumes significantly less energy than the standard 10 Gb/s PON CPE.
机译:在以10 Gb / s或更高速率运行的新一代时分多路复用无源光网络中,用户驻地设备(CPE)的能耗已成为一个严重的问题。它已成为全球网络能耗的主要因素,并且在紧急情况下使用CPE电池供电时会出现问题。本文提出了一种采用新型比特交织下行协议的低能耗无源光网络(PON)。描述了有关网络体系结构,协议和关键启用实现方面的详细信息,包括动态流量交织,抽取流量的速率自适应解扰以及下采样时钟和数据恢复电路的设计与实现。所提出的概念显示可以将协议处理的能耗降低30倍。对CPE中能耗的详细分析表明,与标准10 Gb相比,交错协议可以显着降低CPE的总能耗。 / s PON CPE。通过对已实施的CPE原型进行测量获得的实验结果证实,与标准的10 Gb / s PON CPE相比,CPE的能耗大大降低。

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