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High-Accuracy Ultrasonic Rangefinders via pMUTs Arrays Using Multi-Frequency Continuous Waves

机译:使用多频连续波通过pMUTs阵列进行高精度超声波测距仪

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This paper presents a high accuracy air-coupled reflective ultrasonic rangefinder based on piezoelectric micro-machined ultrasonic transducers (pMUTs) using multi-frequency continuous waves (MFCWs). Two pieces of 5 t imes 5 AlN pMUTs arrays at the resonant frequency of 492 kHz are employed to transmit and receive ultrasonic signals, respectively. The MFCW method, where the distance information is calculated from the phase difference, can cancel out the random noise in numerous repeating periods. Therefore, high-accuracy range measurement is achieved. The 3 sigma accuracy of the short distance measurement (< 100 mm) is 0.0711 mm with 0.096 mm/degrees first-order resolution and 1.934 mu m/degrees second-order resolution. For long distance measurement ( 100-300 mm), the 3 sigma accuracy is 1.8208 mm with 0.481 mm/degrees first-order resolution and 1.954 mu m/degrees second-order resolution. The MFCW-based rangefinder using pMUTs is a good candidate for short distance measurement with high accuracy.
机译:本文提出了一种高精度的空气耦合反射式超声波测距仪,该测距仪基于使用多频连续波(MFCW)的压电微机械超声换能器(pMUT)。采用两个在492 kHz谐振频率下的5个5个AlN pMUT阵列分别发送和接收超声信号。根据相位差计算距离信息的MFCW方法可以消除许多重复周期中的随机噪声。因此,实现了高精度的范围测量。短距离测量(<100毫米)的3 sigma精度为0.0711毫米,一阶分辨率为0.096毫米/度,二阶分辨率为1.934微米/度。对于长距离测量(100-300毫米),3 sigma精度为1.8208毫米,一阶分辨率为0.481毫米/度,二阶分辨率为1.954微米/度。使用pMUT的基于MFCW的测距仪是高精度短距离测量的理想选择。

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