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A Context-Aware Model to Provide Positioning in Disaster Relief Scenarios

机译:在救灾方案中提供定位的上下文感知模型

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摘要

The effectiveness of the work performed during disaster relief efforts is highly dependent on the coordination of activities conducted by the first responders deployed in the affected area. Such coordination, in turn, depends on an appropriate management of geo-referenced information. Therefore, enabling first responders to count on positioning capabilities during these activities is vital to increase the effectiveness of the response process. The positioning methods used in this scenario must assume a lack of infrastructure-based communication and electrical energy, which usually characterizes affected areas. Although positioning systems such as the Global Positioning System (GPS) have been shown to be useful, we cannot assume that all devices deployed in the area (or most of them) will have positioning capabilities by themselves. Typically, many first responders carry devices that are not capable of performing positioning on their own, but that require such a service. In order to help increase the positioning capability of first responders in disaster-affected areas, this paper presents a context-aware positioning model that allows mobile devices to estimate their position based on information gathered from their surroundings. The performance of the proposed model was evaluated using simulations, and the obtained results show that mobile devices without positioning capabilities were able to use the model to estimate their position. Moreover, the accuracy of the positioning model has been shown to be suitable for conducting most first response activities.
机译:在救灾工作中执行的工作的有效性在很大程度上取决于部署在受灾地区的第一响应者进行的活动的协调。反过来,这种协调取决于对地理参考信息的适当管理。因此,使第一响应者能够在这些活动中依靠定位功能对于提高响应过程的有效性至关重要。在这种情况下使用的定位方法必须假定缺少基于基础结构的通信和电能,这通常是受影响区域的特征。尽管已证明诸如全球定位系统(GPS)之类的定位系统是有用的,但我们不能假设部署在该区域中的所有设备(或其中大多数)本身都具有定位功能。通常,许多第一响应者携带的设备无法自行执行定位,但需要此类服务。为了帮助提高受灾地区急救人员的定位能力,本文提出了一种上下文感知的定位模型,该模型允许移动设备根据从其周围环境收集的信息来估计其位置。使用仿真评估了所提出模型的性能,获得的结果表明,没有定位功能的移动设备能够使用该模型来估计其位置。而且,已经表明定位模型的准确性适合于进行大多数第一响应活动。

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