一种利用生物特征密钥保证数据安全的有效混合加密模型

S. Arumugam
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引用次数: 0

摘要

随着网络犯罪利用系统弱点,网络安全在许多应用中成为一个关键问题。密码学使用密码或令牌帮助保护日常交易和通信中的敏感数据。然而,加密/解密算法的能力总是取决于它们在任何情况下保护数据的能力。本文提出了一种有效的混合加解密模型,该模型利用生物特征密钥和有效密码来保证数据的安全性。所提出的模型中使用的生物识别密钥是从指纹生成的,指纹是个体的唯一物理特征。模型首先对要安全传输的数据进行编码。利用生物识别密钥的对称密钥加密应用于编码的数据。另一层防御是通过对加密数据和指纹细节应用非对称密钥加密来构建的。对称加密和非对称加密采用AES (Advanced Encryption Standard)算法和E3C2 (Elgamal Encryption using ellipmcurve Cryptography)算法。实验分析了该模型的计算速度和安全性,并与现有模型和编码/加密技术进行了比较
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Effective Hybrid Encryption Model using Biometric Key for Ensuring Data Security
Cybersecurity becomes a key concern in many applications as cybercrimes exploit system weaknesses. Cryptography helps protect sensitive data in everyday transactions and communications using passwords or tokens. However, the power of the encryption/decryption algorithms always depends on their ability to secure the data in any situation. This paper presents an effective hybrid encryption/decryption model that makes use of a biometric key along with an effective password to ensure data security. The biometric key utilised in the proposed model is generated from the fingerprint, which is a unique physical characteristic of an individual. The model initially encodes the data to be securely transmitted. The symmetric key encryption that makes use of a biometric key is applied over the encoded data. Another layer of defence is built by applying asymmetric key encryption to the encrypted data along with the details of the fingerprint. The Advanced Encryption Standard (AES) algorithm and Elgamal Encryption using Elliptical Curve Cryptography (E3C2) are used for symmetric and asymmetric encryptions. Experimental analysis is performed to analyse the model's computing speed and security and is compared with existing models and encoding/encryption techniques
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