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A robust algorithm for distorted pupil localization based on Ellipse Difference and PSO

机译:一种基于椭圆差和PSO的扭曲瞳孔定位的强大算法

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摘要

Pupil localization is the key step of eye tracking, which directly affecting the precision of eye tracking. Through the process of eye tracking, the shape of pupil is usually distorted, leading to the invalidation of traditional algorithm based on circle localization. Moreover, current algorithms of distorted pupil localization are easily interfered by eyelid and faculae. To solve these problems, this paper raised an operator of Ellipse Difference (ED) to avoid the interference of eyelid and faculae. Meanwhile, to overcome the difficulty of ED operator's high order of complexity, this paper associated the algorithm of Particle Swarm Optimization (PSO) with ED to realize fast pupil localization. The experimental results have demonstrated ED-PSO is more robust than current algorithms and can realize real time processing, which has been applied into real eye tracking system.
机译:学生本地化是眼睛跟踪的关键步骤,直接影响了眼睛跟踪的精度。通过眼睛跟踪的过程,瞳孔的形状通常扭曲,导致基于圆定位的传统算法的无效。此外,通过眼睑和投影容易干扰扭曲的瞳孔定位的当前算法。为了解决这些问题,本文提出了椭圆形差(ED)的操作员,以避免眼睑和Faculae的干扰。同时,为了克服ED运营商的复杂性大的困难,本文将粒子群优化(PSO)与ED相关联,以实现快速瞳孔定位。实验结果已经证明ED-PSO比当前算法更强大,并且可以实现实时处理,该实时处理已应用于真实的眼睛跟踪系统。

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