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首页> 外文期刊>International Journal of Aeroacoustics >A unified formalism for acoustic imaging based on microphone array measurements
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A unified formalism for acoustic imaging based on microphone array measurements

机译:基于麦克风阵列测量的声学成像的统一形式主义

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摘要

The problem of localizing and quantifying acoustic sources from a set of acoustic measurements has been addressed, in the last decades, by a huge number of scientists, from different communities (signal processing, mechanics, physics) and in various application fields (underwater, aero, or vibro acoustics). This led to the production of a substantial amount of literature on the subject, together with the development of many methods, specifically adapted and optimized for each configuration and application field, the variety and sophistication of proposed algorithms being sustained by the constant increase in computational and measurement capabilities. The counterpart of this prolific research is that it is quite tricky to get a clear global scheme of the state of the art. The aim of the present work is to make an attempt in this direction, by proposing a unified formalism for different well known imaging techniques, from identification methods (acoustic holography, equivalent sources, Bayesian focusing, Generalized inverse beamforming...) to beamforming deconvolution approaches (DAMAS, CLEAN). The hypothesis, advantages and pitfalls of each approach will be established from a theoretical point of view, with a particular effort in trying to separate differences in the problem definition (a priori information, main assumptions) and in the algorithms used to find the solution. Numerical simulations will be proposed for different source configurations (coherent/incoherent/extended/sparse distributions), and an experimental illustration on a supersonic jet will be finally discussed.
机译:在过去的几十年中,通过来自不同社区(信号处理,机械师,物理学)和各种应用领域的大量科学家(水下,航空或vibro声学)。这导致了对该主题的大量文献的生产,以及许多方法的开发,专门适应和优化每个配置和应用领域,所提出的算法的各种和复杂性被计算和计算的恒定增加所持续的算法测量能力。这种多产的研究的同行是,获得最明确的全球技术方案是非常棘手的。本作本作的目的是通过提出不同众所周知的成像技术的统一形式主义,从识别方法(声学全息,等效源,贝叶斯焦点,广义逆波束成形......)来进行统一的形式主义,以波束成形去卷积方法(Damas,Clean)。从一个理论的角度来看,每个方法的假设,优点和陷阱都是从一个特殊的努力来尝试分离问题定义(先验信息,主要假设)和用于找到解决方案的算法中的差异。将针对不同的源配置(相干/非连贯/延长/稀疏分布)提出数值模拟,并且最终将讨论超音速喷射器上的实验图。

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