Security authentication scheme of smart home based on BFP

Xiaoyu Du, Changtao Zhang, Zhijie Han, Guanying Zhou
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Abstract

With the application of Internet of things technology, smart home is gradually changing people's lifestyle. However, IoT devices are vulnerable to attacks that leak user privacy, it leads to some security issues. In this paper, a BFP authentication scheme combining fog computing and blockchain technology is proposed, and the Paillier encryption algorithm is used to generate the key, which ensures the security and privacy of data. Finally, we compare the encryption and decryption efficiency of Paillier and RSA encryption algorithms, and evaluate and analyze them from several aspects. The results show that the proposed scheme has superior performance in terms of security, and the computational overheads of key execution is less than the traditional scheme. Under the premise of ensuring data security, the proposed scheme can effectively improve the execution efficiency of IoT devices.
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基于BFP的智能家居安全认证方案
随着物联网技术的应用,智能家居正逐渐改变着人们的生活方式。然而,物联网设备容易受到泄露用户隐私的攻击,这导致了一些安全问题。本文提出了一种雾计算与区块链技术相结合的BFP认证方案,采用Paillier加密算法生成密钥,保证了数据的安全性和隐私性。最后,比较了Paillier和RSA两种加密算法的加解密效率,并从几个方面对其进行了评价和分析。结果表明,该方案在安全性方面具有优越的性能,且密钥执行的计算开销低于传统方案。在保证数据安全的前提下,本方案可以有效提高物联网设备的执行效率。
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