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A multimodal technique for an embedded fingerprint recognizer in mobile payment systems

机译:移动支付系统中嵌入式指纹识别器的多模式技术

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摘要

The development and the diffusion of distributed systems, directly connected to recent communication technologies, move people towards the era of mobile and ubiquitous systems. Distributed systems make merchant-customer relationships closer and more flexible, using reliable e-commerce technologies. These systems and environments need many distributed access points, for the creation and management of secure identities and for the secure recognition of users. Traditionally, these access points can be made possible by a software system with a main central server. This work proposes the study and implementation of a multimodal technique, based on biometric information, for identity management and personal ubiquitous authentication. The multimodal technique uses both fingerprint micro features (minutiae) and fingerprint macro features (singularity points) for robust user authentication. To strengthen the security level of electronic payment systems, an embedded hardware prototype has been also created: acting as self-contained sensors, it performs the entire authentication process on the same device, so that all critical information (e.g. biometric data, account transactions and cryptographic keys), are managed and stored inside the sensor, without any data transmission. The sensor has been prototyped using the Celoxica RC203E board, achieving fast execution time, low working frequency, and good recognition performance.
机译:直接连接到最新通信技术的分布式系统的发展和扩散使人们迈向移动和无处不在的系统时代。分布式系统使用可靠的电子商务技术使商家与客户的关系更紧密,更灵活。这些系统和环境需要许多分布式访问点,用于创建和管理安全身份以及对用户的安全识别。传统上,这些访问点可以通过带有主中央服务器的软件系统来实现。这项工作提出了一种基于生物特征信息的多模式技术的研究和实现,用于身份管理和个人无处不在的身份验证。多模式技术使用指纹微特征(细节)和指纹宏特征(奇异点)来进行可靠的用户身份验证。为了增强电子支付系统的安全级别,还创建了一个嵌入式硬件原型:作为独立传感器,它在同一设备上执行整个身份验证过程,以便所有关键信息(例如生物识别数据,帐户交易和加密密钥)被管理并存储在传感器内部,而无需任何数据传输。该传感器已使用Celoxica RC203E板进行原型制作,实现了快速执行时间,低工作频率和良好的识别性能。

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