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High Secured AES Encryption and Decryption Algorithm using Xilinx

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TLDR
This project uses Xilinx ISE 14.7i that is associate microcircuit development platform supported the Xilxin ISE 13.3i tool and tends to customize the planning of AES formula to implement merely onXilinx software package to facilitate the developers to change and use the software package simply with none issues throughout installation of style.
Abstract
With the present omnipresence of pc networks, distributed systems generally, and also the net particularly, cryptography has become associate enabling technology to secure the data, infrastructures we tend to area unit building, using, and hoping on in way of life. In gift days, nearly each relevant communication system needs secure information transfer so as to keep up the privacy of the transmitted message. Hardware implementation on FPGA offers a faster and customizable answer. we tend to use Verilog Language for synthesizing logic style. This project uses Xilinx ISE 14.7i that is associate microcircuit development platform supported the Xilinx ISE 14.7i tool. Software package implementation on Xilinx is often advanced style and in counter mode it becomes the foremost complex drawback. we tend to customize the planning of AES formula to implement merely on Xilinx software package. This may later facilitate the developers to change and use the software package simply with none issues throughout installation of style. Some key blessings of AES encryption and coding formula are unit quick in execution and it additionally uses higher length sizes 128,192 and 256 bits for encryption which provides additional security to the information because it needs 2 tries to deploy or hack the information.

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Book review: Applied cryptography: Protocols, algorithms, and source code in C

TL;DR: This is Applied Cryptography Protocols Algorithms And Source Code In C Applied Cryptographic Protocols algorithms and Source Code in C By Schneier Bruce Author Nov 01 1995 the best ebook that you can get right now online.
References
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Journal ArticleDOI

A method for obtaining digital signatures and public-key cryptosystems

TL;DR: An encryption method is presented with the novel property that publicly revealing an encryption key does not thereby reveal the corresponding decryption key.
Book

The Design of Rijndael: AES - The Advanced Encryption Standard

TL;DR: The underlying mathematics and the wide trail strategy as the basic design idea are explained in detail and the basics of differential and linear cryptanalysis are reworked.
Book ChapterDOI

A Compact Rijndael Hardware Architecture with S-Box Optimization

TL;DR: Compact and high-speed hardware architectures and logic optimization methods for the AES algorithm Rijndael are described, including a new composite field and the S-Box structure is also optimized.
Journal ArticleDOI

High-speed VLSI architectures for the AES algorithm

TL;DR: Using the proposed architecture, a fully subpipelined encryptor with 7 substages in each round unit can achieve a throughput of 21.56 Gbps on a Xilinx XCV1000 e-8 bg560 device in non-feedback modes, which is faster and 79% more efficient in terms of equivalent throughput/slice than the fastest previous FPGA implementation known to date.
Book ChapterDOI

An ASIC Implementation of the AES SBoxes

TL;DR: This article presents a hardware implementation of the S-Boxes from the Advanced Encryption Standard (AES), and shows that a calculation of this function and its inverse can be done efficiently with combinational logic.