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A multiple candidate time of arrival algorithm for tracking nodes in multipath environments

机译:用于在多路径环境中跟踪节点的多候选到达时间算法

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Tracking systems based on the measurement of time of arrival (TOA) assume that the measured signal travels directly between transmitter and receiver. In complex radio propagation environments this direct path signal is often weak compared to multipath signals and there is a tradeoff in the TOA algorithm between sensitivity to the weak direct path and false detection due to noise, sidelobes, and other artifacts. Conventional TOA algorithms return a single TOA, which can be early due to false detection or late due to an undetected direct path, and these errors degrade tracking performance. In this paper a novel approach to this problem is proposed in which tracking performance is improved using multiple candidate TOA values. In particular a set of TOAs are extracted from the channel impulse response for each received signal and converted to a set of range values. A decision as to which among the set of range values is due to the direct path is deferred to the tracking algorithm, which uses a probabilistic soft-decision approach. Experimental studies conducted using a wireless network demonstrate that the 90% percentile absolute position error is reduced from 3.3 m to 1.3 m and the relative position error is reduced from 1.3 m to 0.5 m.
机译:基于到达时间(TOA)测量的跟踪系统假定测量的信号直接在发射器和接收器之间传播。在复杂的无线电传播环境中,与多径信号相比,该直接路径信号通常较弱,并且在TOA算法中,在对弱直接路径的灵敏度与由于噪声,旁瓣和其他伪像引起的误检测之间存在折衷。常规的TOA算法返回单个TOA,这可能是由于错误检测而导致的提前,也可能是由于未检测到的直接路径而导致的延迟,这些错误会降低跟踪性能。在本文中,提出了一种解决该问题的新方法,其中使用多个候选TOA值提高了跟踪性能。特别是,从每个接收信号的信道脉冲响应中提取一组TOA,并将其转换为一组范围值。关于范围值集合中的哪一个是由于直接路径引起的决定被推迟到跟踪算法,该跟踪算法使用概率性软决策方法。使用无线网络进行的实验研究表明,90%的绝对位置误差从3.3 m减小到1.3 m,相对位置误差从1.3 m减小到0.5 m。

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