Role of 5G Networks in Healthcare Management System.

Durga Prasad, Vidya Kudva, Ashish Singh, Roopa B Hegde, Pradyumna Gopalakrishna Rukmini
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Abstract

The present-day healthcare system operates on a 4G network, where the data rate needed for many IoT devices is impossible. Also, the latency involved in the network does not support the use of many devices in the network. The 5G-based cellular technology promises an effective healthcare management system with high speed and low latency. The 5G communication technology will replace the 4G technology to satisfy the increasing demand for high data rates. It incorporates higher frequency bands of around 100 MHz using millimetre waves and broadband modulation schemes. It is aimed at providing low latency while supporting real-time machine-to-machine communication. It requires a more significant number of antennas, with an average base station density three times higher than 4G. However, the rise in circuit and processing power for multiple antennas and transceivers deteriorates energy efficiency. Also, the data transmission power for 5G is three times higher than for 4G technology. One of the advanced processors used in today's mobile equipment is NVIDIA Tegra, which has a multicore system on chip (SoC) architecture with two ARM Cortex CPU cores to handle audio, images, and video. The state-of-the-art software coding using JAVA or Python has achieved smooth data transmission from mobile equipment, desktop or laptop through the internet with the support of 5G communication technology. This paper discusses some key areas related to 5G-based healthcare systems such as the architecture, antenna designs, power consumption, file protocols, security, and health implications of 5G networks.

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5G网络在医疗管理系统中的作用。
目前的医疗保健系统在4G网络上运行,在4G网络中,许多物联网设备所需的数据速率是不可能的。此外,网络中涉及的延迟不支持使用网络中的许多设备。基于5G的蜂窝技术有望成为一种高效、高速、低延迟的医疗管理系统。5G通信技术将取代4G技术,以满足对高数据速率日益增长的需求。它结合了使用毫米波和宽带调制方案的大约100MHz的更高频带。它旨在提供低延迟,同时支持实时机器对机器通信。它需要更多的天线,平均基站密度是4G的三倍。然而,用于多个天线和收发器的电路和处理能力的提高降低了能量效率。此外,5G的数据传输功率是4G技术的三倍。NVIDIA Tegra是当今移动设备中使用的高级处理器之一,它具有多核片上系统(SoC)架构,具有两个ARM Cortex CPU内核,可处理音频、图像和视频。最先进的JAVA或Python软件编码在5G通信技术的支持下,实现了移动设备、台式机或笔记本电脑通过互联网的平稳数据传输。本文讨论了与基于5G的医疗保健系统相关的一些关键领域,如5G网络的架构、天线设计、功耗、文件协议、安全性和健康影响。
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来源期刊
Critical Reviews in Biomedical Engineering
Critical Reviews in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
1.80
自引率
0.00%
发文量
25
期刊介绍: Biomedical engineering has been characterized as the application of concepts drawn from engineering, computing, communications, mathematics, and the physical sciences to scientific and applied problems in the field of medicine and biology. Concepts and methodologies in biomedical engineering extend throughout the medical and biological sciences. This journal attempts to critically review a wide range of research and applied activities in the field. More often than not, topics chosen for inclusion are concerned with research and practice issues of current interest. Experts writing each review bring together current knowledge and historical information that has led to the current state-of-the-art.
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