openThe CORDIC (Coordinate Rotation Digital Computer) algorithm is used for solving vast sets of functions such as trigonometric functions, hyperbolic functions and natural logarithms. This thesis is going to discuss how the algorithm works and its architecture implementation. It is also going to explore potential applications of the algorithm in digital communication systems, specifically for the realization of the DDS (Direct Digital Synthesis) and digital modulation.The CORDIC (Coordinate Rotation Digital Computer) algorithm is used for solving vast sets of functions such as trigonometric functions, hyperbolic functions and natural logarithms. This thesis is going to discuss how the algorithm works and its architecture implementation. It...
CORDIC or CO ordinate Rotation Digital Computer is a fast, simple, efficient and powerful algorithm ...
The Three-D structures for example hyperboloids, paraboloids, and ellipsoids require CORDIC to becom...
There is a high demand for the efficient implementation of complex arithmetic operations in many Dig...
The coordinate rotational digital computer (CORDIC) is an arithmetic algorithm, which has been used ...
Abstract — COordinate Rotation DIgital Computer (CORDIC) algorithm has potential for efficient and l...
OBJECTIVE: The digital signal processing landscape has long been dominated by the microprocessors wi...
Year 2009 marks the completion of 50 years of the invention of CORDIC (COordinate Rotation DIgital C...
The CO-ordinate Rotation DIgital Computer (CORDIC) has been a prevailing computational tool for a wi...
textThis dissertation documents the development, derivation, verification, implementation, and evalu...
Most of the digital signal processing applications performs operations like multiplication, addition...
This thesis proposes an optimized Co-ordinate Rotation Digital Computer (CORDIC) algorithm in the ro...
International Journal of Signal Processing, Image Processing and Pattern Recognition, Vol. 5, No. 1,...
CORDIC (Coordinate Rotation Digital Computer) is an algorithm for computing transcendental functions...
Abstract CORDIC (Coordinate Rotation Digital Computer) is an iterative algorithm for the calculation...
We give an introduction to the CORDIC method used my most handheld calculators (such as the ones by ...
CORDIC or CO ordinate Rotation Digital Computer is a fast, simple, efficient and powerful algorithm ...
The Three-D structures for example hyperboloids, paraboloids, and ellipsoids require CORDIC to becom...
There is a high demand for the efficient implementation of complex arithmetic operations in many Dig...
The coordinate rotational digital computer (CORDIC) is an arithmetic algorithm, which has been used ...
Abstract — COordinate Rotation DIgital Computer (CORDIC) algorithm has potential for efficient and l...
OBJECTIVE: The digital signal processing landscape has long been dominated by the microprocessors wi...
Year 2009 marks the completion of 50 years of the invention of CORDIC (COordinate Rotation DIgital C...
The CO-ordinate Rotation DIgital Computer (CORDIC) has been a prevailing computational tool for a wi...
textThis dissertation documents the development, derivation, verification, implementation, and evalu...
Most of the digital signal processing applications performs operations like multiplication, addition...
This thesis proposes an optimized Co-ordinate Rotation Digital Computer (CORDIC) algorithm in the ro...
International Journal of Signal Processing, Image Processing and Pattern Recognition, Vol. 5, No. 1,...
CORDIC (Coordinate Rotation Digital Computer) is an algorithm for computing transcendental functions...
Abstract CORDIC (Coordinate Rotation Digital Computer) is an iterative algorithm for the calculation...
We give an introduction to the CORDIC method used my most handheld calculators (such as the ones by ...
CORDIC or CO ordinate Rotation Digital Computer is a fast, simple, efficient and powerful algorithm ...
The Three-D structures for example hyperboloids, paraboloids, and ellipsoids require CORDIC to becom...
There is a high demand for the efficient implementation of complex arithmetic operations in many Dig...