At present, research aimed at improving information transmission security by addressing the primary challenges of time delay signal elimination and key space augmentation is a prominent subject in chaotic secure communication systems. This paper examines the encryption technology of optical communication network systems employing artificial intelligence technology (AIT) to improve the encryption efficacy of optical communication networks and proposes an encryption scheme for these networks utilising AIT. It is suggested that a digital random sequence be used as a key to control the arbitrary wave generator with the digital signal processor. Then, a multi-ary step square wave can be made to help modulate the optical feedback. This wave can also change a lot of external cavity delay very randomly to get rid of the long external cavity delay information. This paper proposes a chaotic secure communication system mode utilising external cavity optical feedback and digital sequences for key generation, aimed at establishing a chaotic source device through arbitrary means. Wave phase modulation, single loop feedback, and a chaotic secure communication system that uses single feedback key phase modulation and injection synchronisation. This paper also suggests a system design that uses single-loop optical feedback phase modulation. It produces a chaotic signal with complex dynamic behaviour and effectively removes the time-delay signal. The authors examine the strength and phase information of the CS using autocorrelation and mutual information techniques, and validate the efficacy of optical communication network encryption technology. The analysis of experimental results demonstrates that the optical communication network encryption technology based on AIT, as proposed in this paper, enhances the encryption efficacy of optical communication networks. The algorithm model camera suggested in this article could be used for further practice to make communication encryption work better.
Kumar et al. (Wed,) studied this question.
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