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Channel Access Enhancements in Unlicensed Spectrum for NR URLLC Transmissions

机译:用于NR URLLC传输的Unlised Spectrum中的通道访问增强

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Ultra-reliable low-latency communication (URLLC) is one of the main services in 5G New Radio (NR) to serve the applications with the strict requirements of latency and reliability. Increase of mobile traffic and bandwidth requirements for new applications have resulted in a shortage of licensed spectrum so that even URLLC services are deemed to be running over the unlicensed spectrum. This may require a significant re-design of channel access, transmission and reception procedures over the unlicensed spectrum and is currently being investigated in The 3rd Generation Partnership Project (3GPP) Release 17. This paper focuses on the channel access mechanism for URLLC services over the unlicensed spectrum. It provides an analytical analysis of current channel access procedures, listen before talk (LBT). LBT states in random duration channel access are modeled through Markov chains which help characterize the closed form expressions for average channel access time. These expressions are evaluated using the parameters from currently standardized channel access priority classes. The evaluation shows the total inability of several current channel access classes to support URLLC services over the unlicensed spectrum even under low load conditions. The insights gained from this analysis lead the proposal of new channel access priority classes where new special classes are introduced for URLLC services. The results are provided demonstrating the improved performance of URLLC services in the unlicensed spectrum with the proposed changes in the channel access procedures.
机译:超可靠的低延迟通信(URLLC)是5G创新无线电(NR)的主要服务来服务与延迟和可靠性的严格要求的应用之一。对新应用的移动流量和带宽需求的增加导致了许可的频谱短缺所以,即使URLLC服务被认为运行在非授权频谱。这可能需要超过非许可频谱的信道接入,发送和接收程序一显著重新设计和当前在第三代合作伙伴计划(3GPP)发布17.本文针对用于URLLC服务过的信道接入机制被调查未授权频谱。它提供了当前的信道接入过程的解析分析,谈话(LBT)之前听。在随机持续时间的信道接入LBT状态通过马尔可夫链,其帮助表征为平均信道接入时间的封闭形式的表达式建模。这些表达式是使用从当前标准化的信道接入优先级类别的参数进行评价。评价结果显示几个当前的信道接入类别的总不能支持,即使在低负载条件下在非授权的频谱URLLC服务。从这个分析中获得的知识导致其中新特类引入URLLC服务的新信道接入优先级的提案。提供的结果证明与在信道接入程序的修改建议在未经许可的频谱的URLLC服务性能的改进。

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