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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A continuous wavelet transform-based modulus maxima approach for the walk error compensation of pulsed time-of-flight laser rangefinders
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A continuous wavelet transform-based modulus maxima approach for the walk error compensation of pulsed time-of-flight laser rangefinders

机译:连续小波transform-based模量maxima行走误差补偿方法脉冲飞行时间激光测距仪

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摘要

Semiconductor pulsed time-of-flight (TOF) laser rangefinders (LRFs) have been the main distance measurement components equipped by many radar systems of Micro Unmanned Air Vehicles (MUAVs). A novel approach is proposed to improve the measurement accuracy of pulsed TOF LRFs. This approach adopted traditional single-threshold leading edge detection firstly, then employed continuous wavelet transform (CWT)-based local modulus maxima (LMMs) to detect singularities of emitting pulses and receiving echoes of LRFs, and obtained the compensation time with detected singularities to revise the measurement model. A series of experiments were done in a proposed pulsed TOF LRF prototype, and the measurement model is built by linear fitting. With the compensation values of various wavelets, the optimum revised measurement model is obtained. It is demonstrated that the single-shot precision of the pulsed TOF LRF achieves 195 ps (similar to 29 mm) with SNR = 7, and the absolute error is reduced from 9.25 to 6.32 mm. Therefore, the proposed approach can better compensate the walk error of the existing pulsed TOF LRFs and improve the performance of TOF LRFs. (C) 2015 Elsevier GmbH. All rights reserved.
机译:半导体激光脉冲飞行时间(TOF)测距仪(探测器)主要的距离测量组件由许多雷达装备微型无人飞行器系统(MUAVs)。新方法提出了改进脉冲测量精确度的TOF探测器。方法采用传统single-threshold前沿检测首先,然后使用连续小波变换(CWT)的地方模极大值(LMMs)检测的奇异点探测器的发射脉冲和接收回声,获得补偿时间与检测奇点修改测量模型。提出了一系列的实验进行脉冲TOF探测器原型,测量模型是由线性拟合。各种小波的补偿值最优修正测量模型。是证明的单发精度的脉冲TOF探测器达到195 ps(类似于29日与信噪比= 7毫米),绝对误差从9.25减少到6.32毫米。建议的方法可以更好地补偿走路现有的脉冲误差TOF探测器和改进的性能TOF探测器。GmbH是一家。

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