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Fast time-lens-based line-scan single-pixel camera with multi-wavelength source

机译:具有多波长源的基于时间镜头的快速线扫描单像素相机

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A fast time-lens-based line-scan single-pixel camera with multi-wavelength source is proposed and experimentally demonstrated in this paper. A multi-wavelength laser instead of a mode-locked laser is used as the optical source. With a diffraction grating and dispersion compensating fibers, the spatial information of an object is converted into temporal waveforms which are then randomly encoded, temporally compressed and captured by a single-pixel photodetector. Two algorithms (the dictionary learning algorithm and the discrete cosine transform-based algorithm) for image reconstruction are employed, respectively. Results show that the dictionary learning algorithm has greater capability to reduce the number of compressive measurements than the DCT-based algorithm. The effective imaging frame rate increases from 200 kHz to 1 MHz, which shows a significant improvement in imaging speed over conventional single-pixel cameras.
机译:本文提出了一种基于时间镜头的多波长线扫描单像素相机,并通过实验对其进行了实验验证。使用多波长激光器而不是锁模激光器作为光源。使用衍射光栅和色散补偿光纤,将对象的空间信息转换为时间波形,然后将其随机编码,时间压缩并由单像素光电探测器捕获。分别采用两种算法(字典学习算法和基于离散余弦变换的算法)进行图像重建。结果表明,字典学习算法比基于DCT的算法具有更大的减少压缩测量次数的能力。有效的成像帧速率从200 kHz增加到1 MHz,与传统的单像素相机相比,显示出显着的成像速度提高。

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