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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Adaptive downlink and uplink channel split ratio determination for TCP-based best effort traffic in TDD-based WiMAX networks
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Adaptive downlink and uplink channel split ratio determination for TCP-based best effort traffic in TDD-based WiMAX networks

机译:基于TDD的WiMAX网络中基于TCP的尽力而为流量的自适应下行链路和上行链路信道分配比确定

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摘要

In this paper, we study the determination of downlink (DL) and uplink (UL) channel split ratio for Time Division Duplex (TDD)-based IEEE 802.16 (WiMAX) wireless networks. In a TDD system, uplink and downlink transmissions share the same frequency at different time intervals. The TDD framing in WiMAX is adaptive in the sense that the downlink to uplink bandwidth ratio may vary with time. In this work, we focus on TCP based traffic and explore the impact of improper bandwidth allocation to DL and UL channels on the performance of TCP. We then propose an Adaptive Split Ratio (ASR) scheme which adjusts the bandwidth ratio of DL to UL adaptively according to the current traffic profile, wireless interference, and transport layer parameters, so as to maximize the aggregate throughput of TCP based traffic. Our scheme can also cooperate with the Base Station (BS) scheduler to throttle the TCP source when acknowledgements (ACKs) are transmitted infrequently. The performance of the proposed ASR scheme is validated via ns-2 simulations. The results show that our scheme outperforms static allocation (such as the default value specified in the WiMAX standard and other possible settings in existing access networks) in terms of higher aggregate throughput and better adaptivity to network dynamics.
机译:在本文中,我们研究了基于时分双工(TDD)的IEEE 802.16(WiMAX)无线网络的下行链路(DL)和上行链路(UL)信道分配比的确定。在TDD系统中,上行链路和下行链路传输在不同的时间间隔共享相同的频率。 WiMAX中的TDD成帧在下行链路与上行链路带宽之比可能随时间变化的意义上是自适应的。在这项工作中,我们将重点放在基于TCP的流量上,并探讨向DL和UL信道分配不正确的带宽对TCP性能的影响。然后,我们提出了一种自适应分流比(ASR)方案,该方案根据当前流量配置文件,无线干扰和传输层参数来自适应地调整DL与UL的带宽比率,以使基于TCP的流量的总吞吐量最大化。当不频繁发送确认(ACK)时,我们的方案还可以与基站(BS)调度程序配合使用,以节制TCP源。通过ns-2仿真验证了所提出的ASR方案的性能。结果表明,在更高的总吞吐量和更好的网络动态适应性方面,我们的方案优于静态分配(例如WiMAX标准中指定的默认值以及现有接入网络中的其他可能设置)。

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