基于D2D技术的海上船舶通信系统资源配置

IF 3.2 Q2 AUTOMATION & CONTROL SYSTEMS Systems Science & Control Engineering Pub Date : 2022-04-20 DOI:10.1080/21642583.2022.2052997
Yu Wang, Jiaming Zhang, Shuo Xu, Baihai Zhang
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引用次数: 1

摘要

D2D通信技术作为可以在特定区域中执行特定服务的移动通信技术已经被越来越广泛地使用。本文将D2D技术引入到海上船舶通信系统中,并提出了一种用于干扰控制的信道资源分配方案,以增加网络中的设备数量。本文首先建立了近海船舶通信系统的模型,然后应用了基于平均位置最大化的匈牙利算法。最后,对两种算法进行了对比仿真实验,结果表明,基于模型应用的匈牙利算法能够有效地控制干扰,并在将D2D通信设备引入网络后降低影响。
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Resource allocation of offshore ships' communication system based on D2D technology
D2D communication technology has been more and more widely used as a mobile communication technology that can perform specific services in specific areas. This paper introduces D2D technology into the offshore ships' communication system and proposes a channel resource allocation scheme for interference control in the system, so as to increase the number of devices in the network. This paper first establishes the model of the offshore ships' communication system and then applies the Hungarian algorithm based on the maximization of the average position. Finally, the comparative simulation experiments of the algorithms are proposed, which could show that the Hungarian algorithm based on model application can effectively control interference, and reduce the impact after introducing D2D communication devices into the network.
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来源期刊
Systems Science & Control Engineering
Systems Science & Control Engineering AUTOMATION & CONTROL SYSTEMS-
CiteScore
9.50
自引率
2.40%
发文量
70
审稿时长
29 weeks
期刊介绍: Systems Science & Control Engineering is a world-leading fully open access journal covering all areas of theoretical and applied systems science and control engineering. The journal encourages the submission of original articles, reviews and short communications in areas including, but not limited to: · artificial intelligence · complex systems · complex networks · control theory · control applications · cybernetics · dynamical systems theory · operations research · systems biology · systems dynamics · systems ecology · systems engineering · systems psychology · systems theory
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