Source Network Load Storage Access to Power Wireless Private Network Technology Based on 5G Ultra Dense Networking

IF 0.5 Q4 COMPUTER SCIENCE, THEORY & METHODS JOURNAL OF INTERCONNECTION NETWORKS Pub Date : 2024-01-24 DOI:10.1142/s0219265923500354
Zehui Liu, Dongjuan Ma, Min Guo, Weizhe Jing, Wei Gao, Weikang Kong
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Abstract

We make the source network load storage access power wireless private network, this paper proposes a source network load storage access power wireless private network technology based on 5G ultra dense network. The multiple rotation scheduling and self-organizing learning methods are used to establish the deployment model of the source network load storage access node of the power wireless private network under the 5G communication mode. According to the routing control algorithm design of the 5G ultra dense networking node, combined with the integration analysis of the access load parameters, the source network load storage access model of the 5G ultra dense networking under the dynamic load distributed control mode is established. Through the method of optimal control of reactive power and voltage of distribution network, the transmission link equilibrium structure model of 5G source network load storage access to power wireless private network is constructed. Combined with the coverage analysis of link topology structure and the benefit maximization constraint analysis of production and consumption users, the active and reactive capacity analysis of transaction between production and consumption user groups and multiple production and consumption users is adopted. Combined with the energy storage characteristics analysis and power flow parameter calculation of the source network load storage access power, the 5G ultra dense networking and private network access to the source network load storage access power are realized. The test shows that this method has better power balance dispatching ability and larger output power gain when it is applied to the design of source network load storage access power wireless private network.
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基于 5G 超密集网络的源网络负载存储接入供电无线专用网络技术
我们让源网络负载存储接入电力无线专网,本文提出了一种基于5G超密集网络的源网络负载存储接入电力无线专网技术。采用多轮转调度和自组织学习方法,建立了5G通信模式下电力无线专网源网负载存储接入节点的部署模型。根据5G超密集组网节点的路由控制算法设计,结合接入负载参数的综合分析,建立了动态负载分布式控制模式下的5G超密集组网源网负载存储接入模型。通过配电网无功功率和电压优化控制方法,构建了5G源网负载储能接入电力无线专网的传输链路均衡结构模型。结合链路拓扑结构的覆盖分析和生产、消费用户的效益最大化约束分析,采用生产、消费用户组和多个生产、消费用户之间交易的有功、无功容量分析。结合源网负载储能接入功率的储能特性分析和功率流参数计算,实现了源网负载储能接入功率的 5G 超密集组网和专网接入。试验表明,该方法应用于源网负载存储接入功率无线专网设计时,具有较好的功率平衡调度能力和较大的输出功率增益。
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来源期刊
JOURNAL OF INTERCONNECTION NETWORKS
JOURNAL OF INTERCONNECTION NETWORKS COMPUTER SCIENCE, THEORY & METHODS-
自引率
14.30%
发文量
121
期刊介绍: The Journal of Interconnection Networks (JOIN) is an international scientific journal dedicated to advancing the state-of-the-art of interconnection networks. The journal addresses all aspects of interconnection networks including their theory, analysis, design, implementation and application, and corresponding issues of communication, computing and function arising from (or applied to) a variety of multifaceted networks. Interconnection problems occur at different levels in the hardware and software design of communicating entities in integrated circuits, multiprocessors, multicomputers, and communication networks as diverse as telephone systems, cable network systems, computer networks, mobile communication networks, satellite network systems, the Internet and biological systems.
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