室内定位中的Wi-Fi蝴蝶效应:地面真值不精确和小尺度衰落的影响

A. Popleteev
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引用次数: 4

摘要

随着室内定位系统精度的不断提高,对其进行评估也越来越具有挑战性。我们已经知道有许多因素会影响基于指纹的系统的性能:硬件多样性、设备方向、环境动态。本文在定位实验中提出了一种新的蝴蝶效应。这种影响是由微小的接地真值(GT)误差引起的,即校准位置和测试位置之间的小偏差。虽然这种偏差被广泛认为是纯粹相加的,因此可以忽略不计,但我们证明,即使是厘米尺度的GT误差也会被小规模无线电衰落放大,并导致严重的万米级Wi-Fi定位误差。结果表明,随着GT误差向0.4波长(2.4 GHz时为5 cm)方向增大,基于指纹的定位精度迅速下降。超过这个阈值,系统的精度将饱和到精确GT所能达到的原始水平的三分之一左右。这种影响挑战了已知的精度限制因素(如跨用户测试、接收器分集、设备方向和时间变化)的影响,因为它们可以部分地由较小的GT误差来解释。此外,对于手持智能手机的实验,这种效应直接将评估结果与实验者的勤奋程度联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wi-Fi butterfly effect in indoor localization: The impact of imprecise ground truth and small-scale fading
The increasing accuracy of indoor positioning systems makes their evaluation an increasingly challenging task. A number of factors are already known to affect performance of fingerprint-based systems: hardware diversity, device orientation, environment dynamics. This paper presents a new butterfly-like effect in localization experiments. The effect is caused by minor ground truth (GT) errors — that is, small deviations between calibration and test positions. While such deviations are widely considered as purely additive and thus negligible, we demonstrate that even centimeter-scale GT errors are amplified by small-scale radio fading and lead to severe multi-meter Wi-Fi positioning errors. The results show that fingerprint-based localization accuracy quickly deteriorates as GT errors increase towards 0.4 wavelength (5 cm for 2.4 GHz). Beyond that threshold, system's accuracy saturates to about one-third of its original level achievable with precise GT. This effect challenges the impact of the already known accuracy-limiting factors (such as cross-user tests, receiver diversity, device orientation and temporal variations), as they can be partially explained by minor GT errors. Moreover, for smartphone-in-a-hand experiments, this effect directly associates the evaluation outcomes with experimenters' diligence.
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