Partial differential equation-based localization of a monopole source from a circular array

Wave source localization from a sensor array has long been the most active research topics in both theory and application. In this paper, an explicit and time-domain inversion method for the direction and distance of a monopole source from a circular array is proposed. The approach is based on a mat...

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Veröffentlicht in:The Journal of the Acoustical Society of America 2013-10, Vol.134 (4), p.2799-2813
Hauptverfasser: Ando, Shigeru, Nara, Takaaki, Levy, Tsukassa
Format: Artikel
Sprache:eng
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Zusammenfassung:Wave source localization from a sensor array has long been the most active research topics in both theory and application. In this paper, an explicit and time-domain inversion method for the direction and distance of a monopole source from a circular array is proposed. The approach is based on a mathematical technique, the weighted integral method, for signal/source parameter estimation. It begins with an exact form of the source-constraint partial differential equation that describes the unilateral propagation of wide-band waves from a single source, and leads to exact algebraic equations that include circular Fourier coefficients (phase mode measurements) as their coefficients. From them, nearly closed-form, single-shot and multishot algorithms are obtained that is suitable for use with band-pass/differential filter banks. Numerical evaluation and several experimental results obtained using a 16-element circular microphone array are presented to verify the validity of the proposed method.
ISSN:0001-4966
1520-8524
DOI:10.1121/1.4820896