Scaled laboratory experiments are conducted to assess the efficacy of iterative, single-channel time reversal for enhancement of monostatic returns from resonant spheres in the free field and buried in a sediment phantom. Experiments are performed in a water tank using a broad-band piston transducer operating between 0.4 and 1.5 MHz and calibrated using free surface reflections. Solid and hollow metallic spheres, 6.35 mm in diameter, are buried in a consolidation of 128-mum-mean-diameter spherical glass beads. The procedure consists of exciting the target object with a broadband pulse, sampling the return using a finite time window, reversing the signal in time, and using this reversed signal as the source waveform for the next interrogati...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
This paper reports on a laboratory study into the use of sonar to detect objects, two of which exhib...
In many mechanical systems the propagation of elastic and acoustical waves is reversible in time. A ...
Numerical studies demonstrate enhanced signal-to-noise ratio and convergence to a narrowband signal ...
Abstract: Previous results suggest that iterative time reversal (TR) using a single element mirror i...
We consider the problem of locating buried objects by generating an acoustic wavefield in the medium...
International audienceIn this paper, we present the results of time-reversal measurement protocolver...
International audienceIn this paper, we present the results of time-reversal measurement protocolver...
International audienceIn this paper, we present the results of time-reversal measurement protocolver...
Abstract-A time-reversal mirror (TRM) is made of an array of transmit-receive transducers. The incid...
Abstract: In this paper, a method is introduced for elastic object detection, classification and ech...
Time reversal is an efficient way for focusing waves deeply inside heterogeneous media [1]. In a typ...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
This paper reports on a laboratory study into the use of sonar to detect objects, two of which exhib...
In many mechanical systems the propagation of elastic and acoustical waves is reversible in time. A ...
Numerical studies demonstrate enhanced signal-to-noise ratio and convergence to a narrowband signal ...
Abstract: Previous results suggest that iterative time reversal (TR) using a single element mirror i...
We consider the problem of locating buried objects by generating an acoustic wavefield in the medium...
International audienceIn this paper, we present the results of time-reversal measurement protocolver...
International audienceIn this paper, we present the results of time-reversal measurement protocolver...
International audienceIn this paper, we present the results of time-reversal measurement protocolver...
Abstract-A time-reversal mirror (TRM) is made of an array of transmit-receive transducers. The incid...
Abstract: In this paper, a method is introduced for elastic object detection, classification and ech...
Time reversal is an efficient way for focusing waves deeply inside heterogeneous media [1]. In a typ...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
International audienceA Time Reversal Mirror (TRM) is a device able to capture a wavefield and to se...
This paper reports on a laboratory study into the use of sonar to detect objects, two of which exhib...
In many mechanical systems the propagation of elastic and acoustical waves is reversible in time. A ...