红外技术
紅外技術
홍외기술
INFRARED TECHNOLOGY
2014年
9期
681-687
,共7页
刘敬%金伟其%王霞%王亚慧%夏润秋
劉敬%金偉其%王霞%王亞慧%夏潤鞦
류경%금위기%왕하%왕아혜%하윤추
透明物体%偏振面形测量%入射角歧义%方位角歧义
透明物體%偏振麵形測量%入射角歧義%方位角歧義
투명물체%편진면형측량%입사각기의%방위각기의
transparent object%shape from polarization%zenith angle ambiguity%azimuth angle ambiguity
无偏漫射光被物体反射后变为部分偏振光,菲涅尔定律阐明了入射角和反射光偏振度的定量关系。入射面的方位角和反射光的偏振角存在90°的方位差,由此可以获得入射面的方位角。综述了透明物体面形偏振成像测量的研究进展,首先介绍了Lawrence B Wolff提出的反射模型及透明物体反射光类型;进一步介绍了基于镜面反射光偏振特性的透明物体面形偏振成像测量原理,并针对测量中存在的入射角和入射面方位角歧义问题,综述了目前国内外消除入射角和消除入射面方位角歧义的方法。鉴于已有算法均假定反射光线平行于偏振成像系统的光轴,但实际应用中常常不能满足这个假设,为此简单介绍了作者提出的基于向量运算的透明物体面形偏振成像测量方法;最后分析了透明物体面形偏振成像测量进一步的研究方向。
無偏漫射光被物體反射後變為部分偏振光,菲涅爾定律闡明瞭入射角和反射光偏振度的定量關繫。入射麵的方位角和反射光的偏振角存在90°的方位差,由此可以穫得入射麵的方位角。綜述瞭透明物體麵形偏振成像測量的研究進展,首先介紹瞭Lawrence B Wolff提齣的反射模型及透明物體反射光類型;進一步介紹瞭基于鏡麵反射光偏振特性的透明物體麵形偏振成像測量原理,併針對測量中存在的入射角和入射麵方位角歧義問題,綜述瞭目前國內外消除入射角和消除入射麵方位角歧義的方法。鑒于已有算法均假定反射光線平行于偏振成像繫統的光軸,但實際應用中常常不能滿足這箇假設,為此簡單介紹瞭作者提齣的基于嚮量運算的透明物體麵形偏振成像測量方法;最後分析瞭透明物體麵形偏振成像測量進一步的研究方嚮。
무편만사광피물체반사후변위부분편진광,비열이정률천명료입사각화반사광편진도적정량관계。입사면적방위각화반사광적편진각존재90°적방위차,유차가이획득입사면적방위각。종술료투명물체면형편진성상측량적연구진전,수선개소료Lawrence B Wolff제출적반사모형급투명물체반사광류형;진일보개소료기우경면반사광편진특성적투명물체면형편진성상측량원리,병침대측량중존재적입사각화입사면방위각기의문제,종술료목전국내외소제입사각화소제입사면방위각기의적방법。감우이유산법균가정반사광선평행우편진성상계통적광축,단실제응용중상상불능만족저개가설,위차간단개소료작자제출적기우향량운산적투명물체면형편진성상측량방법;최후분석료투명물체면형편진성상측량진일보적연구방향。
A nonpolarized light, after being reflected by an object, becomes partially linearly polarized. Given the refractive index, Fresnel’s law gives the quantitative relation between degree of polarization and incident angle. The polarization angle of secularly reflected light is 90 degree from the azimuth angle of the incident plane. In this paper, we review the theory basis and algorithm of shape from polarization for transparent object. Firstly, the reflection model proposed by Lawrence B Wolff is introduced, which illustrates the reflection feature of transparent object. Then is the algorithm of shape from polarization for transparent object based on polarization of specularly reflected light. Since the azimuth angle ambiguity and zenith angle ambiguity are inherent to shape from polarization algorithm, techniques for disambiguity are reviewed respectively. Existing algorithm of shape from polarization were allestablished on the assumption that the reflected light is parallel to the optical axis of the polarimetry, which is not always satisfied in actual application. To devote this problem, the vector based algorithm by the author is briefly introduced. Finally, the future research direction is pointed out.