期刊文献+

基于GPU的线性调频信号脉冲压缩算法实现 被引量:4

A GPU-based Chirp Signal Pulse Compression Algorithm
下载PDF
导出
摘要 利用NVIDA公司开发的CUDA技术对线性调频信号脉冲压缩算法进行了研究。用CUDA C和C语言分别在GPU、CPU平台对该算法进行仿真,并对程序执行时间做出了比较。实验结果表明,在GPU平台上实现脉冲压缩算法的运算效率明显优于在CPU上。 This paper researches pulse compression algorithm of linear frequency modulation signal by using CUDA technology of the NVIDIA, and simulates the algorithm on the GPU platform using CUDA C language and on the CPU platform using C language respectively, and compares the execution times. The experimental results show that the efficiency of pulse compression algorithm on GPU platform is significantly higher than that on the CPU one.
作者 董亚清
出处 《电子科技》 2013年第12期12-16,共5页 Electronic Science and Technology
关键词 GPU CPU 脉冲压缩 线性调频信号 CUDA GPU CPU pulse compression linear frequency modulation CUDA
  • 相关文献

参考文献8

二级参考文献17

  • 1陆中行,金永春,付有光.产生雷达宽带信号用的正交调制器[J].现代雷达,1994,16(2):61-67. 被引量:7
  • 2杨兵,李凤霞,战守义,胡敏勇.GPU在复杂场景的阴影绘制中的应用[J].计算机工程,2006,32(2):220-222. 被引量:9
  • 3CUDA Programming Guide 1.1 [Z]. (2007-09-11). http://developer. nvidia.com/object/cuda.html.
  • 4龚敏敏.GPU精粹2[M].北京:清华大学出版社,2007.
  • 5Intel Math Kernel Library for the Windows* Operating System Users' Guide[Z]. (2007-09-11). http://www.intel.com.
  • 6Dongarra J, Foster I, Fox G, et al. Sourcebook of Parallel Computing[M]. [S. l.]: Elsevier Science, 2003.
  • 7JAMES W C, JOHN W T. An algorithm for the machine calculation of complex Fourier series[J]. Mathematics of Computation,1965, 19(2) :297-301.
  • 8HPC challenge benchmark[ EB/OL]. [2010- 11-01 ]. http://icl. cs. utk. edu./hpcc/.
  • 9NAS parallel benchmarks [ EB/OL ]. [ 2010- 05- 23 ]. http ://www. nas. nasa. gov/Resources/Soflware/npb, html.
  • 10General-purpose computation using graphics hardware [ EB/OL 1. [2010-05-23 ]. http ://www. gpgpu, org/.

共引文献64

同被引文献21

  • 1翟庆林,张军,付强.线性调频脉冲压缩技术及其在雷达系统中的应用[J].现代电子技术,2007,30(1):17-19. 被引量:19
  • 2吕雪.基于MP分解的宽带LFM信号参数估计[D].西南交通大学,2003.
  • 3MALLAT S, ZHANG Z. Matching pursuits with time - fre- quency dictionaries [ J ]. IEEE Transactions on Signal Pro- cessing, 1993,41 (12) :3397 - 3415.
  • 4CANDES E. Compressive sampling [ C ]. Madrid : Proceeding of International Congress of Mathematics ,2006 : 1433 - 1452.
  • 5DONOHO D, TSAIG Y. Extensions of compressed sensing [ J ]. Signal Processing,2006,86 ( 3 ) :533 - 548.
  • 6DONOHO D. Compressed sensing [ J ]. IEEE Transactions on Information Theory,2006,52 (4) : 1289 - 1306.
  • 7Youngsub K O, Youngmin Y I, Soonhoi H A. An efficient parallel motion estimation algorithm and X264 parallelization in CUDA [ C ]. Tampere, Finland: 2011 Conference on De- sign and Architectures for Signal and Image Processing( DA- SIP) ,2011:4521 - 4536.
  • 8Jae - Jin Lee, Kyungjin Byun. Multi - core architecture for video decoding [J]. SoC Design Conference(ISOCC) ,2012, 3(12) :4 -7.
  • 9Juurlink B, Alvarez - Mesa M, Chi C C, et al. Scalable paral- lel programming applied to H. 264/AVC decoding [ M ]. New York, USA: Springer - Verlag,2012.
  • 10Kovacs P T,Nagy Z,Barsi A,et al. Overview of the applicability of H. 264/MVC for real -time light -field applications [ C ]. Budapest,Hungary :Proceeding of 3D TV Conference,2014.

引证文献4

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部