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Analysis of double random phase encryption from a key-space perspective

机译:从密钥空间角度分析双随机相位加密

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摘要

The main advantage of the double random phase encryption technique is its physical implementation however to allow us to analyse its behaviour we perform the encryption/decryption numerically. A typically strong encryption scheme will have an extremely large key-space, which will make the probable success of any brute force attack on that algorithm miniscule. Traditionally, designers of optical image encryption systems only demonstrate how a small number of arbitrary keys cannot decrypt a chosen encrypted image in their system. We analyse this algorithm from a key-space perspective. The key-space of an encryption algorithm can be defined as the set of possible keys that can be used to encode data using that algorithm. For a range of problem instances we plot the distribution of decryption errors in the key-space indicating the lack of feasibility of a simple brute force attack.
机译:双随机相位加密技术的主要优点是其物理实现,但是为了让我们分析其行为,我们以数字方式执行了加密/解密。典型的强加密方案将具有非常大的密钥空间,这将使对该算法进行任何蛮力攻击的成功都微乎其微。传统上,光学图像加密系统的设计人员仅演示如何少量的任意密钥无法在其系统中解密所选的加密图像。我们从密钥空间的角度分析此算法。可以将加密算法的密钥空间定义为可用于使用该算法对数据进行编码的一组可能的密钥。对于一系列问题实例,我们绘制了密钥空间中解密错误的分布图,表明缺乏简单暴力攻击的可行性。

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