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首页> 外文期刊>IEEE Transactions on Circuits and Systems for Video Technology >Fast Parallel Implementation of Dual-Camera Compressive Hyperspectral Imaging System
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Fast Parallel Implementation of Dual-Camera Compressive Hyperspectral Imaging System

机译:双摄像机压缩高光谱成像系统的快速并行实现

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摘要

Coded aperture snapshot spectral imager (CASSI) provides a potential solution to recover the 3D hyperspectral image (HSI) from a single 2D measurement. The latest proposed design of the dual-camera compressive hyperspectral imager (DCCHI) can collect more information simultaneously with the CASSI to improve the reconstruction quality. The main bottleneck now lies in the high computation complexity of the reconstruction methods, which hinders the practical application. In this paper, we propose a fast parallel implementation based on DCCHI to reach a stable and efficient HSI reconstruction. Specifically, we develop a new optimization method for the reconstruction problem, which integrates the alternative direction multiplier method with the total variation-based regularization to boost the convergence rate. Then, to improve the time efficiency, a novel parallel implementation based on GPU is proposed. The performance of the proposed method is validated on both synthetic and real data. The experimental results demonstrate that our method has a significant advantage in time efficiency, while maintaining a comparable reconstruction fidelity.
机译:编码孔径快照光谱成像仪(CASSI)提供了一种从单个2D测量中恢复3D高光谱图像(HSI)的潜在解决方案。最新提出的双相机压缩高光谱成像仪(DCCHI)设计可以与CASSI同时收集更多信息,以提高重建质量。现在的主要瓶颈在于重构方法的高计算复杂性,这阻碍了实际应用。在本文中,我们提出了一种基于DCCHI的快速并行实现,以实现稳定高效的HSI重建。具体来说,我们针对重构问题开发了一种新的优化方法,该方法将替代方向乘子方法与基于总变化的正则化相结合,以提高收敛速度。然后,为了提高时间效率,提出了一种新的基于GPU的并行实现。所提方法的性能在合成数据和真实数据上均得到验证。实验结果表明,我们的方法在时间效率上具有显着优势,同时保持了相当的重建保真度。

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