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An efficient and compact row buffer architecture on FPGA for real-time neighbourhood image processing

机译:FPGA上高效紧凑的行缓冲区架构,用于实时邻域图像处理

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This work presents a compact and efficient row buffer (RB) architecture on field-programmable gate array (FPGA). The design confines multiple RBs within the full capacity of Xilinx Block RAM (BRAM) in contrast to the conventional approach which partially utilizes a full BRAM per RB. The configuration of BRAM with different port aspect ratio and its data accessing via an efficient pattern generator circuitry allows the design to buffer pixelwise image data and retrieve multiple pixels per clock in a predefined pattern to achieve the functionality of multiple RBs. The design uses smallest BRAM18 primitive to be scaled in small steps for any larger kernel and image size for providing the best economical solution. The proposed architecture retains the bandwidth requirement to 1 pixel/clock at an ideal efficiency of 1 clock/pixel along with the saving of up to 87.5% BRAMs as compared to the conventional RBs and at the same time sustains high frame rates (1920x1080 @ 217 fps) to support real-time image processing. Therefore, it is feasible to replace conventional high-cost RBs with our proposed RBs on latest FPGA devices especially for high performance yet area constraint neighbourhood image processing applications.
机译:这项工作提出了一种在现场可编程门阵列(FPGA)上的紧凑而有效的行缓冲区(RB)体系结构。与常规方法不同,该设计将多个RB限制在Xilinx Block RAM(BRAM)的全部容量之内。具有不同端口长宽比的BRAM的配置及其通过有效模式生成器电路的数据访问,使该设计能够缓冲按像素排列的图像数据,并以预定模式在每个时钟中检索多个像素,以实现多个RB的功能。该设计使用最小的BRAM18原语,可针对任何较大的内核和图像大小以小步进行缩放,以提供最佳的经济解决方案。与传统的RB相比,所提出的架构以1时钟/像素的理想效率将带宽要求保持在1像素/时钟,并节省多达87.5%的BRAM,同时保持了高帧速率(1920x1080 @ 217) fps)以支持实时图像处理。因此,在最新的FPGA器件上用我们建议的RB代替常规的高成本RB是可行的,特别是对于高性能但面积受限的邻域图像处理应用。

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