首页> 外文期刊>Internet of Things Journal, IEEE > src='/images/tex/21465.gif' alt='{ssr{PriWhisper}}'> : Enabling Keyless Secure Acoustic Communication for Smartphones
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src='/images/tex/21465.gif' alt='{ssr{PriWhisper}}'> : Enabling Keyless Secure Acoustic Communication for Smartphones

机译: src =“ / images / tex / 21465.gif” alt =“ {ssr {PriWhisper}}”> :为智能手机启用无密钥安全声学通信

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摘要

Short-range wireless communication technologies have been used in many security-sensitive smartphone applications and services such as contactless micro payment and device pairing. Typically, the data confidentiality of the existing short-range communication systems relies on so-called “key-exchange then encryption” mechanism, which is inefficient, especially for short communication sessions. In this work, we present PriWhisper-a keyless secure acoustic short-range communication system for smartphones. It is designed to provide a software-based solution to secure smartphone communication without the key agreement phase. PriWhisper adopts the emerging friendly jamming technique from radio communication for data confidentiality. The system prototype is implemented and evaluated on several Android smartphone platforms for efficiency and usability. We theoretically and experimentally analyze the security of our proposed acoustic communication system against eavesdropping. In particular, we study the (in)separability of the data signal and jamming signal against blind signal segmentation (BSS) attacks such as independent component analysis (ICA). The result shows that PriWhisper provides sufficient security guarantees for commercial smartphone applications and yet strong compatibilities with most legacy smartphone platforms. As an application, we also develop AcousAuth-a novel smart phone-empowered system for personal authentication.
机译:短程无线通信技术已用于许多对安全性敏感的智能手机应用程序和服务中,例如非接触式微支付和设备配对。通常,现有短距离通信系统的数据机密性依赖于所谓的“先密钥交换然后加密”机制,这种机制效率低下,尤其是对于短通信会话而言。在这项工作中,我们介绍了PriWhisper-一种用于智能手机的无密钥安全声学短距离通信系统。它旨在提供基于软件的解决方案来保护智能手机通信,而无需密钥协商阶段。 PriWhisper采用无线电通信中新兴的友好干扰技术来确保数据机密性。系统原型已在多个Android智能手机平台上实施和评估,以提高效率和可用性。我们在理论上和实验上分析了我们提出的声音通信系统针对窃听的安全性。特别是,我们研究了数据信号和干扰信号在(盲)信号分割(BSS)攻击(例如独立成分分析(ICA))方面的(不可分离性)。结果表明,PriWhisper为商业智能手机应用程序提供了足够的安全保证,并且与大多数传统智能手机平台具有很强的兼容性。作为应用程序,我们还开发了AcousAuth-一种用于个人身份验证的新型智能电话系统。

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