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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Adaptive multi-polling scheduler for QoS support of video transmission in IEEE 802.11e WLANs
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Adaptive multi-polling scheduler for QoS support of video transmission in IEEE 802.11e WLANs

机译:自适应多轮询调度程序,用于在IEEE 802.11e WLAN中支持视频传输的QoS

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摘要

The 802.11E Task Group has been established to enhance quality of service (QoS) provision for time-bounded services in the current IEEE 802.11 medium access control protocol. The QoS is introduced throughout hybrid coordination function controlled channel access (HCCA) for the rigorous QoS provision. In HCCA, the station is allocated a fixed transmission opportunity (TXOP) based on its TSPEC parameters so that it is efficient for constant bit rate streams. However, as the profile of variable bit rate traffics is inconstant, they are liable to experience a higher delay especially in bursty traffic case. In this paper, we present a dynamic TXOP assignment algorithm called adaptive multi-polling TXOP scheduling algorithm (AMTXOP) for supporting the video traffics transmission over IEEE 802.11e wireless networks. This scheme invests a piggybacked information about the size of the subsequent video frames of the uplink streams to assist the hybrid coordinator accurately assign the TXOP according to actual change in the traffic profile. The proposed scheduler is powered by integrating multi-polling scheme to further reduce the delay and polling overhead. Extensive simulation experiments have been carried out to show the efficiency of the AMTXOP over the existing schemes in terms of the packet delay and the channel utilization.
机译:已经建立了802.11E任务组,以增强当前IEEE 802.11媒体访问控制协议中针对时限服务的服务质量(QoS)规定。在整个混合协调功能控制的信道访问(HCCA)中引入QoS,以提供严格的QoS。在HCCA中,根据站的TSPEC参数为其分配固定的传输机会(TXOP),以便对恒定比特率流有效。但是,由于可变比特率流量的配置文件是不稳定的,因此特别是在突发流量情况下,它们倾向于经历更高的延迟。在本文中,我们提出了一种动态TXOP分配算法,称为自适应多轮询TXOP调度算法(AMTXOP),用于支持IEEE 802.11e无线网络上的视频流量传输。该方案投资了有关上行链路流的后续视频帧大小的附带信息,以帮助混合协调器根据业务量配置文件中的实际变化准确分配TXOP。所提出的调度器通过集成多轮询方案来提供动力,以进一步减少延迟和轮询开销。已经进行了广泛的仿真实验,以显示AMTXOP在现有方案上在数据包延迟和信道利用率方面的效率。

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