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首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Parallel void thread in long-reach ethernet passive optical networks
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Parallel void thread in long-reach ethernet passive optical networks

机译:远程以太网无源光网络中的并行空线程

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This work investigates void filling (idle periods) in long-reach Ethernet passive optical networks. We focus on reducing grant delays and hence reducing the average packet delay. We introduce a novel approach called parallel void thread (PVT), which allocates bandwidth grants during voids baseless of bandwidth requests. We introduce three different grant sizing schemes for PVT, namely void extension, count controlled batch void filling, and size controlled batch void filling. The proposed approaches canbe integrated with almost all of the previously reported dynamic bandwidth allocation schemes. Unlike other void filling schemes, PVT is less sensitive to the differential distance between optical network units and can work very well in the case of limited differential distances. We have analytically investigated the packet delay and derived a bound condition for PVT to outperform the other competitors. We support our work with extensive simulation study considering bursty traffic with long range dependence for both the single-class and differentiated services (DiffServ) scenarios. Numerical results show delay reduction up to 35% compared with the non-void filling scheme for the single-class scenario. For DiffServ traffic, PVT achieves delay reduction up to 80% for expedited forward traffic, 52% for assured forward traffic, and 56% for best effort traffic.
机译:这项工作研究了长距离以太网无源光网络中的空隙填充(空闲周期)。我们专注于减少授权延迟,从而减少平均数据包延迟。我们引入一种称为并行无效线程(PVT)的新颖方法,该方法在无效期间根据带宽请求分配带宽授权。我们为PVT引入了三种不同的赠款调整方案,即空隙扩展,计数控制的批次空隙填充和尺寸控制的批次空隙填充。所提出的方法可以与几乎所有先前报道的动态带宽分配方案集成。与其他空隙填充方案不同,PVT对光网络单元之间的差分距离不太敏感,并且在差分距离有限的情况下可以很好地工作。我们已经对数据包延迟进行了分析研究,并得出了PVT胜过其他竞争对手的约束条件。我们通过广泛的模拟研究来支持我们的工作,该研究考虑了针对单类和差异服务(DiffServ)场景的具有长期依赖性的突发流量。数值结果表明,与单类方案的非无效填充方案相比,延迟减少了35%。对于DiffServ流量,PVT可以将加速前向流量的延迟减少高达80%,将保证前向流量的延迟减少多达52%,将最大努力流量的延迟减少了56%。

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