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Development of a high-fidelity simulation capability for battlefield acoustics

机译:开发用于战场声学的高保真模拟功能

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Findings are presented from the first year of a joint project between the U.S. Army Engineer Research and Development Center, the U.S. Army Research Laboratory, and the Sandia National Laboratories. The purpose of the project is to develop a finite-difference, time-domain (FDTD) capability for simulating the acoustic signals received by battlefield acoustic sensors. Many important effects, such as scattering from trees and buildings, interactions with dynamic atmospheric wind and temperature fields, and nonstationary target properties, can be accommodated by the simulation. Such a capability has much potential for mitigating the need for costly field data collection and furthering the development of robust identification and tracking algorithms. The FDTD code is based on a carefully derived set of first-order differential equations that is more general and accurate than most current sound propagation formulations. For application to three-dimensional problems of practical interest in battlefield acoustics, the code must be run on massively parallel computers. Some example computations involving sound propagation in a moving atmosphere and propagation in the presence of trees and barriers are presented.
机译:从美国陆军工程师研究与发展中心,美国陆军研究实验室和桑迪亚国家实验室之间的联合项目的第一年开始就得出了这些发现。该项目的目的是开发有限差分时域(FDTD)功能,以模拟战场声学传感器接收到的声学信号。模拟可以适应许多重要的影响,例如树木和建筑物的散射,与动态大气风和温度场的相互作用以及非平稳目标特性。这种功能具有很大的潜力,可以减轻对昂贵的现场数据收集的需求,并进一步发展健壮的识别和跟踪算法。 FDTD代码基于精心推导的一阶微分方程组,它比大多数当前的声音传播公式更为通用和准确。为了应用于在战场声学中具有实际意义的三维问题,该代码必须在大规模并行计算机上运行。给出了一些示例计算,涉及声音在移动气氛中的传播以及树木和障碍物存在下的传播。

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