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一种用于增强窄带物联网(NB-IoT)可扩展性的基于网络编码的新型扩频与聚类混合方法。

A Novel Spread Spectrum and Clustering Mixed Approach with Network Coding for Enhanced Narrowband IoT (NB-IoT) Scalability.

作者信息

Migabo Emmanuel, Djouani Karim, Kurien Anish

机构信息

Department of Electrical Engineering, French South African Institute of Technology (F'SATI), Tshwane University of Technology, Pretoria 0001, South Africa.

Laboratoire Images, Signaux et Systemes Intelligents (LISSI), University of Paris Est Creteil (UPEC), F-94400 Vitry, France.

出版信息

Sensors (Basel). 2020 Sep 13;20(18):5219. doi: 10.3390/s20185219.

Abstract

The Narrowband Internet of Things (NB-IoT) is a very promising licensed Internet of things (IoT) technology for accommodating massive device connections in 5G and beyond. To enable network scalability, this study proposes a two-layers novel mixed approach that aims not only to create an efficient spectrum sharing among the many NB-IoT devices but also provides an energy-efficient network. On one layer, the approach uses an Adaptive Frequency Hopping Spread Spectrum (AFHSS) technique that uses a lightweight and secure pseudo-random sequence to exploit the channel diversity, to mitigate inter-link and cross-technology interference. On the second layer, the approach consists of a clustering and network coding (data aggregation) approach based on an energy-signal strength mixed gradient. The second layer contributes to offload the BS, allows for energy-efficient network scalability, helps balance the energy consumption of the network, and enhances the overall network lifetime. The proposed mixed strategy algorithm is modelled and simulated using the Matrix Laboratory (MATLAB) Long Term Evolution (LTE) toolbox. The obtained results reveal that the proposed mixed approach enhances network scalability while improving energy efficiency, transmission reliability, and network lifetime when compared to the existing spread spectrum only, nodes clustering only, and mixed approach with no network coding approaches.

摘要

窄带物联网(NB-IoT)是一种非常有前景的授权物联网(IoT)技术,可用于在5G及以后的网络中实现大规模设备连接。为了实现网络可扩展性,本研究提出了一种两层新颖混合方法,该方法不仅旨在在众多NB-IoT设备之间创建高效的频谱共享,还提供一个节能型网络。在一层上,该方法使用自适应跳频扩频(AFHSS)技术,该技术使用轻量级且安全的伪随机序列来利用信道分集,以减轻链路间和跨技术干扰。在第二层上,该方法由基于能量信号强度混合梯度的聚类和网络编码(数据聚合)方法组成。第二层有助于减轻基站负担,实现节能型网络可扩展性,有助于平衡网络能耗,并延长整体网络寿命。所提出的混合策略算法使用矩阵实验室(MATLAB)长期演进(LTE)工具箱进行建模和仿真。所得结果表明,与现有的仅扩频、仅节点聚类以及无网络编码的混合方法相比,所提出的混合方法在提高网络可扩展性的同时,还提高了能源效率、传输可靠性和网络寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/869d/7570580/eb3b3ff94463/sensors-20-05219-g001.jpg

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