基于FPGA的无损图像压缩系统设计
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3 结语
科技的发展和移动终端的普及对图像压缩系统的处理效率提出了越来越高的要求。本方案中的无损图像压缩系统和传统压缩算法(如JPEG-LS, CALIC等)相比,在压缩比相当的情况下,算法简单,所需的存储器面积和处理时间也都大幅度下降,可以很好地兼容到医疗或航天图像压缩系统中。
参考文献:
[1] Liang J Y, Chen C S, Huang C H, et al. Lossless compression of medical images using Hilbert space-filling curves [J]. Computerized Medical Imaging and Graphics, 2008, 32(3): 174-182
[2] Wu X, Memon N. Context-based, adaptive, lossless image coding[J]. Transactions On Communications, IEEE, 1997, 45(4): 437-444
[3] Lossless and Near-Lossless Coding of Continuous Still Images (JPEG-LS), ISO/IEC JTC1/SC29 WG1 ITU-T SG8 (JPEG/JBIG), CD 14495, 1998
[4] P. G. Howard and J. S. Vitter, Fast and efficient lossless image compression[C], in Proc. IEEE Int. Conf. Data Compression, 1993
[5] Tsai T H,Lee Y H,Lee Y Y. Design and analysis of high-throughput lossless image compression engine using VLSI-oriented FELICS algorithm [J]. Transactions on Very Large Scale Integration (VLSI) Systems, IEEE, 2010
[6] 薛金勇,黑勇,陈黎明.快速高效无损图像压缩系统的低功耗硬件实现[J].哈尔滨工程大学学报,2014
科技的发展和移动终端的普及对图像压缩系统的处理效率提出了越来越高的要求。本方案中的无损图像压缩系统和传统压缩算法(如JPEG-LS, CALIC等)相比,在压缩比相当的情况下,算法简单,所需的存储器面积和处理时间也都大幅度下降,可以很好地兼容到医疗或航天图像压缩系统中。
参考文献:
[1] Liang J Y, Chen C S, Huang C H, et al. Lossless compression of medical images using Hilbert space-filling curves [J]. Computerized Medical Imaging and Graphics, 2008, 32(3): 174-182
[2] Wu X, Memon N. Context-based, adaptive, lossless image coding[J]. Transactions On Communications, IEEE, 1997, 45(4): 437-444
[3] Lossless and Near-Lossless Coding of Continuous Still Images (JPEG-LS), ISO/IEC JTC1/SC29 WG1 ITU-T SG8 (JPEG/JBIG), CD 14495, 1998
[4] P. G. Howard and J. S. Vitter, Fast and efficient lossless image compression[C], in Proc. IEEE Int. Conf. Data Compression, 1993
[5] Tsai T H,Lee Y H,Lee Y Y. Design and analysis of high-throughput lossless image compression engine using VLSI-oriented FELICS algorithm [J]. Transactions on Very Large Scale Integration (VLSI) Systems, IEEE, 2010
[6] 薛金勇,黑勇,陈黎明.快速高效无损图像压缩系统的低功耗硬件实现[J].哈尔滨工程大学学报,2014
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