基于线性模型子弹速度的传声器阵列射击定位

Luisa Still, M. Varela, W. Wirth, M. Oispuu
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引用次数: 3

摘要

本文解决了单麦克风阵列射击定位问题。炮口冲击波和冲击波是弹丸以超音速运动时产生的两种脉冲声。如果麦克风阵列同时测量两种声波,则可以确定射手位置和射击方向方面的射手状态。通常,假定抛射速度是恒定的。本文采用线性模型对子弹速度进行近似。对于该模型,给出了射手状态的估计量,并推导了相应的cram r- rao界。在蒙特卡罗模拟中研究了考虑和不考虑减速的两种情况,并与相应的cram - rao界进行了比较。仿真结果表明,所考虑的弹丸模型具有较高的状态估计精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shooter Localization with a Microphone Array Based on a Linearly Modeled Bullet Speed
This paper addresses the problem of shooter localization using a single microphone array. Muzzle blast and shock wave are the two impulsive sounds generated by a projectile moving at supersonic speed. If a microphone array measures both sound waves, the shooter state in terms of shooter position and firing direction can be determined. Often, the projectile velocity is assumed to be constant. In this paper, the bullet speed is approximated by a linear model. For this model, an estimator of the shooter state is proposed and the corresponding Cramér-Rao bound is derived. Both cases with and without consideration of the deceleration are studied in Monte Carlo simulations and compared with the corresponding Cramér-Rao bound. The simulation results reveal that a superior state estimation accuracy can be achieved by using the considered projectile model.
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