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Formation of Desired Waveform and Focus Structure by Time Reversal Acoustic Focusing System

机译:按时间逆转声学聚焦系统形成所需波形和焦点结构

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The ultrasound focusing systems based on Time Reversal Acoustic (TRA) principles are capable of delivering ultrasound energy to the specific region in a highly inhomogeneous medium with focusing efficacy virtually unachievable using conventional phased array transmitters. Furthermore, numerous reflections from various boundaries, which distort focusing in conventional ultrasound focusing systems and are viewed as a significant technical hurdle, lead to improvement of the focusing ability of the TRA system. We present a novel approach to TRA focusing of ultrasound that allows: (i) calculation of the TRA focused ultrasound waveform and spatial distribution and (ii) formation of the TRA focused signal with desired waveforms. This approach is based on the measurements of impulse responses of the TRA focusing system (TRA FS) transducers. The proposed method requires creating a library of impulse responses recorded for each transducer of the TRA FS to short pulses radiated from a grid of points in the projected focal area. The developed approach for TRA waveform prediction was tested on a 5 channel TRA FS based on aluminum resonator with attached piezotransducers. The TRA FS provided focusing of ultrasound in the frequency band of 100-1000 kHz. The calculated and experimentally measured waveforms and spatial distributions were practically identical. The formation of ultrasonic signals with various predefined envelopes was demonstrated experimentally. We formed triangular, rectangular, and amplitude modulated tone burst signals with different frequencies in the focal region. Experiments were conducted for focusing of ultrasound to several points simultaneously and formation of focal area with the shape of an elongated ellipse was demonstrated.
机译:基于时间反转声学(TRA)原理的超声波聚焦系统能够将超声能量在高度不均匀介质中传递到特定区域,其使用传统的相控阵变送器几乎不可致力于效力。此外,来自各种边界的许多反射,其扭曲在传统的超声聚焦系统中并被视为一个重要的技术障碍,导致改善TRA系统的聚焦能力。我们提出了一种对超声波的TRA聚焦的一种新方法,其允许:(i)计算TRA聚焦超声波和空间分布和(ii)形成具有所需波形的TRA聚焦信号。该方法基于TRA聚焦系统(TRA FS)换能器的脉冲响应的测量。所提出的方法需要创建针对从投影焦点区域中的点的电网辐射的TRA FS的每个换能器记录的脉冲响应库。基于具有附接压电器的铝谐振器,在5通道TRA FS上测试了TRA波形预测的开发方法。 TRA FS在100-1000 kHz的频带中提供超声波的聚焦。计算出的和实验测量的波形和空间分布实际上是相同的。通过实验证明了具有各种预定义信封的超声波信号的形成。在焦点区域中形成具有不同频率的三角形,矩形和幅度调制色调突发信号。进行实验,用于同时对超声波聚焦到几点,并表现出具有细长椭圆形状的焦点区域的形成。

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