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Collaborative localization enhancement to the Global Positioning System

机译:全球定位系统的协作本地化增强

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The Global Positioning System (GPS) is the dominant position location system in operation. It uses 31 operational satellites producing eight line of sight satellites available to users at all times. However if a user's visibility is blocked from large buildings, mountains, or the user is located indoors, the number of visible satellites decreases degrading accuracy and availability. Additionally, the signal quality is also degraded in such environments. This paper therefore explores the effect of collaborating users with known (or estimated) distances between the users. Specifically, we examine the usefulness of multiple GPS receivers using measured inter-receiver distances along with standard pseudoranges to cooperatively determine all receiver locations.
机译:全球定位系统(GPS)是运行中的主要位置定位系统。它使用31颗运行中的卫星,随时向用户提供八视线卫星。但是,如果用户的能见度不受大型建筑物,山脉的干扰,或者用户位于室内,则可见卫星的数量会降低降级的准确性和可用性。另外,在这样的环境中,信号质量也会降低。因此,本文探讨了在用户之间具有已知(或估计)距离的情况下进行协作的效果。具体来说,我们使用测得的接收器之间的距离以及标准伪距来检查多个GPS接收器的有用性,以协同确定所有接收器的位置。

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