A processing approach for a correlating time-of-flight range sensor based on a least squares method

M. Hofbauer, J. Seiter, M. Davidović, H. Zimmermann
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引用次数: 2

Abstract

A novel processing approach for the output data of a correlating time-of-flight range sensor based on a least squares method is presented. Until now, the fast Fourier transform and a trigonometric approach have been widely used to derive the distance information from the output signal of the sensor. Compared to these methods, the presented approach does not suffer from a systematic phase-dependent error for ideal signals. Moreover, this method allows the detection of multipath propagation, i.e., it is possible to detect if light from different distances is received at the same time. Under certain circumstances, it is even possible to extract the distances of the different paths. Simulation results are presented, comparing the performance of this novel approach to the existing ones. Moreover, first measurement results prove the feasibility of this method and show a reduction of the phase-dependent error by 90% compared to the alternative approaches.
一种基于最小二乘法的相关飞行时间距离传感器处理方法
提出了一种基于最小二乘法的相关飞行时间距离传感器输出数据处理方法。目前,从传感器输出信号中提取距离信息的方法主要是快速傅里叶变换和三角函数法。与这些方法相比,所提出的方法不受理想信号系统相位相关误差的影响。此外,该方法允许检测多径传播,即可以检测是否同时接收到来自不同距离的光。在某些情况下,甚至可以提取不同路径的距离。仿真结果表明,该方法与现有方法的性能进行了比较。此外,第一次测量结果证明了该方法的可行性,并且与其他方法相比,相位相关误差减少了90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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