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Performance of Autonomous Uplink Transmissions in Unlicensed Spectrum LTE

机译:无执照频谱LTE中自主上行链路传输的性能

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The immediate availability of Uplink (UL) time-frequency resources for transmission of new data is a key factor in reducing latency and improving UL throughput in cellular systems. This is particularly important for unlicensed spectrum operation where access to the channel is subject to Listen-Before-Talk (LBT), and scheduling UL transmissions with a preceding Downlink (DL) transmission as in Long-Term Evolution (LTE) can be inefficient. Therefore, this work proposes and studies autonomous UL transmissions (AUL) for LTE-based systems in unlicensed spectrum, where UL transmissions are allowed without requiring a prior scheduling request or an explicit scheduling grant from the Evolved Node B (eNB). The implications of AUL transmissions for the design of hybrid automatic repeat request (HARQ) and link adaptation mechanisms are investigated. Detailed performance evaluations in the 5 GHz unlicensed band show that dynamic switching between scheduled and autonomous UL transmissions offers the best throughput performance, while also coexisting fairly with co-channel Wi-Fi networks.
机译:用于传输新数据的上行链路(UL)时频资源的即时可用性是减少蜂窝系统中的延迟和提高UL吞吐量的关键因素。这对于未经许可的频谱操作尤其重要,在这种情况下,对通道的访问要经过先听后说(LBT),并且如长期演进(LTE)中那样,使用先前的下行链路(DL)传输来调度UL传输可能会效率低下。因此,这项工作提出并研究了免许可频谱中基于LTE的系统的自主UL传输(AUL),其中无需进行事先调度请求或无需来自演进节点B(eNB)的明确调度授权就可以进行UL传输。研究了AUL传输对混合自动重发请求(HARQ)和链路自适应机制设计的影响。在5 GHz免许可频段上进行的详细性能评估表明,在计划的和自主的UL传输之间进行动态切换可提供最佳的吞吐量性能,同时还可以与同频道Wi-Fi网络共存。

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