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Quality of service class mapping and scheduling scheme for converged LTE-WiFi in the next generation networks

机译:下一代网络中融合LTE-WiFi的服务质量等级映射和调度方案

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摘要

In this paper, a novel quality of service (QoS) class mapping and scheduling scheme for the LTE-WiFi converged network is proposed to ensure that end-to-end QoS support is provisioned seamlessly. A mapping among QoS classes of LTE and WiFi is performed first, then scheduling scheme is outlined. For scheduling scheme, traffic is separated into real-time (RT) and non-real-time (NRT) components, then a two-stage complex queuing strategy is performed. In the first stage, deficit weighted round robin queuing (DWRRQ) and class-based weighted fair queuing (CBWFQ) are used for RT and NRT applications respectively to segregate and forward traffic according to resource requirements. Whereas in the second stage, rate-control priority queuing (RCPQ) is used for all types of traffic to give each class appropriate priority level. Performance evaluation of the converged network was done based on different metrics such as jitter, end-to-end delay, throughput, and packet loss ratio. Simulation results show significant improvements for RT with slight degradation on NRT applications after using the new scheduling scheme.
机译:本文提出了一种新的LTE-WiFi融合网络服务质量(QoS)类映射和调度方案,以确保无缝提供端到端QoS支持。首先执行LTE和WiFi的QoS类之间的映射,然后概述调度方案。对于调度方案,将流量分为实时(RT)和非实时(NRT)组件,然后执行两阶段的复杂排队策略。在第一阶段,赤字加权循环排队(DWRRQ)和基于类的加权公平排队(CBWFQ)分别用于RT和NRT应用程序,以根据资源需求隔离和转发流量。在第二阶段,速率控制优先级排队(RCPQ)用于所有类型的流量,以为每个类别分配适当的优先级。融合网络的性能评估是基于不同的指标进行的,例如抖动,端到端延迟,吞吐量和丢包率。仿真结果表明,使用新的调度方案后,RT可以得到显着改善,但对NRT应用却有轻微的降低。

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