Comparison of Common Algorithms for Single-Pixel Imaging via Compressed Sensing

压缩传感 像素 探测器 计算机科学 奈奎斯特-香农抽样定理 算法 奈奎斯特率 计算机视觉 人工智能 采样(信号处理) 图像分辨率 电信
作者
Wenjing Zhao,Lei Gao,Aiping Zhai,Dong Wang
出处
期刊:Sensors [Multidisciplinary Digital Publishing Institute]
卷期号:23 (10): 4678-4678 被引量:31
标识
DOI:10.3390/s23104678
摘要

Single-pixel imaging (SPI) uses a single-pixel detector instead of a detector array with a lot of pixels in traditional imaging techniques to realize two-dimensional or even multi-dimensional imaging. For SPI using compressed sensing, the target to be imaged is illuminated by a series of patterns with spatial resolution, and then the reflected or transmitted intensity is compressively sampled by the single-pixel detector to reconstruct the target image while breaking the limitation of the Nyquist sampling theorem. Recently, in the area of signal processing using compressed sensing, many measurement matrices as well as reconstruction algorithms have been proposed. It is necessary to explore the application of these methods in SPI. Therefore, this paper reviews the concept of compressive sensing SPI and summarizes the main measurement matrices and reconstruction algorithms in compressive sensing. Further, the performance of their applications in SPI through simulations and experiments is explored in detail, and then their advantages and disadvantages are summarized. Finally, the prospect of compressive sensing with SPI is discussed.
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