CFP last date
22 April 2024
Reseach Article

Hardware for Calculation of SIN and COSINE Angle using CORDIC Algorithm

by Vipin Tiwari, Nilay Khare
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 87 - Number 6
Year of Publication: 2014
Authors: Vipin Tiwari, Nilay Khare
10.5120/15216-3720

Vipin Tiwari, Nilay Khare . Hardware for Calculation of SIN and COSINE Angle using CORDIC Algorithm. International Journal of Computer Applications. 87, 6 ( February 2014), 46-48. DOI=10.5120/15216-3720

@article{ 10.5120/15216-3720,
author = { Vipin Tiwari, Nilay Khare },
title = { Hardware for Calculation of SIN and COSINE Angle using CORDIC Algorithm },
journal = { International Journal of Computer Applications },
issue_date = { February 2014 },
volume = { 87 },
number = { 6 },
month = { February },
year = { 2014 },
issn = { 0975-8887 },
pages = { 46-48 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume87/number6/15216-3720/ },
doi = { 10.5120/15216-3720 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T22:05:15.631276+05:30
%A Vipin Tiwari
%A Nilay Khare
%T Hardware for Calculation of SIN and COSINE Angle using CORDIC Algorithm
%J International Journal of Computer Applications
%@ 0975-8887
%V 87
%N 6
%P 46-48
%D 2014
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Trigonometric functions have wide variety of applications in real life. Specially SIN and COSINE waves have been very useful in medical science, signal processing, geology, electronic communication, thermal analysis and many more. Real life application requires fast calculation capabilities as much as possible. Hardware, due to its hardwired design, provides high speed calculations for such application. This paper presents a hardware design that calculates SIN and COSINE value of a given angle using COordinate Rotation DIgital Computer (CORDIC) algorithm.

References
  1. JACK E. VOLDER, The CORDIC Trigonometric Computing Technique, IRE TRANSACTIONS ON ELECTRONIC COMPUTERS
  2. Ray Andraka, A survey of CORDIC algorithms for FPGA based computers, Copyright 1998 ACM 0-89791-978-5/98/01
  3. Naofumi Takagi, Member, IEEE, Tohru Asada, and Shuzo Yajima, Senior Member, IEEE, Redundant CORDIC Methods with a Constant Scale Factor for Sine and Cosine Computation, IEEE TRANSACTIONS ON COMPUTERS, VOL. 40, NO. 9, SEPTEMBER 1991
  4. KHARRAT M. W. , LOULOU M. , MASMOUDI N. , KAMOUN L. , A New Method To Implement CORDIC Algorithm, 7803-70. 57-0/'01/2001 IEEE
  5. Leena Vachhani, Student Member, IEEE, K. Sridharan, Senior Member, IEEE, and Pramod Kumar Meher, Senior Member, IEEE, Efficient FPGA Realization of CORDIC With Application to Robotic Exploration, IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, VOL. 56, NO. 12, DECEMBER 2009
  6. Terence K. Rodrigues and Earl E. Swartzlander, Jr. , Fellow, IEEE, Adaptive CORDIC: Using Parallel Angle Recoding to Accelerate Rotations, IEEE TRANSACTIONS ON COMPUTERS, VOL. 59, NO. 4, APRIL 2010
  7. Milica Ristovic, Slobodan Lubura, Dejan Jokic, Implementation of CORDIC Algorithm on FPGA Altera Cyclone, 20th Telecommunications forum TELFOR 2012, Serbia, Belgrade.
  8. Dongdong Chen, Seok-Bum Ko, A dynamic non-uniform segmentation method for first-order polynomial function evaluation, Microprocessors and Microsystems 36 (2012) 324–332
  9. Shanmuga Kumar M, Mohamed Asan Basiri M, and Noor Mahammad Sk, High Precision and High Speed handheld Scientific Calculator Design using hardware based CORDIC Algorithm, International Conference On DESIGN AND MANUFACTURING, IConDM 2013.
Index Terms

Computer Science
Information Sciences

Keywords

CORDIC Hardware sine cosine