首页|基于相关双采样探测的非连续扫描方法研究

基于相关双采样探测的非连续扫描方法研究

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为解决激光扫描投影系统标定过程中易受环境光干扰、合作目标扫描时间长等问题,首先研究了应用于激光扫描投影合作目标定位的相关双采样探测方法,设计了适用于激光扫描投影仪的探测模块,经实验验证,设计的相关双采样探测模块在输入信号干扰比为-29。5 dB时仍能稳定地检测出激光光斑是否落在合作目标的高反射区。然后,针对相关双采样探测的特点,设计了一种基于二分原理的非连续扫描方法,以实现合作目标中心位置的快速提取。最后,使用此方法与栅矩形扫描方法对投影距离为3000 mm处的三个合作目标进行扫描探测和中心位置提取,实验结果表明,栅矩形扫描方式需获取10000个扫描点,而基于相关双采样探测的非连续扫描方法减少了97。4%的扫描点,且中心定位偏差优于0。06 mm。所研究的方法能够提高激光扫描投影系统合作目标探测过程的环境光自适应能力,大幅减少扫描点的同时还能保证中心位置提取精度。
Research on Discontinuous Scanning Method Based on Correlated Double Sampling Detection
Objective A laser scanning projector can deflect a laser beam quickly and accurately,and the path of the laser spot can be shaped into a pattern,thereby facilitating processing and assembly.To ensure the precise calibration of the projection system,several cooperative targets should be scanned to solve the coordinate transformation equations between the world and projector frames.Typically,two calibration methods are employed:One involves manipulation of the laser to scan the cooperative target area,identify points on the edge of the target,and determine the center of the circle through least-squares fitting.This approach requires numerous scanning points,leading to an ineffective calibration process.The alternative approach utilizes binocular cameras for simultaneous multipoint positioning,which results in a reduced calibration time.However,identifying cooperative targets requires significant arithmetic resources.In addition,limited by the performance of the camera,this method is restricted to the calibration distance,and its ability to adapt to ambient light is poor.The correlated double-sampling(CDS)technique can be adopted to enhance the anti-interference ability of the system.Furthermore,a discontinuous scanning method based on the bisection principle is proposed.This technique can precisely identify the boundaries of cooperative targets as well as considerably reduce the number of scanning points,thereby guaranteeing the precision of cooperative target localization.Methods CDS was investigated to realize band-pass filtering and enhance the adaptability of the detection system to ambient light.Subsequently,an integral sampling circuit was designed to reduce the effects of high-frequency noise.The silicon photodiode operates in a zero-bias state and can produce an output signal proportional to the incident light intensity.According to the abovementioned features,a change in the signal light can be detected under different lighting conditions.TINA-TI was used for circuit simulation(Fig.3),and a circuit prototype(Fig.5)was constructed to verify the performance of the detection module.The control program is written to a 32 bit microcontroller to realize integrated functions,such as the output of control signals,signal acquisition,and information transmission.The designed printed circuit board was placed in the light-exit window of a laser scanning projector(Fig.9).When the scanning point is within the high-reflection area of the target,the CDS module can stably detect the reflected signal.According to this feature,a scanning method based on the bisection principle was proposed(Fig.13).This can improve the positioning speed and accuracy of the scanning projection systems for target detection.The theoretical error of this scanning method was analyzed,and a comparison experiment between the grid-scanning method and the proposed method was conducted.The grid-scanning method can be used to obtain detailed point-cloud data for cooperative targets.The Canny operator and triangulation algorithm were implemented in MATLAB to extract the edges of the targets.These measurement results were adopted as benchmarks,and the same cooperative targets were measured using the proposed method under the same conditions.Finally,the number of scanned points and positioning deviations of the two methods were compared.Results and Discussions The sampling circuit designed for this study is capable of withstanding the power ripple influence of 60 mVp-p(Fig.4).Furthermore,although the signal-to-interference ratio(RSI)of-29.5 dB was calculated(Tables 1,2),the CDS detection module can stably output the signal.In this study,the scanning positioning error resulting from the perspective projection relation was determined as less than 1/10 of the galvanometer resolution.This suggests that the theoretical accuracy of laser scanning positioning is sufficiently high.Compared with the 10000 scanning points of the grid scanning method(Fig.18),the number of scanning points in the proposed approach is decreased by 97.4%.Moreover,the positioning deviation of the cooperative target is less than 0.06 mm(Tables 5,6).The new scanning method minimizes the irrelevant scanning regions and eliminates the image calculation process,thereby reducing the need for computational resources.Conclusions In this study,a novel method for detecting cooperative targets using CDS is proposed,which can achieve reliable detection even in the presence of ambient light interference(RSI=-29.5 dB).In addition,a discontinuous scanning method based on the bisection principle is introduced and verified.The results show that with the reduction of 97.4%in the number of scanning points,the deviation of the proposed method is better than 0.06 mm and simplifies the arithmetic process.Applying this technique to the developed laser scan projection system can improve the anti-interference performance during calibration.In addition,the proposed method can reduce time consumption and ensure position accuracy.

laser scanning projectioncorrelated double samplingbisection principlecooperative target

侯茂盛、吴坤、张宏韬、顾崇可、段洁

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长春理工大学光电工程学院光电测控与光信息传输技术教育部重点实验室,吉林长春 130022

华东师范大学物理与电子学院,上海 200241

激光扫描投影 相关双采样 二分原理 合作目标

吉林省技术创新引导项目吉林省科技发展计划吉林省教育厅重点项目

20230401101YY20220201092GXJJKH20230815KJ

2024

中国激光
中国光学学会 中科院上海光机所

中国激光

CSTPCD北大核心
影响因子:2.204
ISSN:0258-7025
年,卷(期):2024.51(5)