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A Fine-Grained Pipelined 2-D Convolver for High-Performance Applications

机译:用于高性能应用的细粒度流水线二维卷积器

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2-D convolution has been used as a subsystem for filtering and enhancement in a wide range of signal and image processing applications. It is not only a memory intensive operation but also a compute intensive process. The previous efforts to improve the performance of 2-D convolution have primarily focused on the memory access challenges. However, the convolver’s performance is highly dependent on the efficient design of the computation units, which can be enhanced significantly by employing some techniques such as pipelining. In this brief, a pipelined with low pixel access rate architecture for implementation of 2-D convolution is presented. Compared to the conventional convolvers, the proposed design involves a fixed (independent to the problem/kernel) size, and a significantly shorter critical path specifically for large kernel sizes where the proposed convolver works with 283-MHz clock frequency, on a Xilinx Virtex-7 (XC7V2000t) field-programmable gate array, for a${3imes 3}$kernel. Additionally, the required pixel access rate of the new scheme is less than that of the state-of-the-art methods, which is only 849 Mb/s for a${3imes 3}$kernel and 8-bit pixels. The improvements in the critical path delay and the required pixel access rate are obtained without significant increase in the resource utilization.
机译:二维卷积已被用作在各种信号和图像处理应用中进行滤波和增强的子系统。它不仅是内存密集型操作,而且是计算密集型过程。先前改善2D卷积性能的努力主要集中在存储器访问挑战上。但是,卷积器的性能在很大程度上取决于计算单元的有效设计,通过采用流水线技术等可以大大提高计算单元的效率。在本简介中,介绍了用于实现2D卷积的具有低像素访问速率架构的流水线。与传统卷积器相比,拟议的设计涉及固定大小(与问题/内核无关),并且显着缩短了关键路径,特别是针对大型内核,在Xilinx Virtex-X上,拟议的卷积器以283 MHz的时钟频率工作。 7(XC7V2000t)现场可编程门阵列,用于 n $ {3 times 3} $ nkernel。另外,新方案所需的像素访问速率小于最新方法的像素访问速率,对于a n $ { 3 次数3} $ n内核和8位像素。在不显着增加资源利用率的情况下获得了关键路径延迟的改进和所需的像素访问速率。

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