通过设计干扰信号,让声源在目标区域不可被探测。
Optimal Interference Signal for Masking an Acoustic Source
- 基于球对称波动方程,推导出可解析求解的周期干扰方案。
- 单点或双点干扰源可有效降低目标区残留声压,实现自遮蔽。
- 适用于水下通信安全、隐身舰艇和反声学监控场景。
在需要声学隐私或故意信号混淆的环境中,必须掩盖关键操作产生的声学特征。本文研究如何在可能部署检测传感器的目标区域内,通过在声源附近布置干扰信号来掩盖其影响。针对具有球对称性的三维受迫波动方程,推导了多种典型情形下的解析准稳态周期解。研究了自遮蔽现象:特定空间激励分布的声源可自身屏蔽其外部检测。随后利用球对称解的叠加,分析并优化在给定目标区域中使用一个或两个点力源进行遮蔽的性能。对于缺乏球对称性的通用激励分布情况,提出一种高效数值方法求解三维波动方程。本工作潜在应用包括水下声学通信安全、水下航行器隐身以及防范声学监视。
原文摘要 · Abstract (English)
In an environment where acoustic privacy or deliberate signal obfuscation is desired, it is necessary to mask the acoustic signature generated in essential operations. We consider the problem of masking the effect of an acoustic source in a target region where possible detection sensors are located. Masking is achieved by placing interference signals near the acoustic source. We introduce a theoretical and computational framework for designing such interference signals with the goal of minimizing the residual amplitude in the target region. For the three-dimensional (3D) forced wave equation with spherical symmetry, we derive analytical quasi-steady periodic solutions for several canonical cases. We examine the phenomenon of self-masking where an acoustic source with certain spatial forcing profile masks itself from detection outside its forcing footprint. We then use superposition of spherically symmetric solutions to investigate masking in a given target region. We analyze and optimize the performance of using one or two point-forces deployed near the acoustic source for masking in the target region. For the general case where the spatial forcing profile of the acoustic source lacks spherical symmetry, we develop an efficient numerical method for solving the 3D wave equation. Potential applications of this work include undersea acoustic communication security, undersea vehicles stealth, and protection against acoustic surveillance.
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