论文标题

LenslessPICAM:使用Raspberry Pi的透镜计算成像的硬件和软件平台

LenslessPiCam: A Hardware and Software Platform for Lensless Computational Imaging with a Raspberry Pi

论文作者

Bezzam, Eric, Kashani, Sepand, Vetterli, Martin, Simeoni, Matthieu

论文摘要

无镜头成像旨在替换/删除常规成像系统中的镜头。最早的摄像机实际上是无镜头的,依靠长时间的曝光时间在黑暗的房间/容器(摄像机镜头)中的小孔的另一端形成图像。引入镜头可提供更多的轻吞吐量,因此可以较短的曝光时间,同时保持鲜明的焦点。数字传感器的结合很容易地使计算成像技术可以使用后制作和增强原始图像(例如,通过deblurring,indpainting,inpainting,deNoinging,deNoing,锐化)。最近,成像科学家已经开始利用计算成像作为无透镜成像系统不可或缺的一部分,从而使他们能够从无镜头摄像机的高度多重原始测量值中形成可见图像(请参阅[5],并在其中进行参考,以全面处理无透镜成像)。这代表了相机系统设计的真正范式变化,因为有更大的灵活性可以迎合手头应用程序的硬件(例如轻质或平面设计)。但是,这种提高的灵活性是以对原始数字录音的后处理和更严格的传感和计算整合的价格出现的,这在实践中通常很难实现,这是由于所涉及的各个科学家之间的效率低下的相互作用。借助LenslessPICAM,我们提供了易于访问的硬件和软件框架,以使研究人员,业余爱好者和学生能够实施和探索无透镜成像的实用和计算方面。我们还提供详细的指南和练习,以便可以将LenslessPICAM用作教育资源,并指出我们的研究生级信号处理课程的结果。

Lensless imaging seeks to replace/remove the lens in a conventional imaging system. The earliest cameras were in fact lensless, relying on long exposure times to form images on the other end of a small aperture in a darkened room/container (camera obscura). The introduction of a lens allowed for more light throughput and therefore shorter exposure times, while retaining sharp focus. The incorporation of digital sensors readily enabled the use of computational imaging techniques to post-process and enhance raw images (e.g. via deblurring, inpainting, denoising, sharpening). Recently, imaging scientists have started leveraging computational imaging as an integral part of lensless imaging systems, allowing them to form viewable images from the highly multiplexed raw measurements of lensless cameras (see [5] and references therein for a comprehensive treatment of lensless imaging). This represents a real paradigm shift in camera system design as there is more flexibility to cater the hardware to the application at hand (e.g. lightweight or flat designs). This increased flexibility comes however at the price of a more demanding post-processing of the raw digital recordings and a tighter integration of sensing and computation, often difficult to achieve in practice due to inefficient interactions between the various communities of scientists involved. With LenslessPiCam, we provide an easily accessible hardware and software framework to enable researchers, hobbyists, and students to implement and explore practical and computational aspects of lensless imaging. We also provide detailed guides and exercises so that LenslessPiCam can be used as an educational resource, and point to results from our graduate-level signal processing course.

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