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Modeling of signal propagation and sensor performance for infrasound and blast noise

机译:次声和爆炸噪声的信号传播和传感器性能建模

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This paper describes a comprehensive modeling approach for infrasonic (sub-audible acoustic) signals, which starts with an accurate representation of the source spectrum and directivity, propagates the signals through the environment, and senses and processes the signals at the receiver. The calculations are implemented within EASEE (Environmental Awareness for Sensor and Emitter Employment), which is a general software framework for modeling the impacts of terrain and weather on target signatures and the performance of a diverse range of battlefield sensing systems, including acoustic, seismic, RF, visible, and infrared. At each stage in the modeling process, the signals are described by realistic statistical distributions. Sensor performance is quantified using statistical metrics such as probability of detection and target location error. To extend EASEE for infrasonic calculations, new feature sets were created including standard octaves and one-third octaves. A library of gunfire and blast noise spectra and directivity functions was added from ERDC's BNOISE (Blast Noise) and SARNAM (Small Arms Range Noise Assessment Model) software. Infrasonic propagation modeling is supported by extension of several existing propagation algorithms, including a basic ground impedance model, and the Green's function parabolic equation (GFPE), which provides accurate numerical solutions for wave propagation in a refractive atmosphere. The BNOISE propagation algorithm, which is based on tables generated by a fast-field program (FFP), was also added. Finally, an extensive library of transfer functions for microphones operating in the infrasonic range were added, which interface to EASEE's sensor performance algorithms. Example calculations illustrate terrain and atmospheric impacts on infrasonic signal propagation and the directivity characteristics of blast noise.
机译:本文介绍了次声(亚音频)信号的综合建模方法,该方法首先准确表示源频谱和方向性,然后将信号传播到整个环境,然后在接收器处感测和处理信号。这些计算是在EASEE(传感器和发射器使用环境意识)中实现的,该软件是一个通用软件框架,用于建模地形和天气对目标特征的影响以及各种战场传感系统(包括声学,地震,射频,可见光和红外线。在建模过程的每个阶段,信号都是通过现实的统计分布来描述的。使用统计指标(例如检测的概率和目标位置错误)对传感器性能进行量化。为了扩展EASEE进行次声计算,创建了新的功能集,包括标准八度和三分之一八度。从ERDC的BNOISE(爆炸噪声)和SARNAM(小武器范围噪声评估模型)软件中添加了枪炮声和爆炸声频谱以及方向性函数的库。扩展了几种现有传播算法,包括基本的接地阻抗模型和格林函数抛物线方程(GFPE),为次声传播建模提供了支持,格林函数抛物线方程(GFPE)为折射环境中的波传播提供了精确的数值解。还添加了BNOISE传播算法,该算法基于快速字段程序(FFP)生成的表。最后,添加了一个扩展的函数库,用于在次声范围内运行的麦克风,该函数库与EASEE的传感器性能算法接口。示例计算说明了地形和大气对次声信号传播的影响以及爆炸噪声的方向性特征。

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