鲁棒图像密码学中具有完全前向保密性的双随机相位编码方案

IF 1.6 Q3 OPTICS OSA Continuum Pub Date : 2021-08-15 DOI:10.1364/osac.426537
Inkyu Moon, Youhyun Kim, Samaneh Gholami, Ongee Jeong
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引用次数: 0

摘要

数字密码系统可以为基于Diffie-Hellman (DH)方案的密钥交换协议提供完美的前向保密(PFS)。然而,密钥交换算法的优化设计仅用于编码小数据集,如文本和语音集,这使得快速处理大规模数据集变得困难。在本文中,我们提出了新的方案,可以有效和安全地提供PFS的双随机相位编码(DRPE)方案,用于鲁棒图像加密。我们证明了采用随机相位掩模(RPM)和瞬态秘密指数融合的DH算法的复正弦波形版本可以保证PFS。不同的实验结果表明,所提出的方案可以使用一次性RPM和PFS来提高基于drpe的图像密码系统的安全性。我们还提出了一种环型PFS方案,其中无限数量的用户可以安全地共享一个临时会话密钥,这是PFS的扩展,只有两个用户。给出了方案的形式化证明,并通过数值模拟证明了方案的可行性。
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Double random phase encoding schemes with perfect forward secrecy for robust image cryptography
Digital cryptosystems can provide perfect forward secrecy (PFS) for key exchange protocols based on the Diffie–Hellman (DH) scheme. However, key exchange algorithms are optimally designed only to encode small datasets, such as text and voice sets, which makes rapidly processing large-scale datasets difficult. In this paper, we propose new schemes that can efficiently and securely provide PFS in double random phase encoding (DRPE) schemes for robust image cryptography. We demonstrate that the proposed complex sinusoidal waveform versions of the DH algorithm with fusion of a random phase mask (RPM) and ephemeral secret exponents can guarantee PFS. Different experimental results reveal that the proposed schemes can enhance the security of DRPE-based image cryptosystems using a one-time RPM and PFS. We also propose a ring-type PFS scheme in which an unlimited number of users can securely share a temporary session key, which is an extension of PFS for only two users. We provide formal proof for the schemes and prove feasibility through numerical simulations.
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来源期刊
OSA Continuum
OSA Continuum OPTICS-
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审稿时长
12 weeks
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