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A Survey of Fingerprint-Based Outdoor Localization

机译:基于指纹的户外定位研究

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A growing number of sensors on smart mobile devices has led to rapid development of various mobile applications using location-based or context-aware services. Typically, outdoor localization techniques have relied on GPS or on cellular infrastructure support. While GPS gives high positioning accuracy, it can quickly deplete the battery on the device. On the other hand, base station based localization has low accuracy. In search of alternative techniques for outdoor localization, several approaches have explored the use of data gathered from other available sensors, like accelerometer, microphone, compass, and even daily patterns of usage, to identify unique signatures that can locate a device. Signatures, or fingerprints of an area, are hidden cues existing around a user's environment. However, under different operating scenarios, fingerprint-based localization techniques have variable performance in terms of accuracy, latency of detection, battery usage. The main contribution of this survey is to present a classification of existing fingerprint-based localization approaches which intelligently sense and match different clues from the environment for location identification. We describe how each fingerprinting technique works, followed by a review of the merits and demerits of the systems built based on these techniques. We conclude by identifying several improvements and application domain for fingerprinting based localization.
机译:智能移动设备上越来越多的传感器已导致使用基于位置或上下文感知的服务快速开发各种移动应用程序。通常,户外定位技术依赖于GPS或蜂窝基础设施支持。 GPS具有很高的定位精度,但可以迅速耗尽设备上的电池。另一方面,基于基站的定位精度低。在寻找用于室外定位的替代技术时,有几种方法探索了从其他可用传感器(如加速度计,麦克风,指南针,甚至日常使用模式)收集的数据的使用,以识别可以定位设备的独特特征。区域的签名或指纹是存在于用户环境周围的隐藏线索。但是,在不同的操作方案下,基于指纹的定位技术在准确性,检测延迟,电池使用方面均具有可变的性能。这项调查的主要贡献是对现有的基于指纹的定位方法进行分类,该方法可以智能地感应和匹配来自环境的不同线索以进行位置识别。我们描述了每种指纹技术的工作原理,然后回顾了基于这些技术构建的系统的优缺点。通过为基于指纹的本地化确定几个改进和应用程序域,可以得出结论。

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