Montaldo Gabriel, Tanter Mickaël, Fink Mathias
Laboratoire Ondes et Acoustique, Université Paris VII/ESPCI, CNRS UMR 7587, 10 Rue vouquelin, 75231 Paris Cedex 05, France.
J Acoust Soc Am. 2004 Feb;115(2):768-75. doi: 10.1121/1.1636462.
In order to achieve an optimal focusing through heterogeneous media we need to build the inverse filter of the propagation operator. Time reversal is an easy and robust way to achieve such an inverse filter in nondissipative media. However, as soon as losses appear in the medium, time reversal is not equivalent to the inverse filter anymore. Consequently, it does not produce the optimal focusing and beam degradations may appear. In such cases, we showed in previous works that the optimal focusing can be recovered by using the so-called spatiotemporal inverse filter technique. This process requires the presence of a complete set of receivers inside the medium. It allows one to reach the optimal focusing even in extreme situations such as ultrasonic focusing through human skull or audible sound focusing in strongly reverberant rooms. But, this technique is time consuming and implied fastidious numerical calculations. In this paper we propose a new way to process this inverse filter focusing technique in real time and without any calculation. The new process is based on iterative time reversal process. Contrary to the classical inverse filter technique, this iteration does not require any computation and achieves the inverse filter in an experimental way using wave propagation instead of computational power. The convergence from time reversal to inverse filter during the iterative process is theoretically explained. Finally, the feasibility of this iterative technique is experimentally demonstrated for ultrasound applications.
为了在异质介质中实现最佳聚焦,我们需要构建传播算子的逆滤波器。时间反转是在无耗散介质中实现这种逆滤波器的一种简单且稳健的方法。然而,一旦介质中出现损耗,时间反转就不再等同于逆滤波器。因此,它不会产生最佳聚焦,并且可能会出现波束退化。在这种情况下,我们在先前的工作中表明,可以通过使用所谓的时空逆滤波器技术来恢复最佳聚焦。这个过程需要在介质内部存在一整套接收器。它甚至可以在极端情况下实现最佳聚焦,比如通过人类头骨进行超声聚焦或在强混响房间中进行可听声聚焦。但是,这种技术耗时且涉及繁琐的数值计算。在本文中,我们提出了一种实时且无需任何计算来处理这种逆滤波器聚焦技术的新方法。新方法基于迭代时间反转过程。与经典的逆滤波器技术不同,这种迭代不需要任何计算,而是通过波传播以实验方式实现逆滤波器,而不是依靠计算能力。从理论上解释了迭代过程中从时间反转到逆滤波器的收敛情况。最后,通过实验证明了这种迭代技术在超声应用中的可行性。