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Security system using biometric technology: Design and implementation of voice recognition system (VRS)

机译:使用生物识别技术的安全系统:语音识别系统(VRS)的设计和实现

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摘要

Biometric technology is fast gaining popularity as means of security measures to reduce cases of fraud and theft due to its use of physical characteristics and traits for the identification of individuals. The earliest methods of biometric identification included fingerprint and handwriting while more recent ones include iris/eye scan, face scan, voice print, and hand print. Biometric voice recognition and identification technology focuses on training the system to recognize an individual's unique voice characteristics (i.e., their voice print). The technology lends itself well to a variety of uses and applications, including security access control for cell phones (to eliminate cell phone fraud), ATM manufacturers (to eliminate pin # fraud) and automobile manufacturers (to dramatically reduce theft and carjacking). In this paper, we present an implementation of a security system based on voice identification as the access control key. Verification algorithm is developed using MATLAB (SIMULINK) function blocks which is capable of authenticating a person's identity by his or her voice pattern. A voice match will produce logic '1' while a mismatch, logic '0'. A microcontroller circuit controlling access to a door is built to test the reliability of this voice controlled security system. It is found out that the developed voice recognition software has successfully activated the door opening mechanism using a voice command that ONLY works for the authenticated individual. The system is proven to be able to provide medium-security access control and also has an adjustable security level setting to account for the variations in one's voice each time a voice identification occurs.
机译:由于生物特征识别技术利用物理特征和特征来识别个人身份,因此作为一种安全措施来减少欺诈和盗窃案件正在迅速普及。生物特征识别的最早方法包括指纹和手写,而最近的方法包括虹膜/眼睛扫描,面部扫描,语音打印和手印。生物识别语音识别和识别技术着重于训练系统以识别个人的独特语音特征(即他们的语音记录)。该技术非常适合多种用途和应用,包括手机的安全访问控制(以消除手机欺诈),ATM制造商(以消除销号欺诈)和汽车制造商(以大大减少盗窃和劫车行为)。在本文中,我们提出了一种基于语音识别作为访问控制密钥的安全系统的实现。验证算法是使用MATLAB(SIMULINK)功能块开发的,该功能块能够通过人的语音模式来验证其身份。语音匹配将产生逻辑“ 1”,而不匹配则产生逻辑“ 0”。内置了控制进入门的微控制器电路,以测试该语音控制安全系统的可靠性。结果发现,开发的语音识别软件已经使用仅适用于经过身份验证的个人的语音命令成功激活了开门机构。事实证明,该系统能够提供中等安全性的访问控制,并且具有可调整的安全级别设置,以解决每次语音识别出现时语音变化的问题。

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