2013Yunnan Daxue xuebao. Shehui kexue banRequires access

Research and design for FFT processor based on FPGA

Yang Ju

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Abstract

In this paper,we designed a FFT butterfly computing unit based on the pipeline structure of CORDIC algorithm,and finally realized a two- dimensional FFT processor supported high sample which used the ranks of decomposition algorithm based on FPGA. Its design had used VHDL hardware description language and used the Quartus Ⅱ 8. 0 to synthesize,wire and download test validation to the DE2 experiment platform. The processing reduced the consumption of storage for the high number of sample capacity of the FPGA chips. It had good reconstruction,simple hardware structure,high safety,quick speed and could be widely used in digital signal processing field.

About this research paper

What this paper is about

In this paper,we designed a FFT butterfly computing unit based on the pipeline structure of CORDIC algorithm,and finally realized a two- dimensional FFT processor supported high sample which used the ranks of decomposition algorithm based on FPGA. Its design had used VHDL hardware description language and used the Quartus Ⅱ 8. 0 to synthesize,wire and download test validation to the DE2 experiment platform. The processing reduced the consumption of storage for the high number of sample capacity of the FPGA chips. It had good reconstruction,simple hardware structure,high safety,quick speed and could be widely used in digital signal processing field.

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Available abstract

In this paper,we designed a FFT butterfly computing unit based on the pipeline structure of CORDIC algorithm,and finally realized a two- dimensional FFT processor supported high sample which used the ranks of decomposition algorithm based on FPGA. Its design had used VHDL hardware description language and used the Quartus Ⅱ 8. 0 to synthesize,wire and download test validation to the DE2 experiment platform. The processing reduced the consumption of storage for the high number of sample capacity of the FPGA chips. It had good reconstruction,simple hardware structure,high safety,quick speed and could be widely used in digital signal processing field.

Key concepts: Field-programmable gate array, VHDL, CORDIC, Pipeline (software), Computer science, Fast Fourier transform, Hardware description language, Digital signal processing

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