计算机工程与应用
計算機工程與應用
계산궤공정여응용
COMPUTER ENGINEERING AND APPLICATIONS
2013年
22期
201-203,222
,共4页
圆锥面%Prewitt算子%亚像素%曲线拟合%边缘检测%边缘定位
圓錐麵%Prewitt算子%亞像素%麯線擬閤%邊緣檢測%邊緣定位
원추면%Prewitt산자%아상소%곡선의합%변연검측%변연정위
conical surface%Prewitt operator%sub-pixel%curve fitting%edge detection%edge locate
圆锥面量规直径的检测是汽车发动机气门检测中重要的尺寸测量,是气门各项长度尺寸检测的基准线。针对Prewitt算子在边缘检测上存在的速度慢、稳定性差以及在高精度(精度在μ级)测量中准确度低等问题,提出了一种改进的斜向边缘直径检测算法。对图像进行中值滤波,对目标区域边缘进行粗略定位以确定第二次边缘检测的方向。在确定的检测方向上,应用二次曲线拟合算法得出精确的亚像素边缘信息,将测得的左右边缘坐标差乘上像素当量并进行误差补偿,得到精确的直径值,寻找量规直径位置。实验结果表明,算法与已有算法相比,准确性提高1倍,稳定性与运算速度有较大提高。
圓錐麵量規直徑的檢測是汽車髮動機氣門檢測中重要的呎吋測量,是氣門各項長度呎吋檢測的基準線。針對Prewitt算子在邊緣檢測上存在的速度慢、穩定性差以及在高精度(精度在μ級)測量中準確度低等問題,提齣瞭一種改進的斜嚮邊緣直徑檢測算法。對圖像進行中值濾波,對目標區域邊緣進行粗略定位以確定第二次邊緣檢測的方嚮。在確定的檢測方嚮上,應用二次麯線擬閤算法得齣精確的亞像素邊緣信息,將測得的左右邊緣坐標差乘上像素噹量併進行誤差補償,得到精確的直徑值,尋找量規直徑位置。實驗結果錶明,算法與已有算法相比,準確性提高1倍,穩定性與運算速度有較大提高。
원추면량규직경적검측시기차발동궤기문검측중중요적척촌측량,시기문각항장도척촌검측적기준선。침대Prewitt산자재변연검측상존재적속도만、은정성차이급재고정도(정도재μ급)측량중준학도저등문제,제출료일충개진적사향변연직경검측산법。대도상진행중치려파,대목표구역변연진행조략정위이학정제이차변연검측적방향。재학정적검측방향상,응용이차곡선의합산법득출정학적아상소변연신식,장측득적좌우변연좌표차승상상소당량병진행오차보상,득도정학적직경치,심조량규직경위치。실험결과표명,산법여이유산법상비,준학성제고1배,은정성여운산속도유교대제고。
The diameter of the conical surface detection which is the calibration line of the valve dimensions is the important measurement in automotive engine valve size detect. To solve application of Prewitt operator for bevel detection algorithm detects exists slow, poor stability and low precision in high-precision measurement(accuracy inμlevel), an improved detection algorithm for the diameter of the hypotenuse is presented. The algorithm median filtering the image, and then locate the rough edge of the target area to determine the direction for the second edge detection, and use quadratic curve fitting algorithm to get precise sub-pixel coordinates. Multiply the difference between the left and right edge of the coordinates by pixel equivalent and equivalent to error compensation to get precise diameter, and finally find the diameter gauge position. Experimental results show that the algorithm with existing algorithms, the accuracy increased by 1 times, stability and computational speed has improved greatly.