Javascript must be enabled to continue!
Design and Implementation of AGU based FFT Pipeline Architecture
View through CrossRef
Abstract
Present it is most needful task to get various applications with parallel computations by using a Fast Fourier Transform (FFT) and the derived outputs should be in regular format. This can be achieved by using an advanced technique called Multipath delay commutator (MDC) Pipelining FFT processor and this processor will be capable to perform the computation of a different data streams at a time. In this paper the design and implementation of AGU based Pipelined FFT architecture is done Caluclation of a butterfly is done within 2 cycles by the instructions proposed. A Data Processing Unit (DPU) is employed in this pipeline architecture and supports the instructions & an FFT Adress Generation Unit (FAGU) caluclates butterfly input & output data adresses automatically. The DPU proposed sysyem requires less area compared to commericial DSP chips. Futhermore, the proposed FAGU reduces the number of FFT computation cycles. The FFT design architecture will have real data paths. With various FFT sizes, different radix & various parallesim levels, the FFT can be mapped to the pipeline architecture. The most attractive feature of the pipelined FFT architecture is it consists of bit reversal operation so it requires little number of registers and better throughput.
Title: Design and Implementation of AGU based FFT Pipeline Architecture
Description:
Abstract
Present it is most needful task to get various applications with parallel computations by using a Fast Fourier Transform (FFT) and the derived outputs should be in regular format.
This can be achieved by using an advanced technique called Multipath delay commutator (MDC) Pipelining FFT processor and this processor will be capable to perform the computation of a different data streams at a time.
In this paper the design and implementation of AGU based Pipelined FFT architecture is done Caluclation of a butterfly is done within 2 cycles by the instructions proposed.
A Data Processing Unit (DPU) is employed in this pipeline architecture and supports the instructions & an FFT Adress Generation Unit (FAGU) caluclates butterfly input & output data adresses automatically.
The DPU proposed sysyem requires less area compared to commericial DSP chips.
Futhermore, the proposed FAGU reduces the number of FFT computation cycles.
The FFT design architecture will have real data paths.
With various FFT sizes, different radix & various parallesim levels, the FFT can be mapped to the pipeline architecture.
The most attractive feature of the pipelined FFT architecture is it consists of bit reversal operation so it requires little number of registers and better throughput.
Related Results
Development of image pattern for textile based on FFT
Development of image pattern for textile based on FFT
PurposeThe purpose of this paper is to research an auto generation method of developing FFT image and image pattern for textile based on FFT theory.Design/methodology/approachIn th...
The architecture of differences
The architecture of differences
Following in the footsteps of the protagonists of the Italian architectural debate is a mark of culture and proactivity. The synthesis deriving from the artistic-humanistic factors...
Installation Analysis of Matterhorn Pipeline Replacement
Installation Analysis of Matterhorn Pipeline Replacement
Abstract
The paper describes the installation analysis for the Matterhorn field pipeline replacement, located in water depths between 800-ft to 1200-ft in the Gul...
First Arctic Subsea Pipelines Moving to Reality
First Arctic Subsea Pipelines Moving to Reality
Abstract
Two offshore development projects which involve subsea arctic pipelines are being proposed by British Petroleum Exploration (BP). Both projects are locat...
A Fluid-pipe-soil Approach to Stability Design of Submarine Pipelines
A Fluid-pipe-soil Approach to Stability Design of Submarine Pipelines
Abstract
The conventional approach to submarine pipeline stability design considers interactions between water and pipeline (fluid-pipe) and pipeline and seabed (...
Development and Use of Simulation Trainers for Pipeline Controllers
Development and Use of Simulation Trainers for Pipeline Controllers
Enbridge is in the forefront of development and application of computer simulation based training systems for Pipeline Controllers. Since 1985, the Pipeline Dynamics section of Enb...
Severe Sour Pipeline Lateral Buckling Mitigation Design Optimisation
Severe Sour Pipeline Lateral Buckling Mitigation Design Optimisation
Abstract
This paper presents the optimisation journey of lateral buckling mitigation design for a severe sour service pipeline. The journey, which was in a front-end...

