Introduction Of A Multikey Multiround Chaining Scheme For The Vigenère cipher
Albert Gabriel Tuwan, Jason Adriel, Moethia Shakira, Sidi Janadharna Gatra Parahita
Abstract
Albert Gabriel Tuwan, Jason Adriel, Moethia Shakira, Sidi Janadharna Gatra Parahita
Abstract
This paper introduces the JAM Stream cipher, an improved version of the classical Vigenère cipher, designed to address its known vulnerabilities. The proposed cipher technique incorporates a multi-key, multi-round, and chaining scheme to significantly enhance security. By leveraging these techniques, the JAM Stream cipher creates a strong Avalanche effect, ensuring substantial changes in ciphertext for minimal alterations in plaintext or keys. Experimental results confirm the cipher's resilience against differential attacks and brute-force methods, demonstrating a marked improvement over traditional algorithms, namely the Vigenère cipher and DES. However, the JAM Stream cipher faces computational complexity challenges for real-time and high-performance applications. To facilitate further research and practical implementation, the source code is available at https://github.com/alberttuwan1/JAM_Stream_Cipher. Future research will explore optimization strategies to balance security and efficiency, paving the way for broader adoption in secure communication systems.
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This paper introduces the JAM Stream cipher, an improved version of the classical Vigenère cipher, designed to address its known vulnerabilities. The proposed cipher technique incorporates a multi-key, multi-round, and chaining scheme to significantly enhance security. By leveraging these techniques, the JAM Stream cipher creates a strong Avalanche effect, ensuring substantial changes in ciphertext for minimal alterations in plaintext or keys. Experimental results confirm the cipher's resilience against differential attacks and brute-force methods, demonstrating a marked improvement over traditional algorithms, namely the Vigenère cipher and DES. However, the JAM Stream cipher faces computational complexity challenges for real-time and high-performance applications. To facilitate further research and practical implementation, the source code is available at https://github.com/alberttuwan1/JAM_Stream_Cipher. Future research will explore optimization strategies to balance security and efficiency, paving the way for broader adoption in secure communication systems.
Key concepts: Stream cipher, Stream cipher attack, Transposition cipher, Computer science, Cipher, CBC-MAC, Running key cipher, Triple DES