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基于无冲突访存规则的高性能FFT处理器的设计与实现 被引量:2

Design and implementation of high performance FFT processor based on conflict-free access rules
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摘要 高性能快速傅里叶变换(FFT)处理器在雷达与通信等实时信号处理系统中具有广泛的应用场景.本文通过优化无冲突访存规则,结合基-2和基-8时域抽取的FFT算法,设计了一种高性能的混合基FFT处理器.该处理器采用基于存储的架构,主要组成单元包括蝶形运算单元,存储单元和控制单元.通过优化无冲突访存规则以及旋转因子生成方案,提高计算速度和硬件效率。在SMIC 40nm标准CMOS工艺下,FFT处理器工作主频超过500 MHz,核心面积为1.76×0.85 mm~2,且计算结果信噪比超过136 dB.在32K点FFT计算任务下,计算速度相比同类型FFT处理器提高约4倍. The high-performance Fast Fourier Transform(FFT)processor has a wide range of application scenarios in real-time signal processingsystems such as radar and communication.In this paper,a high performance FFT processor is designed by optimizing the conflict-free access rules and combining the radix-2 and radix-8 DIT-FFT.The processor employs a Memory-Based architecture,including a butterfly operator unit,a memory unit,and a control unit.The calculation speed and hardware efficiency are improvedImprove calculation speed and hardware efficiency by optimizing Conflict-Free access rules and twiddle factor generation schemes.The proposed processor is implemented on SMIC 40 nm CMOS technology.Simulation results show that the processor can work at over 500 MHz,the core area is1.76×0.85 mm~2,and the SNR is over136 dB or more.Under the 32 K-point FFT calculation task,the calculation speed is about 4 times higher than that of the same type of FFT processor.
作者 徐礼晗 景佳 许丁鸿 宋宇鲲 XU Li-han;JING Jia;XU Ding-hong;SONG Yu-kun(Institute of VLSI Design IC Design Web-cooperation Research Center of MOE,Hefei University of Technology,Hefei 230009,China;School of Electronic Science&Applied Physics,Hefei University of Technology,Hefei 230009,China)
出处 《微电子学与计算机》 2021年第1期57-63,共7页 Microelectronics & Computer
基金 国家自然科学基金(61874156) 国家重点研发计划(2018YFB2202604)。
关键词 快速傅里叶变换 基-8无冲突访存规则 混合基 ASIC FFT Radix-8 conflict-free access rules mixed radix ASIC
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  • 1杨红颖,王向阳,赵红.用于音乐作品版权保护的数字音频水印算法[J].微电子学与计算机,2004,21(8):13-15. 被引量:3
  • 2徐晨,袁红林.基于VerilogHDL的IP核参数化设计[J].微电子学与计算机,2005,22(12):85-88. 被引量:3
  • 3张竺君,钱建平.基于FPGA的超高速FFT处理器的设计[C].第四届江苏省电机工程青年科技论坛,南京:江苏省电机工程学会,2009.
  • 4Jacobson A T,Truong D N,Baas B M.The design of a reconfigurable continuous-flow mixed-radix FFT processor[DB/OL].2009,http://www.ece.ucdavis.edu/vcl/pubs/2OO9.05.ISCAS.FFT/Dean_ISCAS_2009.pdf.
  • 5Jia L,Gao Y,Tenuunen H.Efficient VLSI implementation of radix-8 FIT algorithm[C] //Proc 1999 IEEE Pacific Rim Conference on Communications,Computers and Signal Processing.Victoria:IEEE,1999.
  • 6Widhe T,Melander J,Wanhammar L.Design of efficient radix-8 butterfly PEs for VLSI[C] //ISCAS'97,Proceedings of 1997 IEEE International Symposium on Circuits and Systems.Hongkong:IEEE International Symposium on Circuits and Systems,1997.
  • 7Buuguezel S,Ahmad M O,Swamy M N S.Improved radix-4 and radix-8 FFT algorithms[C] //ISCAS'04,Proceedings of the 2004 International Symposium on Circuits and Systems.Vancouver:IEEE International Symposium on Circuits and Systems,2004.
  • 8He Shousheng.Torkelson M.Designing pipeline FFI processor for OFDM (de)modulation[C].Signals,Systems,and Electronics,ISSSE 98.URSI International Symposium,1998,257~262
  • 9Jan M Rabaey.数字集成电路[M].周润德,译.北京:电子工业出版社,2004
  • 10林晗,夏宇闻,陈杰.一种改进型基-8 FFT算法及其ASIC实现[J].中国集成电路,2003,12(52):68-71. 被引量:2

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