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Tracking and modeling human iris surface deformation

机译:跟踪和建模人虹膜表面变形

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Iris biometric system is widely used in various authentication applications. Further improvements in iris recognition can be achieved by diminishing error rate caused by deformation of iris patterns during changes in size of the pupil. This paper investigates deformation of iris patterns by tracking iris features using Local Binary Pattern and Elastic Graph Matching techniques. Texture of 31 irises from two databases have been tracked and analyzed. Our experiments indicate that iris surface deformation can be modeled by linear equations. The linear prediction offers the maximum summation of squared error, equals to 0.11. However, the iris surface deforms non-uniformly. The iris near to pupillary margins deforms significantly in comparison to one close the iris root. Therefore, compensation of the iris surface deformation should be performed locally.
机译:虹膜生物识别系统广泛用于各种认证应用中。通过在瞳孔尺寸的变化期间通过虹膜图案变形引起的误差率来实现虹膜识别的进一步改进。本文通过使用局部二进制图案和弹性图形匹配技术跟踪IRIS功能来调查光圈模式的变形。已经跟踪并分析了来自两个数据库的31个鸢尾花的纹理。我们的实验表明,虹膜表面变形可以通过线性方程进行建模。线性预测提供了平方误差的最大求和,等于0.11。然而,虹膜表面不均匀地变形。与一个闭合虹膜根部相比,靠近瞳孔边缘的虹膜明显变形。因此,应在本地进行虹膜表面变形的补偿。

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