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Field programmable gate array (FPGA) realization of a fast 2-D discrete cosine transform algorithm for higher image compression

机译:快速二维离散余弦变换算法的现场可编程门阵列(FPGA)实现,可实现更高的图像压缩率

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This paper describes the field programmable gate array (FPGA) implementation of a fast 2-D discrete cosine transform (DCT) chip for higher image compression ratio. The development of encoding and decoding parts of 2-D DCT algorithm is carried out by using Matlab simulation tools and VHSIC hardware descriptive language (VHDL). Comparisons of results for higher image compression ratio as obtained by using Matlab are presented. To improve a fast processor, we have also enhanced the functionality of the arithmetic logic unit (ALU) block in the DCT chip in order to design a fast 2-D DCT chip. The developed VHDL code of the 2-D DCT algorithm is incorporated with the VHDL codes of the enhanced ALU block. The synthesis software, Quartus-II integrated synthesis (QIS) from Altera has been used to obtain hardware blocks for the fast 2-D DCT processor. Performance evaluation of the 2-D DCT processor was achieved using Altera digital library from FPGA technology (TSMC 90 nm). The evaluated parameters are given such as maximum clock frequency of 140 MHz, total power dissipation of 638.84 mW and number of adaptive logic modules (ALMs) as 128. The enhanced 2-D DCT chip is intended for wireless image communication applications.
机译:本文介绍了用于更高图像压缩率的快速2D离散余弦变换(DCT)芯片的现场可编程门阵列(FPGA)实现。使用Matlab仿真工具和VHSIC硬件描述语言(VHDL)进行了二维DCT算法的编码和解码部分的开发。给出了通过使用Matlab获得的更高图像压缩率的结果的比较。为了改进快速处理器,我们还增强了DCT芯片中算术逻辑单元(ALU)块的功能,以设计快速的2-D DCT芯片。二维DCT算法的已开发VHDL代码与增强型ALU模块的VHDL代码结合在一起。来自Altera的Quartus-II集成综合(QIS)综合软件已用于获得快速2-D DCT处理器的硬件模块。使用FPGA技术(TSMC 90 nm)的Altera数字库可以实现2-D DCT处理器的性能评估。给出了评估的参数,例如最大时钟频率为140 MHz,总功耗为638.84 mW,自适应逻辑模块(ALM)的数量为128。增强型2-D DCT芯片旨在用于无线图像通信应用。

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