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Non-coherent ToA estimation for UWB multipath channels using max-eigenvalue detection

机译:使用最大特征值检测的UWB多径信道非相干ToA估计

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Due to the fine delay resolution in ultra-wideband (UWB) wireless propagation channels, a large number of multipath components (MPC) can be resolved; and the first arriving MPC might not be the strongest one. This makes time-of-arrival (ToA) estimation, which essentially depends on determining the arrival time of the first MPC, highly challenging. In this paper, we consider non-coherent ToA estimation given a number of measurement trials, at moderate sampling rate and in the absence of knowledge of pulse shape. The proposed ToA estimation is based on detecting the presence of a signal in a moving time delay window, by using the largest eigenvalue of the sample covariance matrix of the signal in the window as the test statistic. We show that energy detection can be viewed as a special case of the eigenvalue detection. Max-eigenvalue detection (MED) generally has superior performance, due to the following reasons: 1) MED collects less noise, namely only the noise contained in the signal space, and 2) if multiple channel taps fall into the time window, the MED detector can collect energy from all of them. Simulation results confirm that MED outperforms the energy detection in IEEE 802.15.3a and 802.15.4a channels. Finally, the selection of the threshold of the MED is studied both by simulations and by random matrix theory.
机译:由于超宽带(UWB)无线传播信道具有良好的延迟分辨率,因此可以解决大量的多径分量(MPC);而第一个到达的MPC可能不是最强大的。这使得到达时间(ToA)估计(这主要取决于确定第一个MPC的到达时间)变得非常具有挑战性。在本文中,考虑到许多测量试验,在中等采样率且不了解脉冲形状的情况下,我们考虑了非相干ToA估计。拟议的ToA估计基于将移动窗口中信号的样本协方差矩阵的最大特征值用作测试统计量,来检测移动延迟窗口中信号的存在。我们表明,能量检测可以被视为特征值检测的特例。由于以下原因,最大特征值检测(MED)通常具有优越的性能:1)MED收集的噪声较小,即仅收集信号空间中包含的噪声; 2)如果多个通道抽头落入时间窗口,则MED探测器可以收集所有能量。仿真结果证实,MED优于IEEE 802.15.3a和802.15.4a通道中的能量检测。最后,通过仿真和随机矩阵理论研究了MED阈值的选择。

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