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Velocity and pressure-based partitions of horizontal and vertical trajectories for on-line signature verification

机译:基于速度和压力的水平和垂直轨迹分区,用于在线签名验证

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摘要

In general, shape of an on-line signature is used as a single discriminating feature. Sometimes shape of signature is used alone for verification purposes and sometimes it is used in combination with some other dynamic features such as velocity, pressure and acceleration. The shape of an on-line signature is basically formed due to the wrist and fingers movements where the wrist movement is represented by the horizontal trajectory and the movement of the fingers is represented by vertical trajectory. As the on-line signature is formed due to the combination of two movements that are essentially independent of each other, it will be more effective to use them as two separate discriminating features. Based on this observation, we propose to use these trajectories in isolation by first decomposing the pressure and velocity profiles into two partitions and then extracting the underlying horizontal and vertical trajectories. So the overall process can be thought as the process which exploits the inter-eature dependencies by decomposing signature trajectories depending upon pressure and velocity information and performs verification on each partition separately. As a result, we are able to extract eight discriminating features and among them the most stable discriminating feature is used in verification process. Further Principal Component Analysis (PCA) has been proposed to make the signatures rotation invariant. Experimental results demonstrate superiority of our approach in on-line signature verification in comparison with other techniques.
机译:通常,将在线签名的形状用作单个区分特征。有时签名的形状单独用于验证目的,有时与某些其他动态特征(例如速度,压力和加速度)结合使用。在线签名的形状基本上是由于腕部和手指的运动而形成的,其中腕部的运动由水平轨迹表示,而手指的运动由垂直轨迹表示。由于在线签名是由于两个彼此基本独立的运动的组合而形成的,因此将它们用作两个单独的区分特征将更为有效。基于此观察结果,我们建议通过首先将压力和速度曲线分解为两个分区,然后提取基本的水平和垂直轨迹来孤立地使用这些轨迹。因此,整个过程可以被认为是这样一种过程:该过程通过根据压力和速度信息分解签名轨迹来利用自然界的依存关系,并对每个分区分别进行验证。结果,我们能够提取八个区分特征,其中最稳定的区分特征用于验证过程。已提出进一步的主成分分析(PCA),以使签名旋转不变。实验结果表明,与其他技术相比,我们的方法在在线签名验证中具有优势。

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