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Digital Phase Modulation and Correlation Processing of Ultrasound Signals for Pulsed Measurements in an Inhomogeneous Medium

机译:非均匀介质中脉冲测量超声信号的数字相位调制与相关处理

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A method and hardware for ultrasonic control of an inhomogeneous gaseous medium are presented. An algorithm based on digital phase modulation of pulse signals and their correlation processing is used to increase the resolution of an ultrasonic device. The algorithm allows high-resolution measurements of the time delay between the ultrasound pulses that arrive at a receiver along different propagation paths in an inhomogeneous medium. It is shown that it is possible to measure small values of time delays by analyzing the asymmetry of the cross correlation functions of signals. Laboratory experimental measurements carried out under scattering of ultrasound in an inhomogeneous airflow are described. The possibility of measuring relative time delays of 3-5 mu s of pulses at the 40-kHz carrier frequency of ultrasound is shown.
机译:提出了一种用于超声波控制的非均匀气态介质的方法和硬件。 一种基于脉冲信号的数字相位调制的算法及其相关处理来增加超声波装置的分辨率。 该算法允许沿不均匀介质中的不同传播路径到达接收器的超声波脉冲之间的时间延迟的高分辨率测量。 结果表明,通过分析信号的交叉相关函数的不对称,可以测量时间延迟的小值。 描述了在非均匀气流中的超声波散射下进行的实验室实验测量。 示出了在超声波的40 kHz载波频率下测量3-5μs脉冲的相对时间延迟的可能性。

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