CN104835402A - Dedicated space and ground communication intercom system for adolescent science popularization teaching - Google Patents

Dedicated space and ground communication intercom system for adolescent science popularization teaching Download PDF

Info

Publication number
CN104835402A
CN104835402A CN201510248776.XA CN201510248776A CN104835402A CN 104835402 A CN104835402 A CN 104835402A CN 201510248776 A CN201510248776 A CN 201510248776A CN 104835402 A CN104835402 A CN 104835402A
Authority
CN
China
Prior art keywords
model
land
models
station
command
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201510248776.XA
Other languages
Chinese (zh)
Inventor
不公告发明人
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sanshui District of Foshan City Wishes Torch Education and Science Co Ltd
Original Assignee
Sanshui District of Foshan City Wishes Torch Education and Science Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sanshui District of Foshan City Wishes Torch Education and Science Co Ltd filed Critical Sanshui District of Foshan City Wishes Torch Education and Science Co Ltd
Priority to CN201510248776.XA priority Critical patent/CN104835402A/en
Publication of CN104835402A publication Critical patent/CN104835402A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B25/00Models for purposes not provided for in G09B23/00, e.g. full-sized devices for demonstration purposes

Abstract

The invention provides a dedicated space and ground communication intercom system for adolescent science popularization teaching. The system comprises a space station model, a land and aerospace control and command system center model, a land information exchange processing center model, a No.1 satellite relay station model, a No.2 satellite relay station model, a No.1 measurement airplane model, a No.2 measurement plane model, an astronaut space and ground communication intercom system, a land communication center model, a land intercom system, a No.1 land measurement and control station model, a No.2 land measurement and control station model, a No.3 land measurement and control station model, a No.4 land measurement and control station model, a No.5 land measurement and control station model, a No.6 land measurement and control station model, a No.7 land measurement and control station model, a No.8 land measurement and control station model, a No.9 land measurement and control station model, an ocean No.1 measurement ship model, an ocean No.2 measurement ship model, an ocean No.3 measurement ship model and an ocean No.4 measurement ship model. The space and land communication intercom scene of an astronaut in a four-dimensional space can be simulated, and the system is a high-tech science teaching product.

