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Width-modulated square-wave pulses for ultrasound applications

机译:超声波应用中的宽度调制方波脉冲

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摘要

A method of output pressure control for ultrasound transducers using switched excitation is described. The method generates width-modulated square-wave pulse sequences that are suitable for driving ultrasound transducers using MOSFETs or similar devices. Sequences are encoded using an optimized level-shifted, carrier-comparison, pulse-width modulation (PWM) strategy derived from existing PWM theory, and modified specifically for ultrasound applications. The modifications are: a reduction in carrier frequency so that the smallest number of pulses are generated and minimal switching is necessary; alteration of a linear carrier form to follow a trigonometric relationship in accordance with the expected fundamental output; and application of frequency modulation to the carrier when generating frequency-modulated, amplitude- tapered signals. The PWM method permits control of output pressure for arbitrary waveform sequences at diagnostic frequencies (approximately 5 MHz) when sampled at 100 MHz, and is applicable to pulse shaping and array apodization. Arbitrary waveform generation capability is demonstrated in simulation using convolution with a transducer¿s impulse response, and experimentally with hydrophone measurement. Benefits in coded imaging are demonstrated when compared with fixedwidth square-wave (pseudo-chirp) excitation in coded imaging, including reduction in image artifacts and peak side-lobe levels for two cases, showing 10 and 8 dB reduction in peak side-lobe level experimentally, compared with 11 and 7 dB reduction in simulation. In all cases, the experimental observations correlate strongly with simulated data.
机译:描述了一种使用开关激励的超声换能器的输出压力控制方法。该方法生成适合于使用MOSFET或类似设备驱动超声换能器的宽度调制方波脉冲序列。使用优化的电平移位,载波比较,脉宽调制(PWM)策略对序列进行编码,该策略源自现有的PWM理论,并针对超声应用进行了专门修改。修改是:降低载波频率,以便产生最少数量的脉冲,并且需要最少的切换;根据预期的基本输出改变线性载波形式,使其遵循三角关系;以及在生成调频幅度渐缩信号时将调频应用于载波。当以100 MHz采样时,PWM方法允许以诊断频率(大约5 MHz)控制任意波形序列的输出压力,适用于脉冲整形和阵列切趾。通过使用带传感器脉冲响应的卷积进行仿真,并通过水听器测量进行实验,证明了任意波形生成功能。与固定宽度方波(伪chi)激励相比,编码成像具有更多优势,包括两种情况下的图像伪影和峰值旁瓣电平降低,这表明峰值旁瓣电平降低了10 dB和8 dB从实验上看,与之相比,仿真降低了11 dB和7 dB。在所有情况下,实验观察结果都与模拟数据密切相关。

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