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Long-term testing of acoustic system for tracking low-flying aircraft

机译:跟踪低空飞行器的声学系统的长期测试

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Stevens Institute of Technology conducted a long-term test of an acoustic system designed to track low-flying small aircraft in remote locations. The system consists of 4 nodes located between 1 and 4 km apart in a mountainous terrain. Each node is comprised of a pyramid-shaped volumetric cluster of 5 microphones, an embedded computer, and a pan-tilt-zoom camera steered to detected targets in real time. A communication device was used to transfer data to a centralized location. Each node estimates the direction of arrival toward the sound sources and sends it along to a central processing computer. The central computer combines the data from all nodes to generate tracks and classify targets. The duration and the scale of the deployment allowed to identify and solve many problems, including the effects of propagation delays between nodes on cooperative localization and tracking, the seasonal changes in environmental noise, persistent and transient noise sources, and the diversity of targets of opportunity and their signatures. The propagation delay effects led to the development of separate trackers for review of target trajectories and for immediate action such as automatically steering the camera.
机译:史蒂文斯理工学院对声学系统进行了长期测试,该声学系统旨在追踪偏远地区低空飞行的小型飞机。该系统由4个节点组成,这些节点在多山的地形中相距1至4公里。每个节点都由一个金字塔形的,由5个麦克风组成的体积簇,一台嵌入式计算机和一个实时转向检测到的目标的云台变焦摄像机组成。使用通信设备将数据传输到集中位置。每个节点估计到达声源的方向,并将其发送到中央处理计算机。中央计算机组合来自所有节点的数据以生成跟踪并分类目标。部署的持续时间和规模可以识别并解决许多问题,包括节点之间的传播延迟对协作定位和跟踪的影响,环境噪声的季节性变化,持续和瞬态噪声源以及机会目标的多样性及其签名。传播延迟效应导致开发了单独的跟踪器,用于检查目标轨迹并采取即时措施,例如自动操纵摄像机。

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