Description

Cosmonaut's air ground communication intercom system that a kind of teenager's science popularization is imparted knowledge to students special
Technical field
The present invention relates to space flight science popularization teaching aid model field, particularly relate to cosmonaut's air ground communication intercom system that a kind of teenager's science popularization is imparted knowledge to students special.
Background technology
Cosmonaut's air ground communication is exactly earth station, the wireless link each other of celestial body and spacecraft, also known as air ground communication, space communtication, earth station comprises ground, aerial and marine radio communication station, space communication is due to distance, signal is weak, ensure efficient communication, the receiving equipment that earth station must have sensitivity high, the antenna of powerful transmitting apparatus and larger effective aperture, also want modulation technique and the coding techniques of application of advanced, signal to noise ratio (S/N ratio) is exchanged for increased bandwidth as adopted, reduce the modulation technique and coding techniques that receive threshold, separately because space target is motion mostly, thus where necessary, receiving antenna reply goal orientation Continuous Tracking.The output power of transmitter of spacecraft is restricted, and earth station must use large aperture antenna and low noise amplifier, thus in deep space communication, ground use high-gain, point to controlled parabola antenna, the most frequently used antenna aperture is 18 meters and 27 meters.Spaceborne communication facilities must lightweight, volume is little, radioresistance, life-span are grown, can experience a shock and vibrate, reliability is high.The frequency range that space communication uses is very wide, from myriameter waves to millimeter wave and even laser.The frequency range that satellite communication is commonly used is 1 ~ 15 gigahertz (GHZ) (GHz), and has brought into use higher frequency range.Space communication is divided into Speech Communication, Image Communication, data communication, remote measurement, command information transmission etc. according to the information content transmitted.
Pass through airwave communication between spacecraft and ground, the carrier of cosmonaut and land-based AC is radiowave, first contacted with cosmonaut by satellite communication, then satellite emission signal is to ground, sends instruction and realize air ground communication by satellite to cosmonaut after ground receives.
Earth station is international appellation, and China claims earth station to be spacecraft TT & C station (hereinafter referred to as tracking telemetry and command station), and it comprises fixed station and recreational center two type.According to the requirement in observing and controlling region, tracking telemetry and command station is distributed in very wide scope, and its cloth station can be domestic home, also can in the whole world any suitable place.
The task of tracking telemetry and command station is directly carried out tracking measurement, remote measurement, remote control to spacecraft and communicates, it sends the measurement received, telemetry intelligence (TELINT) to space flying control center, according to instruction and the spacecraft communication of space flying control center, and control center is coordinated to complete control to spacecraft.Tracking telemetry and command station also program according to the rules can independently implement to spacecraft control.The equipment of tracking telemetry and command station comprises outer examining system, telemetry system, telechirics, communication system, television system, timing system, computer system and utility appliance.Outer examining system is the main part of tracking telemetry and command station, and its task carries out tracking measurement to spacecraft, obtains the kinematic parameter of spacecraft, determines track and the position of spacecraft.The task of telemetry system receives the physiologic information etc. about spaceborne device duty, space environment parameter and cosmonaut sent from spacecraft.Television system receives the dynamic job situation about manned spacecraft, observes cosmonaut's activity in spacecraft and out of my cabin.
Tracking telemetry and command station, by its distribution, has the large class of land tracking telemetry and command station, sea survey ship, aerial survety aircraft and TDRS four.So, why to set up so much station? this due to spaceflight TT&C system communication be by radio microware propagate based on, and microwave signal is rectilinear propagation, can not turn round, due to the impact of earth curvature, the tracking telemetry and command station in a region can not realize observing the whole process of airship, therefore only has and just can complete telemetry communication task with the ground control station being distributed in global different location " relay ".Therefore, no matter a country has built how many tracking telemetry and command stations in oneself country, all can not meet the needs of large-scale space mission tracking measurement, therefore, also need to set up moonscope and data relay transmission system aloft, or the tracking telemetry and command station of foundation activity on ocean outside continent extends, caused by a variety of causes, China temporarily still have selected the latter at present.This Ye Shi China successively builds the reason place of 4 marine space flight Oceangoing vessel.
