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Wireless Communications for the Hospital of the Future: Requirements, Challenges and Solutions

机译:未来医院的无线通信:需求,挑战和解决方案

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In this conceptual paper, we discuss the concept of hospital of the future (HoF) and the requirements for its wireless connectivity. The HoF will be mostly wireless, connecting patients, healthcare professionals, sensors, computers and medical devices. Spaces of the HoF are first characterized in terms of communicational performance requirements. In order to fulfil the stringent requirements of future healthcare scenarios, such as enhanced performance, security, safety, privacy, and spectrum usage, we propose a flexible hybrid optical-radio wireless network to provide efficient, high-performance wireless connectivity for the HoF. We introduce the concept of connected HoF exploiting reconfigurable hybrid optical-radio networks. Such a network can be dynamically reconfigured to transmit and receive optical, radio or both signals, depending on the requirements of the application. We envisage that HoF will consist of numerous communication devices and hybrid optical-radio access points to transmit data using radio waves and visible light. Light-based communications exploit the idea of visible light communications (VLC), where solid-state luminaries, white light-emitting diodes (LEDs) provide both room illumination as well as optical wireless communications (OWC). The hybrid radio-optical communication system can be used in principle in every scenario of the HoF. In addition to the hybrid access, we also propose a reconfigurable optical-radio communications wireless body area network (WBAN), extending the conventional WBAN to more generic and highly flexible solution. As the radio spectrum is becoming more and more congested, hybrid wireless network approach is an attractive solution to use the spectrum more efficiently. The concept of HoF aims at enhancing healthcare while using hospital resources efficiently. The enormous surge in novel communication technologies such as internet of things (IoT) sensors and wireless medical communications devices could be undermined by spectral congestion, security, safety and privacy issues of radio networks. The considered solution, combining optical and radio transmission network could increase spectral efficiency, enhancing privacy while reducing patient exposure to radio frequency (RF). Parallel radio-optical communications can enhance reliability and security. We also discuss possible operation scenarios and applications that can be introduced in HoF as well as outline potential challenges.
机译:在此概念文件中,我们讨论了未来医院(HoF)的概念及其无线连接的要求。 HoF将主要是无线的,它将连接患者,医疗保健专业人员,传感器,计算机和医疗设备。首先根据通信性能要求来表征HoF的空间。为了满足未来医疗保健场景的严格要求,例如增强的性能,安全性,安全性,隐私和频谱使用,我们提出了一种灵活的混合光无线网络,以为HoF提供高效,高性能的无线连接。我们介绍了利用可重配置的混合光纤网络连接HoF的概念。根据应用程序的要求,可以将这样的网络动态地重新配置为发送和接收光,无线电或两个信号。我们设想,HoF将由众多通信设备和混合无线电接入点组成,以使用无线电波和可见光传输数据。基于光的通信采用了可见光通信(VLC)的思想,其中固态照明器,白光发光二极管(LED)提供室内照明以及光学无线通信(OWC)。原则上,在HoF的每种情况下都可以使用混合无线电通信系统。除了混合访问,我们还提出了一种可重新配置的光无线通信无线体域网(WBAN),将传统的WBAN扩展到更通用,更灵活的解决方案。随着无线电频谱变得越来越拥挤,混合无线网络方法是一种吸引人的解决方案,可以更有效地使用频谱。 HoF的概念旨在在有效利用医院资源的同时增强医疗保健。无线电网络的频谱拥塞,安全性,安全性和隐私性问题可能会破坏诸如物联网(IoT)传感器和无线医疗通信设备之类的新型通信技术的迅猛发展。考虑到的解决方案,将光传输网络与无线传输网络相结合,可以提高频谱效率,增强隐私性,同时减少患者对射频(RF)的暴露。并行无线电通信可以增强可靠性和安全性。我们还将讨论可能在HoF中引入的操作方案和应用程序,并概述潜在的挑战。

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