三视自适应窗大小视差估计算法及其实时硬件

Abdulkadir Akin, Raffaele Capoccia, Jonathan Narinx, I. Baz, A. Schmid, Y. Leblebici
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引用次数: 13

摘要

本文提出了一种面向硬件的三眼自适应窗大小视差估计(T-AWDE)算法,并首次提出了针对高分辨率图像的实时三眼视差估计(DE)硬件。所提出的三视角的DE硬件是最近发布的双目AWDE实现的增强版本。T-AWDE硬件通过合并从中左和中右相机对获得的两个深度图来生成非常高质量的深度图。T-AWDE硬件通过采用双重检查方案来增强视差结果,该方案解决了AWDE实现中存在的大部分遮挡问题,同时即使对于位于中心图像左侧或右侧边缘的物体也能提供正确的视差结果。提出的T-AWDE硬件架构能够在Virtex-7 FPGA上以1024×768 XGA视频分辨率处理每秒55帧,视差范围为128像素。
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Trinocular adaptive window size disparity estimation algorithm and its real-time hardware
This paper proposes a hardware-oriented trinocular adaptive window size disparity estimation (T-AWDE) algorithm and the first real-time trinocular disparity estimation (DE) hardware that targets high-resolution images with high-quality disparity results. The proposed trinocular DE hardware is the enhanced version of the recently published binocular AWDE implementation. The T-AWDE hardware generates a very high-quality depth map by merging two depth maps obtained from the center-left and center-right camera pairs. The T-AWDE hardware enhances disparity results by applying a double checking scheme which solves most of the occlusion problems existing in the AWDE implementation while providing correct disparity results even for objects located at left or right edge of the center image. The proposed T-AWDE hardware architecture enables handling 55 frames per second on a Virtex-7 FPGA at a 1024×768 XGA video resolution for a 128 pixels disparity range.
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