Behaviors of Antenna Polarization for RSSI Location Identification

Xu Huang, Mark Barralet, D. Sharma
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引用次数: 8

Abstract

Real-time position localization of moving objects in an indoor environment is an encouraging technology for realizing the vision of creating numerous novel location-aware services and applications in various market segments. An off the shelf development platform that uses Radio Signal Strength Indication (RSSI) based location tracking technique is studied. In this paper we investigate the affects of polarization on the accuracy of an indoor location tracking system. We present an approach to increase system accuracy based on this investigation. We established a model for determining range from RSSI and showed that the model fits our own experimental data. The model includes parameters used to account of environmental effects and we use the least squares method of determining the parameter values. Antenna polarization angle will affect RSSI and thus range accuracy. We empirically show that the model is still valid for polarization mismatch but with different environmental parameter values. A method based on semi-automated trail and error is proposed as a better method for selecting the environmental parameters. Using experimental data we show that if we adjust the model parameters to account for polarization angle then we can increase location accuracy. A practical solution for determining the polarization angle is with an accelerometer. The addition of an accelerometer could also be used to increase the battery life of the node.
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RSSI位置识别中的天线极化行为
室内环境中移动物体的实时位置定位是一种令人鼓舞的技术,可以实现在各种细分市场中创建许多新颖的位置感知服务和应用的愿景。研究了一种基于无线电信号强度指示(RSSI)的位置跟踪技术的现成开发平台。本文研究了极化对室内定位跟踪系统精度的影响。在此基础上提出了一种提高系统精度的方法。我们建立了一个由RSSI确定量程的模型,并证明该模型与我们自己的实验数据吻合。该模型包括用于考虑环境影响的参数,我们使用最小二乘法确定参数值。天线极化角度会影响RSSI,从而影响距离精度。我们的经验表明,该模型在不同环境参数值下仍然适用于极化失配。提出了一种基于半自动化跟踪误差的环境参数选择方法。实验数据表明,通过调整模型参数来考虑偏振角,可以提高定位精度。确定偏振角的一种实用方法是使用加速度计。增加一个加速度计也可以用来增加节点的电池寿命。
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