农业工程学报
農業工程學報
농업공정학보
2009年
10期
186-192,后插1
,共8页
杨文柱%李道亮%魏新华%康玉国%李付堂
楊文柱%李道亮%魏新華%康玉國%李付堂
양문주%리도량%위신화%강옥국%리부당
纤维%棉花%计算机视觉%光谱分析%最佳检测波段%最佳可区分波段
纖維%棉花%計算機視覺%光譜分析%最佳檢測波段%最佳可區分波段
섬유%면화%계산궤시각%광보분석%최가검측파단%최가가구분파단
fibers%cotton%computer vision%spectroscopic analysis%optimal detection band%optimal distinguishing band
图像采集是基于计算机视觉的棉花异性纤维检测计量系统中的基础环节.为构建有效的图像采集系统以便检测皮棉中的异性纤维并识别其种类,在对棉纤维和异性纤维进行光谱分析的基础上,根据二者的漫反射光谱差异,提出了基于反射差极值分布的最佳检测波段选择方法和基于光谱可区分度的最佳可区分波段选择方法.光谱分析结果表明,紫外波段是带荧光异性纤维的最佳检测波段,可见光波段是带颜色异性纤维的最佳检测波段,而红外波段是塑料薄膜、毛发、羽毛等的最佳检测波段,并初步认定780~1 800 nm的近红外波段为异性纤维间的最佳可区分波段.
圖像採集是基于計算機視覺的棉花異性纖維檢測計量繫統中的基礎環節.為構建有效的圖像採集繫統以便檢測皮棉中的異性纖維併識彆其種類,在對棉纖維和異性纖維進行光譜分析的基礎上,根據二者的漫反射光譜差異,提齣瞭基于反射差極值分佈的最佳檢測波段選擇方法和基于光譜可區分度的最佳可區分波段選擇方法.光譜分析結果錶明,紫外波段是帶熒光異性纖維的最佳檢測波段,可見光波段是帶顏色異性纖維的最佳檢測波段,而紅外波段是塑料薄膜、毛髮、羽毛等的最佳檢測波段,併初步認定780~1 800 nm的近紅外波段為異性纖維間的最佳可區分波段.
도상채집시기우계산궤시각적면화이성섬유검측계량계통중적기출배절.위구건유효적도상채집계통이편검측피면중적이성섬유병식별기충류,재대면섬유화이성섬유진행광보분석적기출상,근거이자적만반사광보차이,제출료기우반사차겁치분포적최가검측파단선택방법화기우광보가구분도적최가가구분파단선택방법.광보분석결과표명,자외파단시대형광이성섬유적최가검측파단,가견광파단시대안색이성섬유적최가검측파단,이홍외파단시소료박막、모발、우모등적최가검측파단,병초보인정780~1 800 nm적근홍외파단위이성섬유간적최가가구분파단.
Image acquisition is the key technique in a computer vision-based system for the inspection of foreign fibers in lint cotton and the measurement of their contents. To construct an efficient image acquisition system for the detection and classification of those foreign fibers, spectroscopic analysis of cotton fiber and foreign fibers was performed. To detect the foreign fibers effectively, a method for selecting optimal detection bands was proposed based on the extrema distribution of reflectance differences between cotton fiber and foreign fibers. An optimal distinguishing band selection method was presented in terms of the spectrum distinguishable degree. The results indicate that the ultraviolet band is the optimal band to detect the fluorescent foreign fibers, the visible light band is the optimal one to detect color foreign fibers, and the infrared band is fit for inspecting those foreign fibers such as polypropylene and polyethylene materials, candy wrappers, hairs and feathers. The infrared band of 780-1 800 run is optimal for distinguishing these foreign fibers.