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Resource-saving laser radio frequency integrated communication load

A resource-saving and communication-loaded technology, applied in the electrical field, can solve the problems of inability to realize two-way communication, large volume, weight and power consumption, and low system integration

Active Publication Date: 2021-03-19
BEIJING RES INST OF TELEMETRY +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Prior art 1, the Chinese patent with the publication number CN103762998B introduces a large field of view common antenna hybrid radio frequency and laser wireless communication device, which realizes hybrid communication through the radio frequency laser common antenna, but the modulation and demodulation of radio frequency signals and optical signals The tuning module is discrete, the integration of communication components is low, and the capture and tracking with beacon light is used, the complexity of the tracking system is high; the second prior art, the Chinese patent with publication number CN103873151B introduces a compatible radio frequency, The spaceborne integrated communication system of laser and quantum communication provides a spaceborne communication integrated system that can realize radio frequency, laser and quantum communication functions at the same time, but its system integration level is not high, and there is no integrated design of radio frequency antenna and optical antenna. The size, weight and power consumption are relatively large; the third existing technology, the Chinese patent with the publication number CN107317593B, introduces a dual-link communication receiving system. By integrating the radio frequency link and laser link receiving system, the radio frequency and laser signal can be realized However, the radio frequency receiving antenna and the laser receiving antenna of the system adopt a discrete structure, the signal processing unit has a low degree of integration, and there is no transmission link, so two-way communication cannot be realized; prior art 4, introduction of Chinese patent with publication number CN107682044B A laser and radio frequency hybrid transmission system is proposed, which can realize the hybrid communication of laser and radio frequency, but the radio frequency antenna and optical antenna of the system are also independent of each other, and the system integration level is not high, which is not conducive to spaceborne and deep space communication applications; Existing technology five, the Chinese patent with the publication number CN110233665A introduces a radio frequency / laser cooperative fast capture tracking alignment method, which can realize rapid high-probability capture tracking alignment beams in the long-distance full airspace, but this method only realizes radio frequency / Laser hybrid capture and tracking, unable to achieve RF / laser hybrid communication
[0005] Although the above five technologies have realized laser radio frequency integrated communication, they have not completely solved the problems of laser radio frequency antenna integration, tracking system integration and signal processing system integration, and there are still volume, weight and power consumption of communication loads. bigger problem

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0058] Such as figure 1 As shown, a resource-saving laser radio frequency integrated communication load, including:

[0059] Laser radio frequency integrated antenna 1: used to receive the first laser beam or the first radio frequency beam from space and send it to the laser radio frequency beam splitter 2, and used to receive the second laser beam or the second radio frequency beam from the laser radio frequency beam splitter 2 and launch into space;

[0060] Laser radio frequency beam splitter 2: used to receive the first laser beam or first radio frequency beam sent by the laser radio frequency integrated antenna 1 and make a judgment, reflect the first radio frequency beam to the radio frequency processing module 3, and transmit the first laser beam to the radio frequency processing module 3 The laser processing module 4 is used to receive the second radio frequency beam sent by the radio frequency processing module 3, is used to receive the second laser beam sent by the ...

Embodiment 2

[0068] Such as figure 2 As shown, a resource-saving laser radio frequency integrated communication load, including:

[0069] Laser radio frequency integrated antenna 1: used to receive the first laser beam or the first radio frequency beam from space and send it to the laser radio frequency beam splitter 2, and used to receive the second laser beam or the second radio frequency beam from the laser radio frequency beam splitter 2 and launch into space;

[0070] Laser radio frequency beam splitter 2: used to receive the first laser beam or first radio frequency beam sent by the laser radio frequency integrated antenna 1 and make a judgment, reflect the first radio frequency beam to the radio frequency processing module 3, and transmit the first laser beam to the radio frequency processing module 3 The laser processing module 4 is used to receive the second radio frequency beam sent by the radio frequency processing module 3, is used to receive the second laser beam sent by the...

Embodiment 3

[0094] Such as figure 2 As shown, a resource-saving laser radio frequency integrated communication load, including:

[0095] Laser radio frequency integrated antenna 1: used to receive the first laser beam or the first radio frequency beam from space and send it to the laser radio frequency beam splitter 2, and used to receive the second laser beam or the second radio frequency beam from the laser radio frequency beam splitter 2 and launch into space;

[0096] The laser radio frequency integrated antenna 1 is a flexible surface laser radio frequency integrated antenna or a solid surface laser radio frequency integrated antenna, and the integrated antenna supports two states of folding and unfolding;

[0097] Laser radio frequency beam splitter 2: used to receive the first laser beam or first radio frequency beam sent by the laser radio frequency integrated antenna 1 and make a judgment, reflect the first radio frequency beam to the radio frequency processing module 3, and tr...

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Abstract

The invention provides a resource-saving laser radio frequency integrated communication load, which comprises a laser radio frequency integrated antenna for receiving and transmitting laser beams andradio frequency beams, a laser radio frequency beam splitter, a radio frequency processing module, a laser processing module, a signal processing module, a comprehensive control module used for converting the radio frequency tracking error signal and the laser coarse tracking error signal into a coarse tracking control signal and converting the fine tracking error signal into a fine tracking control signal; and a comprehensive interface module used for receiving the data signal, sending the data signal to the satellite platform and sending the satellite signal sent by the satellite platform tothe signal processing module. In order to solve the problems of integration of a laser radio frequency antenna, integration of a tracking system and integration of a signal processing system, the invention provides a satellite-borne communication load which is simple in structure, small in size, light in weight and high in integration degree and can simultaneously realize two communication functions of laser and radio frequency.

Description

technical field [0001] The invention relates to the field of electrical technology, in particular to a resource-saving laser radio frequency integrated communication load. Background technique [0002] With the continuous expansion and deepening of my country's lunar and deep space exploration activities, most of the frequency bands currently used for space-ground communication and information transmission belong to the radio frequency band. support services. At present, it is imperative to develop laser communication research in space communication. In order to solve the problems of high-speed communication in deep space, the main way is to increase the carrier frequency to the Ka frequency band and use laser links. At the same time, for satellite and deep space exploration applications with limited weight, volume and power consumption, strict requirements are put forward for the weight, volume and power consumption of the payload. In order to effectively reduce the size,...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B10/40H04B10/118H04B7/185H04B1/401
CPCH04B10/40H04B10/118H04B7/18515H04B1/401Y02D30/70
Inventor 赵卓刘向南于洪涛吴合龙衡楠李晓亮谌明
Owner BEIJING RES INST OF TELEMETRY
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