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Two-Dimensional Airborne Position and Velocity Measurements Using a Pair of Linear-Period-Modulated Ultrasonic Waves

机译:使用一对线性周期调制的超声波进行二维机载位置和速度测量

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摘要

This paper proposes an idea for position and velocity measurements for a moving object with the echolocation technique under the ultrasonic system. The moving-object location is based on the time-of-flight (TOF). Cross correlation, low-calculation-cost Doppler-shift compensation, plays an important role in the TOF determination. The over-sampling cross-correlation function is obtained from single-bit signal processing. The velocity of the moving object is determined from the peak interval and peak form in the cross-correlation function. Linear-period-modulated (LPM) ultrasonic waves are employed to support the influence of the Doppler effect. In this paper, the ultrasonic two-dimensional position and velocity vector measurement exploits two microphones. The validity of this paper is experimentally evaluated.
机译:本文提出了一种在超声系统下利用回声定位技术对运动物体进行位置和速度测量的想法。运动对象的位置基于飞行时间(TOF)。互相关,低计算成本的多普勒频移补偿在TOF确定中起着重要作用。过采样互相关函数是通过单比特信号处理获得的。根据互相关函数中的峰值间隔和峰值形式确定移动物体的速度。线性周期调制(LPM)超声波用于支持多普勒效应的影响。在本文中,超声波二维位置和速度矢量测量利用两个麦克风。通过实验评估了本文的有效性。

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