Turkish Journal of Computer and Mathematics Education
Journal license

Journal

Turkish Journal of Computer and Mathematics Education


Volume
& Issue

Volume 11, Issue 3


Published
on


Pages

2633-2642


DOI

Article

Efficient Hardware Architecture for Ultra-High Sampling Rate FFT Analysis of Acoustic Emission Signals


Authors

G. Vishwanath Affiliation:
Vice Principal, Associate Professor and Head, Department of Electronics and Communication Engineering, Kakatiya Institute of Technology and Science for Women, Manik Bhandar, Nizamabad, Telangana, India


Abstract

In the realm of ultra-high sampling rates, Fast Fourier Transform (FFT) stands as a cornerstone in analyzing acoustic emission signals. This manuscript presents an efficient hardware architecture tailored for executing FFT using the radix -2 Frequency Decimation Algorithm (R2DIF) and a channelled method facilitating effective data sharing via shift registers. The architecture employs an optimal rotation method leveraging the modified Digital Coordinate Rotation Computer Algorithm (m-CORDIC) and Radix-2r, dependent on the coding scheme, to replace complex multipliers in FFT computation. The integration of m-CORDIC enhances computational efficiency, while Radix-2r facilitates a logarithmic reduction in adder steps, optimizing FFT execution for ultra-high sampling rates.


Keywords

Modified digital coordinate rotation computer algorithm, radix-2 frequency decimation algorithm


Citation

Vishwanath, G. (2020). Efficient hardware architecture for ultra-high sampling rate FFT analysis of acoustic emission signals. Turkish Journal of Computer and Mathematics Education, 11(3), 2633–2642.

Published by: Engineering Journals

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