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Experimental evaluation of a sleep-aware dynamic bandwidth allocation in a multi-ONU 10G-EPON testbed

机译:在多ONU 10G-EPON测试床上进行睡眠感知的动态带宽分配的实验评估

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摘要

In this paper, a sleep-aware dynamic bandwidth allocation (SDBA) algorithm and the supporting protocol are proposed for maximizing energy efficiency while satisfying the end-user QpS constraints on downstream (DS) and upstream (US) transmissions in 10G-EPONs. The SDBA maximizes the Optical Network Unit (ONU) polling cycle to increase the time for which each ONU sleeps outside the allocated timeslot. The polling cycle, however, is computed by considering QpS constraints (i.e., frame delay and loss rate) of all the transmissions given their finite data buffers to provide the users with the requested QpS. Moreover, based on the observed traffic conditions, the SDBA can allow an ONU to sleep for the whole or for a part of the allocated timeslot by assigning just enough bandwidth to transmit both DS and US traffic accumulated during ONU sleep time. FGPA-based design and evaluation of 10G-EPON systems featuring the proposed SDBA are thoroughly described. Experimental results show that the SDBA maximizes ONU energy saving while guaranteeing the strictest end-user QoS requirements for any considered data rate scenario.
机译:本文针对10G-EPON中下行(DS)和上行(US)传输满足最终用户QpS约束的同时,提出了一种睡眠感知动态带宽分配(SDBA)算法和支持协议,以最大程度地提高能效。 SDBA最大化了光网络单元(ONU)轮询周期,以增加每个ONU在分配的时隙之外休眠的时间。但是,轮询周期是通过考虑所有传输的QpS约束(即帧延迟和丢失率)来计算的,给定了它们的有限数据缓冲区以向用户提供所请求的QpS。此外,基于观察到的业务状况,SDBA可以通过分配恰好足够的带宽以传输在ONU休眠时间内累积的DS和US流量,来允许ONU在整个或部分已分配时隙中休眠。完整描述了基于FGPA的10G-EPON系统的设计和评估以及所提出的SDBA。实验结果表明,SDBA可以最大程度地节省ONU能耗,同时还能在任何考虑的数据速率情况下保证最严格的最终用户QoS要求。

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