A Super-resolution Infrared Thermal Imager Based on Atmospheric Turbulence Correction

An infrared thermal imager and super-resolution technology, which is used in instruments, scientific instruments, measuring devices, etc., can solve problems such as low resolution and image degradation, improve image resolution, eliminate image blur, and increase optical aperture. Effect

Active Publication Date: 2015-10-14
NO 717 INST CHINA MARINE HEAVY IND GRP
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  • Abstract
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Problems solved by technology

[0006] The present invention mainly solves the technical problems that existing infrared thermal imagers in the prior art are affected by atmospheric turbulence conditions, image degradation is serious, and resolution is low; Super-resolution infrared camera based on atmospheric turbulence correction

Method used

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  • A Super-resolution Infrared Thermal Imager Based on Atmospheric Turbulence Correction
  • A Super-resolution Infrared Thermal Imager Based on Atmospheric Turbulence Correction
  • A Super-resolution Infrared Thermal Imager Based on Atmospheric Turbulence Correction

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Embodiment

[0024] Depend on figure 1 As shown, the overall composition and working method of a super-resolution infrared thermal imaging camera based on atmospheric turbulence correction. The infrared thermal imager mainly includes: a large aperture protection window 1, a wavefront modulation system 2, a telescopic system 3, an optical derotation mechanism 4, a rear imaging system 5, an area array infrared detector focal plane 6, and a refrigerator 7. System circuit components8. The installation method of the above-mentioned main components is as follows: along the direction of the optical axis, install the large-aperture protection window 1, the wavefront modulation system 2, the telescopic system 3, the optical derotation mechanism 4, the rear imaging system 5, and the area array infrared Detector focal plane6. The refrigerator 7 is installed on the side of the focal plane array 6 of the area array infrared detector.

[0025] In the above embodiments, the large-aperture protective w...

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Abstract

The invention relates to a super-resolution thermal infrared imager and in particular relates to a super-resolution thermal infrared imager based on atmospheric turbulence correction. The super-resolution thermal infrared imager comprises a large-caliber protection window, a wavefront modulation system, an infrared optical system, an area array infrared detector focal plane and a refrigerator which are sequentially arranged along the optical axis direction, and a system circuit component which is simultaneously connected with the array infrared detector focal plane and the refrigerator, wherein the wavefront modulation system is connected with the array infrared detector focal plane. The super-resolution thermal infrared imager has the main advantages that 1, the influence of the atmospheric turbulence is overcome, the phenomena of image blurring, flash and the like are eliminated, and the image resolution ratio is improved, so that the output infrared image is clear and enriched in details; 2, the resolution ratio of the infrared image can be close to the diffraction limit of the optical system; 3, the performance of the thermal infrared imager is obviously improved; 4, an optical scanning mechanism is saved, and the thermal infrared imager is simple in structure, small in size and low in engineering realization difficulty and has high reliability and high practicability.

Description

technical field [0001] The invention relates to a super-resolution infrared thermal imager, in particular to a super-resolution infrared thermal imager based on atmospheric turbulence correction. Background technique [0002] High-resolution photoelectric detection and imaging technology for long-distance targets is very important in military and national defense applications (such as: national security defense, missile detection and tracking, etc.). However, the optical power received by the imaging system decreases with the light propagation distance, which largely limits the detection distance of the imaging system. A typical way to increase the effective detection range of an imaging system is to increase the aperture of the optical system. However, when the optical aperture is increased to a certain extent, the atmospheric turbulence between the observation target and the imaging system becomes the dominant factor limiting the final imaging quality, and continuing to i...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01J5/00G01J5/06
Inventor 余徽陈福胜张智杰王晨晟
Owner NO 717 INST CHINA MARINE HEAVY IND GRP
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