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Multi-sensor array for polarimetric light-field imaging

机译:用于偏振光场成像的多传感器阵列

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Both light-field and polarization information contain lots of clues about scenes, and they can be widely used in variety of computer vision tasks. However, existing imaging systems cannot simultaneously capture the light-field and polarization information. In this paper, we present a low-cost and high-performance miniaturized polarimetric light-field camera, which is based on the six heterogeneous sensors array. The main challenge for the proposed strategy is to align the multi-view images with different polarization characteristics, especially for regions with high degree of polarization - in which the intensity correlations are commonly weak. To solve this problem, we propose to use Convolutional Neural Network (CNN) based stereo matching method for aligning the heterogeneously polarized images accurately. After stereo matching, both the light field and the Stokes vectors of scene are estimated, and the polarimetry conventions, e.g., the polarization angle, the linear polarization degree and the circular polarization degree, are given. We implement the prototype of the multi-sensor polarization light-field camera and perform extensive experiments on it. The polarimetric light-field camera achieves six live streaming on time and the heterogeneous processor of NVIDIA Jetson TX2 is exploited for image processing. Benefiting from the multi-sensor parallel polarization imaging and efficient parallel processing, the proposed system achieves promising performance on time resolution, signal-to-noise ratio. Besides, we develop the object recognition applications to show the superiorities of proposed system.
机译:光场和偏振信息都包含许多有关场景的线索,它们可以广泛用于各种计算机视觉任务中。但是,现有的成像系统不能同时捕获光场和偏振信息。在本文中,我们提出了一种低成本,高性能的微型化偏振光场相机,该相机基于六个异构传感器阵列。提出的策略的主要挑战是对齐具有不同偏振特性的多视图图像,尤其是对于偏振度较高的区域(在这些区域中,强度相关性通常较弱)。为了解决这个问题,我们提出使用基于卷积神经网络(CNN)的立体匹配方法来精确地对准异质偏振图像。进行立体匹配后,估计场景的光场和斯托克斯矢量,并给出偏振法惯例,例如偏振角,线性偏振度和圆偏振度。我们实现了多传感器偏振光场相机的原型,并对其进行了广泛的实验。偏振光场相机可按时实现六个实时流传输,而NVIDIA Jetson TX2的异构处理器则可用于图像处理。受益于多传感器并行偏振成像和有效的并行处理,该系统在时间分辨率,信噪比方面实现了有希望的性能。此外,我们开发了对象识别应用程序以展示所提出系统的优势。

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