吉林大学学报(信息科学版) ›› 2026, Vol. 44 ›› Issue (3): 530-536.

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 面向 5G 蜂窝物联网的医院设备终端数据快速接入方法

周 炎,张 翼   

  1. 南京医科大学附属泰州人民医院,江苏泰州225300
  • 收稿日期:2024-10-29 出版日期:2026-06-02 发布日期:2026-06-02
  • 通讯作者: 张翼(1988— ), 男, 江苏泰州人, 南京医科大学附属泰州人民医院高级工程师, 主要从事信息工程管理研究, (Tel)86-15996012125(E-mail)tz_ sunny19812002@163. com。 E-mail:tz_ sunny19812002@163. com
  • 作者简介:周炎(1981— ), 男, 江苏姜堰人, 南京医科大学附属泰州人民医院高级工程师, 主要从事医院设备管理智能化、 网络 安全等研究,(Tel)86-15951171338(E-mail)tz_sunny19812002@ 163. com
  • 基金资助:
    南京医科大学附属泰州人民医院院级教学研究课题基金资助项目(XJ-5-201904) 

Fast Ddata Access Method for Hospital Equipment Terminals Facing 5G Cellular IoT

ZHOU Yan, ZHANG Yi   

  1. Taizhou People’s Hospital Affiliated, Nanjing Medical University, Taizhou 225300, China
  • Received:2024-10-29 Online:2026-06-02 Published:2026-06-02

摘要: 针对在复杂的网络环境中设备终端数量的增加和类型的多样化导致网络延迟成为限制数据快速接入的瓶颈问题, 为有效管理和调配不同设备终端资源, 提出面向5G(5th Generation Mobile Communication Technology)蜂窝物联网的医院设备终端数据快速接入方法。建立5G蜂窝物联网场景, 确定网络环境以及可利用资源,为数据接入提供依据。将 K-means 聚类算法与最大最小距离算法相结合对终端数据进行聚类划分, 建立数据接入依序度有效管理数据接入的流程从而实现医院设备终端数据的快速接入。实验结果表明, 所提方法能高效且稳定地实现终端数据的快速接入。

关键词: 5G蜂窝物联网,  K-means聚类算法,  终端数据,  数据聚类, 终端数据接入

Abstract: In complex network environments, the increase in the number and diversity of device terminals have led to network bandwidth and latency, becoming bottlenecks that restrict fast data access. In order to effectively manage and allocate different device terminal resources, a fast data access method for hospital equipment terminals facing 5G(5th Generation Mobile Communication Technology) cellular IoT(Internet of Things) is proposed. Establish a 5G cellular IoT scenario, determine the network environment and available resources, and provide a basis for data access. Combining the K-means clustering algorithm with the maximum minimum distance algorithm to cluster and partition terminal data, establishing a sequence of data access, effectively managing the process of data access, and achieving rapid access of hospital equipment terminal data. The experimental results show that the proposed method can efficiently and stably achieve fast access to terminal data.

Key words: 5th generation mobile communication technology (5G) cellular internet of things, K-means clustering algorithm, terminal data, data clustering, terminal data access

中图分类号: 

  • TP391