In sum, for space flight communication popular science knowledge universal in teenager, excite teen-age space flight dream and possess a fondness for science, study science, by the initiative spirit of science, be badly in need of cosmonaut's air ground communication intercom system that a kind of teenager's science popularization of exploitation is imparted knowledge to students special, solve the difficult problem that teenager's space flight science popularization teaching aid lacks, through retrieval, find no the teaching aid system identical with the present invention.
Summary of the invention
The invention provides cosmonaut's air ground communication intercom system that a kind of teenager's science popularization is imparted knowledge to students special.
Cosmonaut's air ground communication intercom system that a kind of teenager's science popularization of the present invention is imparted knowledge to students special, comprises space station model, land Aerospace Control command system center model, land message exchange processing enter model, a satellite relay station model, No. two satellite relay station models, a survey aircraft model, No. two survey aircraft models, spacefarer's air ground communication intercom system, land communication center model, land intercom system, a land tracking telemetry and command station model, No. two land tracking telemetry and command station models, No. three land tracking telemetry and command station models, No. four land tracking telemetry and command station models, No. five land tracking telemetry and command station models, No. six land tracking telemetry and command station models, No. seven land tracking telemetry and command station models, No. eight land tracking telemetry and command station models, No. nine land tracking telemetry and command station models, marine No. one, ocean surveying vessel model, marine No. two, ocean surveying vessel model, marine No. three, ocean surveying vessel model, marine No. four, ocean surveying vessel model, the centre position, upper end of described space station model connects spacefarer's air ground communication intercom system, the left end of described space station model connects a satellite relay station model, the right-hand member of described space station model connects No. two satellite relay station models, connection land, the lower end Aerospace Control command system center model of described space station model, a satellite relay station model is connected on the left of the upper end of described land Aerospace Control command system center model, connect No. two satellite relay station models on the right side of the upper end of described land Aerospace Control command system center model, the left end of described land Aerospace Control command system center model connects a survey aircraft model from top to bottom successively, a land tracking telemetry and command station model, No. nine land tracking telemetry and command station models, No. eight land tracking telemetry and command station models, No. seven land tracking telemetry and command station models, No. six land tracking telemetry and command station models, marine No. one, ocean surveying vessel model and No. two, marine ocean surveying vessel model, the right-hand member of described land Aerospace Control command system center model connects No. two survey aircraft models from top to bottom successively, No. two land tracking telemetry and command station models, No. three land tracking telemetry and command station models, No. four land tracking telemetry and command station models, No. five land tracking telemetry and command station models, land message exchange processing enter model, marine No. three, ocean surveying vessel model and No. four, marine ocean surveying vessel model, connection land, Aerospace Control command system center model lower end, described land communication center model, the right-hand member of described land communication center model connects land intercom system, is located on the left of the model of space station above the right-hand member of a described satellite relay station model, on the left of the upper end being located at land Aerospace Control command system center model below a described satellite relay station model right-hand member, be located at above the left end of described No. two satellite relay station models on the right side of the model of space station, on the right side of the upper end connecting land Aerospace Control command system center model below described No. two satellite relay station model left ends, on the left of a described satellite relay station model below from top to bottom successively with a survey aircraft model, a land tracking telemetry and command station model, No. nine land tracking telemetry and command station models, No. eight land tracking telemetry and command station models, No. seven land tracking telemetry and command station models, No. six land tracking telemetry and command station models, marine No. one, ocean surveying vessel model is connected with No. two, marine ocean surveying vessel model, described No. two satellite relay station model lower right-hand side from top to bottom successively with No. two survey aircraft models, No. two land tracking telemetry and command station models, No. three land tracking telemetry and command station models, No. four land tracking telemetry and command station models, No. five land tracking telemetry and command station models, marine No. three, ocean surveying vessel model is connected with No. four, marine ocean surveying vessel model.
First link road of further described spacefarer's air ground communication intercom system again after a satellite relay station model and No. two satellite relay station models are connected with land Aerospace Control command system center model and land message exchange processing enter model, then realizes via land Aerospace Control command system center model connection land communication center model and land intercom system that spacefarer's air ground communication intercom system and land intercom system intercommunication converse after being to be connected with a satellite relay station model and No. two satellite relay station models by connection space station model.
