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用于脉冲压缩超声测量的五进制激励方法。

Quinary excitation method for pulse compression ultrasound measurements.

作者信息

Cowell D M J, Freear S

机构信息

Ultrasound Group, School of Electronic and Electrical Engineering, University of Leeds, Leeds LS2 9JT, United Kingdom.

出版信息

Ultrasonics. 2008 Apr;48(2):98-108. doi: 10.1016/j.ultras.2007.10.001. Epub 2007 Nov 4.

Abstract

A novel switched excitation method for linear frequency modulated excitation of ultrasonic transducers in pulse compression systems is presented that is simple to realise, yet provides reduced signal sidelobes at the output of the matched filter compared to bipolar pseudo-chirp excitation. Pulse compression signal sidelobes are reduced through the use of simple amplitude tapering at the beginning and end of the excitation duration. Amplitude tapering using switched excitation is realised through the use of intermediate voltage switching levels, half that of the main excitation voltages. In total five excitation voltages are used creating a quinary excitation system. The absence of analogue signal generation and power amplifiers renders the excitation method attractive for applications with requirements such as a high channel count or low cost per channel. A systematic study of switched linear frequency modulated excitation methods with simulated and laboratory based experimental verification is presented for 2.25 MHz non-destructive testing immersion transducers. The signal to sidelobe noise level of compressed waveforms generated using quinary and bipolar pseudo-chirp excitation are investigated for transmission through a 0.5m water and kaolin slurry channel. Quinary linear frequency modulated excitation consistently reduces signal sidelobe power compared to bipolar excitation methods. Experimental results for transmission between two 2.25 MHz transducers separated by a 0.5m channel of water and 5% kaolin suspension shows improvements in signal to sidelobe noise power in the order of 7-8 dB. The reported quinary switched method for linear frequency modulated excitation provides improved performance compared to pseudo-chirp excitation without the need for high performance excitation amplifiers.

摘要

本文提出了一种用于脉冲压缩系统中超声换能器线性调频激励的新型开关激励方法,该方法易于实现,与双极性伪线性调频激励相比,在匹配滤波器输出端的信号旁瓣更低。通过在激励持续时间的开始和结束时使用简单的幅度加权来降低脉冲压缩信号的旁瓣。使用开关激励的幅度加权通过使用中间电压切换电平来实现,该电平为主激励电压的一半。总共使用五个激励电压,创建了一个五进制激励系统。由于无需模拟信号生成和功率放大器,该激励方法对于具有高通道数或低每通道成本等要求的应用具有吸引力。本文针对2.25MHz无损检测浸入式换能器,对开关线性调频激励方法进行了系统研究,并进行了基于模拟和实验室的实验验证。研究了使用五进制和双极性伪线性调频激励产生的压缩波形在通过0.5m水和高岭土泥浆通道传输时的信号与旁瓣噪声水平。与双极性激励方法相比,五进制线性调频激励始终能降低信号旁瓣功率。在由0.5m水和5%高岭土悬浮液通道隔开的两个2.25MHz换能器之间传输的实验结果表明,信号与旁瓣噪声功率提高了7-8dB左右。所报道的用于线性调频激励的五进制开关方法与伪线性调频激励相比,性能有所提高,且无需高性能激励放大器。

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