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Fast Face-Recognition Optical Parallel Correlator Using High Accuracy Correlation Filter

机译:使用高精度相关滤波器的快速人脸识别光学并行相关器

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摘要

We designed and fabricated a fully automatic fast face recognition optical parallel correlator [E. Watanabe and K. Kodate: Appl. Opt. 44 (2005) 5666] based on the VanderLugt principle. The implementation of an as-yet unattained ultra high-speed system was aided by reconfiguring the system to make it suitable for easier parallel processing, as well as by composing a higher accuracy correlation filter and high-speed ferroelectric liquid crystal-spatial light modulator (FLC-SLM). In running trial experiments using this system (dubbed FARCO), we succeeded in acquiring remarkably low error rates of 1.3% for false match rate (FMR) and 2.6% for false non-match rate (FNMR). Given the results of our experiments, the aim of this paper is to examine methods of designing correlation filters and arranging database image arrays for even faster parallel correlation, underlining the issues of calculation technique, quantization bit rate, pixel size and shift from optical axis. The correlation filter has proved its excellent performance and higher precision than classical correlation and joint transform correlator (JTC). Moreover, arrangement of multi-object reference images leads to 10-channel correlation signals, as sharply marked as those of a single channel. This experiment result demonstrates great potential for achieving the process speed of 10000 face/s.
机译:我们设计并制造了一种全自动的快速人脸识别光学并行相关器[E.渡边和K. Kodate:应用。选择。 44(2005)5666]基于范德卢格原则。尚未实现的超高速系统的实现是通过重新配置系统使其适合于更容易的并行处理,以及通过组合更高精度的相关滤波器和高速铁电液晶空间光调制器( FLC-SLM)。在使用该系统(称为FARCO)进行的运行试验中,我们成功地获得了极低的错误率,错误匹配率(FMR)为1.3%,错误不匹配率(FNMR)为2.6%。鉴于我们的实验结果,本文的目的是研究设计相关滤波器和安排数据库图像阵列以实现更快的并行相关性的方法,强调了计算技术,量化比特率,像素大小和从光轴偏移的问题。与经典相关和联合变换相关器(JTC)相比,相关滤波器已证明其出色的性能和更高的精度。此外,多对象参考图像的排列会导致10通道相关信号,就像单通道的信号一样清晰地标记出来。该实验结果证明了实现10000个face / s的处理速度的巨大潜力。

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