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Quantifying the Impact of Guard Capacity on Session Continuity in 3GPP New Radio Systems

机译:量化3GPP新无线电系统中保护能力对会话连续性的影响

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摘要

Dynamic blockage of millimeter-wave (mm Wave) radio propagation paths by dense moving crowds calls for advanced techniques to preserve session continuity in the emerging New Radio (NR) systems. To further improve user performance by balancing the new and ongoing session drop probabilities, we investigate the concept of guard capacity - reserving a fraction of radio resources at the NR base stations exclusively for the sessions already accepted for service. To this aim, we develop a detailed mathematical framework that takes into account the key effects in mm Wave systems, including the heights of communicating entities, blocker geometry and mobility, modulation and coding schemes and antenna array geometry, as well as radio propagation and queuing specifics. Using our framework, which enables sessions to change their resource requirements during service, we demonstrate that reserving even a small fraction of bandwidth (less than 10%) exclusively for the sessions already accepted by the system allows to enhance session continuity at the expense of a slight growth in the new session drop probability as well as a small decrease in the resource utilization (approximately 5-7%). Furthermore, guard capacity is shown to perform better in overloaded conditions and with sessions having high data rate requirements, thus making it particularly useful for the NR systems. Our results indicate that guard capacity is a viable option for improving session continuity that can be used by the network operators in combination with other techniques, such as multi-connectivity, to maintain user experience.
机译:密集移动的人群对毫米波(mm Wave)无线电传播路径的动态阻挡,要求有先进的技术来保持新兴的新无线电(NR)系统中的会话连续性。为了通过平衡新的和正在进行的会话丢弃概率来进一步提高用户性能,我们研究了保护容量的概念-在NR基站上仅为已接受服务的会话预留一部分无线电资源。为此,我们开发了一个详细的数学框架,其中考虑了毫米波系统中的关键影响,包括通信实体的高度,阻止器几何形状和移动性,调制和编码方案以及天线阵列几何形状以及无线电传播和排队细节。使用我们的框架,该框架使会话能够在服务期间更改其资源需求,我们证明了仅为系统已接受的会话预留一小部分带宽(小于10%)就可以提高会话的连续性,而代价是新会话下降概率略有增长,资源利用率略有下降(大约5-7%)。此外,显示了保护能力在过载条件下以及会话具有高数据速率要求的情况下表现更好,因此使其对于NR系统特别有用。我们的结果表明,保护容量是提高会话连续性的可行选择,网络运营商可以结合其他技术(例如多连接性)使用它来维持用户体验。

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