Real-time star atlas background filtering method in daytime environment

A star map and environment technology, applied in image enhancement, image data processing, processor architecture/configuration, etc., can solve the problems of unable to filter out the background to highlight star points, poor real-time performance, etc., to achieve high use value, fast speed, and real-time good sex effect

Active Publication Date: 2018-06-12
BEIJING INST OF CONTROL ENG
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AI Technical Summary

Problems solved by technology

[0003] The technical problem solved by the present invention is: to overcome the deficiencies of the prior art, to provide a real-time filter method for star points in a daytime cloudy environment, and to solve the problem t

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  • Real-time star atlas background filtering method in daytime environment
  • Real-time star atlas background filtering method in daytime environment
  • Real-time star atlas background filtering method in daytime environment

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Embodiment

[0102] Assume that the size of the original star map is 1024×1024, the input of the star map is 100M pixels / s, the clock of the filtering part is 50MHz, the filtering structure element is 5×5, and the data in two structure elements (m=2) are processed in each clock cycle.

[0103] The original star map cache space size is 5*1024 pixel cache units; the minimum star map cache space size is 5*1024 pixel cache units; the column minimum value cache space is 6 pixel cache units; the column maximum value is 6 pixel cache units unit; 16 2-input comparators are required for the minimum value comparator; 16 2-input comparators are required for the maximum value; 2 subtractors are required for the difference; the filtering processing speed is 100M pixels / s, matching the speed of the input star map, The filtered output can be realized while collecting the original star map.

[0104] To sum up, the present invention uses (2n+1)×(2n+1) structural element as the basic unit to perform real-ti...

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Abstract

The invention provides a real-time star atlas background filtering method in a daytime environment. A finite row (2n+1) of star atlas data is filtered in real time by taking a (2n+1)* (2n+1) structureelement as a basic unit, a minimal star atlas and a maximal star atlas are solved sequentially, and a difference is obtained to complete filtering. The whole process is carried out in a processing line manner, calculation rules are simple and highly parallel with one another, the process is realized by hardware, star atlas collection and filtering are carried out in a processing line, the speed and instantaneity are high, and a using value is very high; and especially, the process of solving extreme star atlas values is carried out in the parallel graded processing line, the extreme values are solved in the column direction and then in the row direction, extreme values of the (2n+1) data are solved in the column or row direction, and calculation is highly parallel, low in computational complexity and high in speed.

Description

technical field [0001] The invention relates to the field of star map preprocessing of near-ground platforms such as airplanes, missiles, ships and near-space vehicles, in particular to background real-time filtering of star sensors in daytime cloudy environments. Background technique [0002] The star sensor is a high-precision optical attitude measurement sensor based on the star. It has the advantages of high attitude measurement accuracy and high reliability. It has been widely used in the attitude measurement and control systems of satellites, spacecraft and other spacecraft. At present, most of the typical star sensors work in the cold and dark background. Faced with the all-day navigation requirements of aircraft, missiles, ships and other platforms in the atmosphere and near-Earth space, due to the strong sky background light under daytime conditions, the stars will be flooded. Under complex backgrounds such as clouds, traditional star-sensitive filtering methods can...

Claims

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Application Information

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IPC IPC(8): G06T1/20G06T5/10
CPCG06T1/20G06T5/10
Inventor 李全良李晓徐卿王艳宝王立曹中祥
Owner BEIJING INST OF CONTROL ENG
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