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Identification of Human Faces using Orthogonal Locality Preserving Projections

机译:使用正交地区保存投影识别人面

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This paper presents a technique for identification of human faces using an algorithm based on Orthogonal Locality Preserving Projections (OLPP). It differs from Principal Component Analysis (PCA) and Linear Discriminant Analysis (LDA), which preserves the Euclidean structure of face space. Locality Preserving Projections (LPP) finds an embedding that preserves local information, and obtains a face subspace that best detects the essential manifold structure. Locality Preserving Projections (LPP) is non-orthogonal, and this makes it difficult to reconstruct the data. This problem is overcome by using Orthogonal Locality Preserving Projection method which produces orthogonal basis functions and can have more locality preserving power than LPP. Since the locality preserving power is potentially related to the discriminating power, the OLPP is expected to have more discriminating power than LPP. This approach, builds an adjacency graph which best reflects the geometry of the face manifold and the class relationship between various points. The projection is then obtained by preserving such graph structure which forms the Orthogonal Laplacianface. In this way, the unwanted variations resulting from changes in lighting, facial expression and poses are reduced.
机译:本文介绍了一种使用基于正交局部保留投影(OLPP)的算法来识别人面的技术。它与主成分分析(PCA)和线性判别分析(LDA)不同,这保留了面部空间的欧几里德结构。定位保存投影(LPP)找到保留本地信息的嵌入,并获得最能检测到基本歧管结构的面子空间。位置保存投影(LPP)是非正交的,这使得难以重建数据。通过使用产生正交基本函数的正交地点保留投影方法来克服该问题,该投影方法可以具有比LPP更多的位置保存功率。由于定位功率可能与辨别力有可能相关,因此预期OLPP比LPP具有更高的辨别力。这种方法,建立一个邻接图,该图最能反射面部歧管的几何形状和各个点之间的类关系。然后通过保留形成正交拉普拉斯面的曲线结构来获得突起。以这种方式,减少了由照明,面部表情和姿势的变化产生的不需要变化。

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