Design and analysis of efficient and secure elliptic curve cryptoprocessors.

Elliptic Curve Cryptosystems have attracted many researchers and have been included in many standards such as IEEE, ANSI, NIST, SEC and WTLS. The ability to use smaller keys and computationally more efficient algorithms compared with earlier public key cryptosystems such as RSA and ElGamal are two m...

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محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: Al-Somani, Turki Faisal (author)
مؤلفون آخرون: unknown (author)
التنسيق: masterThesis
منشور في: 2006
الموضوعات:
الوصول للمادة أونلاين:https://eprints.kfupm.edu.sa/id/eprint/18/1/A1S675.pdf
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author Al-Somani, Turki Faisal
author2 unknown
author2_role author
author_facet Al-Somani, Turki Faisal
unknown
author_role author
dc.creator.none.fl_str_mv Al-Somani, Turki Faisal
unknown
dc.date.none.fl_str_mv 2006-05-01
2020
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv https://eprints.kfupm.edu.sa/id/eprint/18/1/A1S675.pdf
(2006) Design and analysis of efficient and secure elliptic curve cryptoprocessors. PhD thesis, Advisor: Dr. Alaaeldin A. Amin, Co-Advisor: Prof. Sadiq Sait Mohammed and Dr. Mohammad H. Al-Suwaiyel. KFUPM.
dc.language.none.fl_str_mv en
dc.relation.none.fl_str_mv https://eprints.kfupm.edu.sa/id/eprint/18/
dc.rights.*.fl_str_mv info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Computer
dc.title.none.fl_str_mv Design and analysis of efficient and secure elliptic curve cryptoprocessors.
dc.type.none.fl_str_mv Thesis
NonPeerReviewed
info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/masterThesis
description Elliptic Curve Cryptosystems have attracted many researchers and have been included in many standards such as IEEE, ANSI, NIST, SEC and WTLS. The ability to use smaller keys and computationally more efficient algorithms compared with earlier public key cryptosystems such as RSA and ElGamal are two main reasons why elliptic curve cryptosystems are becoming more popular. They are considered to be particularly suitable for implementation on smart cards or mobile devices. Power Analysis Attacks on such devices are considered serious threat due to the physical characteristics of these devices and their use in potentially hostile environments. This dissertation investigates elliptic curve cryptoprocessor architectures for curves defined over GF(2m) fields. In this dissertation, new architectures that are suitable for efficient computation of scalar multiplications with resistance against power analysis attacks are proposed and their performance evaluated. This is achieved by exploiting parallelism and randomized processing techniques. Parallelism and randomization are controlled at different levels to provide more efficiency and security. Furthermore, the proposed architectures are flexible enough to allow designers tailor performance and hardware requirements according to their performance and cost objectives. The proposed architectures have been modeled using VHDL and implemented on FPGA platform.
eu_rights_str_mv openAccess
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id KFUPM_270011528a802cd734f6a58ffc9279ab
identifier_str_mv (2006) Design and analysis of efficient and secure elliptic curve cryptoprocessors. PhD thesis, Advisor: Dr. Alaaeldin A. Amin, Co-Advisor: Prof. Sadiq Sait Mohammed and Dr. Mohammad H. Al-Suwaiyel. KFUPM.
language_invalid_str_mv en
network_acronym_str KFUPM
network_name_str King Fahd University of Petroleum and Minerals
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publishDate 2006
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spelling Design and analysis of efficient and secure elliptic curve cryptoprocessors.Al-Somani, Turki FaisalunknownComputerElliptic Curve Cryptosystems have attracted many researchers and have been included in many standards such as IEEE, ANSI, NIST, SEC and WTLS. The ability to use smaller keys and computationally more efficient algorithms compared with earlier public key cryptosystems such as RSA and ElGamal are two main reasons why elliptic curve cryptosystems are becoming more popular. They are considered to be particularly suitable for implementation on smart cards or mobile devices. Power Analysis Attacks on such devices are considered serious threat due to the physical characteristics of these devices and their use in potentially hostile environments. This dissertation investigates elliptic curve cryptoprocessor architectures for curves defined over GF(2m) fields. In this dissertation, new architectures that are suitable for efficient computation of scalar multiplications with resistance against power analysis attacks are proposed and their performance evaluated. This is achieved by exploiting parallelism and randomized processing techniques. Parallelism and randomization are controlled at different levels to provide more efficiency and security. Furthermore, the proposed architectures are flexible enough to allow designers tailor performance and hardware requirements according to their performance and cost objectives. The proposed architectures have been modeled using VHDL and implemented on FPGA platform.2006-05-012020ThesisNonPeerReviewedinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisapplication/pdfhttps://eprints.kfupm.edu.sa/id/eprint/18/1/A1S675.pdf (2006) Design and analysis of efficient and secure elliptic curve cryptoprocessors. PhD thesis, Advisor: Dr. Alaaeldin A. Amin, Co-Advisor: Prof. Sadiq Sait Mohammed and Dr. Mohammad H. Al-Suwaiyel. KFUPM. enhttps://eprints.kfupm.edu.sa/id/eprint/18/info:eu-repo/semantics/openAccessoai::182019-11-01T13:21:55Z
spellingShingle Design and analysis of efficient and secure elliptic curve cryptoprocessors.
Al-Somani, Turki Faisal
Computer
status_str publishedVersion
title Design and analysis of efficient and secure elliptic curve cryptoprocessors.
title_full Design and analysis of efficient and secure elliptic curve cryptoprocessors.
title_fullStr Design and analysis of efficient and secure elliptic curve cryptoprocessors.
title_full_unstemmed Design and analysis of efficient and secure elliptic curve cryptoprocessors.
title_short Design and analysis of efficient and secure elliptic curve cryptoprocessors.
title_sort Design and analysis of efficient and secure elliptic curve cryptoprocessors.
topic Computer
url https://eprints.kfupm.edu.sa/id/eprint/18/1/A1S675.pdf