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Dual field-of-view calculation correlated imaging system and method

A technology of correlated imaging and dual fields of view, applied in optical components, optics, instruments, etc., can solve the problems of small field of view and slow speed of computational correlated imaging, and achieve the goal of increasing light intensity utilization efficiency, reducing costs, and measuring long distances. Effect

Active Publication Date: 2015-12-02
BEIJING INST OF AEROSPACE CONTROL DEVICES
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Problems solved by technology

[0003] The technical problem to be solved by the present invention is: in order to overcome the problems of small field of view and slow speed of existing computational correlation imaging, a dual-field computational correlation imaging system and method are provided, which solves the problem of large field of view and fast imaging of computational correlation imaging question

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  • Dual field-of-view calculation correlated imaging system and method

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Embodiment Construction

[0025] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.

[0026] The invention discloses a dual field of view computing correlation imaging system and method. The system work flow chart is as follows: figure 1 Shown includes: parallel light illumination unit, DMD micromirror, DMD control circuit, first projection lens, second projection lens, first imaging target, second imaging target, first receiving lens, second receiving lens, first photoelectric A detector, a second photodetector, a first data acquisition card, a second data acquisition card, a first processor, and a second processor.

[0027] The parallel light illumination unit is composed of: an optical illumination system composed of a laser light source or an LED light source and a lens group, no specific parameters are required, and the required function is: to output a parallel and uniform illumination beam;

[0028] The first projection ...

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Abstract

The invention provides a dual field-of-view calculation correlated imaging system and a dual field-of-view calculation correlated imaging method. The dual field-of-view calculation correlated imaging system comprises a parallel light illumination unit, a DMD micromirror, a DMD control circuit, projection lenses, targets, receiving lenses, photoelectric detectors, data acquisition cards and processors. Included angles between a geometric center normal direction of the digital micromirror device DMD and the optical axes of the two projection lenses are +24 degrees and -24 degrees, and each micromirror rotating shaft of the DMD is vertical to the optical axes of the two projection lenses; and the two projection lenses and the two receiving lenses are positioned on the same optical path. The two projection lenses project a light field modulated by the DMD to the two targets in different field-of-view, reflected light of the targets are received respectively by the two receiving lenses and detected by the photoelectric detectors, the data acquisition cards acquire signals, the two processors are used for calculation and processing, and the display displays images in a screen-split manner. The dual field-of-view calculation correlated imaging system and the dual field-of-view calculation correlated imaging method overcome the defects of small existing calculation correlated imaging field-of-view, low utilization rate of energy emitted by light sources, long imaging time, high cost and the like, and can achieve low-cost single DMD dual field-of-view calculation correlated imaging.

Description

technical field [0001] The invention relates to a dual-field computational correlation imaging imaging system and method, belonging to the new imaging fields of intensity correlation imaging or quantum imaging and single-pixel camera imaging. Background technique [0002] Computational correlation imaging technology (also known as quantum imaging technology) is a new type of application technology developed from optical field intensity correlation imaging technology. Computational correlation imaging has the advantages of traditional intensity correlation imaging: the image quality is weakly affected by atmospheric turbulence or scattering media; the technical difficulty is low, the cost is low, and the sensitivity is high. Correlation imaging technology has great application value in the fields of national defense, military, remote sensing, communication, biomedicine and so on. The problems that need to be solved in the practical application of computational correlation im...

Claims

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Application Information

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IPC IPC(8): G02B27/00G02B27/10
CPCG02B27/00G02B27/106
Inventor 李明飞赵连洁张安宁刘院省莫小范
Owner BEIJING INST OF AEROSPACE CONTROL DEVICES