Second link road of further described spacefarer's air ground communication intercom system again after a satellite relay station model and No. two satellite relay station models are connected with land Aerospace Control command system center model and land message exchange processing enter model with a survey aircraft model, No. two survey aircraft models, then are connected land intercom system via land Aerospace Control command system center model and realize spacefarer's air ground communication intercom system and land intercom system intercommunication call after being to be connected with a satellite relay station model and No. two satellite relay station models by connection space station model with land communication center model.
3rd link road of further described spacefarer's air ground communication intercom system after being to be connected with a satellite relay station model and No. two satellite relay station models by connection space station model again through a satellite relay station model and No. two satellite relay station models and a land tracking telemetry and command station model, No. two land tracking telemetry and command station models, No. three land tracking telemetry and command station models, No. four land tracking telemetry and command station models, No. five land tracking telemetry and command station models, No. six land tracking telemetry and command station models, No. seven land tracking telemetry and command station models, No. eight land tracking telemetry and command station models, after No. nine land tracking telemetry and command station models are connected with land Aerospace Control command system center model and land message exchange processing enter model, to be connected land intercom system with land communication center model via land Aerospace Control command system center model again and to realize spacefarer's air ground communication intercom system and land intercom system intercommunication call.
4th link road of further described spacefarer's air ground communication intercom system after being to be connected with a satellite relay station model and No. two satellite relay station models by connection space station model again through a satellite relay station model and No. two satellite relay station models and No. one, marine ocean surveying vessel model, marine No. two, ocean surveying vessel model, marine No. three, ocean surveying vessel model, after marine No. four, ocean surveying vessel model is connected with land Aerospace Control command system center model and land message exchange processing enter model, connect land communication center model and land intercom system via land Aerospace Control command system center model again and realize spacefarer's air ground communication intercom system 8 and land intercom system intercommunication call.
The beneficial effect of cosmonaut's air ground communication intercom system that a kind of teenager's science popularization is imparted knowledge to students special is: its be different from traditional space flight teaching aid function singleness, moulding simple, can not the drawback of solid show four-dimentional space cosmonaut air ground communication, the present invention has the excellent feature of intellectuality, practical, science popularization, and the scene that cosmonaut realizes interactive intercommunication in the air ground communication of four-dimentional space can be simulated, be that a high-tech science popularization is imparted knowledge to students special new peculiar space flight teaching aid product.
Accompanying drawing explanation
Fig. 1 is the stereo dissected figure of cosmonaut's air ground communication intercom system that a kind of teenager of the present invention science popularization is imparted knowledge to students special.
Embodiment
Embodiment 1:
Cosmonaut's air ground communication intercom system that a kind of teenager's science popularization according to Fig. 1 is imparted knowledge to students special, comprises space station model 1, land Aerospace Control command system center model 2, land message exchange processing enter model 3, a satellite relay station model 4, No. two satellite relay station models 5, a survey aircraft model 6, No. two survey aircraft models 7, spacefarer's air ground communication intercom system 8, land communication center model 9, land intercom system 10, a land tracking telemetry and command station model 11, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, No. six land tracking telemetry and command station models 16, No. seven land tracking telemetry and command station models 17, No. eight land tracking telemetry and command station models 18, No. nine land tracking telemetry and command station models 19, marine No. one, ocean surveying vessel model 20, marine No. two, ocean surveying vessel model 21, marine No. three, ocean surveying vessel model 22, marine No. four, ocean surveying vessel model 23, the centre position, upper end of described space station model 1 connects spacefarer's air ground communication intercom system 8, the left end of described space station model 1 connects a satellite relay station model 4, the right-hand member of described space station model 1 connects No. two satellite relay station models 5, connection land, the lower end Aerospace Control command system center model 2 of described space station model 1, a satellite relay station model 4 is connected on the left of the upper end of described land Aerospace Control command system center model 2, connect No. two satellite relay station models 5 on the right side of the upper end of