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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >An Innovative Ultrasonic Time-of-Flight Measurement Method Using Peak Time Sequences of Different Frequencies: Part I
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An Innovative Ultrasonic Time-of-Flight Measurement Method Using Peak Time Sequences of Different Frequencies: Part I

机译:一种使用不同频率的峰值时间序列的创新型超声波飞行时间测量方法:第一部分

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摘要

This paper proposes an innovative ultrasonic time of flight (TOF) measurement method with narrow-band transducers. By introducing the received ultrasonic wave peak time sequences (PTSs) of two slightly different frequencies, the relative TOF can be accurately identified with a much better resolution than a wave period. The new PTS TOF measurement is achieved in two steps. First, a PTS is built for receiving the ultrasound signal of each frequency according to the arrival time of the wave peaks by calculating the mean value of the adjacent crossover time. Second, the arrival time of the wave front is rebuilt by estimating the common initiation time of the PTSs for the received waves of slightly different frequencies. A mathematical model is derived to describe the signal reception, from which the TOF estimation algorithm was derived. A simulation model describing the characteristics of the ultrasonic transducer and the ultrasonic wave propagation physics was developed to verify the feasibility of the new algorithm. Finally, an experimental system for measuring the relative TOF over the known distance of 550–1450 mm was implemented to confirm feasibility and to demonstrate that a subwavelength resolution of 0.015 times of the wavelength was indeed achievable in measuring distances over meters.
机译:本文提出了一种创新的窄带换能器超声飞行时间(TOF)测量方法。通过引入两个略有不同的频率的超声波峰值时间序列(PTS),可以以比波周期更好的分辨率来准确识别相对TOF。新的PTS TOF测量分两步完成。首先,构建PTS,以通过计算相邻交叉时间的平均值,根据波峰的到达时间来接收每个频率的超声信号。其次,通过为频率略有不同的接收波估计PTS的公共启动时间,来重建波前的到达时间。推导了一个数学模型来描述信号接收,由此推导了TOF估计算法。建立了描述超声换能器特性和超声传播物理特性的仿真模型,以验证新算法的可行性。最后,实施了一个在已知的550-1450 mm距离上测量相对TOF的实验系统,以证实可行性,并证明在测量米的距离上确实可以实现波长的0.015倍的亚波长分辨率。

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