Design of a high performance FFT processor based on FPGA
Chu Chao, Qin Zhang, Xie Yingke, Han Chengde · 2005
The design method of a real-time FFT processor is presented. By optimizing algorithm of memory mapping and generation of twiddle factors, a radix-4 butterfly can be calculated in one clock cycle. An approach to adaptive overflow control is also introduced to avoid overflow without interrupting the computing pipeline. The design is implemented on a FPGA chip and achieves the operating frequency at 127 MHz. It can complete a complex 1024-point FFT within 10.1 μs.