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引用次数: 23

摘要

移动站(MS)定位通常使用三边测量和三角测量技术。网络辅助GPS定位在视距(LOS)传播环境下具有良好的精度。然而在高层城市环境中,从发射站点传播到接收移动设备的大部分射线都是非视距的,从而降低了定位精度。本文介绍了一种用于改进GPS在非los情况下定位的制图方法。我们使用射线发射模拟工具,将建筑物高度和位置与GPS星历信息相结合,将GPS测量位置映射到实际(真实)移动位置。这些映射动态地存储在位置数据库中。这对紧急呼叫定位的影响是巨大的,因为一个错误的GPS预测位置仍然可以回顾性地与数据库中的单个记录相匹配,以找到真正的呼叫者位置。我们给出了一个例子,展示了如何使用映射方法来预测nlos引起的GPS定位误差。
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Mobile location method for non-line-of-sight situation
Mobile station (MS) location is typically done using trilateration and triangulation techniques. Network aided GPS positioning exhibits good accuracy in a line-of-sight (LOS) propagation environment. In the high-rise urban environment however, where the majority of the rays propagating from the transmission sites to the receiving mobile are non-LOS, the location accuracy is degraded. This paper describes a mapping method used to improve GPS positioning for the non-LOS situation. We use a ray launch simulation tool that combines building height and location with GPS ephemeris information to map the GPS measured position to the actual (true) mobile position. These mappings are dynamically stored in a location database. The implications for emergency call location are tremendous since an erroneous GPS predicted location could still be retrospectively matched with a single record from the database to find the true caller's location. We present an example that shows how the mapping method can be used to predict the NLOS-induced GPS positioning errors.
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