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使用微创逆滤波器在异质介质中实现最优自适应聚焦。

Optimal adaptive focusing through heterogeneous media with the minimally invasive inverse filter.

作者信息

Vignon François, de Rosny Julien, Aubry Jean-François, Fink Mathias

机构信息

Laboratoire Ondes et Acoustique, ESPCI, 10 rue Vauquelin, 75231 Paris cedex 05, France.

出版信息

J Acoust Soc Am. 2007 Nov;122(5):2715-24. doi: 10.1121/1.2783128.

Abstract

The inverse filter is a technique used to adaptively focus waves through heterogeneous media. It is based on the inversion of the Green's functions matrix between the M transducers of a focusing array and N control points in the focal area. The inverse filter minimizes the pressure deposited around the focal point. However it is highly invasive, requiring the presence of N transducers or hydrophones in the focal area at the control points' locations to measure the Green's functions. This paper presents a way of reaching the inverse filter's focusing quality with a minimally invasive setup: only one transducer (at the desired focal location) is needed. This minimally invasive inverse filter takes advantage of the fact all the information about the propagation medium can be retrieved from the signals backscattered by the medium towards the focusing array, if the propagation medium is lossless. A numerical simulation is performed to test this minimally invasive inverse filter through a scattering, lossless medium. The focusing quality equals the conventional, highly invasive inverse filter's. The average spatial and temporal contrast is increased by up to 10 dB compared to the time reversal focusing.

摘要

逆滤波器是一种用于在异质介质中自适应聚焦波的技术。它基于聚焦阵列的M个换能器与焦区内N个控制点之间格林函数矩阵的求逆。逆滤波器可使焦点周围沉积的压力最小化。然而,它具有高度侵入性,需要在控制点位置的焦区内存在N个换能器或水听器来测量格林函数。本文提出了一种通过微创设置达到逆滤波器聚焦质量的方法:仅需要一个换能器(位于期望的焦点位置)。这种微创逆滤波器利用了这样一个事实,即如果传播介质是无损的,那么关于传播介质的所有信息都可以从介质向聚焦阵列反向散射的信号中获取。通过一个散射无损介质进行了数值模拟,以测试这种微创逆滤波器。其聚焦质量与传统的、高度侵入性的逆滤波器相当。与时间反转聚焦相比,平均空间和时间对比度提高了高达10dB。

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