An improved algorithm for UWB-bases positioning in a multi-path environment

Stefan Mangold, A. Jarosch, Claude Monney
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引用次数: 9

Abstract

In this paper, we derive and analyze novel distributed algorithms for calculating the position of tags in a wireless ad-hoc network. The raw data for determining the tag positions stems from time-of-arrival (ToA) measurements of radio frequency (RF) pulses transmitted in between the tags. The sensor network is expected to operate indoors, i.e., the wireless channel is characterized by heavy multi-path propagation. It turns out that the probability density function (PDF) of the TOA measurement error has heavy tails due to this multi-path environment, which has a tremendous impact on the performance of the tag position calculation. We propose a novel position calculation algorithm, which utilizes the tails in the measurement error PDF and easy to implement. This is in contrast to existing approaches, which assume that the measurement error PDF is Gaussian. The novel positioning algorithm allows distributing the required calculations onto the tags and fusing TOA measurements from a large number of tags
多路径环境下一种改进的超宽带基站定位算法
在本文中,我们推导并分析了一种新的分布式算法来计算无线自组织网络中标签的位置。用于确定标签位置的原始数据源于标签之间传输的射频(RF)脉冲的到达时间(ToA)测量。传感器网络期望在室内运行,即无线信道具有重多径传播的特点。结果表明,在这种多路径环境下,TOA测量误差的概率密度函数(PDF)存在重尾,对标签位置计算的性能有很大影响。我们提出了一种新的位置计算算法,该算法利用了测量误差PDF中的尾部,并且易于实现。这与现有方法相反,现有方法假设测量误差PDF是高斯的。新的定位算法允许将所需的计算分配到标签上,并融合来自大量标签的TOA测量
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