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Tuning by turning: Enabling phased array signal processing for WiFi with inertial sensors

机译:旋转调谐:使用惯性传感器为WiFi启用相控阵信号处理

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Modern mobile devices are equipped with multiple antennas, which brings various wireless sensing applications such as accurate localization, contactless human detection and wireless human-device interaction. A key enabler for these applications is phased array signal processing, especially Angle of Arrival (AoA) estimation. However, accurate AoA estimation on commodity devices is non-trivial due to limited number of antennas and uncertain phase offsets. Previous works either rely on elaborate calibration or involve contrived human interactions. In this paper, we aim to enable practical AoA measurements on commodity off-the-shelf (COTS) mobile devices. The key insight is to involve users' natural rotation to formulate a virtual spatial-temporal antenna array and conduce a relative incident signal of measurements at two orientations. Then by taking the differential phase, it is feasible to remove the phase offsets and derive the accurate AoA of the equivalent incoming signal, while the rotation angle can also be captured by built-in inertial sensors. On this basis, we propose Differential MUSIC (D-MUSIC), a relative form of the standard MUSIC algorithm that eliminates the unknown phase offsets and achieves accurate AoA estimation on COTS mobile devices with only one rotation. We further extend D-MUSIC to 3-D space and fortify it in multipath-rich scenarios. We prototype D-MUSIC on commodity WiFi infrastructure and evaluate it in typical indoor environments. Experimental results demonstrate a superior performance with an average AoA estimation error of 13°. Requiring no modifications or calibration, D-MUSIC is envisioned as a promising scheme for practical AoA estimation on COTS mobile devices.
机译:现代移动设备配备了多个天线,带来了各种无线传感应用,例如精确定位,非接触式人体检测和无线人机交互。这些应用的关键推动力是相控阵信号处理,尤其是到达角(AoA)估计。但是,由于天线数量有限和不确定的相位偏移,在商用设备上进行准确的AoA估算并非易事。以前的作品要么依靠精心的校准,要么涉及人为的人为交互作用。在本文中,我们旨在在商品现货(COTS)移动设备上实现实际的AoA测量。关键的见解是让用户自然旋转,以制定虚拟的时空天线阵列,并得出两个方向的相对测量入射信号。然后,通过获取差分相位,可以消除相位偏移并得出等效输入信号的精确AoA,同时还可以通过内置惯性传感器捕获旋转角度。在此基础上,我们提出了差分MUSIC(D-MUSIC),这是标准MUSIC算法的一种相对形式,它消除了未知的相位偏移,并且仅旋转一圈即可在COTS移动设备上实现准确的AoA估计。我们进一步将D-MUSIC扩展到3-D空间,并在多路径丰富的场景中对其进行强化。我们在商用WiFi基础设施上对D-MUSIC进行原型制作,并在典型的室内环境中对其进行评估。实验结果证明了卓越的性能,平均AoA估计误差为13°。无需修改或校准,D-MUSIC被设想为在COTS移动设备上进行实际AoA估算的有前途的方案。

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