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A novel authentication method for security systems using multidimensional characteristics of cost-effective flex sensors

机译:一种新颖的安全系统使用经济有效的Flex传感器的多维特性的认证方法

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Flex sensors are widespread in engineering and automation fields and their scope is increasing in biometrics and biomedical fields. The property exhibited by the flex sensors to change its resistance with the changes in physical flexing, can be used to construct an elementary authentication method based on the physiological characteristics of the human hand. Also, the changes in resistance can be associated with time dimension to implement a novel way of user verification based on the human hand dynamics. Inclusion of various time parameters such as rate of change of resistance or its further derivatives, along with space parameters (resistance variation) of flex sensors makes this technique reliable and unique. Furthermore, the computational needs are moderate as compared to other biometric systems or gesture recognition systems which generally use image processing and 2D/3D pattern recognition. This paper illustrates the development and testing performed for the mentioned intuitive approach which is centrally based on the uniqueness of the characteristics of the human hand. We developed a simple hand-glove mounted with flex sensors to realize the password authentication system with a modest cost of implementation. It can be used for user recognition in Human-Machine Interaction (HMI) or applied in the fields of Body Sensor Networks (BSN), biometrics, etc. This technique has potential applications as a wearable device with an advantage of being economical simultaneously.
机译:Flex传感器在工程和自动化领域普遍存在,其范围在生物识别和生物医学领域增加。柔性传感器展出的属性以改变其具有物理弯曲变化的电阻,可用于构建基于人手的生理特性的基本认证方法。而且,电阻的变化可以与时间尺寸相关联,以实现基于人类的手动动态的新颖用户验证方式。包含各种时间参数,例如电阻变化或其进一步的衍生物,以及柔性传感器的空间参数(电阻变化)使得该技术可靠且独特。此外,与通常使用图像处理和2D / 3D模式识别的其他生物识别系统或手势识别系统相比,计算需求是中等的。本文说明了对所提到的直观方法进行的开发和测试,其基于人手特征的唯一性。我们开发了一个安装有Flex传感器的简单手套,以实现具有适度实施成本的密码认证系统。它可以用于人机交互(HMI)中的用户识别或应用于身体传感器网络(BSN),生物识别技术等领域。该技术具有作为可穿戴设备的潜在应用,其优点是同时经济。

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