Space-ground integration timely response message acquisition method based on microsatellite system

A micro-satellite and information-response technology, applied in the aerospace field, can solve problems such as complex satellite operation and management, limited revisit cycle, and high difficulty, and achieve the effects of rapid download and direct application, rich types, and enhanced customization

Active Publication Date: 2017-11-21
AEROSPACE DONGFANGHONG SATELLITE
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] (1) Existing satellite systems mostly use a single satellite as the design scheme. Individually realize multi-star cooperation but the number is limited, limited by orbital laws, and the revisit cycle is limited. For the designated target area, it reaches below the sky level (such as hour level to several minutes) level) very difficult
As a result, it is difficult for the current system to achieve observations with high temporal resolution and high spatial resolution at the same time
[0004] (2) Satellite operation and management is complex and has a long cycle, mainly relying on large ground sites to achieve measurement and control, operation control and data downloading
The time period of satellite telemetry and remote control is at the level of days to several days, and the period of task change is long
[0005] (3) The processing cycle of satellite data application is long, and the image products from satellite acquisition to ground generation are complex, and it is difficult to adapt to customized and timely task requirements

Method used

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  • Space-ground integration timely response message acquisition method based on microsatellite system
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Embodiment Construction

[0032] Such as figure 1 , 2 As shown, the specific implementation of the method for obtaining timely response information based on the integration of space and ground based on the microsatellite system is:

[0033] 1) Constellation construction and deployment;

[0034] Aiming at the target with a ground latitude of 26 degrees north latitude, a walk constellation composed of 24 stars with an inclination of 27 degrees is designed and constructed, which is divided into 4 orbital planes, each with 6 stars. Each satellite is loaded with a 2m resolution camera payload, which can achieve an average 17-minute revisiting capability for the target.

[0035] 2) Betting mode for ground missions

[0036] Such as figure 1 As shown, if the selected satellite is specified, there are two mission betting modes, namely, the single-hop betting mode of the ground mission on the non-visible arc and the direct betting mode of the visible arc. If you do not specify a satellite, you can use the single-hop be...

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Abstract

The invention provides a space-ground integration timely response information acquisition method based on a microsatellite system. The steps includes (1) building and deploying a composite satellite constellation; (2) completing ground task uploading; (3) completing on-board rapid task planning based on a satellite-borne database and an in-orbit task reconfiguration function; and (4) rapidly obtaining response information. According to the method, the level of response to tasks is substantially improved, and can reach ten minutes at a minute level. The flexibility and customization degree of task execution of a satellite are substantially improved, customization information in an arbitrarily designated task time period can be rapidly obtained, and a task temporary change uploading function that cannot be realized by an existing satellite can also be realized. The supported types of ground applications are more abundant, not only an existing satellite operation control system is supported, but direct task launching and direct data receiving of a ground portable terminal and even a handheld terminal can also be directly supported.

Description

Technical field [0001] The invention relates to a space-ground integration timely response information acquisition method based on a micro-satellite system, and belongs to the field of aerospace technology. Background technique [0002] Satellite remote sensing data has become an important information support method for my country's national economic construction, and has been widely used in land and resources surveys, urban planning, environmental disaster monitoring, marine monitoring, agriculture, forestry and other fields. Many remote sensing application satellites have been launched internationally and a large amount of information data has been obtained. However, with the continuous in-depth development of satellite applications, more applications have put forward higher requirements on satellite systems and application methods, especially for more timely response speed (such as disaster, emergency monitoring), more Application user types (such as mobile terminals, persona...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B7/185H04W4/12H04W4/18H04W12/02
CPCH04B7/18523H04B7/18586H04W4/12H04W4/18H04W12/02
Inventor 傅丹膺王鹏周宇康国栋刘思远
Owner AEROSPACE DONGFANGHONG SATELLITE
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