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Authentication Based on Non-Interactive Zero-Knowledge Proofs for the Internet of Things

机译:基于非交互式零知识证明的物联网认证

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This paper describes the design and analysis of a new scheme for the authenticated exchange of confidential information in insecure environments within the Internet of Things, which allows a receiver of a message to authenticate the sender and compute a secret key shared with it. The proposal is based on the concept of a non-interactive zero-knowledge proof, so that in a single communication, relevant data may be inferred to verify the legitimacy of the sender. Besides, the new scheme uses the idea under the Diffie–Hellman protocol for the establishment of a shared secret key. The proposal has been fully developed for platforms built on the Android Open Source Project, so it can be used in any device or sensor with this operating system. This work provides a performance study of the implementation and a comparison between its promising results and others obtained with similar schemes.
机译:本文介绍了一种新方案的设计和分析,该方案用于在物联网中不安全的环境中对机密信息进行身份验证交换,该方案允许消息的接收方对发送方进行身份验证并计算与之共享的秘密密钥。该提议基于非交互式零知识证明的概念,因此可以在单次通信中推断相关数据以验证发送方的合法性。此外,新方案使用Diffie-Hellman协议下的想法来建立共享密钥。该提案已针对基于Android开源项目构建的平台进行了全面开发,因此可以在带有该操作系统的任何设备或传感器中使用。这项工作提供了对实现的性能研究,并将其有希望的结果与通过类似方案获得的其他结果进行了比较。

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