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Transducer impulse response correction for a deconvolution derived ultrasound transit time spectrum

机译:换能器脉冲响应校正衍生超声传输时间谱的解卷积

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Propagation of ultrasound through a complex composite sample may exhibit phase interference between two or more sonic-rays if differences in transit time are less than the pulse length. The transit time spectrum of a test sample, equivalent to its impulse response, was derived through active-set deconvolution of ultrasound signals with, and without, the test sample. The aim of this study was to test the hypothesis that in cases where only the transmit ultrasound transducer's digitally-coded excitation signal is available, hence not the input ultrasound signal without the test sample, incorporation of the transducer impulse response may increase both accuracy and precision of ultrasound transit time spectroscopy. A digital 1 MHz sinusoid signal was used to create an ultrasound pulse that was propagated through a 5 step-wedge acrylic sample immersed in water. Transit time spectra were obtained through deconvolution utilising an ultrasound input signal, along with a digital input signal, with and without incorporation of the transducer impulse response. Incorporation of the transducer impulse response reduced a quantitative measure of noise-to-signal ratio by a factor of 12.
机译:如果运输时间的差小于脉冲长度,则超声通过复合复合样品的传播可以在两个或更多个Sonic射线之间表现出相位干扰。测试样品的转运时间谱相当于其脉冲响应,通过与测试样品的超声信号的主动设置的解卷积来源。本研究的目的是测试假设,在仅发射超声换能器的数字编码激励信号的情况下,因此没有输入的超声信号而没有测试样品,掺入换能器脉冲响应可能会增加精度和精度超声传输时间光谱。数字1MHz正弦波信号用于产生超声脉冲,通过浸入水中的5步楔丙烯酸样品繁殖。通过利用超声输入信号的去卷积获得过渡时间谱,以及数字输入信号,具有和不掺入换能器脉冲响应。结合换能器脉冲响应响应减少了噪声对信号比的定量测量值12倍。

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