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ALRD: AoA localization with RSSI differences of directional antennas for wireless sensor networks

机译:ALRD:针对无线传感器网络的定向天线的RSSI差异进行AoA定位

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摘要

As a node of a wireless sensor network (WSN) with an embedded omnidirectional antenna receives signals emitted from a directional antenna, the received signal strength indication (RSSI) varies with the angle of arrival (AoA) of the received signal. In this paper, we fit RSSI values into a parabola function of AoA between 0° and 90° by quadratic regression analysis. We also set up two directional antennas with perpendicular orientations at the same position and fit the difference of the signal RSSI values of the two antennas into a linear function of AoA between 0° and 90° by linear regression analysis. Based on the RSSI-fitting functions, we propose a novel localization scheme, called ALRD, for a sensor node to fast (within 0.1s) estimate its location with the help of two beacon nodes, each of which consists of two perpendicular-orientationed directional antennas. The fitting functions can easily be stored in a WSN node having limited storage space and their inverse functions can be used to speed up the localization process. We have implemented ALRD and applied it to a WSN in a 10m × 10m indoor square area with two beacon nodes being installed at two ends of an area edge. Our experiments demonstrate that the average localization error is 124 centimeters. We further propose two methods, namely maximum-point-minimum-diameter (MPMD) and maximum-point-minimum-rectangle (MPMR), to reduce localization errors by gathering more beacon signals within 1s for finding the set of estimated locations of maximum density. Such estimated locations are averaged to obtain the final location estimation. The experiment results demonstrate the two methods can reduce the average localization error by a factor about 29% to be 89 centimeters. ALRD allows a sensor node to fast localize itself with small errors and is thus suitable for mobile sensing and actuating applications.
机译:当具有嵌入式全向天线的无线传感器网络(WSN)的节点接收从定向天线发射的信号时,接收信号强度指示(RSSI)随接收信号的到达角(AoA)而变化。在本文中,我们通过二次回归分析将RSSI值拟合到AoA在0°和90°之间的抛物线函数中。我们还在同一位置设置了两个垂直方向的定向天线,并通过线性回归分析将两个天线的信号RSSI值的差异拟合为AoA在0°和90°之间的线性函数。基于RSSI拟合函数,我们提出了一种新颖的定位方案,称为ALRD,用于传感器节点借助两个信标节点快速(在0.1s内)估计其位置,每个信标节点包括两个垂直方向的定向天线。拟合函数可以容易地存储在具有有限存储空间的WSN节点中,并且它们的逆函数可以用于加快定位过程。我们已经实现了ALRD并将其应用于10m×10m室内正方形区域中的WSN,并在区域边缘的两端安装了两个信标节点。我们的实验表明,平均定位误差为124厘米。我们进一步提出了两种方法,即最大点最小直径(MPMD)和最大点最小矩形(MPMR),以通过在1秒内收集更多信标信号以找到最大密度的估计位置集来减少定位误差。将这些估计的位置平均以获得最终的位置估计。实验结果表明,这两种方法均可以将平均定位误差降低约29%,达到89厘米。 ALRD允许传感器节点以很小的误差快速定位自身,因此适合移动感测和驱动应用。

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