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Error-reduction techniques and error analysis for fully phase- and amplitude-based encryption

机译:完全基于相位和幅度的加密的错误减少技术和错误分析

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摘要

The performance of fully phase- and amplitude-based encryption processors is analyzed. The effects of noise perturbations on the encrypted information are considered. A thresholding method of decryption that further reduces the mean-squared error (MSE) for the fully phase-and amplitude-based encryption processes is provided. The proposed thresholding scheme significantly improves the performance of fully phase- and amplitude-based encryption, as measured by the MSE metric. We obtain analytical MSE bounds when thresholding is used for both decryption methods, and we also present computer-simulation results. These results show that the fully phase-based method is more robust. We also give a formal proof of a conjecture about the decrypted distribution of distorted encrypted information. This allows the analytical bounds of the MSE to be extended to more general non-Gaussian, nonadditive, nonstationary distortions. Computer simulations support this extension.
机译:分析了完全基于相位和幅度的加密处理器的性能。考虑了噪声扰动对加密信息的影响。提供了解密的阈值方法,该方法进一步减小了基于完全基于相位和幅度的加密过程的均方误差(MSE)。提出的阈值方案显着提高了基于MSE度量标准的完全基于相位和幅度的加密性能。当两种解密方法都使用阈值时,我们可以获得MSE的解析边界,并且我们还提供了计算机模拟结果。这些结果表明,完全基于相位的方法更加健壮。我们还给出了关于失真加密信息的解密分布的猜想的形式证明。这使得MSE的分析范围可以扩展到更一般的非高斯,非加性,非平稳变形。计算机仿真支持此扩展。

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