多光谱图像
计算机科学
探测器
计算机视觉
人工智能
光谱成像
鬼影成像
噪音(视频)
堆积
医学影像学
图像质量
全光谱成像
图像传感器
多光谱模式识别
信噪比(成像)
光学
遥感
电子工程
差速器(机械装置)
航程(航空)
计算复杂性理论
高动态范围成像
光学成像
作者
Hongxu Su,Zhuoqi Zhang,Mingyuan Shao,Zheng Bao,Xiaolin Song,Ye Han,Jinyao Li,Yu Liu,Xinwei Li
摘要
Aiming at the problem that traditional multispectral array detectors rely on complex optical components such as filters, which leads to large system volume, high maintenance cost and limited imaging quality, this study proposes a multispectral array imaging system based on computational imaging technology. By integrating a multi-channel single-pixel detector array, combining the DMD high-speed modulation technique and differential correlation algorithm, a spectral segment parallel acquisition mechanism is constructed to realize the synchronous correlation imaging of multispectral dimensions, which avoids the limitations of the traditional hardware stacking architecture. The designed low-noise pre-amplification and filtering circuits effectively improve the signal-to-noise ratio of weak photocurrent signals, and combined with the suppression of statistical noise by the differential correlation algorithm, the imaging quality of highly reflective or transparent objects is significantly improved. The experimental results show that the system achieves four-channel simultaneous imaging in the spectral range of 400 nm~1700 nm with a 20% improvement in the signal-to-noise ratio compared with a single detector, which provides a new paradigm of lightweight and high efficiency for acquiring multidimensional information of complex scenes in the fields of environmental monitoring, precision agriculture, and medical diagnosis.
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