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Performance of gait authentication using an acceleration sensor

机译:使用加速度传感器的步态认证性能

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ICT and MEMS technology are becoming mature enough to raise interest in wearable sensors for creating various sensor-based services. This paper introduces a gait authentication method, a kind of biometric authentication, based on wearable sensors. Gait movement is both unique and unavoidable in everyday life. The pattern of acceleration values created by walking differs from one person to another. Therefore, we expect various new services can be created based on the gait data obtained by wearable sensors on a daily basis. We capture gait data from a wearable sensor and analyze personal gait characteristics on the basis of the data obtained. Each subject placed a wearable sensor on the ankle of the right foot. We propose and evaluate an authentication algorithm. The authentication algorithm must converge on the attributes that allow for reliable discrimination. Therefore, our authentication algorithm uses the traveling acceleration at the swing phase. Results confirm that setting the threshold value to 1700 yielded EER of 20%
机译:ICT和MEMS技术正变得足够成熟,以提高穿戴传感器的兴趣,以创造各种基于传感器的服务。本文介绍了一种基于可穿戴传感器的步态认证方法,一种生物认证。步态运动在日常生活中都是独一无二的和不可避免的。行走产生的加速度值与一个人不同于另一个人。因此,我们期望根据每天通过可穿戴传感器获得的步态数据来创建各种新服务。我们从可穿戴传感器捕获步态数据,并根据所获得的数据分析个人步态特性。每个受试者放置在右脚脚踝上的可穿戴传感器。我们提出并评估了认证算法。身份验证算法必须在允许可靠辨别的属性上收敛。因此,我们的认证算法使用摆动阶段的行驶加速度。结果确认将阈值设置为1700,产生20%的eer

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