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An MFCC-based text-independent speaker identification system for access control

机译:基于MFCC的独立于文本的说话人识别系统,用于访问控制

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In recent years, by merit of convenient and unique features, bio-authentication techniques have been applied to identify and authenticate a person based on his/her spoken words and/or sentences. Among these techniques, speaker recognition/identification is the most convenient one, providing a secure and strong authentication solution viable for a wide range of applications. In this paper, to safeguard real-world objects, like buildings, we develop a speaker identification system named mel frequency cepstral coefficients (MFCC)-based speaker identification system for access control (MSIAC for short), which identifies a speaker U by first collecting U's voice signals and converting the signals to frequency domain. An MFCC-based human auditory filtering model is utilized to adjust the energy levels of different frequencies as U's voice quantified features. Next, a Gaussian mixture model is employed to represent the distribution of the logarithmic features as U's specific acoustic model. When a person, eg, x, would like to access a real-world object protected by the MSIAC, x's acoustic model is compared with known-people's acoustic models. Based on the identification result, the MSIAC will determine whether the access will be accepted or denied.
机译:近年来,凭借便利和独特特征的优点,生物认证技术已被应用于基于人的口语和/或句子来识别和认证人。在这些技术中,说话者识别/识别是最方便的一种,它提供了适用于广泛应用的安全而强大的身份验证解决方案。在本文中,为了保护诸如建筑物之类的现实世界的物体,我们开发了一种基于身份识别的系统,该系统称为基于梅尔倒谱系数(MFCC)的用于门禁控制的扬声器识别系统(简称MSIAC),该系统首先通过收集来识别扬声器U U的语音信号并将其转换为频域。基于MFCC的人耳听觉滤波模型被用来调整不同频率的能量水平,作为U语音的量化特征。接下来,采用高斯混合模型将对数特征的分布表示为U的特定声学模型。当某人(例如x)想要访问受MSIAC保护的现实世界对象时,会将x的声学模型与已知人员的声学模型进行比较。根据识别结果,MSIAC将确定访问是被接受还是被拒绝。

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