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Distinctive accuracy measurement of binary descriptors in mobile augmented reality

机译:移动增强现实中二元描述符的独特精度测量

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摘要

Mobile Augmented Reality (MAR) requires a descriptor that is robust to changes in viewing conditions in real time application. Many different descriptors had been proposed in the literature for example floating-point descriptors (SIFT and SURF) and binary descriptors (BRIEF, ORB, BRISK and FREAK). According to literature, floating-point descriptors are not suitable for real-time application because its operating speed does not satisfy real-time constraints. Binary descriptors have been developed with compact sizes and lower computation requirements. However, it is unclear which binary descriptors are more appropriate for MAR. Hence, a distinctive and efficient accuracy measurement of four state-of-the-art binary descriptors, namely, BRIEF, ORB, BRISK and FREAK were performed using the Mikolajczyk dataset and ALOI dataset to identify the most appropriate descriptor for MAR in terms of computation time and robustness to brightness, scale and rotation changes. The obtained results showed that FREAK is the most appropriate descriptor for MAR application as it able to produce an application that are efficient (shortest computation time) and robust towards scale, rotation and brightness changes.
机译:移动增强现实(MAR)需要一个描述符,该描述符在实时应用中的查看条件中更改。在文献中提出了许多不同的描述符,例如浮点描述符(SIFT和SURF)和二进制描述符(简短,ORB,SHRISK和FREAK)。根据文献,浮点描述符不适合实时应用,因为其操作速度不满足实时约束。二进制描述符已经开发了紧凑的尺寸和较低的计算要求。但是,目前尚不清楚哪些二进制描述符更适合于MAR。因此,一个独特的和有效的精度测量四状态的最先进的二进制描述符,即,简单地说,ORB,轻快FREAK使用的米科瓦伊奇克数据集执行与阿洛伊数据集,以确定在计算方面对MAR最适当的描述符亮度,尺度和旋转变化的时间和鲁棒性。所获得的结果表明,Freak是MAR应用的最合适的描述符,因为它能够产生高效(最短计算时间)和稳定性,旋转和亮度变化的应用程序。

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