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Journal ArticleDOI

General formulation of the source extraction problem

David P. Vasholz
- 01 Jun 1977 - 
- Vol. 61, Iss: 6, pp 1550-1556
TLDR
In this paper, a general formulation of the problem of extracting information about random wave sources is presented, where the general problem may be cast into the form of an integral equation, the kernel of which contains the physics of the propagation and the solution of which describes the location and spectral content of all sources.
Abstract
A general formulation of the problem of extracting information about random wave sources is presented. The formulation places no restrictions upon the complexity of the propagation and applies to any situation where the propagation may be adequately described by a deterministic Green’s function. It is shown that the general problem may be cast into the form of an integral equation, the kernel of which contains the physics of the propagation and the solution of which describes the location and spectral content of all sources. The special case of a homogeneous medium is examined in detail, and it is shown that conventional processing techniques may be viewed as attempts to solve an approximate version of the integral equation. An exact formal solution for the case of an arbitrary medium is derived. This formal solution, although it may not be implemented per se, is nonetheless expressed in such a form that a useful procedure for generating approximate solutions is suggested. This procedure, which is a gener...

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Book ChapterDOI

Three Dimensional Passive Acoustical Imaging System Using Hemispherical Array Detectors

TL;DR: In this article, a high-resolution 3D passive acoustical imaging system is realized by using array detectors arranged hemispherically covering the object, and cross power or bispectral analyses of the detected signals are carried out so that images of the distributions of power of single frequency component or coherence among three frequency components are obtained.
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