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A Novel Scheme for Sweat-Pore Extraction Performance Evaluation on Multi-Core

机译:多核的出汗孔隙提取和性能评估的一种新颖方案

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This paper presents a novel scheme for the detection and extraction of sweat pores (categorized as one of the fingerprint level 3 micro features). The proposed scheme seamlessly fuses two distinct methods into a novel model capable of obtaining good results from fingerprint images captured through optical live-scan devices with resolutions ranging from basic 500 dpi (despite the common belief that images obtained at this resolution are not of high enough quality) to 2000ppi. The performance of the presented model is then evaluated over multiple cores, spanning from single core to quad cores. The proposed scheme is successfully tested on publicly available fingerprint datasets, which were scanned with Cross Match Verifier 300 scanner at 500 dpi (pores are quite visible in these samples), as well as on 144 images at 2000ppi resolution. The experimental results clearly show a significant performance gain of 50.91% (32-bit platform) and 79.11% (64-bit platform) for parallelized approach over sequential approach. The performance gain is surely to increase further with few more code optimizations and with increase in the dataset size.
机译:本文介绍了一种用于检测和提取汗毛孔的新颖方案(分类为指纹3级微观特征之一)。该方案将两个不同的方法无缝地熔化到一种新型模型中,该模型能够通过光学实时扫描设备捕获的指纹图像获得良好的结果,其中包含从基本500 dpi的分辨率(尽管在该分辨率上获得的图像不够高质量)至2000ppi。然后在多个核心上评估所提出的模型的性能,从单核跨越四核。所提出的方案在公开的指纹数据集上成功进行了测试,该数据集将以交叉匹配的验证器300扫描仪在500 dpi(这些样本在这些样本中非常可见),以及以2000ppi分辨率的144个图像。实验结果明显显示出50.91%(32位平台)和79.11%(64位平台)的显着性能增益,用于通过顺序方法并行方法。性能增益肯定会进一步增加更多的代码优化,并且增加数据集大小。

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