An Area Efficient 1024-point Low Power Radix-22 Fft Processor with Feed-forward Multiple Delay Commutators

Project Code :TVREFE19_02

Objective

This paper proposes a novel radix-22 multiple delay commutators architecture utilizing the advantages of the radix-22 algorithm, such as simple butterflies and less memory requirement.

Abstract

Radix-2 k delay feed-back and radix-K delay commutator are the most well-known pipeline architecture for FFT design. This paper proposes a novel radix-2 2 multiple delay commutator architecture utilizing the advantages of the radix-2 2 algorithm, such as simple butterflies and less memory requirement. Therefore, it is more hardware efficient when implementing parallelism for higher throughput using multiple delay commutators or feed-forward data paths. Here, we propose an improved input scheduling algorithm based upon memory to eliminate energy required to shift data along the delay lines. A 1024-point FFT processor with two parallel data paths is implemented in 65-nm CMOS process technology. The FFT processor occupies an area of 3.6 mm 2 , successfully operates in the supply voltage range from 0.4-1 V and the maximum clock frequency of 600 MHz. For low voltage, high performance applications, the processor is able to operate at 400 MHz and consumes 60.3 mW or 77.2 nJ/FFT generating 800 Msamples/s at 0.6 V supply.

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Block Diagram

Specifications

Software Requirements:

  • Xilinx ISE Tool 
  • HDL: Verilog

Hardware Requirements:

  • Microsoft® Windows XP,
  • Intel® Pentium® 4 processor or Pentium 4 equivalent with SSE support 
  • 512 MB RAM
  • 100 MB of available disk space

Learning Outcomes

  • Basics of Digital Electronics
  • FPGA design Flow
  • Introduction to Verilog Coding
  • Different modeling styles in Verilog
    • Data Flow modeling
    • Structural modeling
    • Behavioral modeling
    • Mixed level modeling
  • Knowledge on FFT
  • About Single delay feedback (SDF)
  • Multi delay feedback (MDF)
  • Knowledge on Multipath delay commutator
  • Applications of FFT in real time
  • Study on butterfly processing element
  • Study on counters, commutators and memories
  • Study on Radix-4 FFT algorithms
  • Xilinx ISE 14.7 for design and simulation
  • Generation of Netlist
  • Solution providing for real time problems
  • Project Development Skills:
    • Problem Analysis Skills
    • Problem Solving Skills
    • Logical Skills
    • Designing Skills
    • Testing Skills
    • Debugging Skills
    • Presentation Skills
    • Thesis Writing Skills

Demo Video