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基于CORDIC算法的基4DIT-FFT处理器的设计 被引量:3

Design of radix-4 DIT-FFT processor based on CORDIC algorithm
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摘要 随着海洋开发和信息产业的发展,高速、大容量、高可靠性的水声通信系统成为研究热点。论述了一种用于水声通信系统中的基4DIT-FFT处理器的设计。该设计利用CORDIC算法优化蝶形运算单元,将复数乘法转换为硬件易于实现的加、减、移位运算,并通过Matlab对伸缩系数与旋转系数进行预处理,大大加快了运算速度且降低了系统复杂性。在此基础上设计了一种1024点12位的基4DIT-FFT处理器。 With the development of ocean development and information industry, the high-speed, large-capacity and high- reliability underwater acoustic communication system becomes a research hotspot. The design of a radix-4 DIT-FFT processor used in underwater acoustic communication system is discussed. The CORDIC algorithm is utilized in the design to optimize the butterfly processing unit. The complex muhiplication is converted into add, subtraction and shift operations easier to implement with hardware. The telescopic coefficient and rotary coefficient are preprocessed with Matlab to accelerate the computing speed greatly and reduce system complexity. On this basis, a radix-4 DIT-FFT processor with 1024 points and 12 bits was designed.
作者 李晓彤 李欣 LI Xiaotong LI Xin(College of Information Science and Engineering, Ocean University of China, Qingdao 266100, China)
出处 《现代电子技术》 北大核心 2016年第21期95-98,共4页 Modern Electronics Technique
基金 国家科技支撑计划课题:基于自动识别(AIS)技术的个人海上搜救系统的研制(2014BAK12B06)
关键词 CORDIC算法 基4DIT—FFT 蝶形运算单元 流水线结构 CORDIC algorithm radix-4 DIT-FFT butterfly processing unit pipeline structure
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参考文献9

  • 1倪笑同.基于FH/MFSK的水声通信研究[D].杭州:浙江大学,2014:7—13.
  • 2李伟,孙进平,王俊,李少洪.一种基于FPGA的超高速32k点FFT处理器[J].北京航空航天大学学报,2007,33(12):1440-1443. 被引量:14
  • 3Proakis J G,Manolakis D G.数字信号处理:原理、算法与应用[M].张晓林译.北京:电子工业出版社,2004.326-347.
  • 4VOLDER J E. The CORDIC trigonometric computing technique [J]. IRE transactions on electronics computers, 1959, 8(3): 330-334.
  • 5WALTHER J S. A unified algorithm for elementary functions [C]// Proceedings of 1971 Spring Joint Computer Conference. New York: ACM, 1971: 379-385.
  • 6HU X B, HARBER R G, BASS S C. Expanding the range of convergence of the CORDIC algorithm [J]. IEEE transactions on computer, 1991, 40(1): 13-21.
  • 7MEYER-BASE U, MEYER-BASE A, H1LBERG W. Coordi- nate rotation digital computer (CONDIC) synthesis for FPGA [C]// Proceedings of 1994 the 44th International Workshop on Field-Programmable Logic and Applications. Prague: Springer Berlin Heidelberg, 1994: 397-408.
  • 8MEYER-BASE U. The use of complex algorithm in the realiza- tion of universal sampling receiver using FPGAs [J]. VDI/ Springer, 1995, 10(404): 215-228.
  • 9MA G. A systolic distributed arithmetic computing machine for digital signal processing and linear algebra applications [D]. Gainesville: University of Florida, 1989.

二级参考文献6

  • 1王旭东,刘渝.全并行结构FFT的FPGA实现[J].南京航空航天大学学报,2006,38(1):96-100. 被引量:19
  • 2Benzl A O, Grigisl P C. A broadband FFT spectrometer for radio and millimeter astronomy [J]. Astronomy & Astrophysics, 2005,442(2) : 767 -773.
  • 3Zhong K, He H, Zhu G. An ultra high-speed FFT processor [ C ]//International Symposium on Signals, Circuits and Systems, Bangkok:[s.n.], 2003,37 - 40.
  • 4Oppenheim A V, Schafer R W. Discrete-time signal processing [ M ]. Englewood Cliffs, NJ : Prentice Hall, 1998.
  • 5He S, Torkelson M. Designing pipeline FFT processor for OFDM (de) modulation [ C ]//International Symposium on Signals, Systems, and Electronics. New York: [ s. n. ] ,1998,257 -262.
  • 6Lin Y W, Liu H Y. A l-Gs/s FFT/IFFT processor for UWB applications[J], IEEE Journal of Solid-state Circuits, 2005, 40 (8) :1726 - 1735.

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