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Tracking Moving Devices with the Cricket Location System

机译:板球定位系统跟踪移动设备

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摘要

We study the problem of tracking a moving device under two indoor location architectures: an active mobile architecture and a passive mobile architecture. In the former, the infrastructure has receivers at known locations, which estimate distances to a mobile device based on an active transmission from the device. In the latter, the infrastructure has active beacons that periodically transmit signals to a passively listening mobile device, which in turn estimates distances to the beacons. Because the active mobile architecture receives simultaneous distance estimates at multiple receivers from the mobile device, it is likely to perform better tracking than the passive mobile system in which the device obtains only one distance estimate at a time and may have moved between successive estimates. However, an passive mobile system scales better with the number of mobile devices and puts users in control of whether their whereabouts are tracked. We answer the following question: How do the two architectures compare in tracking performance? We find that the active mobile architecture performs better at tracking, but that the passive mobile architecture has acceptable performance; moreover, we devise a hybrid approach that preserves the benefits of the passive mobile architecture while simultaneously providing the same performance as an active mobile system, suggesting a viable practical solution to the three goals of scalability, privacy, and tracking agility.
机译:我们研究了在两种室内位置架构下跟踪移动设备的问题:主动移动架构和被动移动架构。在前者中,基础结构在已知位置具有接收器,这些接收器基于来自设备的有效传输来估计到移动设备的距离。在后者中,基础结构具有主动信标,这些信标会定期将信号发送到被动监听的移动设备,而被动监听移动设备又会估计到信标的距离。因为主动移动体系结构在从移动设备的多个接收器处接收到同时的距离估计,所以它比被动移动系统执行更好的跟踪,在被动移动系统中,设备一次仅获得一个距离估计,并且可能已在连续估计之间移动。但是,无源移动系统会随着移动设备的数量而更好地扩展,并让用户控制是否跟踪其下落。我们回答以下问题:两种架构在跟踪性能方面如何比较?我们发现主动移动体系结构在跟踪方面表现更好,但是被动移动体系结构具有可接受的性能。此外,我们设计了一种混合方法,既保留了被动式移动体系结构的优势,又提供了与主动式移动系统相同的性能,为解决可伸缩性,隐私和跟踪敏捷性这三个目标提出了可行的实用解决方案。

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