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Enhanced Random Access for Massive-Machine-Type Communications

机译:增强了大量机器型通信的随机访问

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摘要

In this article, we study a random access (RA) scheme to alleviate the RA channel (RACH) overload problem in the massive-machine-type communication (mMTC) environment. We first propose a timing advance-based preamble resource expansion (TAPRE) scheme which effectively increases preamble resources and reduces the preamble collision probability by adjusting preamble transmission timing with timing advance (TA) information. We also propose a resource allocation wait (RAW) scheme which efficiently reduces the number of RA failures due to the lack of physical uplink shared channel (PUSCH) resources. We then propose an overall procedure for enhanced RA with TAPRE and RAW (ERATAR). In addition, we provide the analysis of RA performance by applying more practical assumptions than the existing analysis. We validate our analysis with the system level simulation based on NS-3, and compare the various performances of our ERATAR to those of existing works. Numerical results show that our analysis provides more accurate results than the existing work and our ERATAR provides significantly improved performances compared with those of existing works.
机译:在本文中,我们研究了随机访问(RA)方案来缓解大量机器型通信(MMTC)环境中的RA通道(RACH)过载问题。我们首先提出了一种基于时序的前导码资源扩展(Tapre)方案,其通过通过调整与定时前进(TA)信息来调整前导码传输定时来减少前导级碰撞概率。我们还提出了一种资源分配等待(RAW)方案,其由于缺乏物理上行链路共享信道(PUSCH)资源而有效地减少了RA故障的数量。然后,我们提出了一个整体过程,以加强rain rain和原始(eratar)。此外,我们通过申请比现有分析更实际的假设来提供对RA性能的分析。我们通过基于NS-3的系统级仿真来验证我们的分析,并将我们的驻地各种性能与现有工程的系统进行比较。数值结果表明,我们的分析提供比现有工作更准确的结果,而我们的麦卡尔与现有工程相比提供了显着改善的性能。

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