Correlation techniques for digital time-of-flight measurement by airborne ultrasonic rangefinders

A. Sabatini, Enrico Spinielli
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引用次数: 18

Abstract

Ultrasonic pulse-echo ranging systems based on threshold detection methods are popular devices in the robotic field, as a means for determining the proximity of objects in a cost-effective manner. Despite their widespread use, serious concerns are often raised regarding the accuracy of the sensed data, particularly when the return signals are received at low signal-to-noise ratios. In principle, correlation-based detection methods provide better performance for their outstanding capability of detecting and recovering weak signals buried in noise, so as to permit ranging at longer distances, or, the distance being the same, at higher frequencies, with resulting improvements in spatial resolution in spite of the increased attenuation. In this paper the authors describe a simple pulse-echo ranging system whose receiver signal processing is completely digital: the use of appropriate sampling techniques and signal processing algorithms allows one to benefit from the advantages of correlation-based detection methods for accurate ranging of multiple objects, without compromising the most prominent features of pulse-echo sonar systems, namely their relatively low cost and simplicity of operation. The experimental results presented concern the use of relatively high-frequency ultrasonic transducers.<>
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机载超声测距仪数字飞行时间测量的相关技术
基于阈值检测方法的超声脉冲回波测距系统是机器人领域中常用的设备,是一种以经济有效的方式确定物体接近程度的手段。尽管它们被广泛使用,但对于感测数据的准确性经常引起严重关注,特别是当以低信噪比接收返回信号时。原则上,基于相关性的检测方法能够出色地检测和恢复隐藏在噪声中的微弱信号,从而实现更远的距离,或者在距离相同的情况下,在更高的频率下进行测距,从而在衰减增加的同时提高空间分辨率。在本文中,作者描述了一个简单的脉冲回波测距系统,其接收器信号处理完全是数字化的:使用适当的采样技术和信号处理算法,可以从基于相关的检测方法的优势中受益,用于多个目标的精确测距,而不会损害脉冲回波声纳系统的最突出特点,即相对较低的成本和简单的操作。实验结果与使用相对高频的超声换能器有关。
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