described land Aerospace Control command system center model 2, the left end of described land Aerospace Control command system center model 2 connects a survey aircraft model 6 from top to bottom successively, a land tracking telemetry and command station model 11, No. nine land tracking telemetry and command station models 19, No. eight land tracking telemetry and command station models 18, No. seven land tracking telemetry and command station models 17, No. six land tracking telemetry and command station models 16, marine No. one, ocean surveying vessel model 20 and No. two, marine ocean surveying vessel model 21, the right-hand member of described land Aerospace Control command system center model 2 connects No. two survey aircraft models 7 from top to bottom successively, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, land message exchange processing enter model 3, marine No. three, ocean surveying vessel model 22 and No. four, marine ocean surveying vessel model 23, connection land, Aerospace Control command system center model 2 lower end, described land communication center model 9, the right-hand member of described land communication center model 9 connects land intercom system 10, is located on the left of space station model 1 above the right-hand member of a described satellite relay station model 4, on the left of the upper end being located at land Aerospace Control command system center model 2 below described satellite relay station model 4 right-hand member, be located at above the left end of described No. two satellite relay station models 5 on the right side of space station model 1, on the right side of the upper end connecting land Aerospace Control command system center model 2 below described No. two satellite relay station model 5 left ends, on the left of a described satellite relay station model 4 below from top to bottom successively with a survey aircraft model 6, a land tracking telemetry and command station model 11, No. nine land tracking telemetry and command station models 19, No. eight land tracking telemetry and command station models 18, No. seven land tracking telemetry and command station models 17, No. six land tracking telemetry and command station models 16, marine No. one, ocean surveying vessel model 20 is connected with No. two, marine ocean surveying vessel model 21, described No. two satellite relay station model 5 lower right-hand side from top to bottom successively with No. two survey aircraft models 7, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, marine No. three, ocean surveying vessel model 22 is connected with No. four, marine ocean surveying vessel model 23.
First link road of above-mentioned spacefarer's air ground communication intercom system 8 again after a satellite relay station model 4 and No. two satellite relay station models 5 are connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, then are connected land communication center model 9 and land intercom system 10 via land Aerospace Control command system center model 2 and realizes spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1.
Second link road of above-mentioned spacefarer's air ground communication intercom system 8 again after a satellite relay station model 4 and No. two satellite relay station models 5 and a survey aircraft model 6, No. two survey aircraft models 7 are connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, then are connected land intercom system 10 via land Aerospace Control command system center model 2 and realize spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1 with land communication center model 9.
3rd link road of above-mentioned spacefarer's air ground communication intercom system 8 after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1 again through a satellite relay station model 4 and No. two satellite relay station models 5 and a land tracking telemetry and command station model 11, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, No. six land tracking telemetry and command station models 16, No. seven land tracking telemetry and command station models 17, No. eight land tracking telemetry and command station models 18, after No. nine land tracking telemetry and command station models 19 are connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, to be connected land intercom system 10 with land communication center model 9 via land Aerospace Control command system center model 2 again and to realize spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call.
4th link road of above-mentioned spacefarer's air ground communication intercom system 8 after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1 again through a satellite relay station model 4 and No. two satellite relay station models 5 and No. one, marine ocean surveying vessel model 20, marine No. two, ocean surveying vessel model 21, marine No. three, ocean surveying vessel model 22, after marine No. four, ocean surveying vessel model 23 is connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, connect land communication center model 9 and land intercom system 10 via land Aerospace Control command system center model 2 again and realize spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call.
The above is only preferred embodiment of the present invention, and be not restriction the present invention being made to other form, any those skilled in the art may utilize the technology contents of above-mentioned announcement to be changed or be modified as the Equivalent embodiments of equivalent variations.But everyly do not depart from technical solution of the present invention content, any simple modification, equivalent variations and the remodeling done above embodiment according to technical spirit of the present invention, still belong to the protection domain of technical solution of the present invention.

