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Acceleration of Discrete Wavelet Transform in JPEG2000 by Embedded Super Parallel Processor

机译:嵌入式超级并行处理器在JPEG2000中加速离散小波变换

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Discrete wavelet transform (DWT) offers compression benefits on high-resolution images. However, processing-time consumption and floatingpoint arithmetic in DWT are expensive parts for some embedded systems. Jasper, .a software-based implementation of JPEG2000, proposed fixed-point arithmetic in DWT to reduce the complexity of DWT but it still consumes large processing-time. In this paper, we present an implementation of DWT based on single-instruction multiple-data (SIMD) architecture of embedded super parallel processor (MX). It helps to reduce the total number of instructions needed for the transformation such as multiplication and addition. Our implementation vectorized the fixedpoint DWT used in Jasper by using vertical channel operations of MX. As a result, the performance of DWT on MX is around 12.37 to 32.37 times faster than conventional implementations on other embedded systems.
机译:离散小波变换(DWT)可为高分辨率图像提供压缩优势。但是,对于某些嵌入式系统,DWT中的处理时间消耗和浮点运算是昂贵的部分。 Jasper是JPEG2000的一种基于软件的实现,它在DWT中提出了定点算法,以降低DWT的复杂性,但仍然要花费大量的处理时间。在本文中,我们提出了一种基于嵌入式超级并行处理器(MX)的单指令多数据(SIMD)体系结构的DWT的实现。它有助于减少转换所需的指令总数,例如乘法和加法。我们的实现通过使用MX的垂直通道操作矢量化了Jasper中使用的定点DWT。结果,MX上DWT的性能比其他嵌入式系统上的常规实现快约12.37到32.37倍。

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