CN202093163U - Single-soldier radio monitoring command system - Google Patents

Single-soldier radio monitoring command system Download PDF

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Publication number
CN202093163U
CN202093163U CN2011200580047U CN201120058004U CN202093163U CN 202093163 U CN202093163 U CN 202093163U CN 2011200580047 U CN2011200580047 U CN 2011200580047U CN 201120058004 U CN201120058004 U CN 201120058004U CN 202093163 U CN202093163 U CN 202093163U
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China
Prior art keywords
data
radio monitoring
command
receiver
processing system
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Expired - Fee Related
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CN2011200580047U
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Chinese (zh)
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王栋
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CHENGDU ZERO TECHNOLOGY Co Ltd
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Individual
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Abstract

The utility model relates to a single-soldier radio monitoring command system, which is divided into a single-soldier radio monitoring system and a command system. The single-soldier radio monitoring system comprises a broadband radio monitoring receiver, a directional antenna, a GPS (global positioning system) receiver, a helmet type image acquisition system, a two-way voice intercommunication system, a data acquisition and processing system, a data transceiver system, a video encoder and a power supply system, wherein the broadband radio monitoring receiver gives the signal level values according to different pointing directions of the directional antenna; the directional antenna is connected with the data acquisition and processing system; the broadband radio monitoring receiver is connected with the data acquisition and processing system; the GPS receiver is connected with the data acquisition and processing system; the command system comprises a data transceiver system, a data processing system, a command terminal, a two-way audio intercommunication system and a data feedback chief command center transmission system; the data transceiver system is connected with the data processing system; and the data processing system is respectively connected with the command terminal, the two-way audio intercommunication system and the data feedback chief command center transmission system.

