Internet of Things in the 5G Mobile Communication System: The Optimal Number of Channels in Channel Hopping

Gayoung Kim, M. Rim
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引用次数: 4

Abstract

One of the typical goals of the 5G mobile communication system1 is to establish an Internet of Things (IoT)2 environment in which all objects are connected to the network to generate and share information through not only mobile terminals but also mobile communication infrastructure. 5G must support Machine-Type Communication (MTC)3 in IoT, and it must effectively support many devices distributed at high density. The IoT environment for MTC support has low transmission power and a narrowband channel environment and interference environment so that many devices can connect with minimum energy. In this environment, data transmission performance is negatively affected by retransmission, deep fading, and interference. One way of solving this problem is to propose various kinds of channel-hopping methods in which a frequency is periodically changed every time a packet is transmitted. However, current channel-hopping techniques do not indicate the proper number of channels to be used. In this paper, we propose the Optimal Number of Channels (ONC) in channel hopping algorithm, a reference method that can provide the optimal channel number to improve channel performance in 5G massive IoT environments. We show that using a hopping method that minimizes service inefficiency reduces the number of channels and improves the Quality of Service (QoS) of the channel.
5G移动通信系统中的物联网:信道跳变中的最优信道数
5G移动通信系统1的典型目标之一是建立一个物联网(IoT)2环境,其中所有对象都连接到网络,不仅通过移动终端,还通过移动通信基础设施生成和共享信息。5G必须支持物联网中的MTC (Machine-Type Communication)3,必须有效支持高密度分布的多设备。支持MTC的物联网环境具有低传输功率、窄带信道环境和干扰环境,以最小的能量连接多台设备。在这种环境下,数据传输性能受到重传、深度衰落和干扰等不利影响。解决这一问题的一种方法是提出各种信道跳频方法,在这种方法中,每次传输数据包时都会周期性地改变频率。然而,目前的信道跳频技术并没有指明要使用的信道的适当数目。本文提出了信道跳频算法中的最优信道数(ONC),这是一种在5G海量物联网环境下提供最优信道数以提高信道性能的参考方法。我们表明,使用跳频方法可以最大限度地减少服务效率低下,减少信道数量并提高信道的服务质量(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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