MISO无线通信的延迟性能

Jesús Arnau, M. Kountouris
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引用次数: 20

摘要

由于关键任务应用和以设备为中心的通信的出现,超可靠、低延迟通信(URLLC)目前正引起人们的极大关注。URLLC将需要从以吞吐量为导向的系统设计向保证可靠的端到端延迟的整体设计的基本范式转变。深入了解无线网络的延迟性能对于高效的URLLC系统至关重要。本文研究了统计延迟约束下的多输入单输出(MISO)系统的网络层性能。通过Mellin变换的封闭表达式,给出了MISO面向分集服务过程的统计特征,并利用随机网络演算的工具推导了其概率延迟界。特别地,我们分析了完全信道知识和不完全信道知识下的发射波束形成,并将其与正交空时编码和天线选择进行了比较。研究了发射功率和天线数对延迟分布的影响。我们的结果为通信系统的设计提供了有用的指导,以保证严格的URLLC延迟要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delay performance of MISO wireless communications
Ultra reliable, low latency communications (URLLC) are currently attracting significant attention due to the emergence of mission-critical applications and device-centric communication. URLLC will entail a fundamental paradigm shift from throughput-oriented system design towards holistic designs for guaranteed and reliable end-to-end latency. A deep understanding of the delay performance of wireless networks is essential for efficient URLLC systems. In this paper, we investigate the network layer performance of multiple-input, single-output (MISO) systems under statistical delay constraints. We provide a statistical characterization of MISO diversity-oriented service process through closed-form expressions of its Mellin transform and derive probabilistic delay bounds using tools from stochastic network calculus. In particular, we analyze transmit beamforming with perfect and imperfect channel knowledge and compare it with orthogonal space-time codes and antenna selection. The effect of transmit power and number of antennas on the delay distribution is also investigated. Our results provide useful guidelines for the design of communication systems that can guarantee the stringent URLLC latency requirements.
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