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Design of indoor positioning systems based on location fingerprinting technique.

机译:基于位置指纹技术的室内定位系统设计。

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Positioning systems enable location-awareness for mobile computers in ubiquitous and pervasive wireless computing. By utilizing location information, location-aware computers can render location-based services possible for mobile users. Indoor positioning systems based on location fingerprints of wireless local area networks have been suggested as a viable solution where the global positioning system does not work well. Instead of depending on accurate estimations of angle or distance in order to derive the location with geometry, the fingerprinting technique associates location-dependent characteristics such as received signal strength to a location and uses these characteristics to infer the location. The advantage of this technique is that it is simple to deploy with no specialized hardware required at the mobile station except the wireless network interface card. Any existing wireless local area network infrastructure can be reused for this kind of positioning system.; While empirical results and performance studies of such positioning systems are presented in the literature, analytical models that can be used as a framework for efficiently designing the positioning systems are not available. This dissertation develops an analytical model as a design tool and recommends a design guideline for such positioning systems in order to expedite the deployment process. A system designer can use this framework to strike a balance between the accuracy, the precision, the location granularity, the number of access points, and the location spacing. A systematic study is used to analyze the location fingerprint and discover its unique properties. The location fingerprint based on the received signal strength is investigated. Both deterministic and probabilistic approaches of location fingerprint representations are considered. The main objectives of this work are to predict the performance of such systems using a suitable model and perform sensitivity analyses that are useful for selecting proper system parameters such as number of access points and minimum spacing between any two different locations.
机译:定位系统可以在无处不在且普及的无线计算中为移动计算机提供位置感知功能。通过利用位置信息,位置感知计算机可以为移动用户提供基于位置的服务。已经提出基于无线局域网的位置指纹的室内定位系统是可行的解决方案,其中全球定位系统不能很好地工作。指纹识别技术不是依赖于角度或距离的准确估计来得出具有几何形状的位置,而是将依赖于位置的特征(如接收信号强度)与位置相关联,并使用这些特征来推断位置。该技术的优点是,除了无线网络接口卡外,移动站不需要任何专用硬件即可轻松部署。任何现有的无线局域网基础设施都可以用于这种定位系统。尽管文献中提供了此类定位系统的实证结果和性能研究,但尚无法使用可用作有效设计定位系统框架的分析模型。本文开发了一种分析模型作为设计工具,并为此类定位系统提出了设计指南,以加快部署过程。系统设计人员可以使用此框架在精度,精度,位置粒度,访问点数量和位置间距之间取得平衡。系统研究用于分析位置指纹并发现其独特属性。研究基于接收信号强度的位置指纹。位置指纹表示的确定性方法和概率方法均被考虑。这项工作的主要目的是使用合适的模型来预测此类系统的性能,并进行灵敏度分析,这对于选择适当的系统参数(例如访问点的数量和任意两个不同位置之间的最小间距)很有用。

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