Description

Individual soldier's radio monitoring command system
Technical field
The utility model relates to a kind of technical field of radio, particularly a kind of individual soldier's radio monitoring command system.
Background technology
Along with progress of science and technology, the particularly fast development of information industry, radio is also being brought into play more and more important effect as the important carrier of information.The illegal radio frequency situation of using of some that accompany also increases day by day with it, influences the use of normal radio subscriber.Various wireless communications, broadcasting means even illegally used by hostile force, its destruction has more influence power than other means.
Under such background, local, army's radio regulatory organization constantly increases radio interference investigation ability in recent years, and the radio supportability of large-scale activity.Through 15, the construction in 10 years of 11th Five-Year, each province and city, whole nation radio regulatory organization has built up the ultra-short wave radio monitoring station of considerable scale substantially, and disposed a considerable amount of mobile monitoring cars, fixed station adopts different direction finding systems (as correlation interference, than the width of cloth, super-resolution etc.) that tested frequency is shown to degree with monitoring car.Multistation (car) crosses then can provide the approximate region of interference source.Bearing accuracy is about one kilometer of radius.
The radio interference volume source is generally little, is easy to hiddenly or mobile, in case enter near-field region, limit by the monitoring error of fixed station, locomotive, must rely on artificial for finally tracking down and recovering of interference source.The basic at present portable receiver that adopts cooperates directional antenna that interference source is finally located.
The geographical environment of near-field region and electromagnetic environment may be very complicated, radio signal reflection, refraction, summing points etc. are easy to provide the sensing of operator error, and tracking down and recovering the radio signal interference source fast need the monitoring personnel have more rich experience and radio knowwhy.
Also be the emphasis of radio safety guarantee work in recent years simultaneously for the radio safety guarantee of the occasion in a certain zone, each venue of Beijing Olympic Games, National Day military parade Tian An-men and these geographic coverages of each military airfield periphery are interior if radio interference will be brought irremediable loss to large-scale activity.Similar with near-field interference, in zone among a small circle, the effect that fixed direction finding monitoring station and mobile monitoring car play is limited, mainly relies on the monitoring personnel to carry the portable equipment Monitoring and Positioning.
After entering the near field, radio interference monitoring station, battlebus are are still tracked down and recovered interference source, turn-off transmitter as early as possible, must the dependence personnel carry portable set to reduce influence.Present portable wireless is in disturbing radio safety guarantee work such as search in the near field, large-scale activity guarantee, and the individual soldier carries out radio direction finding (RDF) work important, irreplaceable effect.In the environment of radio target source near field, fixedly direction finding site and the effect of mobile direction finding car are limited, must take monitoring receiver by manpower and approach and search signal source.Because the singularity of radiowave, the near field geographical environment is different, monitoring personnel's experience level differs, the work effect of signal source is searched in the near field, and traditional individual soldier searches signal source, only relies on receiver open area rotary test field intensity value, the artificial quick target landform of being familiar with, selection schemer by virtue of experience, there is certain blindness in work, and often same place is searched repeatedly.
From the above mentioned, there is following shortcoming in prior art:
1. fixed monitoring station and mobile monitoring car can't directly cross the definite position of interference source can only provide approximate region;
2. have the monitoring personnel to carry portable equipment again and search separately, existing near field radio interference is substantially only searched and is cooperated directional antenna progressively to approach according to arrival bearing by portable receiver, and the individual soldier carries out;
3. the individual soldier near field is approached interference source and is lacked the data that similar multistation, car cross and exchange and contact mechanism.
The utility model content
In order to overcome the above-mentioned shortcoming that prior art exists, the purpose of this utility model provides a kind of individual soldier's radio monitoring command system, be exactly on the basis of existing individual soldier's radio direction finding (RDF) monitoring equipment, increase data acquisition, the passback utility appliance, and data are aggregated into near-field interference or large-scale activity radio safety guarantee command centre, the real-time monitoring and direction-finding data of each individual soldier (comprise and showing to degree, signal strength) be aggregated into command centre's computer of integrated on-the-spot map after treatment, floor manager is dispatched each individual soldier's test according to the real-time testing situation, approach interference source.
The technical scheme that its technical matters that solves the utility model adopts is:
A kind of individual soldier's radio monitoring command system, it is characterized in that, it is divided into individual soldier's radio monitoring system and command system, this individual soldier's radio monitoring system comprises the broadband radio monitoring receiver, directional antenna, display terminal, the GPS receiver, the helmet-type image capturing system, the double-directional speech intercom system, data acquisition processing system, data receiving-transmitting system, video encoder, radio transmission receiving system and electric power system, this broadband radio monitoring receiver is according to the different level values that provide signal that point to of directional antenna, this directional antenna is connected with this data acquisition processing system, this broadband radio monitoring receiver then links to each other with this data acquisition processing system, and this GPS receiver is connected with this data acquisition processing system, this helmet-type image capturing system links to each other with this video encoder, this video encoder is connected with this radio transmission receiving system, this double-directional speech intercom system and voice coder, demoder links to each other, this voice coder, demoder is connected with this radio transmission receiving system, and electric power system is to this display terminal, the GPS receiver, the helmet-type image capturing system, the double-directional speech intercom system, data acquisition processing system, the data receiving-transmitting system power supply; This command system comprises data receiving-transmitting system, data handling system, commander's terminal, two way audio intercom system and commander in chief's centre data return system, this data receiving-transmitting system is connected with this data handling system, and this data handling system is connected with this commander's terminal, two way audio intercom system and commander in chief's centre data return system respectively.
