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Using one hot residue number system(OHRNS) for digital image processing

机译:使用一个热残留号系统(OHRNS)进行数字图像处理

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In this paper, the use of the one hot residue (OHR) number system for digital image processing and its application for designing fast, high-speed and low area image processors are studied. Since digital image filtering in space domain requires many algebra computations, we're going to propose a system with high computing speed based on OHR. Using proposed system can significantly enhance the speed of the computation operations and hence the system. In the proposed image coding scheme the delay of implementation is equal to delay of a transistor which is a good improvement in compare with the conventional methods such as direct method. Other advantages of using one hot residue (OHR) number system are its simplicity of implementation and minimum power dissipation. Design of adder and multipliers commonly used for filtering with selected moduli set {2n−1+1, 2n−1, 2n| for one hot coding are presented here. MATLAB was used for simulation studies while VLSI tools have been employed for design analysis. The preliminary results show the capability of the proposed method to speed incensement of operation, decreasing of consumption power, facilitating designed hardware and finally decreasing chip production for image processing.
机译:在本文中,用于数字图像处理和其用于设计快速应用中使用一对热残余物(OHR)数字系统,高速和低区域图像处理器进行了研究。由于在空间域数字图像滤波需要许多代数计算,我们将提出基于OHR高运算速度的系统。使用提出的系统可以显著提升计算操作的速度,因此系统。在所提出的图像编码方案实现的延迟等于延迟的晶体管,其与传统的方法,例如直接方法比较良好的改善的。使用一个热残基(OHR)编号系统的其他优点是其实施和最小功耗的简单性。通常用于与选定的模量集合{2滤波加法器和乘法器的设计 N-1 1,2 名词 -1,2 名词 |一个热编码这里介绍。使用MATLAB仿真研究,而VLSI工具已被用于设计分析。初步结果表明,该方法操作的速度incensement的能力,降低了消费电力的,便于设计的硬件和终期减弱芯片生产用于图像处理。

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