期刊文献+

A real-time 5/3 lifting wavelet HD-video de-noising system based on FPGA

A real-time 5/3 lifting wavelet HD-video de-noising system based on FPGA
下载PDF
导出
摘要 In accordance with the application requirements of high definition(HD) video surveillance systems,a real-time 5/3 lifting wavelet HD-video de-noising system is proposed with frame rate conversion(FRC) based on a field-programmable gate array(FPGA),which uses a 3-level pipeline paralleled 5/3 lifting wavelet transformation and reconstruction structure,as well as a fast BayesS hrink adaptive threshold filtering module.The proposed system demonstrates de-noising performance,while also balancing system resources and achieving real-time processing.The experiments show that the proposed system's maximum operating frequency(through logic synthesis and layout using Quartus 13.1 software) can reach 178 MHz,based on the Altera Company's Stratix III EP3SE80 series FPGA.The proposed system can also satisfy real-time de-noising requirements of 1920 × 1080 at60 fps HD-video sources,while also significantly improving the peak signal to noise rate of the denoising images.Compared with similar systems,the system has the advantages of high operating frequency,and the ability to support multiple source formats for real-time processing. In accordance with the application requirements of high definition(HD) video surveillance systems,a real-time 5/3 lifting wavelet HD-video de-noising system is proposed with frame rate conversion(FRC) based on a field-programmable gate array(FPGA),which uses a 3-level pipeline paralleled 5/3 lifting wavelet transformation and reconstruction structure,as well as a fast BayesS hrink adaptive threshold filtering module.The proposed system demonstrates de-noising performance,while also balancing system resources and achieving real-time processing.The experiments show that the proposed system's maximum operating frequency(through logic synthesis and layout using Quartus 13.1 software) can reach 178 MHz,based on the Altera Company's Stratix III EP3SE80 series FPGA.The proposed system can also satisfy real-time de-noising requirements of 1920 × 1080 at60 fps HD-video sources,while also significantly improving the peak signal to noise rate of the denoising images.Compared with similar systems,the system has the advantages of high operating frequency,and the ability to support multiple source formats for real-time processing.
出处 《High Technology Letters》 EI CAS 2017年第2期212-220,共9页 高技术通讯(英文版)
基金 Supported by the Spark Program of China(No.2013GA780007) Key Scientific Research Project of Guandong Agriculture Industry Business Polytechnic(No.xyzd1604)
关键词 视频监控系统 现场可编程门阵列 Altera公司 Quartus STRATIX 实时处理 提升小波变换 FPGA video surveillance, threshold filtering, discrete wavelet transformation ( DWT),field-programmable gate array (FPGA) , de-noising
  • 相关文献

参考文献4

二级参考文献34

  • 1金炜,潘英俊,魏彪.提升小波变换的通用和可扩展编程实现[J].计算机仿真,2005,22(11):106-109. 被引量:2
  • 2刘军伟,饶妮妮.提升小波变换的FPGA设计与实现[J].微计算机信息,2005,21(11Z):132-134. 被引量:19
  • 3金文光,王国雄,杨崇朋.一种低存储需求的二维DWT VLSI结构设计方法[J].电路与系统学报,2007,12(3):131-135. 被引量:2
  • 4I Daubechies,W Sweldens.Factoring wavelet transforms into lifting steps[J].J.Fourier Anal.Appl.,1998,4(2):247-269.
  • 5W Sweidens.The lifting scheme:A new philosophy in biorthogonal wavelet constructions[A].Proc.SPIE[C].San Diego,USA,1995.68-79.
  • 6D Taubman.High performance scalable image compression with EBCOT[J].IEEE Trans.on Image Processing,2000,9(7):1158-1170.
  • 7K Andra,C Chakrabani,T Acharya.A VLSI architecture for lifting-based forward and inverse wavelet transform[J].IEEE Trans.on SignalProcessing.2002,50(4):966-977.
  • 8C.Chrysafis,A.Ortega.Line-based,reduced memory,wavelet image compression[J].IEEE Trans.on Image Processing,2000,9(3):378-389.
  • 9Gab Cheon Jung,Duk Young Jin,Seong Mo Park.An efficient line-based VLSI architecture for 2-D lifting DWT[A].IEEE International Midwest Symposium on Circuit and Systems Proceedings[C].2004,2:249-252.
  • 10B Wu,C Lin.A high-performance and memory-efficient pipeline architecture for the 5/3 and 9/7 discrete wavelet transform of JPEG2000codec[J].IEEE Trans.on Circuits Syst.Video Technol.,2005,15(12):1615-1627.

共引文献4

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