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Neural Cryptography Based on the Topology Evolving Neural Networks

机译:基于拓扑神经网络的神经密码学

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Modern cryptographic schemes is developed based on the mathematical theory. Recently works show a new direction about cryptography based on the neural networks. Instead of learning a specific algorithm, a cryptographic scheme is generated automatically. While one kind of neural network is used to achieve the scheme, the idea of the neural cryptography can be realized by other neural network architecture is unknown. In this paper, we make use of this property to create neural cryptography scheme on a new topology evolving neural network architecture called Spectrum-diverse unified neuroevolution architecture. First, experiments are conducted to verify that Spectrum-diverse unified neuroevolution architecture is able to achieve automatic encryption and decryption. Subsequently, we do experiments to achieve the neural symmetric cryptosystem by using adversarial training.
机译:现代加密方案是基于数学理论开发的。最近有效地显示了基于神经网络的加密的新方向。而不是学习特定算法,自动生成加密方案。虽然使用一种神经网络来实现该方案,但是可以通过其他神经网络架构实现神经密码学的想法是未知的。在本文中,我们利用此属性在演变神经网络架构的新拓扑结构上创建神经密码术计划,称为频谱多样化的统一神经剧架构。首先,进行实验以验证频谱 - 多样化的统一神经形式架构是否能够实现自动加密和解密。随后,我们通过使用对抗性培训来实现达到神经对称密码系统的实验。

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