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802.11 WLAN OWPT Measurement Algorithms and Simulations for Indoor Localization

机译:802.11 WLAN OWPT测量算法和室内定位模拟

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This paper discussed novel algorithms for synchronizations and time resolution improvements of One Way Propagation Time (OWPT) measurements in the 802.11 Wireless Local Area Network (WLAN). In OWPT measurements, the Mobile Station (MS) records each 802.11 Beacon frame's arrival time. The Beacon frame's arrival time minus its Timestamp, which is recorded when the Beacon frame is transmitted from an Access Point (AP), is the Beacon frame's Propagation Time. The Propagation Time represents the distance between the MS and the AP. Rather than microseconds (|xs) time resolution Timestamp, the MS could use its high precision clock to record the Beacon frame's arrival time in nanoseconds (ns). The first part of this paper proposes algorithms which can utilize the ns resolution arrival Time to improve the OWPT measurements time resolution from p.s to ns and to highly synchronize the MS with all Aps. These algorithms provide an opportunity to apply OWPT in 802.11 WLAN for highly accurate indoor localization. The second part discusses the possibility to utilize existing software and hardware platform to realize the proposed algorithms. At the end of this paper, the shortages of existing MS timing ability were raised and several options are provided for future researches to improve MS timing ability for OWPT application.
机译:本文讨论了802.11无线局域网(WLAN)中的单向传播时间(OWPT)测量的同步和时间分辨率的新算法。在OWPT测量中,移动台(MS)记录每个802.11信标帧的到达时间。信标帧的到达时间减去其时间戳,当信标帧从接入点(AP)传输时,记录为信标帧的传播时间。传播时间表示MS和AP之间的距离。而不是微秒(| xs)时间分辨率时间戳,MS可以使用其高精度时钟来记录纳秒(NS)中的信标帧的到达时间。本文的第一部分提出了可以利用NS分辨率到达时间来改善从P.S到NS的OWPT测量时间分辨率的算法,并将MS与所有AP高度同步。这些算法提供了在802.11 WLAN应用于高准确的室内定位的机会。第二部分讨论了利用现有软件和硬件平台实现所提出的算法的可能性。在本文末尾,提出了现有MS时序能力的短缺,并提供了几种选择,以便将来的研究改善ovpt应用程序的MS时序能力。

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