A Study on Partially Homomorphic Encryption Schemes

File
Publisher
Florida Atlantic University
Date Issued
2017
EDTF Date Created
2017
Description
High processing time and implementation complexity of the fully homomorphic
encryption schemes intrigued cryptographers to extend partially homomorphic
encryption schemes to allow homomorphic computation for larger classes of polynomials.
In this thesis, we study several public key and partially homomorphic schemes
and discuss a recent technique for boosting linearly homomorphic encryption schemes.
Further, we implement this boosting technique on CGS linearly homomorphic encryption
scheme to allow one single multiplication as well as arbitrary number of additions
on encrypted plaintexts. We provide MAGMA source codes for the implementation
of the CGS scheme along with the boosted CGS scheme.
Note

Includes bibliography.

Language
Type
Extent
77 p.
Identifier
FA00004840
Additional Information
Includes bibliography.
Thesis (M.S.)--Florida Atlantic University, 2017.
FAU Electronic Theses and Dissertations Collection
Date Backup
2017
Date Created Backup
2017
Date Text
2017
Date Created (EDTF)
2017
Date Issued (EDTF)
2017
Extension


FAU

IID
FA00004840
Organizations
Person Preferred Name

Mithila, Shifat P.

author

Graduate College
Physical Description

application/pdf
77 p.
Title Plain
A Study on Partially Homomorphic Encryption Schemes
Use and Reproduction
Copyright © is held by the author, with permission granted to Florida Atlantic University to digitize, archive and distribute this item for non-profit research and educational purposes. Any reuse of this item in excess of fair use or other copyright exemptions requires permission of the copyright holder.
http://rightsstatements.org/vocab/InC/1.0/
Origin Information

2017
2017
Florida Atlantic University

Boca Raton, Fla.

Physical Location
Florida Atlantic University Libraries
Place

Boca Raton, Fla.
Sub Location
Digital Library
Title
A Study on Partially Homomorphic Encryption Schemes
Other Title Info

A Study on Partially Homomorphic Encryption Schemes