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Imaging method of MM-CCD

A technology of MM-CCD and imaging method, which is applied in the field of remote sensing satellite images, can solve the problems of narrow signal readout and transmission bandwidth, low image resolution, unfavorable analysis and utilization, etc., so as to eliminate underexposure, improve radiation resolution, Excellent signal-to-noise ratio performance

Active Publication Date: 2019-08-09
中国人民解放军61646部队
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AI Technical Summary

Problems solved by technology

[0004] However, the traditional area array CCD has the following defects in the application of remote sensing satellite images: the signal readout and transmission bandwidth is narrow, so the transmission capability is poor
On the other hand, the resolution of the images sampled by the area array CCD is not high, which is not conducive to further analysis and utilization

Method used

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  • Imaging method of MM-CCD
  • Imaging method of MM-CCD
  • Imaging method of MM-CCD

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Embodiment Construction

[0030] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

[0031] Before introducing the imaging method of the present invention, the MM-CCD involved in the present invention will be explained first. Multi-Modality CCD (Multi-Modality CCD) referred to as MM-CCD, its hardware structure pixel arrangement is the same as the existing area array CCD, but the working mechanism of the two is different. In the area array CCD, each row of CCD channels is connected and connected, while in MM-CCD, each row of CCD channels is independent of each other, and the designer can control the imaging time and charge transfer time of each row of imaging units individually thro...

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Abstract

The present invention provides an imaging method of MM-CCD. A MM-CCD is obliquely arranged, so that the included angle between the MM-CCD and the flight direction of the satellite is arctan (1 / n), n is a positive integer, and n is smaller than the number of pixel rows of the MM-CCD; when the MM-CCD is not placed obliquely, the pixel length and the sampling step length of MM-CCD along the flight direction of the satellite are both d.After the CCD is obliquely placed according to the step A, the sampling step length of the MM-CCD is set to take 1 + n2 times of sampling as a cycle, and when sampling is carried out for 1 + n2 + 1 times, imaging position of the m-1th column of pixels in the a+n row of pixels of the MM-CCD is overlapped with the imaging position of the m column of pixels in thea row of pixels of the MM-CCD, wherein m is a positive integer and is smaller than MM-CCD pixel column number; and pixel demixing is carried out on the 1 + n2 sequence images obtained in the period, so that the resolution of the obtained images in the satellite flight direction and the vertical direction is improved to be twice of the original resolution. According to the invention, more non-redundant information is contained, and the image resolution can be effectively improved.

Description

technical field [0001] The invention relates to the technical field of remote sensing satellite images, in particular to an MM-CCD imaging method of a satellite camera. Background technique [0002] Charge Coupled Devices CCD (Charge Coupled Devices) is a new type of semiconductor device developed in the early 1970s. In the late 1960s, BOYLE WS and SIMTH GS of Bell Laboratories in the United States discovered the phenomenon of charge transfer through semiconductor potential wells, proposed a new concept of charge coupling, and also predicted the device in signal processing and signal storage. and its application prospects in image sensing. [0003] CCD is divided into two types according to its pixel arrangement: linear array (liner) CCD and area array (Area) CCD. The area array CCD device is composed of a photosensitive unit, a transfer gate, a shift register and some auxiliary input and output circuits. When working, the light signal is sampled by the photosensitive uni...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04N5/335H04N5/353H04N5/359H04N25/00
CPCH04N25/00H04N25/53H04N25/62
Inventor 赵俊保周春平时春雨刘艳博马璐杨晓月常治国范纯卓穆志勇
Owner 中国人民解放军61646部队
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