Claims (5)

1. cosmonaut's air ground communication intercom system is imparted knowledge to students in teenager's science popularization special, it is characterized in that: described in comprise space station model 1, land Aerospace Control command system center model 2, land message exchange processing enter model 3, a satellite relay station model 4, No. two satellite relay station models 5, a survey aircraft model 6, No. two survey aircraft models 7, spacefarer's air ground communication intercom system 8, land communication center model 9, land intercom system 10, a land tracking telemetry and command station model 11, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, No. six land tracking telemetry and command station models 16, No. seven land tracking telemetry and command station models 17, No. eight land tracking telemetry and command station models 18, No. nine land tracking telemetry and command station models 19, marine No. one, ocean surveying vessel model 20, marine No. two, ocean surveying vessel model 21, marine No. three, ocean surveying vessel model 22, marine No. four, ocean surveying vessel model 23, the centre position, upper end of described space station model 1 connects spacefarer's air ground communication intercom system 8, the left end of described space station model 1 connects a satellite relay station model 4, the right-hand member of described space station model 1 connects No. two satellite relay station models 5, connection land, the lower end Aerospace Control command system center model 2 of described space station model 1, a satellite relay station model 4 is connected on the left of the upper end of described land Aerospace Control command system center model 2, connect No. two satellite relay station models 5 on the right side of the upper end of described land Aerospace Control command system center model 2, the left end of described land Aerospace Control command system center model 2 connects a survey aircraft model 6 from top to bottom successively, a land tracking telemetry and command station model 11, No. nine land tracking telemetry and command station models 19, No. eight land tracking telemetry and command station models 18, No. seven land tracking telemetry and command station models 17, No. six land tracking telemetry and command station models 16, marine No. one, ocean surveying vessel model 20 and No. two, marine ocean surveying vessel model 21, the right-hand member of described land Aerospace Control command system center model 2 connects No. two survey aircraft models 7 from top to bottom successively, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, land message exchange processing enter model 3, marine No. three, ocean surveying vessel model 22 and No. four, marine ocean surveying vessel model 23, connection land, Aerospace Control command system center model 2 lower end, described land communication center model 9, the right-hand member of described land communication center model 9 connects land intercom system 10, is located on the left of space station model 1 above the right-hand member of a described satellite relay station model 4, on the left of the upper end being located at land Aerospace Control command system center model 2 below described satellite relay station model 4 right-hand member, be located at above the left end of described No. two satellite relay station models 5 on the right side of space station model 1, on the right side of the upper end connecting land Aerospace Control command system center model 2 below described No. two satellite relay station model 5 left ends, on the left of a described satellite relay station model 4 below from top to bottom successively with a survey aircraft model 6, a land tracking telemetry and command station model 11, No. nine land tracking telemetry and command station models 19, No. eight land tracking telemetry and command station models 18, No. seven land tracking telemetry and command station models 17, No. six land tracking telemetry and command station models 16, marine No. one, ocean surveying vessel model 20 is connected with No. two, marine ocean surveying vessel model 21, described No. two satellite relay station model 5 lower right-hand side from top to bottom successively with No. two survey aircraft models 7, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, marine No. three, ocean surveying vessel model 22 is connected with No. four, marine ocean surveying vessel model 23.
2. cosmonaut's air ground communication intercom system is imparted knowledge to students in a kind of teenager's science popularization according to claim 1 special, it is characterized in that: the first link road of described spacefarer's air ground communication intercom system 8 again after a satellite relay station model 4 and No. two satellite relay station models 5 are connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, then are connected land communication center model 9 and land intercom system 10 via land Aerospace Control command system center model 2 and realizes spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1.
3. according to cosmonaut's air ground communication intercom system that a kind of teenager's science popularization described in claim 1 to 2 is imparted knowledge to students special, it is characterized in that: the second link road of described spacefarer's air ground communication intercom system 8 after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1 again through a satellite relay station model 4 and No. two satellite relay station models 5 and a survey aircraft model 6, after No. two survey aircraft models 7 are connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, to be connected land intercom system 10 with land communication center model 9 via land Aerospace Control command system center model 2 again and to realize spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call.
4. cosmonaut's air ground communication intercom system that a kind of teenager's science popularization according to claims 1 to 3 is imparted knowledge to students special, it is characterized in that: the 3rd link road of described spacefarer's air ground communication intercom system 8 after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1 again through a satellite relay station model 4 and No. two satellite relay station models 5 and a land tracking telemetry and command station model 11, No. two land tracking telemetry and command station models 12, No. three land tracking telemetry and command station models 13, No. four land tracking telemetry and command station models 14, No. five land tracking telemetry and command station models 15, No. six land tracking telemetry and command station models 16, No. seven land tracking telemetry and command station models 17, No. eight land tracking telemetry and command station models 18, after No. nine land tracking telemetry and command station models 19 are connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, to be connected land intercom system 10 with land communication center model 9 via land Aerospace Control command system center model 2 again and to realize spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call.
5. cosmonaut's air ground communication intercom system that a kind of teenager's science popularization according to Claims 1-4 is imparted knowledge to students special, it is characterized in that: the 4th link road of described spacefarer's air ground communication intercom system 8 after being to be connected with a satellite relay station model 4 and No. two satellite relay station models 5 by connection space station model 1 again through a satellite relay station model 4 and No. two satellite relay station models 5 and No. one, marine ocean surveying vessel model 20, marine No. two, ocean surveying vessel model 21, marine No. three, ocean surveying vessel model 22, after marine No. four, ocean surveying vessel model 23 is connected with land Aerospace Control command system center model 2 and land message exchange processing enter model 3, connect land communication center model 9 and land intercom system 10 via land Aerospace Control command system center model 2 again and realize spacefarer's air ground communication intercom system 8 and land intercom system 10 intercommunication call.
CN201510248776.XA 2015-05-17 2015-05-17 Dedicated space and ground communication intercom system for adolescent science popularization teaching Pending CN104835402A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510248776.XA CN104835402A (en) 2015-05-17 2015-05-17 Dedicated space and ground communication intercom system for adolescent science popularization teaching

