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Efficient hardware design of Forward and Inverse Walsh-Hadamard transform

机译:正反Walsh-Hadamard变换的高效硬件设计

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This work presents two efficient hardware implementations of Forward and Inverse 2D-Walsh-Hadamard Transforms that do not use memory for the transposition operation. The first one is based on wired-transposition and the second one does not require transposition. In the last case, we designed a large 1D-WHT in order to obtain a 2D transform. The architectures were completely described in VHDL and they are flexible and parameterizable from the viewpoint of the number of inputs (N) and the number of bits of each input (n). The results show that the proposed designs have a very high throughput which makes them very suitable for several image and video processing applications and embedded systems based on H.264.
机译:这项工作介绍了正向和反向2D-Walsh-Hadamard变换的两种有效硬件实现,这些实现不使用内存进行换位操作。第一个基于有线转置,第二个不需要转置。在最后一种情况下,我们设计了一个较大的1D-WHT,以获得2D变换。在VHDL中已完全描述了这些体系结构,并且从输入数(N)和每个输入的位数(n)的角度来看,它们是灵活的和可参数化的。结果表明,所提出的设计具有很高的吞吐量,这使其非常适合于多种图像和视频处理应用以及基于H.264的嵌入式系统。

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