光谱学与光谱分析
光譜學與光譜分析
광보학여광보분석
SPECTROSCOPY AND SPECTRAL ANALYSIS
2013年
12期
3366-3371
,共6页
高海龙%李小昱%徐森淼%陶海龙%李晓金%孙金风
高海龍%李小昱%徐森淼%陶海龍%李曉金%孫金風
고해룡%리소욱%서삼묘%도해룡%리효금%손금풍
透射高光谱成像%反射高光谱成像%损伤%马铃薯
透射高光譜成像%反射高光譜成像%損傷%馬鈴藷
투사고광보성상%반사고광보성상%손상%마령서
Transmission hyperspectral imaging%Reflectiion hyperspectral imaging%Injury%Potato
针对马铃薯损伤部位随机放置会影响检测精度的问题,提出从正对相机、背对相机及侧对相机三个方向,应用透射和反射高光谱成像技术采集马铃薯图像,进行透射和反射高光谱成像的马铃薯损伤检测比较研究。对透射和反射高光谱图像进行独立成分(IC )分析和特征提取,利用所得特征对反射图像进行二次IC分析,对透射和反射光谱进行变量选择,最终分别建立基于反射图像、反射光谱、透射光谱的马铃薯损伤定性识别模型;对识别准确率高的模型做进一步优化,采用子窗口排列分析(SPA )算法对透射光谱的特征做二次选择得到3个光谱变量,并建立任意放置的马铃薯损伤识别最优模型。试验结果表明,基于反射图像、反射光谱建立的模型识别准确率较低,其中基于反射图像的马铃薯碰伤,侧对相机识别准确率最低为43.10%;基于透射光谱信息建立的模型识别准确率较高,损伤部位正对、背对相机的识别准确率均为100%,侧对相机为99.53%;马铃薯损伤识别最优模型对任意放置的损伤识别准确率为97.39%。应用透射高光谱成像技术可以检测任意放置方向下的马铃薯损伤,该研究可为马铃薯综合品质的在线检测提供技术支持。
針對馬鈴藷損傷部位隨機放置會影響檢測精度的問題,提齣從正對相機、揹對相機及側對相機三箇方嚮,應用透射和反射高光譜成像技術採集馬鈴藷圖像,進行透射和反射高光譜成像的馬鈴藷損傷檢測比較研究。對透射和反射高光譜圖像進行獨立成分(IC )分析和特徵提取,利用所得特徵對反射圖像進行二次IC分析,對透射和反射光譜進行變量選擇,最終分彆建立基于反射圖像、反射光譜、透射光譜的馬鈴藷損傷定性識彆模型;對識彆準確率高的模型做進一步優化,採用子窗口排列分析(SPA )算法對透射光譜的特徵做二次選擇得到3箇光譜變量,併建立任意放置的馬鈴藷損傷識彆最優模型。試驗結果錶明,基于反射圖像、反射光譜建立的模型識彆準確率較低,其中基于反射圖像的馬鈴藷踫傷,側對相機識彆準確率最低為43.10%;基于透射光譜信息建立的模型識彆準確率較高,損傷部位正對、揹對相機的識彆準確率均為100%,側對相機為99.53%;馬鈴藷損傷識彆最優模型對任意放置的損傷識彆準確率為97.39%。應用透射高光譜成像技術可以檢測任意放置方嚮下的馬鈴藷損傷,該研究可為馬鈴藷綜閤品質的在線檢測提供技術支持。
침대마령서손상부위수궤방치회영향검측정도적문제,제출종정대상궤、배대상궤급측대상궤삼개방향,응용투사화반사고광보성상기술채집마령서도상,진행투사화반사고광보성상적마령서손상검측비교연구。대투사화반사고광보도상진행독립성분(IC )분석화특정제취,이용소득특정대반사도상진행이차IC분석,대투사화반사광보진행변량선택,최종분별건립기우반사도상、반사광보、투사광보적마령서손상정성식별모형;대식별준학솔고적모형주진일보우화,채용자창구배렬분석(SPA )산법대투사광보적특정주이차선택득도3개광보변량,병건립임의방치적마령서손상식별최우모형。시험결과표명,기우반사도상、반사광보건립적모형식별준학솔교저,기중기우반사도상적마령서팽상,측대상궤식별준학솔최저위43.10%;기우투사광보신식건립적모형식별준학솔교고,손상부위정대、배대상궤적식별준학솔균위100%,측대상궤위99.53%;마령서손상식별최우모형대임의방치적손상식별준학솔위97.39%。응용투사고광보성상기술가이검측임의방치방향하적마령서손상,해연구가위마령서종합품질적재선검측제공기술지지。
The randomly placed damage parts of potato will affect the detection accuracy ,this paper used transmission and reflec-tion hyperspectral imaging technology to acquire potato images of three directions (the damage part facing to the camera ,back to the camera ,side to the camera) ,and then processed the comparative study for damage detection .Independent component (IC) analysis was used to analyze the transmission and reflection hyperspectral images and to extract the features ,the resulting char-acteristics were used for the secondary IC analysis of the reflected images and the variable selection of the transmittance and re-flectance spectroscopy .Finally ,the potato injury qualitative recognition model was established based on the reflection images , the reflectance spectral and the transmittance spectral ;Further optimization was done for high recognition accuracy of model ,and secondary variable selection was carried out for the transmission spectrum by the Sub-window Permutation Analysis(SPA) and the optimal model for damage identification of potato randomly placed was established .The results of experiments show that the accuracy of the identification model based on the reflection image and the reflection spectrum is low ,wherein the potato bruise based on the reflection images falls into the lowest recognition accuracy of 43.10% when it is side to the camera ;The accuracy of the model for identification based on the transmittance spectroscopy information is the highest ,the recognition accuracy with the damage part facing and back to the camera is 100% ,and 99.53% when it is side to the camera .The accuracy of the optimal model for identification based on the 3 kinds of transmittance spectroscopy information of randomly placed potato is 97.39% . Then the application of transmission hyperspectral imaging technology could detect potato injury in any orientation ,and the re-search can provide technical support for the online detection of potato quality .