A New Method to Discriminate Wireless Location under Noisy Circumstance

Jing Guo, Yue Wang, Jian Yuan, X. Shan, Yong Ren
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Abstract

Location distinction, as the ability of a receiver to determine whether a transmitter has changed its position, is important for many wireless applications. In order to improve the performance of location distinction in noisy environment, we propose a novel method based on ordinal pattern measure. The existing methods, such as channel gains of multi-tonal probes, received signals strength and temporal impulse response, take rare consideration on the impact of noise at the receiver. We evaluate the above methods in the noisy environment and find dramatic performance degradation in low SNR situation. We use a 2.4 GHz link measure data set, obtained from CRAWDAD [1], and find that the ordinal pattern method significantly reduces the false alarm rate in the noisy environment, in comparison to the original temporal impulse response method.
噪声环境下无线定位的一种新方法
位置区分,作为接收器确定发射器是否改变其位置的能力,对许多无线应用都很重要。为了提高噪声环境下定位识别的性能,提出了一种基于有序模式测度的定位识别方法。现有的方法,如多音调探头的信道增益、接收信号强度和时间脉冲响应等,很少考虑接收端噪声的影响。我们在噪声环境下对上述方法进行了评估,发现在低信噪比的情况下性能会显著下降。我们使用来自CRAWDAD[1]的2.4 GHz链路测量数据集,发现与原始的时间脉冲响应方法相比,序数方向图方法显著降低了噪声环境下的虚警率。
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