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A Queueing Approach to the Latency of Decoupled UL/DL With Flexible TDD and Asymmetric Services

机译:具有灵活TDD和非对称服务的解耦UL / DL延迟的排队方法

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摘要

One of the main novelties in 5G is the flexible Time Division Duplex (TDD) frame, which allows adaptation to the latency requirements. However, this flexibility is not sufficient to support heterogeneous latency requirements, in which different traffic instances have different switching requirements between Uplink (UL) and Downlink (DL). This is visible in a traffic mix of enhanced mobile broadband (eMBB) and ultra-reliable low-latency communications (URLLC). In this letter we address this problem through the use of a decoupled UL/DL access, where the UL and the DL of a device are not necessarily served by the same base station. The latency gain over coupled access is quantified in the form of queueing sojourn time in a Rayleigh channel, as well as an upper bound for critical traffic.
机译:5G的主要创新之一是灵活的时分双工(TDD)帧,它可以适应延迟要求。但是,这种灵活性不足以支持异构延迟要求,其中不同的流量实例在上行链路(UL)和下行链路(DL)之间具有不同的交换要求。这在增强型移动宽带(eMBB)和超可靠的低延迟通信(URLLC)的流量混合中可见。在这封信中,我们通过使用解耦的UL / DL访问解决了此问题,其中设备的UL和DL不一定由同一基站服务。耦合访问上的等待时间增益以在瑞利信道中排队停留时间的形式以及关键流量的上限进行量化。

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