光学精密工程
光學精密工程
광학정밀공정
OPTICS AND PRECISION ENGINEERING
2009年
10期
2486-2492
,共7页
朱嘉%李醒飞%谭文斌%向红标%陈诚
硃嘉%李醒飛%譚文斌%嚮紅標%陳誠
주가%리성비%담문빈%향홍표%진성
最小二乘法%短圆弧%半径测量
最小二乘法%短圓弧%半徑測量
최소이승법%단원호%반경측량
least-square method%short arc%radius measurement
坐标测量中通常采用最小二乘法拟合几何元素.测量短圆弧时,由于特征点数少,受到的噪声干扰大,测量精度难以满足测量要求.本文针对短圆弧测量,分析了采用最小二乘法多点测圆时,圆弧中心角对圆心及半径测量误差的影响;考虑到短圆弧的功能特性和加工工艺往往将圆心作为固定值,在最小二乘圆拟合的基础上,提出了圆心约束最小二乘圆拟合方法.利用提出的方法测量了理论半径为10 mm,中心角为20°的短圆弧,测量误差<0.01 mm.对比实验表明,利用圆心约束最小二乘圆拟合法测量短圆弧能有效提高拟合精度.提出的方法基于机器视觉检测系统,能对工件做在线非接触测量.与传统的短圆弧测量方法相比,具有精度高、速度快、测量范围广等优势.
坐標測量中通常採用最小二乘法擬閤幾何元素.測量短圓弧時,由于特徵點數少,受到的譟聲榦擾大,測量精度難以滿足測量要求.本文針對短圓弧測量,分析瞭採用最小二乘法多點測圓時,圓弧中心角對圓心及半徑測量誤差的影響;攷慮到短圓弧的功能特性和加工工藝往往將圓心作為固定值,在最小二乘圓擬閤的基礎上,提齣瞭圓心約束最小二乘圓擬閤方法.利用提齣的方法測量瞭理論半徑為10 mm,中心角為20°的短圓弧,測量誤差<0.01 mm.對比實驗錶明,利用圓心約束最小二乘圓擬閤法測量短圓弧能有效提高擬閤精度.提齣的方法基于機器視覺檢測繫統,能對工件做在線非接觸測量.與傳統的短圓弧測量方法相比,具有精度高、速度快、測量範圍廣等優勢.
좌표측량중통상채용최소이승법의합궤하원소.측량단원호시,유우특정점수소,수도적조성간우대,측량정도난이만족측량요구.본문침대단원호측량,분석료채용최소이승법다점측원시,원호중심각대원심급반경측량오차적영향;고필도단원호적공능특성화가공공예왕왕장원심작위고정치,재최소이승원의합적기출상,제출료원심약속최소이승원의합방법.이용제출적방법측량료이론반경위10 mm,중심각위20°적단원호,측량오차<0.01 mm.대비실험표명,이용원심약속최소이승원의합법측량단원호능유효제고의합정도.제출적방법기우궤기시각검측계통,능대공건주재선비접촉측량.여전통적단원호측량방법상비,구유정도고、속도쾌、측량범위엄등우세.
The least-square method is usually adopted for fitting of geometric elements in a coordinate measurement.However,in the process of short arc measurement,it is difficult to offer a high precision due to the lack of feature points and the influence of noise jamming.Aimed at the measurement of short arc,this paper analyzes the influence of central angles on measurement errors of circle centre and radius by using the least-square method.Based on the fact that the circle center of the short arc is often set in a fixed position due to its functional property and processing technology,a centre constraint least-square circle fitting method is proposed in the study,It is proved that the measurement error is less than 0.01 mm by using the proposed method to measure a short arc with a central angle of 20° and a radius of 10 mm.A comparative experiment shows that the centre constraint least-square method can improve the accuracy of circle fitting efficiently in the short arc measurement.As the proposed method is based on machine vision system,it has advantages of high accuracy,fast speed,wide measuring ranges and on-line and non-contact measurement as compared with traditional measurement methods of short arc.