建立健全的救援网络:无线通信是最佳选择

Sattar Hussain, Predrag Pesikan, Xavier N Fernando
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引用次数: 3

摘要

本文考察了传统通信系统在灾后恢复过程中的局限性,并讨论了可用于灾后救援行动的替代无线解决方案。考虑了网络基础设施、部署要求、定位和跟踪体系结构以及自主控制等因素。最大的挑战之一是,在重大灾难发生后,传统的通信基础设施会崩溃或失灵。无线通信可以提供快速恢复通信的机会,这对于尽量减少生命和财产损失至关重要。它可以减少部署时间,确保信息的及时流动,以满足第一响应者的即时需求。由于有线网络作为大多数无线系统的回程,其基础设施(如发射塔)的崩溃可能会严重限制其使用。因此,无基础设施、自组织、内部驱动和易于部署的网络可能是首选的方法。然而,这种网络缺乏足够的覆盖范围可能会阻碍收集、管理和传播信息的初步努力。这一问题由于与灾害行动领域有关的业务限制而变得更糟。虽然在开放地区可提供无线服务,但在部分受阻或室内环境中,可能无法提供无线服务或无线电信号的质量可能相当粗糙。例如,灾难废墟、多路径、反射和衰减等因素共同作用,降低了跟踪和定位系统在估计被困在矿井或隧道废墟下人员位置时的准确性。在本文中,我们回顾了解决上述挑战的最新研究,并提出了建立快速和具有成本效益的救援系统的技术解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards a robust rescue network: Wireless communication is the choice
This paper examines the limitations of conventional communication systems during disaster recovery and discusses alternative wireless solutions that can assist with post-disaster relief operations. Factors such as network infrastructure, deployment requirements, localization and tracking architecture, and autonomous control are considered. One of the biggest challenges is that conventional communications infrastructure collapses or becomes out of order after a major disaster. Wireless communication could offer an opportunity to rapidly restore communications which is critical for minimizing loss of life and property. It can reduce deployment time and ensure the timely flow of information to meet the immediate needs of first responders. Since wired networks act as a backhaul to most wireless systems, the collapse of their infrastructure such as towers may severely limit their use. Consequently, infrastructure-less, self-organizing, internally-powered, and easily deployable networks could be the method of choice. However, the lack of sufficient coverage range in such networks may hinder initial efforts to collect, manage, and circulate information. This problem is made worse by the operational constraints associated with the disaster operations area. While wireless service is available in open areas, in partially obstructed or indoor environments, wireless service may not be available or the quality of radio signal may be quite coarse. As an example, factors such as disaster ruins, multipath, reflection and attenuation collectively work to decrease the accuracy of tracking and localization systems in estimating the position of a person trapped under mine or tunnel rubble. In this paper, we review the most recent studies that address the aforementioned challenges and the technical solutions proposed to establish a rapid and cost-effective rescue system.
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