A Case Study of the Salsa20 Encryption Algorithm Using Random Noisy Injection Enhanced by Artificial Intelligence

Descripción del Articulo

Summary The loss of digital data can have severe financial consequences for organisations. This situation can handle with a dynamic encryption approach, which it can generate multiple ciphertexts from a single plaintext. This paper delves into the intersection of artificial intelligence, random nois...

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Detalles Bibliográficos
Autores: Rangel Lugo, Edgar, Rangel Ríos, Kevin Uriel, Bernal Beltrán, Carlos Alberto, González Vidales, Leonel, Rodríguez Torres, César Del Ángel, Ascencio Antúnez, Lucero De Jesús, Reynoso Andrés, Rosa Isabel
Formato: artículo
Fecha de Publicación:2025
Institución:Universidad La Salle
Repositorio:Revistas - Universidad La Salle
Lenguaje:español
OAI Identifier:oai:ojs.revistas.ulasalle.edu.pe:article/317
Enlace del recurso:https://revistas.ulasalle.edu.pe/innosoft/article/view/317
https://doi.org/10.48168/innosoft.s24.a317
https://purl.org/42411/s24/a317
https://n2t.net/ark:/42411/s24/a317
Nivel de acceso:acceso abierto
Materia:Aplicaciones de IA
criptografía
cifrado de datos dinámico
cifrado con inyección de ruido
Artificial Intelligence
CyberSecurity
Applications of AI
cryptography
dynamic encryption methods
noisy injection strategies
Inteligencia artificial
Ciberseguridad
Descripción
Sumario:Summary The loss of digital data can have severe financial consequences for organisations. This situation can handle with a dynamic encryption approach, which it can generate multiple ciphertexts from a single plaintext. This paper delves into the intersection of artificial intelligence, random noisy schemes, and cybersecurity, analyzing several critical aspects of this emerging field. The application of random noisy scheme to ciphertext, it has been suggested as a means of enhancing cybersecurity, with recent studies indicating that this approach can be effective against cybercriminals. The objective of this research was focused on applying random noisy strategy on ciphertext of the Salsa20 encryption algorithm, as this area remains unexplored. Given the promising results of random noisy strategies, organisations that they employ Salsa20 may benefit from this approach. This research is important because recent experiments have revealed the effectiveness of using artificial intelligence for noisy injection on ciphertext. Therefore, is here presented a new opportunity for organisations regarding the employment of the novel random noisy Salsa20 encryption alternative because the experimental results have shown an increasing of the dynamic performance on ciphertext. This work introduces the random noisy Salsa20 strategy as a novel dynamic encryption alternative, and comparison of the performance to four random noisy schemes based on DES, 3DES, AES-256, and Blowfish algorithms. In conclusion, the novel alternative that it is here recommended, it can be difficult for the cybercriminals to decrypt. Keywords: Applications of AI, cryptography, dynamic encryption methods, noisy injection strategies.
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