The beneficial effects of the utility model are, on the basis of existing individual soldier's radio direction finding (RDF) monitoring equipment, increase data acquisition, passback utility appliance, and data are aggregated into near-field interference or large-scale activity radio safety guarantee command centre, the real-time monitoring and direction-finding data of each individual soldier are aggregated into (comprise and showing to degree, signal strength) command centre's computer of integrated on-the-spot map after treatment, and floor manager is dispatched each individual soldier's test, approached interference source according to the real-time testing situation.
Description of drawings
Below in conjunction with drawings and Examples the utility model is further specified.
Fig. 1 is the utility model frame structure synoptic diagram.
The number in the figure explanation:
1 radio monitoring receiver
2 directional antennas
The 3GPS receiver
4 helmet-type image capturing systems
5 double-directional speech intercom systems
6 video encoders
7 audio coder ﹠ decoder (codec)s
8 data acquisition processing systems
9 data receiving-transmitting systems
10 electric power systems
The 11GPS antenna
12 with commander's terminal data transmit antenna
13 data receiving-transmitting systems
14 data handling systems
15 data passback commander in chief center emission coefficient
16 audio coder ﹠ decoder (codec)s
17 commander's terminals
18 double-directional speech intercom systems
19 with individual soldier's radio monitoring system data transmit antenna
20 with commander in chief's centre data transmit antenna
Embodiment
The utility model individual soldier radio monitoring command system can be divided into individual soldier's radio monitoring system and two subsystems of command system.
Individual soldier's radio monitoring system comprises radio monitoring receiver 1, directional antenna 2 (directional antenna 2 of present embodiment is equipped with electronic compass), GPS receiver 3, helmet-type image capturing system 4, double-directional speech intercom system 5, video encoder 6, audio coder ﹠ decoder (codec) 7, data acquisition processing system 8, data receiving-transmitting system 9 and electric power system 10, gps antenna 11, with commander's terminal data transmit antenna 12, data receiving-transmitting system 13, data handling system 14, data passback commander in chief center emission coefficient 15, audio coder ﹠ decoder (codec) 16, commander's terminal 17, double-directional speech intercom system 18, with individual soldier's radio monitoring system data transmit antenna 19, with commander in chief's centre data transmit antenna 20.
This radio monitoring receiver 1, the adoptable model of present embodiment is German R﹠amp; PR100 receiver that S company produces or EB200 receiver, directional antenna 2 adopt R﹠amp; HE200, HE300 directional antenna that S company produces, it is the major equipment that signal source work is searched in present near field, the utility model is transformed directional antenna, the assembling electronic compass, the XL49-ZCC2 electronic compass that this electronic compass adopts the long-range company in Chinese and Western, Beijing to produce can be gathered the position angle that directional antenna points in real time.
This GPS receiver 3 adopts BR23-GJS101, is responsible for gathering individual soldier's real-time geographic positional information, and acquisition time information send data processing equipment and Monitoring Data to bundle packing, with the Monitoring Data of synchronous different human observer.
This helmet-type image capturing system 4 adopts Si Puer/SV-AT26, utilizes the helmet-type camera, gathers the environmental information of individual soldier's periphery, for cammander's aid decision making.
This double-directional speech intercom system 5 adopts Haikang DS-6001F, and cammander and monitoring personnel's voice call function is provided, and the cammander can be directly issues an order to the monitoring personnel of appointment.
This video encoder 6 adopts SW-DVS9001HC.
This audio coder ﹠ decoder (codec) 7 adopts AD1819BJST.
This data acquisition processing system 8 adopts Chengdu dot matrix DZM-80 etc., be responsible for gathering broadband receiver level information, be installed in the electronic compass information of directional antenna, and the geographic position and the temporal information binding packing of gathering with GPS.The data of helmet-type image capturing system and double-directional speech intercom system are sent data receiving-transmitting system after also handling compression through data acquisition processing system.
Net letter peace CwnData 1600 was responsible for information communication between monitoring personnel and the cammander during this data receiving-transmitting system 9 adopted, and the data after data acquisition processing system is handled spread out of through emission coefficient through overcompression.The wireless messages transmission can be carried out multiple arrangements according to the actual conditions at scene.The geographical environment open ground can utilize low-frequency range radio (wireless) communication.The geographic position is complicated but the public mobile network road covers the configurable 3G mobile network in fairway, and many card binding network broadbands can satisfy system's needs.
All devices provided the power supply support beyond electric power system 10 was responsible for monitoring receiver.
Net letter peace CwnData1600 was responsible for information communication between monitoring personnel and the cammander during data receiving-transmitting system 13 adopted.
Data handling system 14 adopts Chengdu dot matrix DZM-80 etc., is responsible for analyzing the Monitoring Data that the monitoring personnel pass back.
Data passback commander in chief center emission coefficient 15 adopts Beijing to win the safe 1.2 meters quiet middle communication satellite communication systems of Tianding.
This audio coder ﹠ decoder (codec) 16 adopts AD1819BJST.
Commander's terminal 17 can adopt main flow PC notebook computer.
Double-directional speech intercom system 18 can adopt Haikang DS-6001F.
The above, it only is preferred embodiment of the present utility model, be not that the utility model is done any pro forma restriction, every foundation technical spirit of the present utility model all still belongs in the scope of technical solutions of the utility model any simple modification, equivalent variations and modification that above embodiment did.

