基于非交互式零知识证明方法的智能传感器安全访问认证机制研究

Min Guo, D. Ma, Feng Jing, Huiping Zheng, Xiaojie Liu, Penghui Liu, Yun Ju
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引用次数: 0

摘要

为了研究大电力物联网智能感知终端的标准安全访问认证机制,提出了一种区块链中广泛应用的新型隐私保护方法来证明身份。传统的电力物联网云端交互安全接入MQTT协议仍有很大的适应和优化空间。首先,提出的非交互式零知识证明身份认证方法减少了传统标准安全访问认证过程的时间;二是减少了大量智能传感器接入认证所消耗的计算资源。对比结果表明,该方法的访问认证时间比传统的安全访问认证过程缩短30% ~ 50%。与传统的安全和保密机制相比,认证过程中消耗的计算资源减少20% ~ 30%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on security access authentication mechanism of intelligent sensor based on non-interactive zero-knowledge proof method
In order to study the standard security access authentication mechanism of intelligent sensing terminals of massive power Internet of Things, In order to study the standard secure access authentication mechanism of intelligent sensing terminal of massive power Internet of Things, a new privacy protection method widely used in block chain is proposed to prove identity. The traditional power IoT cloud-side interaction security access MQTT protocol still has a lot of room for adaptation and optimization. First, the proposed non-interactive zero-knowledge proof identity authentication method reduces the time of traditional standard secure access authentication process; Second, it reduced the computing resources consumed in a large number of intelligent sensors access authentication. The comparison results show that, the access authentication time of this method is 30%∼50% less than that of the traditional secure access authentication process. The computing resources consumed during authentication are reduced by 20% to 30% compared with traditional security and secrecy mechanisms.
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