• DocumentCode
    254653
  • Title

    A new memoryless and low-latency FFT rotator architecture

  • Author

    Shen-Jui Huang ; Sau-Gee Chen

  • Author_Institution
    Novatek Microelectron. Corp., Hsinchu, Taiwan
  • fYear
    2014
  • fDate
    10-12 Dec. 2014
  • Firstpage
    180
  • Lastpage
    183
  • Abstract
    This paper presents new rotator architecture for FFT computation. The proposed architecture consists of cascaded multiplier-less cells, and each cell stage performs partial twiddle factor multiplications with low-complexity adders and multiplexers. Besides, for further area reduction, each cell is optimized with the technique of common subexpression sharing. Since those twiddle factors involved in computation are realized with multipliers generated on-the-fly by a scheme of coefficient selection, the proposed architecture doesn´t require memory space to store any twiddle factors. Variable FFT lengths ranging from 64 ~ 32768 points can be supported by flexibly adding or removing some cell stages, depends on FFT length. Compared to CORDIC-based architectures, the proposed architecture has lower latency. The implementation results show that the proposed architecture is area-efficient and is suitable for either pipelined or memory based FFT architectures.
  • Keywords
    adders; fast Fourier transforms; multiplexing equipment; CORDIC-based architectures; area reduction; cascaded multiplier-less cells; coefficient selection scheme; low-complexity adders; low-latency FFT rotator architecture; memory based FFT architectures; memoryless FFT rotator architecture; multiplexers; partial twiddle factor multiplications; pipelined based FFT architectures; subexpression sharing; Adders; Complexity theory; IEEE 802.15 Standards; Memory architecture; Registers; Throughput; CORDIC; Fast Fourier Transform (FFT); Rotator; twiddle factor;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Integrated Circuits (ISIC), 2014 14th International Symposium on
  • Conference_Location
    Singapore
  • Type

    conf

  • DOI
    10.1109/ISICIR.2014.7029558
  • Filename
    7029558