FREDI:具有多径效应和无线电干扰的基于rss的鲁棒测距

Yu Zhao, Yunhuai Liu, T. He, A. Vasilakos, Chuanping Hu
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引用次数: 17

摘要

基于无线电信号强度(RSS)的测距技术具有成本低、部署方便等优点。在实际环境中,其精度受到多径效应和外界无线电干扰的严重影响。众所周知的指纹方法可以处理这些问题,但在动态环境中引入了过多的开销。在本文中,我们试图从一个完全不同的方向来解决这个问题。我们提出了一种新的测距框架,称为Fredi,它利用频率分集来克服仅基于RSS测量的多径效应。设计了一种基于离散傅里叶变换的算法,并证明了该算法在理想情况下具有最优解。在实践中,我们进一步改进了算法,使其对测量噪声具有鲁棒性。我们在USRP-2平台上实现了Fredi,并在室内环境中进行了广泛的真实环境。实验结果表明,与传统方法相比,该方法性能优越。
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FREDI: Robust RSS-based ranging with multipath effect and radio interference
Radio Signal Strength (RSS) based ranging is attractive by the low cost and easy deployment. In real environments, its accuracy is severely affected by the multipath effect and the external radio interference. The well-known fingerprint approaches can deal with the issues but introduce too much overhead in dynamic environments. In this paper, we attempt to address the issue along a completely different direction. We propose a new ranging framework called Fredi that exploits the frequency diversity to overcome the multi-path effect solely based on RSS measurements. We design a Discrete Fourier Transformation based algorithm and prove that it has the optimal solution under ideal cases. We further revise the algorithm to be robust to the measurement noises in practice. We implement Fredi on top of the USRP-2 platform and conduct extensive real environments in indoor environments. Experimental results show the superiority performance compared with the traditional methods.
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