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BinDCT and its efficient VLSI architectures for real-time embedded applications

机译:BinDCT及其针对实时嵌入式应用的高效VLSI架构

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摘要

In this article, we present the BinDCT algorithm, a fast approximation of the Discrete Cosine Transform, and its efficient VLSI architectures for hardware implementations. The design objective is to meet the real-time constrain in embedded systems. Two VLSI architectures are proposed. The first architecture is targeted for low complexity applications such as videophones, digital cameras, and digital camcorders. The second architecture is designed for high perform applications, which include high definition TV and digital cinema. In order to meet the real-time constrain for these applications, we decompose the structure of the BmDCT algorithm into simple matrices and map them into multi-stage pipeline architectures. For low complexity implementation, the proposed 2-D BinDCT architecture can be realized with the cost of 10 integer adders, 80 registers and 384 bytes of embedded memory. The high performance architecture can be implemented with an extra of 30 adders. These designs can calculate real-time DCT/IDCT for video applications of CIF format at 5 MHz clock rate with 1.55 volt power supply. With its high performance and low power consumption features, BinDCT coprocessor is an excellent candidate for real-time DCT-based image and video processing applications.
机译:在本文中,我们介绍了BinDCT算法,离散余弦变换的快速近似及其用于硬件实现的有效VLSI体系结构。设计目标是满足嵌入式系统中的实时约束。提出了两种VLSI架构。第一种体系结构面向视频电话,数码相机和便携式数码摄像机等低复杂度应用。第二种架构是为包括高清电视和数字电影在内的高性能应用而设计的。为了满足这些应用程序的实时约束,我们将BmDCT算法的结构分解为简单的矩阵,并将它们映射到多级管道体系结构中。对于低复杂度的实现,可以以10个整数加法器,80个寄存器和384字节嵌入式存储器为代价实现所提出的2-D BinDCT体系结构。高性能架构可以额外使用30个加法器来实现。这些设计可以以1.55伏电源,5 MHz时钟速率计算CIF格式视频应用的实时DCT / IDCT。凭借其高性能和低功耗特性,BinDCT协处理器非常适合基于DCT的实时图像和视频处理应用。

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