首页> 外文会议>European Signal Processing Conference(EUSIPCO 2005); 20050904-08; Antalya(TK) >ENHANCED POSITION LOCATION WITH UWB IN OBSTRUCTED LOS AND NLOS MULTIPATH ENVIRONMENTS
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ENHANCED POSITION LOCATION WITH UWB IN OBSTRUCTED LOS AND NLOS MULTIPATH ENVIRONMENTS

机译:阻塞LOS和NLOS多路径环境中UWB的增强位置定位

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摘要

We propose an enhanced directional beacon based position location procedure for UWB systems. Unlike previous work that relies on strongest return and therefore prone to errors in obstructed line of sight (OLOS) and non-LOS (NLOS) environments, our procedure identifies the LOS return by detecting the earliest arrival. To overcome synchronization problems, we propose a correlation based window algorithm to detect the earliest arrival and hence the LOS component across a 360° rotation of directional beacon. We extend the algorithm to non-LOS (NLOS) case and estimate position by minimizing the norm between the sets of measurements. To assess the performance over realistic UWB channels, we modify the UWB channel model to incorporate the effect of directional transmitting antennas. From simulation results we claim position location accuracy of around 34 cm with a pragmatic 4-element antenna array using 2.4GHz UWB pulses and 4-bit A/D converter at 24dB SNR.
机译:我们提出了一种用于UWB系统的基于增强定向信标的位置定位程序。与以前的工作依赖于最强的返回率,因此在阻塞视线(OLOS)和非LOS(NLOS)环境中容易出错的工作不同,我们的过程通过检测最早到达来确定LOS返回。为了克服同步问题,我们提出了一种基于相关的窗口算法来检测最早的到达信号,从而检测定向信标在360°旋转时的LOS分量。我们将算法扩展到非LOS(NLOS)情况,并通过最小化测量集之间的范数来估计位置。为了评估实际UWB信道上的性能,我们修改了UWB信道模型以合并定向发射天线的影响。从仿真结果中,我们声称使用采用2.4GHz UWB脉冲和24dB SNR的4位A / D转换器的实用4元素天线阵列,可以实现约34 cm的位置定位精度。

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