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An FPGA-Based Hardware Implementation of Configurable Pixel-Level Color Image Fusion

机译:基于FPGA的可配置像素级彩色图像融合的硬件实现

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摘要

Image fusion has attracted a lot of interest in recent years. As a result, different fusion methods have been proposed mainly in the fields of remote sensing and computer (e.g., night) vision, while hardware implementations have been also presented to tackle real-time processing in different application domains. In this paper, a linear pixel-level fusion method is employed and implemented on a field-programmable-gate-array-based hardware system that is suitable for remotely sensed data. Our work incorporates a fusion technique (called VTVA) that is a linear transformation based on the Cholesky decomposition of the covariance matrix of the source data. The circuit is composed of different modules, including covariance estimation, Cholesky decomposition, and transformation ones. The resulted compact hardware design can be characterized as a linear configurable implementation since the color properties of the final fused color can be selected by the user in a way of controlling the resulting correlation between color components.
机译:近年来,图像融合吸引了很多兴趣。结果,主要在遥感和计算机(例如,夜视)视觉领域中已经提出了不同的融合方法,同时还提出了硬件实现方式来解决不同应用领域中的实时处理。在本文中,采用了线性像素级融合方法,并在适用于遥感数据的基于现场可编程门阵列的硬件系统上实现了该方法。我们的工作采用了融合技术(称为VTVA),该技术是基于源数据协方差矩阵的Cholesky分解进行的线性变换。该电路由不同的模块组成,包括协方差估计,Cholesky分解和变换模块。由于用户可以通过控制颜色分量之间的结果相关性来选择最终融合颜色的颜色属性,因此可以将最终的紧凑型硬件设计特征化为线性可配置实现。

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