激光与红外
激光與紅外
격광여홍외
LASER & INFRARED
2014年
10期
1154-1158
,共5页
邱跳文%张焱%杨卫平%李吉成
邱跳文%張焱%楊衛平%李吉成
구도문%장염%양위평%리길성
小目标检测%红外偏振信息%特征提取%变偏振%斯托克斯矢量%建模
小目標檢測%紅外偏振信息%特徵提取%變偏振%斯託剋斯矢量%建模
소목표검측%홍외편진신식%특정제취%변편진%사탁극사시량%건모
small target detection%infrared polarization information%feature extraction%variable polarization%Stokes vector%modeling
针对红外目标探测所面临的杂波干扰问题,提出了一种基于红外偏振的特征提取与小目标检测方法。首先,利用人工目标和自然背景偏振特性的差异,建立了目标与背景的红外偏振信息模型,分析了其中强度信息和偏振信息的构成以及目标偏振信息的提取与增强办法。然后,将斯托克斯矢量、部分偏振光分解、变偏振理论相结合实现了目标偏振特征的提取与背景杂波抑制及随机噪声消除,进而实现了红外小目标的检测。仿真数据实验结果及与现有方法的对比证明了该方法的有效性和可靠性。该方法可用于对抗红外伪装隐身及红外诱饵技术,提升红外目标的探测能力,富有应用价值。
針對紅外目標探測所麵臨的雜波榦擾問題,提齣瞭一種基于紅外偏振的特徵提取與小目標檢測方法。首先,利用人工目標和自然揹景偏振特性的差異,建立瞭目標與揹景的紅外偏振信息模型,分析瞭其中彊度信息和偏振信息的構成以及目標偏振信息的提取與增彊辦法。然後,將斯託剋斯矢量、部分偏振光分解、變偏振理論相結閤實現瞭目標偏振特徵的提取與揹景雜波抑製及隨機譟聲消除,進而實現瞭紅外小目標的檢測。倣真數據實驗結果及與現有方法的對比證明瞭該方法的有效性和可靠性。該方法可用于對抗紅外偽裝隱身及紅外誘餌技術,提升紅外目標的探測能力,富有應用價值。
침대홍외목표탐측소면림적잡파간우문제,제출료일충기우홍외편진적특정제취여소목표검측방법。수선,이용인공목표화자연배경편진특성적차이,건립료목표여배경적홍외편진신식모형,분석료기중강도신식화편진신식적구성이급목표편진신식적제취여증강판법。연후,장사탁극사시량、부분편진광분해、변편진이론상결합실현료목표편진특정적제취여배경잡파억제급수궤조성소제,진이실현료홍외소목표적검측。방진수거실험결과급여현유방법적대비증명료해방법적유효성화가고성。해방법가용우대항홍외위장은신급홍외유이기술,제승홍외목표적탐측능력,부유응용개치。
To solve the problem of clutter interference in infrared target detection,a novel method of feature extraction and small target detection based on the infrared polarization information is proposed.Firstly,according to the differ-ences of polarization characteristics of artificial target and natural background,a model of infrared polarization informa-tion of targets and the background is established.The components of intensity and polarization information are analyzed as well as the extraction and enhancement of the target polarization information.Then,the three theories of the stokes vector,partially polarized light decomposition and variable polarization are combined to extract target polarization fea-ture,suppress background clutter and eliminate random noise,thus achieve detection of infrared small tar-get.Experimental results on simulated data and comparisons with three existed methods demonstrate the effectiveness and reliability of the proposed method,which can be used against infrared camouflage concealment or infrared decoy technology,and has great application value.