摘要
为改善现有图像位移测量,开发了一种二维位移测量系统。该系统采用3种非线性映射标定方法(BP神经网络、最小二乘(LS)三次曲面拟合、LS与遗传算法(GA)的组合方法(GALS)),基于Microsoft Visual Studio的集成平台。用该系统进行了位移测量实验,并分析了相关影响因素。结果表明:在这3种标定方法中,LS法的速度快、准确性高,综合性能最好;较低像素图像(不小于408×306)和较大的平滑、开运算模板(分别不大于标志点直径的1/2和1/3)有利于获得较好的测量效果。该系统可实现灵活、准确和实时位移测量。
A 2-D image-processing displacement-measuring system was developed to provide improved measurements.The system uses nonlinear mapping calibration algorithms,such as a back propagation(BP) artificial neural network(ANN)method,least square(LS) method,and an combined algorithm(GA-LS) from the genetic algorithm(GA) and LS,in a Microsoft Visual Studio integrated development environment.The system was used to analyze 他 the factors influencing displacement measurements.The results show that the cubic surface fitting based on the LS method is the best among the 3 calibration algorithms.Better measurements can be obtained with a smaller image(but larger than 408×306 pixels),larger templates for smoothing(but less than 1/2 of a marking point diameter) and for opening operations(but less than 2/3 of the marking point diameter).The measuring system is flexible and accurate and can be used in real-time.
出处
《清华大学学报(自然科学版)》
EI
CAS
CSCD
北大核心
2010年第6期826-829,共4页
Journal of Tsinghua University(Science and Technology)
基金
国家"十一五"规划科技支撑计划(2006BAJ13B03-02)
关键词
位移测量
系统标定
图像处理
映射标定
displacement measuring
image processing
system calibration
mapping calibration