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Gunshot Airborne Surveillance with Rotary Wing UAV-Embedded Microphone Array

机译:带有旋转翼无人机嵌入式麦克风阵列的机炮空中监视

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摘要

Unmanned aerial vehicles (UAV) are growing in popularity, and recent technological advances are fostering the development of new applications for these devices. This paper discusses the use of aerial drones as a platform for deploying a gunshot surveillance system based on an array of microphones. Notwithstanding the difficulties associated with the inherent additive noise from the rotating propellers, this application brings an important advantage: the possibility of estimating the shooter position solely based on the muzzle blast sound, with the support of a digital map of the terrain. This work focuses on direction-of-arrival (DoA) estimation methods applied to audio signals obtained from a microphone array aboard a flying drone. We investigate preprocessing and different DoA estimation techniques in order to obtain the setup that performs better for the application at hand. We use a combination of simulated and actual gunshot signals recorded using a microphone array mounted on a UAV. One of the key insights resulting from the field recordings is the importance of drone positioning, whereby all gunshots recorded in a region outside a cone open from the gun muzzle presented a hit rate close to 96%. Based on experimental results, we claim that reliable bearing estimates can be achieved using a microphone array mounted on a drone.
机译:无人机(UAV)越来越受欢迎,并且最近的技术进步正在促进这些设备的新应用程序的开发。本文讨论了将空中无人机用作部署基于麦克风阵列的枪炮监视系统的平台。尽管存在与来自旋转螺旋桨的固有附加噪声相关的困难,但此应用程序仍具有一个重要的优势:在地形数字地图的支持下,仅根据枪口爆炸声估算射手位置的可能性。这项工作着重于到达方向(DoA)估计方法,该方法应用于从飞行无人机上的麦克风阵列获得的音频信号。我们研究预处理和不同的DoA估计技术,以获得对于手边的应用程序性能更好的设置。我们使用安装在无人机上的麦克风阵列记录的模拟和实际枪声信号的组合。现场记录得出的关键见解之一是无人机定位的重要性,据此,在从枪口开口的锥形区域之外记录的所有枪声,命中率均接近96%。基于实验结果,我们声称使用安装在无人机上的麦克风阵列可以实现可靠的方位估计。

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