Statistical Delay and Error-Rate Bounded QoS Control for URLLC in the Non-Asymptotic Regime

Xi Zhang, Jingqing Wang, H. Poor
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引用次数: 2

Abstract

To support increasing demands for real-time multimedia wireless data traffic, there have been considerable efforts toward guaranteeing stringent quality-of-service (QoS) when designing mobile wireless network architectures for ultra-reliable and low-latency communications (URLLC). One of the major design issues raised by URLLC is how to characterize QoS metrics for upper-bounding both delay and error-rate when implementing short-packet data communications, such as finite blocklength coding (FBC), over highly time-varying wireless fading channels. To efficiently accommodate statistical QoS provisioning for URLLC traffic, it is crucial to model and investigate wireless fading channels’ stochastic-characteristics by defining and identifying new statistical QoS metrics and their analytical relationships, such as delay-bound-violating probability, effective capacity, decoding error probability, outage capacity, etc., in the non-asymptotic regime. However, how to rigorously and efficiently characterize the stochastic dynamics of mobile wireless networks in terms of statistically upper-bounding FBC-based both delay and error-rate QoS metrics has been neither well understood nor thoroughly studied before. To overcome these challenges, in this paper we develop analytical modeling frameworks and controlling mechanisms for statistical delay and error-rate bounded QoS provisioning in the non-asymptotic regime. First, we establish FBC-based system models by characterizing various information-theoretic specifications. Second, we characterize the outage-probability and outage capacity functions in the non-asymptotic regime. Third, we develop a set of new statistical delay and error-rate bounded QoS metrics and control mechanisms including delay-bound-violation probability, QoS-exponent functions, and the -effective capacity in the non-asymptotic regime. Finally, the obtained simulation results validate and evaluate our proposed controlling mechanisms for statistical QoS in supporting URLLC.
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非渐近状态下URLLC的统计延迟和错误率有界QoS控制
为了支持对实时多媒体无线数据流量日益增长的需求,在设计用于超可靠和低延迟通信(URLLC)的移动无线网络架构时,已经在保证严格的服务质量(QoS)方面做出了相当大的努力。URLLC提出的一个主要设计问题是,在实现短包数据通信(如有限块长度编码(FBC))时,在高度时变的无线衰落信道上,如何表征延迟和错误率上限的QoS指标。为了有效地适应URLLC业务的统计QoS提供,在非渐近状态下,通过定义和识别新的统计QoS指标及其分析关系(如延迟边界违反概率、有效容量、译码错误概率、中断容量等)来建模和研究无线衰落信道的随机特性至关重要。然而,如何根据基于fbc的时延和错误率QoS指标的统计上限来严格有效地表征移动无线网络的随机动力学,在此之前既没有得到很好的理解,也没有得到深入的研究。为了克服这些挑战,本文开发了非渐近状态下统计延迟和错误率有界QoS提供的分析建模框架和控制机制。首先,我们通过描述各种信息论规范,建立了基于fbc的系统模型。其次,刻画了非渐近状态下的停电概率和停电容量函数。第三,我们开发了一套新的统计延迟和错误率有界QoS度量和控制机制,包括延迟有界违规概率、QoS指数函数和非渐近区域的有效容量。最后,仿真结果验证和评价了我们提出的支持URLLC的统计QoS控制机制。
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