Neural Network Wiretap Code Design for Multi-Mode Fiber Optical Channels

Karl-Ludwig Besser, Andrew Lonnstrom, Eduard Axel Jorswieck
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引用次数: 1

Abstract

The design of reliable and secure codes with finite block length is an important requirement for industrial machine type communications. In this work, we develop an autoencoder for the multi-mode fiber wiretap channel taking into account the error performance at the legitimate receiver and the information leakage at potential eavesdroppers. The estimate of the mutual information leakage includes AWGN and fading channels. The code design is tailored to the specific channel setup where the eavesdropper experiences a mode dependent loss. Numerical simulations illustrate the performance and show a Pareto improvement of the proposed scheme compared to the state-of-the-art polar wiretap codes.
多模光纤信道的神经网络窃听代码设计
设计可靠、安全的有限块长度码是实现工业机器通信的重要要求。在这项工作中,我们开发了一种多模光纤窃听信道的自动编码器,考虑到合法接收器的错误性能和潜在窃听者的信息泄漏。互信息泄漏的估计包括AWGN和衰落信道。代码设计是针对窃听者经历模式依赖损失的特定信道设置量身定制的。数值模拟说明了性能,并显示了与最先进的极地窃听代码相比,所提出方案的帕累托改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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