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Characterizing the impact of multi-frequency and multi-power on localization accuracy

机译:表征多频和多功率对定位精度的影响

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Wireless localization using the received signal strength (RSS) can have tremendous savings over using specialized positioning infrastructures. In this work, we explore improving RSS localization performance in multipath environments by varying the transmitter's signal power and frequency. Using a theoretical analysis, we first show how selection of different signal powers and frequencies can improve localization accuracy for the least squares algorithm. We next develop a set of selection methods that attempt to select the combinations of power and frequencies which minimize the localization error. Our selection methods are based on the observed standard deviations of RSS as well as algorithm specific residuals. Using active RFID tags, we experimentally characterize the effect of using multiple signal powers and frequencies on a wide spectrum of RSS-based algorithms. We found that the performance of all the algorithms improves when leveraging on multiple power levels and frequencies, although different algorithms present different sensitivity in terms of localization accuracy under different selection methods.
机译:与使用专用定位基础结构相比,使用接收信号强度(RSS)进行无线定位可以节省大量成本。在这项工作中,我们探索通过改变发射器的信号功率和频率来改善多径环境中的RSS定位性能。使用理论分析,我们首先展示如何选择不同的信号功率和频率可以提高最小二乘算法的定位精度。接下来,我们开发了一组选择方法,这些方法试图选择使定位误差最小的功率和频率的组合。我们的选择方法基于观察到的RSS标准偏差以及特定于算法的残差。通过使用有源RFID标签,我们实验性地描述了在多种基于RSS的算法上使用多种信号功率和频率的影响。我们发现,尽管在不同的选择方法下,不同的算法在定位精度方面表现出不同的灵敏度,但在利用多个功率水平和频率时,所有算法的性能都会有所提高。

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