NB-IoT网络中自适应随机接入载波分配方案

Yen-Wen Chen, Guan-Yi Xue
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引用次数: 1

摘要

物联网服务部署的快速发展推动了无线通信技术的发展。因为物联网设备的数量远远超过传统服务的人工设备。介绍了无线网络中的随机接入问题。为了支持海量物联网设备在NB-IoT中传输数据,3gpp版本14在非锚载波中提供了随机接入的序文。但是,如果提供更多的非锚载波进行随机接入,将会压缩上行共享信道的资源。随机接入序言的非锚载载体的使用应仔细分配,以有效利用资源。本文提出了一种基于用户设备碰撞报告标志(CRF)的自适应无锚点分配算法。提出的CRF算法考虑上行链路的拥塞状态,灵活调整非锚载波的数量,在随机接入尝试次数巨大的情况下获得更好的随机接入体验。仿真结果表明,与固定分配方案相比,该算法获得了较高的成功接入率和有效的非锚载波利用率。在类似的成功接达比率下,与固定的15艘非锚载机方案相比,建议方案可节省5 - 10艘非锚载机,因为终端数量由15,000至37,500艘不等。
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The Adaptive Random Access Carrier Allocation Scheme in NB-IoT Networks
The rapid progress of the deployment of IoT services pushes the evolution of wireless communication techniques. Because the number of IoT devices is much more than that of the human-held devices for traditional services. It introduces the random access issue in radio networks. In order to support massive IoT devices to transmit data in NB-IoT, the release 14 of 3 GPP provides the preambles in non-anchor carrier for random access. However, if more non-anchor carriers are provided for random access, the resource of uplink shared channel will be compressed. The use of non-anchor carrier for random access preambles shall be carefully allocated for effective resource utilization. In this paper, we propose the adaptive non-anchor allocation algorithm by referring to the collision report flag (CRF) from the user equipment. The proposed CRF algorithm considers the congestion status of uplink to adjust the number of non-anchor carriers in flexible way for better random access experience of huge random access attempts condition. The simulation results show that the proposed algorithm achieves high success access ratio and effective non-anchor carrier utilization when comparing to that of the fixed allocation schemes. The proposed scheme can save 5 10 numbers of non-anchor carriers for the number of UEs varies from 15,000 to 37,500 when comparing to the fixed 15 non-anchor carriers scheme under the similar successful access ratio.
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