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A Low-Cost High-Quality Adaptive Scalar for Real-Time Multimedia Applications

机译:用于实时多媒体应用的低成本高质量自适应标量

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摘要

A novel scaling algorithm is proposed for the implementation of 2-D image scalar. The algorithm consists of a bilinear interpolation, a clamp filter, and a sharpening spatial filter. The bilinear interpolation algorithm is selected due to its having low complexity and high quality. The clamp and sharpening spatial filters are added as pre-filters to solve the blurring and aliasing effects produced by bilinear interpolation. Furthermore, an adaptive technology is used to enhance the effects of clamp and sharpening spatial filters. To reduce memory buffers and computing resources for the very large scale integration (VLSI) implementation, the clamp filter and sharpening spatial filters both convoluted by a 3$,times,$3 matrix coefficient kernel are combined into a 5$,times,$5 combined convolution filter. The bilinear interpolation is simplified by the co-operation and hardware sharing technique to reduce computing resource and hardware costs. The VLSI architecture in this paper can achieve 280 MHz with 9.28-K gate counts, and its chip area is 46 418 $mu{rm m}^{2}$ synthesized by a 0.13 $mu{rm m}$ CMOS process. Compared with previous techniques, this paper not only reduces gate counts by more than 46.6% and power consumptions by 24.2%, but also improves average quality by over 0.42 dB.
机译:针对二维图像标量的实现,提出了一种新颖的缩放算法。该算法由双线性插值,钳位滤波器和锐化空间滤波器组成。选择双线性插值算法是因为它具有低复杂度和高质量。添加了钳位和锐化空间滤波器作为预滤波器,以解决双线性插值产生的模糊和混叠效果。此外,使用自适应技术来增强钳位效果并锐化空间滤波器。为了减少用于超大规模集成(VLSI)实现的内存缓冲区和计算资源,将钳位滤波器和锐化空间滤波器(均由3 $,x,3矩阵系数内核卷积)合并为5,x,5组合卷积过滤。通过协作和硬件共享技术简化了双线性插值,以减少计算资源和硬件成本。本文中的VLSI架构可以以9.28-K的门数实现280 MHz的频率,其芯片面积是通过0.13μmCMOS工艺合成的46418μm2。与以前的技术相比,本文不仅将门数减少了46.6%以上,并将功耗降低了24.2%,而且将平均质量提高了0.42 dB以上。

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