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Passive ranging errors due to multipath distortion of deterministic transient signals with application to the localization of small arms fire

机译:确定性瞬态信号多径失真引起的无源测距误差及其在小型武器射击定位中的应用

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摘要

A passive ranging technique based on wavefront curvature is used to estimate the ranges and bearings of impulsive sound sources represented by small arms fire. The discharge of a firearm results in the generation of a transient acoustic signal whose energy propagates radially outwards from the omnidirectional source. The radius of curvature of the spherical wavefront at any instant is equal to the instantaneous range from the source. The curvature of the acoustic wavefront is sensed with a three-microphone linear array by first estimating the differential time of arrival (or time delay) of the acoustic wavefront at each of the two adjacent sensor pairs and then processing the time-delay information to extract the range and bearing of the source. However, modeling the passive ranging performance of the wavefront curvature method for a deterministic transient signal source in a multipath environment shows that when the multipath and direct path arrivals are unresolvable, the time-delay estimates are biased which, in turn, biases the range estimates. The model explains the observed under-ranging of small arms firing positions during a field experiment.
机译:基于波前曲率的无源测距技术用于估计以小武器射击为代表的脉冲声源的范围和方位。枪支的放电导致瞬态声信号的产生,其能量从全向源径向向外传播。球面波前的曲率半径在任何时刻都等于从光源发出的瞬时范围。用三麦克风线性阵列感测声波前的曲率,方法是先估算两个相邻传感器对中每对声波前的到达时间(或时间延迟)的差值,然后处理时延信息以提取源的范围和方位。但是,对多径环境中确定性瞬态信号源的波前曲率方法的无源测距性能进行建模显示,当多径和直接路径到达无法解决时,时间延迟估计会出现偏差,从而使范围估计产生偏差。该模型解释了在野外实验期间观察到的小型武器射击位置的不足范围。

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