Claims (1)

1. individual soldier's radio monitoring command system, it is characterized in that, it is divided into individual soldier's radio monitoring system and command system, this individual soldier's radio monitoring system comprises the broadband radio monitoring receiver, directional antenna, the GPS receiver, the helmet-type image capturing system, the double-directional speech intercom system, data acquisition processing system, data receiving-transmitting system, video encoder and electric power system, this broadband radio monitoring receiver is according to the different level values that provide signal that point to of directional antenna, this directional antenna is connected with this data acquisition processing system, this broadband radio monitoring receiver then links to each other with this data acquisition processing system, and this GPS receiver is connected with this data acquisition processing system, this helmet-type image capturing system links to each other with this video encoder, this video encoder is connected with this data receiving-transmitting system, this double-directional speech intercom system and voice coder, demoder links to each other, this voice coder, demoder is connected with this radio transmission receiving system, and electric power system is to this GPS receiver, the helmet-type image capturing system, the double-directional speech intercom system, data acquisition processing system, the data receiving-transmitting system power supply; This command system comprises data receiving-transmitting system, data handling system, commander's terminal, two way audio intercom system and data passback commander in chief center emission coefficient, this data receiving-transmitting system is connected with this data handling system, and this data handling system is connected with this commander's terminal, two way audio intercom system and commander in chief's centre data return system respectively.
CN2011200580047U 2011-03-08 2011-03-08 Single-soldier radio monitoring command system Expired - Fee Related CN202093163U (en)

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Application Number Priority Date Filing Date Title
CN2011200580047U CN202093163U (en) 2011-03-08 2011-03-08 Single-soldier radio monitoring command system

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102833516A (en) * 2012-08-23 2012-12-19 深圳先进技术研究院 Cloud computing-based intelligent helmet network system and method for processing video information
CN102866411A (en) * 2012-09-13 2013-01-09 成都理工大学 Geological survey safety system
DE102013225423A1 (en) * 2013-12-10 2015-07-02 Rohde & Schwarz Gmbh & Co. Kg Bearing system and method for operating a direction finding system with head antenna
CN106411427A (en) * 2016-08-31 2017-02-15 成都中星世通电子科技有限公司 Water radio monitoring system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102833516A (en) * 2012-08-23 2012-12-19 深圳先进技术研究院 Cloud computing-based intelligent helmet network system and method for processing video information
CN102833516B (en) * 2012-08-23 2015-02-18 深圳先进技术研究院 Cloud computing-based intelligent helmet network system and method for processing video information
CN102866411A (en) * 2012-09-13 2013-01-09 成都理工大学 Geological survey safety system
CN102866411B (en) * 2012-09-13 2014-05-14 成都理工大学 Geological survey safety system
DE102013225423A1 (en) * 2013-12-10 2015-07-02 Rohde & Schwarz Gmbh & Co. Kg Bearing system and method for operating a direction finding system with head antenna
CN106411427A (en) * 2016-08-31 2017-02-15 成都中星世通电子科技有限公司 Water radio monitoring system

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C14 Grant of patent or utility model
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ASS Succession or assignment of patent right

Owner name: CHENGDU ZERO TECHNOLOGY CO., LTD.

Free format text: FORMER OWNER: WANG DONG

Effective date: 20140609

C41 Transfer of patent application or patent right or utility model
C53 Correction of patent for invention or patent application
CB03 Change of inventor or designer information

Inventor after: Li Hao

Inventor before: Wang Dong

COR Change of bibliographic data

Free format text: CORRECT: INVENTOR; FROM: WANG DONG TO: LI HAO

Free format text: CORRECT: ADDRESS; FROM: 300074 NANKAI, TIANJIN TO: 610041 CHENGDU, SICHUAN PROVINCE

TR01 Transfer of patent right

Effective date of registration: 20140609

Address after: West high tech Zone Fucheng Road in Chengdu city of Sichuan province 610041 No. 399 Tianfu New Valley 5 Building No. 1206

Patentee after: Chengdu Zero Technology Co., Ltd.

Address before: Tianjin City Qingfeng road 300074 No. 10 Nankai District

Patentee before: Wang Dong

DD01 Delivery of document by public notice

Addressee: Chengdu Zero Technology Co., Ltd.

Document name: Notification to Pay the Fees

C56 Change in the name or address of the patentee
CP02 Change in the address of a patent holder

Address after: West high tech Zone Fucheng Road in Chengdu city of Sichuan province 610000 No. 399 Tianfu New Valley No. 8 unit 1 Building No. 1701

Patentee after: Chengdu Zero Technology Co., Ltd.

Address before: West high tech Zone Fucheng Road in Chengdu city of Sichuan province 610041 No. 399 Tianfu New Valley 5 Building No. 1206

Patentee before: Chengdu Zero Technology Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20111228

Termination date: 20160308