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A Hardware-Oriented Dynamically Adaptive Disparity Estimation Algorithm and its Real-Time Hardware

机译:面向硬件的动态自适应视差估计算法及其实时硬件

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The computational complexity of disparity estimation algorithms and the need of large size and bandwidth for the external and internal memory make the real-time processing of disparity estimation challenging, especially for High Resolution (HR) images. This paper proposes a hardware-oriented adaptive window size disparity estimation (AWDE) algorithm and its realtime reconfigurable hardware implementation that targets HR video with high quality disparity results. The proposed algorithm is a hybrid solution involving the Sum of Absolute Differences and the Census cost computation methods to vote and select the best suitable disparity candidates. It utilizes a pixel intensity based refinement step to remove faulty disparity computations. The AWDE algorithm dynamically adapts the window size considering the local texture of the image to increase the disparity estimation quality. The proposed reconfigurable hardware of the AWDE algorithm enables handling 60 frames per second on Virtex-5 FPGA at a 1024×768 XGA video resolution for a 120 pixel disparity range.
机译:视差估计算法的计算复杂性以及外部和内部存储器对大尺寸和带宽的需求,使得视差估计的实时处理极具挑战性,特别是对于高分辨率(HR)图像。本文提出了一种面向硬件的自适应窗口大小视差估计(AWDE)算法及其实时可重构硬件实现,该算法针对具有高质量视差结果的HR视频。所提出的算法是一种混合解决方案,包括绝对差之和和人口普查成本计算方法,以投票和选择最合适的视差候选者。它利用基于像素强度的细化步骤来消除错误的视差计算。 AWDE算法考虑到图像的局部纹理来动态调整窗口大小,以增加视差估计质量。所提出的AWDE算法的可重配置硬件能够在Virtex-5 FPGA上以1024×768 XGA视频分辨率在120像素视差范围内每秒处理60帧。

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