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Three-Dimensional Discrete Wavelet Transform (DWT) Based On Unary Arithmetic

机译:基于一元算法的三维离散小波变换(DWT)

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This paper presents a three-dimensional discrete wavelet transform (DWT) for image processing based on unary arithmetic. The upper layer on-chip camera provides the input to the lower 3D-DWT processor layer utilizing Through Silicon Via (TSV) interconnections technology for data and signal transfers. Stacking of chips allow for low power operation since the inter-chip drivers are no longer necessary. For the same performance, the silicon area for 3D is smaller than the equivalent 2D architecture. The unary arithmetic has the potential for lowering the computational power as the results of significantly lower signal transitions than the corresponding binary operation. The proposed 3D-DWT architecture combined with CMOS image sensor (CIS) based on unary processing can compress high definition images at lower power consumption, providing higher performance than the corresponding 2D-DWT and binary processing.
机译:本文提出了一种基于一元算法的三维离散小波变换(DWT),用于图像处理。上层片上摄像头利用硅通孔(TSV)互连技术将数据输入到下层3D-DWT处理器层,以进行数据和信号传输。由于不再需要芯片间驱动器,因此芯片堆叠可实现低功耗操作。为了获得相同的性能,用于3D的硅面积小于等效的2D架构。一元算术具有降低计算能力的潜力,这是因为信号转换比相应的二进制运算要低得多。所提出的与基于一元处理的CMOS图像传感器(CIS)相结合的3D-DWT体系结构可以以较低的功耗压缩高清图像,比相应的2D-DWT和二进制处理提供更高的性能。

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