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Passive Round-Trip-Time Positioning in Dense IEEE 802.11 Networks

机译:密集IEEE 802.11网络中被动​​往返时间定位

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摘要

The search for a unique and globally available location solution has attracted researchers for a long time. However, a solution for indoor scenarios, where high accuracy is needed, and Global Positioning System (GPS) is not available, has not been found yet. Despite the number of proposals in the literature, some require too long a calibration time for constructing the fingerprinting map, some rely on the periodic broadcast of positioning information that may downgrade the data communication channel, while others require specific hardware components that are not expected to be carried on commercial off-the-shelf (COTS) wireless devices. The scalability of the location solution is another key parameter for next-generation internet of things (IoT) and 5G scenarios. A passive solution for indoor positioning of WiFi devices is first introduced here, which merges a time-difference of arrival (TDOA) algorithm with the novel fine time measurements (FTM) introduced in IEEE 802.11mc. A proof of concept of the WiFi passive TDOA algorithm is detailed in this paper, together with a thorough discussion on the requirements of the proposed algorithm.
机译:搜索独特和全球可用的位置解决方案已经吸引了研究人员很长一段时间。然而,需要高精度的室内场景解决方案,并且还没有找到全球定位系统(GPS),尚未找到。尽管文献中的建议数量,但是一些需要太长的校准时间来构建指纹图形,一些依赖于可以降级数据通信信道的定期信息的定期广播,而其他人需要预期的特定硬件组件在商业现成(COTS)无线设备上进行。位置解决方案的可扩展性是下一代内容(物联网)和5G场景的另一个关键参数。在此首先介绍用于WiFi器件的室内定位的无源解决方案,其利用IEEE 802.11mc中引入的新型精细时间测量(FTM)的到达(TDOA)算法的时间差。本文详述了WiFi被动TDOA算法的概念证明,以及彻底讨论所提出的算法的要求。

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