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Voice Liveness Detection for Voice Assistants using Ear Canal Pressure

机译:使用耳道压力的语音助手的语音活力检测

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With the success of voice recognition techniques, users can easily control any device in smart home environments by simply saying a voice command. Based on this idea, a new group of smart devices are designed and released, which are called voice assistant. However, the voice itself is not secure and can be attacked in many ways. To defend against various types of voice replay attacks, we present a new voice liveness detection system. The basic insight of our system is that mouth opening movements will change the space size in the ear canal, which further changes the air pressure in ear canals. In this paper, we propose solutions to detect mouth opening movements using the noisy air pressure data and match them with the voices to validate the liveness of the voice source. To evaluate the effectiveness of our system, we develop a prototype on Raspberry Pi and conduct comprehensive evaluations. Experiments with ten volunteers show that our system can accurately accept voice commands from legitimate users with an accuracy of 91.72%. Moreover, our system can effectively defend current voice assistant devices from replay attacks with an accuracy of 97.2%.
机译:随着语音识别技术的成功,通过简单地说语音命令,用户可以轻松地控制智能家庭环境中的任何设备。基于此想法,设计了一组新的智能设备,并释放,称为语音助手。但是,声音本身并不安全,并且可以以多种方式攻击。为了防御各种类型的语音重播攻击,我们提出了一种新的语音活力检测系统。我们的系统的基本洞察力是口腔开口运动将改变耳道中的空间尺寸,这进一步改变了耳道中的空气压力。在本文中,我们提出了使用嘈杂的空气压力数据检测口腔开口运动的解决方案,并将其与声音匹配以验证语音源的活力。为了评估我们的系统的有效性,我们在覆盆子PI开发原型并进行综合评估。十个志愿者的实验表明,我们的系统可以准确地接受合法用户的语音命令,精度为91.72%。此外,我们的系统可以通过97.2%的准确性有效地防御当前的语音助手设备。

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