A novel access scheme for IoT communications in LTE-Advanced network

Prashant K. Wali, D. Das
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引用次数: 21

Abstract

Long Term Evolution-Advanced (LTE-A) is increasingly seen as a promising technology for serving Internet of Things (IoT) needs along with mobile user equipments (UEs), due to high data rate, low latency, priority services, etc. The major challenges of incorporating IoT devices into LTE-A are, a large number of IoT devices attempting to access the network in short time, their effect on existing UEs communication, and the need for extra bandwidth to accommodate them. In this paper, we propose a novel framework and scheduling algorithm that uses heterogeneous network architecture (macro eNodeB and mini base stations) to reduce the collision rate and access delay of dense IoT devices by randomizing their access without affecting the Quality of Service (QoS) offered to UEs. Furthermore, the proposed idea avoids the use of extra spectrum or barring mechanisms for IoT devices. Simulation results for a heterogeneous network within a single macro cell with 1 macro eNodeB and 4 mini base stations (mini cells) indicate that the proposed framework and scheduling reduces the collision rate for IoT devices by 80% and access delay by more than 50% during the LTE Random Access Channel (RACH) procedure, as well as improves the QoS to UEs as compared to the Access Barring scheme.
一种新的LTE-Advanced网络物联网通信接入方案
由于高数据速率、低延迟、优先服务等特点,LTE-A越来越被视为一种有前途的技术,可以满足物联网(IoT)和移动用户设备(ue)的需求。将物联网设备整合到LTE-A的主要挑战是,大量物联网设备试图在短时间内访问网络,它们对现有ue通信的影响,以及需要额外的带宽来容纳它们。在本文中,我们提出了一种新的框架和调度算法,该算法使用异构网络架构(宏eNodeB和迷你基站)来降低密集物联网设备的碰撞率和访问延迟,通过随机化它们的访问而不影响提供给终端的服务质量(QoS)。此外,所提出的想法避免了对物联网设备使用额外的频谱或限制机制。对具有1个宏eNodeB和4个迷你基站(mini cell)的单一宏小区内异构网络的仿真结果表明,在LTE随机接入信道(RACH)过程中,所提出的框架和调度将物联网设备的碰撞率降低了80%,访问延迟降低了50%以上,并且与访问限制方案相比,提高了ue的QoS。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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