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首页> 外文期刊>Transactions of the ASABE >USING MUZZLE PATTERN RECOGNITION AS A BIOMETRIC APPROACH FOR CATTLE IDENTIFICATION
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USING MUZZLE PATTERN RECOGNITION AS A BIOMETRIC APPROACH FOR CATTLE IDENTIFICATION

机译:将识别模式作为生物识别牛的生物方法

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Arising from the current need for positive identification for cattle traceability, the objective of this work was to investigate the feasibility of using muzzle pattern as a biometric-based identifier for cattle by acquiring muzzle patterns through lifted ink prints and through digital images. A three-stage matching algorithm was evaluated for scanned muzzle ink prints and performed successfully in all cases. Digital imaging of muzzles was far simpler than the ink print lifting method. For these digital images, the techniques of principal component analysis and Euclidean distance classifier were used. The algorithm training was performed independently on a different number of normalized muzzle images from 29 cattle (sets of 2, 4, 6, 8, and 10 training images per animal). The performance of this technique was assessed on a separate set of images (3 normalized muzzle images per animal). Results showed that when using 230 eigenvectors (out of 290), the recognition rate was 98.85%, and that additional eigenvectors did not improve the recognition rate. As expected, fewer principal components (less than 230) reduced the recognition rate, while a higher number of training images per animal improved it. Although the results have demonstrated the potential of muzzle pattern recognition as a non-invasive, inexpensive, and accurate biometric identifier of cattle, further research towards automation is necessitated.
机译:从当前需要对牛的可追溯性进行积极鉴定的需求出发,这项工作的目的是通过通过举起的墨水打印物和数字图像来获取枪口图样,来研究将枪口图样用作牛的基于生物特征的标识符的可行性。针对扫描的枪口墨水打印评估了三阶段匹配算法,并且在所有情况下均成功执行了该算法。枪口的数字成像比墨水打印举升方法简单得多。对于这些数字图像,使用了主成分分析和欧氏距离分类器的技术。对来自29头牛的不同数量的标准化枪口图像独立进行算法训练(每只动物2、4、6、8和10组训练图像集)。在另一套图像上评估了该技术的性能(每只动物3张标准化枪口图像)。结果表明,当使用230个特征向量(在290个特征向量中)时,识别率为98.85%,而附加特征向量并没有提高识别率。正如预期的那样,较少的主要成分(少于230个)降低了识别率,而每只动物使用的训练图像数量越多,识别率就越高。尽管结果证明了枪口模式识别作为牛的一种非侵入性,廉价且准确的生物特征识别器的潜力,但仍需要对自动化进行进一步的研究。

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