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Blocking Probability Analysis for 5G New Radio (NR) Physical Downlink Control Channel

机译:5G新型无线电(NR)物理下行链路控制通道的阻塞概率分析

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The 5th generation (5G) new radio (NR) is designed to support a wide range of use cases, requirements, and services from enhanced mobile broadband (eMBB) to ultra-reliable low-latency communications (URLLC). NR signals are designed to meet stringent requirements, and in particular the physical down-link control channel (PDCCH) which requires careful consideration. In this paper, we provide a comprehensive analysis on the PDCCH blocking probability in a network where multiple users need to be scheduled for receiving downlink control information. We evaluate the performance of blocking probability in terms of various network parameters including number of users, size of the control resource set (CORESET), and PDCCH aggregation levels (ALs). Our analysis reveals fundamental tradeoffs and key insights for efficient network design in terms of PDCCH blocking probability.
机译:第5代(5G)新型无线电(NR)旨在支持从增强的移动宽带(嵌入式)到超可靠的低延迟通信(URLLC)的各种用例,要求和服务。 NR信号旨在满足严格的要求,特别是需要仔细考虑的物理下链路控制信道(PDCCH)。 在本文中,我们对网络中的PDCCH阻塞概率提供了全面的分析,其中多个用户需要调度用于接收下行链路控制信息。 我们在包括用户数量的各种网络参数的方面评估阻塞概率的性能,控制资源集(Coreset)和PDCCH聚合级别(ALS)的大小。 我们的分析显示了在PDCCH阻止概率方面为高效网络设计的基本权衡和关键见解。

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