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Two-way real time multimedia stream authentication using physical unclonable functions

机译:使用物理不可克隆功能的双向实时多媒体流认证

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Multimedia authentication is an integral part of multimedia signal processing in many real-time and security sensitive applications, such as video surveillance. In such applications, a full-fledged video digital rights management (DRM) mechanism is not applicable due to the real time requirement and the difficulties in incorporating complicated license/key management strategies. This paper investigates the potential of multimedia authentication from a brand new angle by employing hardware-based security primitives, such as physical unclonable functions (PUFs). We show that the hardware security approach is not only capable of accomplishing the authentication for both the hardware device and the multimedia stream but, more importantly, introduce minimum performance, resource, and power overhead. We justify our approach using a prototype PUF implementation on Xilinx FPGA boards. Our experimental results on the real hardware demonstrate the high security and low overhead in multimedia authentication obtained by using hardware security approaches.
机译:在许多实时和安全敏感的应用程序(例如视频监视)中,多媒体身份验证是多媒体信号处理的组成部分。在这样的应用中,由于实时性要求以及合并复杂的许可证/密钥管理策略的困难,因此无法使用成熟的视频数字版权管理(DRM)机制。本文通过采用基于硬件的安全性原语,例如物理不可克隆功能(PUF),从一个全新的角度研究了多媒体身份验证的潜力。我们表明,硬件安全性方法不仅能够完成对硬件设备和多媒体流的身份验证,而且更重要的是,它会引入最低的性能,资源和功耗。我们使用Xilinx FPGA板上的原型PUF实现来证明我们的方法是正确的。我们在真实硬件上的实验结果表明,使用硬件安全性方法获得的多媒体身份验证具有很高的安全性和较低的开销。

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