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A model-based approach for compression of fingerprint images

机译:基于模型的指纹图像压缩方法

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We propose a new fingerprint image compression scheme based on the hybrid model of an image. Our scheme uses the essential steps of a typical automated fingerprint identification system (AFIS) such as enhancement, binarization and thinning to encode fingerprint images. The decoding process is based on reconstructing a hybrid surface by using the gray values on ridges and valleys. In this compression scheme, the ridge skeleton is coded efficiently by using differential chain codes. The valley skeleton is derived from the ridge skeleton and the gray values along the ridge and valley skeletons are encoded using the discrete cosine transform. The error between the original and the replica is also encoded to increase the quality. One advantage of our approach is that original features such as end points and bifurcation points can be extracted directly from compressed image even for a very high compression ratio. Another advantage is that the proposed scheme can be integrated to a typical AFIS easily. The algorithm has been applied to various fingerprint images, and high compression ratios like 63:1 have been obtained. A comparison to wavelet/scalar quantization (WSQ) has been also made.
机译:我们提出了一种基于图像混合模型的新指纹图像压缩方案。我们的方案使用典型的自动指纹识别系统(AFIS)的基本步骤,例如增强,二值化和细化来对指纹图像进行编码。解码过程基于通过使用山脊和山脊上的灰度值来重建混合曲面。在该压缩方案中,通过使用差分链码来有效地对脊骨架进行编码。谷底骨骼从山脊骨骼派生而来,使用离散余弦变换对沿山脊骨骼和谷底骨骼的灰度值进行编码。原始和副本之间的错误也被编码以提高质量。我们方法的优点之一是,即使压缩率非常高,也可以直接从压缩图像中提取出诸如端点和分叉点之类的原始特征。另一个优点是,所提出的方案可以容易地集成到典型的AFIS中。该算法已应用于各种指纹图像,并且获得了63:1之类的高压缩率。还与小波/标量量化(WSQ)进行了比较。

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