I want to compare AES algorithm and some other cryptographic algorihtms on XILINE DESIGN SUITE regarding encryption and decryption ,and then after comparing their simulation and other parameters i will implement the most suitable among them on Iot environment (some quad copter etc). I am right
Implementation and Performance Comparison of Light-Weight Cryptographic (LWC) Algorithms for IoT Environment
I want to compare AES algorithm and some other cryptographic algorihtms on XILINE DESIGN SUITE regarding encryption and decryption ,and then after comparing their simulation and other parameters i will implement the most suitable among them on Iot environment (some quad copter etc). I am right now working on verilog but depending upon coding language of AES or several other cryptographic algorithms i can switch to any other language VHDL etc .The different cryptographic algorithms on which i will be working on are AES,TRIPLE DES , RSA , BLOWFISH , TWOFISH , AES) that later oni can implement on Xiline suite.Use of FPGA kit would also be included in later stages for implementation on Iot of these algorithms.
(a) Comparison of circuit area of standard LWC algorithms.
(b) Comparison of power consumption.
(c) Comparison of cost, efficiency and data consumption using design suite.
(d) Processing speed (throughput/delay)
(e) Identification of most optimized and secure implementation.
(f) Implementation of LWC algorithms on IoT environment such as microcontrollers.
(a) A detailed comparison of LWC algorithms and implementation of most suitable one.
(b) Practical demonstration of encryption, decryption at both ends.
(c) Practical implementation of most suitable LWC algorithm on IoT environment e.g. microcontroller based application.
(a) A thorough study of different cryptographic algorithms and their comparison according to ef?ciency, reliability, power and data consumption.
(b) A comprehensive understanding of developing of suitable GUI along with coding related to encryption and decryption purposes.
(c) Understanding of professional applications and software tools for optimizing the power and cost of different systems. (d) Implementation of cryptographic setup for IoT environment i.e. microcontrollers.
(a) Identification of most optimized and secure implementation.
(b) Implementation of LWC algorithms on IoT environment such as microcontrollers.
(c) Upgradation to FPGA
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| FPGA kit | Equipment | 1 | 65000 | 65000 |
| Total in (Rs) | 65000 |
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