Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah

Diffie–Hellman key exchange method allows two people that have no previous knowledge of each other to jointly create a shared secret key over an insecure channel. This key can then be used to encrypt subsequent communications using a symmetric-key cipher. However, the Diffie-Hellman protocol has a w...

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Main Author: Abdullah, Muhammad Arif Musa
Format: Student Project
Language:English
Published: 2023
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Online Access:https://ir.uitm.edu.my/id/eprint/93939/1/93939.pdf
https://ir.uitm.edu.my/id/eprint/93939/
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spelling my.uitm.ir.939392024-04-25T03:45:46Z https://ir.uitm.edu.my/id/eprint/93939/ Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah Abdullah, Muhammad Arif Musa Dissertations, Academic. Preparation of theses Diffie–Hellman key exchange method allows two people that have no previous knowledge of each other to jointly create a shared secret key over an insecure channel. This key can then be used to encrypt subsequent communications using a symmetric-key cipher. However, the Diffie-Hellman protocol has a weakness in that it can easily be bypassed by a man-in-the-middle attack. Station-to-Station protocol is a protocol based on the Diffie-Hellman key exchange to prevent the man-in-the-middle attack by inserting authentication. The objectives of the study are to implement Multi Prime RSA Cryptosystem into Station-to-Station protocol and to build a system in python for the proposed method. In this study, the Station-to-Station protocol will use three (3) prime numbers Multi-Prime RSA Digital Signature. The messages will be in form of numbers, which will allow us to have verification of the sender and receiver. The mathematics concept that will be used is prime factorization and discrete logarithm problem. There is no hashing function will involve in the digital signature. The calculation during the encryption and decryption process will be handled using Python programming. The results involve the verification of the proposed method and mathematical example using three (3) prime numbers. The result will also produce the algorithm for implementing Multi Prime RSA cryptosystem into Station-to-Station protocol. It will include the coding of python programming coding and calculation of proposed method. The study recommends to use another type of digital signature algorithm to be used in the proposed method. Another recommendation is to modify and optimise the python coding in the study to be more robust and suitable for real world application. 2023 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/93939/1/93939.pdf Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah. (2023) [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Dissertations, Academic. Preparation of theses
spellingShingle Dissertations, Academic. Preparation of theses
Abdullah, Muhammad Arif Musa
Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah
description Diffie–Hellman key exchange method allows two people that have no previous knowledge of each other to jointly create a shared secret key over an insecure channel. This key can then be used to encrypt subsequent communications using a symmetric-key cipher. However, the Diffie-Hellman protocol has a weakness in that it can easily be bypassed by a man-in-the-middle attack. Station-to-Station protocol is a protocol based on the Diffie-Hellman key exchange to prevent the man-in-the-middle attack by inserting authentication. The objectives of the study are to implement Multi Prime RSA Cryptosystem into Station-to-Station protocol and to build a system in python for the proposed method. In this study, the Station-to-Station protocol will use three (3) prime numbers Multi-Prime RSA Digital Signature. The messages will be in form of numbers, which will allow us to have verification of the sender and receiver. The mathematics concept that will be used is prime factorization and discrete logarithm problem. There is no hashing function will involve in the digital signature. The calculation during the encryption and decryption process will be handled using Python programming. The results involve the verification of the proposed method and mathematical example using three (3) prime numbers. The result will also produce the algorithm for implementing Multi Prime RSA cryptosystem into Station-to-Station protocol. It will include the coding of python programming coding and calculation of proposed method. The study recommends to use another type of digital signature algorithm to be used in the proposed method. Another recommendation is to modify and optimise the python coding in the study to be more robust and suitable for real world application.
format Student Project
author Abdullah, Muhammad Arif Musa
author_facet Abdullah, Muhammad Arif Musa
author_sort Abdullah, Muhammad Arif Musa
title Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah
title_short Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah
title_full Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah
title_fullStr Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah
title_full_unstemmed Implementing Station-to-Station protocol using Multi Prime RSA Cryptosystem / Muhammad Arif Musa Abdullah
title_sort implementing station-to-station protocol using multi prime rsa cryptosystem / muhammad arif musa abdullah
publishDate 2023
url https://ir.uitm.edu.my/id/eprint/93939/1/93939.pdf
https://ir.uitm.edu.my/id/eprint/93939/
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score 13.159267