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510248776.XA CN104835402A (en) 2015-05-17 2015-05-17 Dedicated space and ground communication intercom system for adolescent science popularization teaching

Publications (1)

Publication Number Publication Date
CN104835402A true CN104835402A (en) 2015-08-12

Family

ID=53813256

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510248776.XA Pending CN104835402A (en) 2015-05-17 2015-05-17 Dedicated space and ground communication intercom system for adolescent science popularization teaching

Country Status (1)

Country Link
CN (1) CN104835402A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW382680B (en) * 1998-04-06 2000-02-21 Lin Ching Fang Real-time IMU simulator
CN2532511Y (en) * 2001-07-26 2003-01-22 北京超翼技术研究所有限公司 Real-time natural-imitated monitor system
CN1521655A (en) * 2003-01-28 2004-08-18 中国南方航空股份有限公司 Computer-aided teaching system and method for stimulated aviation training
CN101847008A (en) * 2010-05-24 2010-09-29 哈尔滨工业大学 Flexible spacecraft ground control test platform and test method
RU2425667C1 (en) * 2010-03-01 2011-08-10 Леонид Андреевич Косик Device for creation of space disorientation in people

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW382680B (en) * 1998-04-06 2000-02-21 Lin Ching Fang Real-time IMU simulator
CN2532511Y (en) * 2001-07-26 2003-01-22 北京超翼技术研究所有限公司 Real-time natural-imitated monitor system
CN1521655A (en) * 2003-01-28 2004-08-18 中国南方航空股份有限公司 Computer-aided teaching system and method for stimulated aviation training
RU2425667C1 (en) * 2010-03-01 2011-08-10 Леонид Андреевич Косик Device for creation of space disorientation in people
CN101847008A (en) * 2010-05-24 2010-09-29 哈尔滨工业大学 Flexible spacecraft ground control test platform and test method

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
CCTV《走进科学》编辑部: "《揭开神秘的天体》", 28 February 2015 *
沈如松 等: "航天装备体系优化与评价集成仿真平台设计研究", 《装备指挥技术学院学报》 *

Similar Documents

Publication Publication Date Title
Hosseini et al. UAV command and control, navigation and surveillance: A review of potential 5G and satellite systems
Azari et al. Evolution of non-terrestrial networks from 5G to 6G: A survey
Xiao et al. UAV communications with millimeter-wave beamforming: Potentials, scenarios, and challenges
Wang et al. 6G wireless channel measurements and models: Trends and challenges
Song et al. A survey of prototype and experiment for UAV communications
CN109347492B (en) System and method for enhancing space-to-air coverage capability of mobile communication base station
CN108521667B (en) Unmanned aerial vehicle data transmission method with low transmission energy consumption
Shan et al. Machine learning-based field data analysis and modeling for drone communications
CN102717902B (en) Phased multi-rate self-adaptive measurement and control system of mars exploration deep space spacecraft
Miura et al. Preliminary flight test program on telecom and broadcasting using high altitude platform stations
Kato et al. Location awareness system for drones flying beyond visual line of sight exploiting the 400 MHz frequency band
CN109309521B (en) RTK base station device, signal interaction system and method thereof
Ghazzai et al. Trajectory optimization for cooperative dual-band UAV swarms
CN109586773A (en) Face empty communication millimeter wave non-orthogonal multiple access technology combined transceiving end wave beam forming and power distribution method
Hong et al. Key technologies in 6G SAGS IoT: Shape-adaptive antenna and radar-communication integration
Liu et al. 6G enabled advanced transportation systems
Akhtar et al. UAVs-Enabled Maritime Communications: UAVs-Enabled Maritime Communications: Opportunities and Challenges
Jin et al. Research on the Application of LEO Satellite in IOT
CN104835402A (en) Dedicated space and ground communication intercom system for adolescent science popularization teaching
González‐Prelcic et al. High‐Capacity Millimeter Wave UAV Communications
CN215121076U (en) Ship remote network communication intercom system
Chowdhury et al. A taxonomy and survey on experimentation scenarios for aerial advanced wireless testbed platforms
CN110518962A (en) The method for establishing aircraft Yu earth station's telemetry communication link
CN209001962U (en) A kind of RTK base station apparatus and its signal interaction system
CN204928891U (en) Multimachine aircraft data real -time monitoring system

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
EXSB Decision made by sipo to initiate substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20150812

RJ01 Rejection of invention patent application after publication