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Amplifier for optimal reflection Coefficient of ultrasound transducer: A study of op amp based circuits for ultrasound transducers, targeted for low reflection Coefficient, high gain, and low noise

机译:超声换能器的最佳反射系数放大器:针对超声换能器的基于运算放大器的电路的研究,其目标是低反射系数,高增益和低噪声

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摘要

Reverberation is defined as equally-spaced, bright linear echoes resulting from reflection from specular-type interfaces. They are provoked by the acoustic Impedance change between the tissue and transducer front surface. B. Angelsen developed a mathematical approach to correct this ultrasound artifact by coupling the ultrasound transducer with an ideal electrical load in order to obtain zero reflection coefficients on the transducer from face [1]. However, when analyzing Impedance spectroscopy this approach cannot be achieved by using passive electronics in most simulated cases. Active impedance may be seen as a trend to improve image quality. This research therefore implements and simulates methods for active impedance synthesis [5] and applies Particle Swarm Optimization to the proposed electronics. Finally, the simulations are compared through a LAB experiment.
机译:混响定义为由镜面型界面反射产生的等距明亮线性回声。它们是由组织和换能器前表面之间的声阻抗变化引起的。 B. Angelsen开发了一种数学方法来校正超声伪像,方法是将超声换能器与理想的电负载耦合,以便从面部[1]获得换能器上的零反射系数。但是,在分析阻抗谱时,在大多数模拟情况下,使用无源电子设备无法实现此方法。有源阻抗可以看作是改善图像质量的趋势。因此,这项研究实现并模拟了有源阻抗合成的方法[5],并将粒子群优化技术应用于所提出的电子设备。最后,通过LAB实验对仿真进行比较。

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