CN209070097U - A kind of generalization radar screen monitoring display system - Google Patents

A kind of generalization radar screen monitoring display system Download PDF

Info

Publication number
CN209070097U
CN209070097U CN201821877988.XU CN201821877988U CN209070097U CN 209070097 U CN209070097 U CN 209070097U CN 201821877988 U CN201821877988 U CN 201821877988U CN 209070097 U CN209070097 U CN 209070097U
Authority
CN
China
Prior art keywords
radar
data
generalization
radar screen
display system
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.)
Active
Application number
CN201821877988.XU
Other languages
Chinese (zh)
Inventor
吕春
鲍捷
阴陶
戴荣
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.)
CHENGDU FOURIER ELECTRONIC TECHNOLOGY Co Ltd
Original Assignee
CHENGDU FOURIER ELECTRONIC TECHNOLOGY 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 CHENGDU FOURIER ELECTRONIC TECHNOLOGY Co Ltd filed Critical CHENGDU FOURIER ELECTRONIC TECHNOLOGY Co Ltd
Priority to CN201821877988.XU priority Critical patent/CN209070097U/en
Application granted granted Critical
Publication of CN209070097U publication Critical patent/CN209070097U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Radar Systems Or Details Thereof (AREA)
  • Closed-Circuit Television Systems (AREA)

Abstract

A kind of generalization radar screen monitoring display system characterized by comprising the video camera shown for acquiring radar screen and its PPI to be measured;Video for acquiring to video camera carries out the embeded processor of image procossing and OCR identification;For storing the data storage end of radar type information, icon information, radar image and lteral data information;For extracting radar type information, icon information, radar image and lteral data information from the data storage end, and the central server cluster of Data Fusion is carried out with the image data and identification data conveyed from embeded processor;The display end that fused data for conveying central server cluster is shown.Video acquisition is carried out to the screen of different radars, is handled by embeded processor and central processing unit, forms normalized display, the unification of radar screen monitoring is realized, simplifies display.

Description

A kind of generalization radar screen monitoring display system
Technical field
The utility model relates to radar asorbing paints, especially related to a kind of generalization radar screen monitoring display system.
Background technique
With the every field scientific progress such as microelectronics, the continuous development of Radar Technology, the detection means of radar via A kind of only detector of radar of the past has developed to infrared light, ultraviolet light, laser and other optical detection means fusion association Make.In order to be developed, be tested to radar system, tested, checked and accepted and studied signal processing algorithm, radar number is needed According to acquisition and recording system acquisition and record the radar dynamic data in the true environment of outfield.However, every country, company's radar The radar system of the difference of system, numerous systems and different working modes largely occurs, and the radar of different systems or mode is often Data, agreement can not direct generalization, generally other than observer, other staff can not observe radar asorbing paint data in real time.
To solve the above status, the utility model, which builds one kind, may be implemented unitized hardware system, realize radar screen Display is simplified in the unification of curtain monitoring.
Utility model content
To solve the above-mentioned problems, the utility model provides a kind of generalization radar screen monitoring display system, to difference The screen of radar carries out video acquisition, decentralization, and is handled by embeded processor and central processing unit, forms normalization Display, realize radar screen monitoring unification, simplify display.
The following technology of the utility model proposed adoption:
A kind of generalization radar screen monitoring display system characterized by comprising
The video camera shown for acquiring radar screen and its PPI to be measured;
Video for acquiring to video camera carries out the embeded processor of image procossing and OCR identification;
For storing the data storage end of radar type information, icon information, radar image and lteral data information;
For extracting radar type information, icon information, radar image and lteral data information from the data storage end, and with The image data and identification data that convey from embeded processor carry out the central server cluster of Data Fusion;
The display end that fused data for conveying central server cluster is shown.
Further, video camera connect embeded processor, embeded processor, the data storage end, display end connection in Entreat server cluster.
Further, embeded processor, the data storage end, display end connect central server collection by interchanger Group.
Further, video camera and embeded processor integration system are standby, constitute front-end processor.
Further, front-end processor is exported using network interface and connects central server cluster by interchanger.
Further, each radar screen to be measured and its PPI, which are shown, is corresponding with a front-end processor.
Further, video camera is directed at radar screen and its PPI to be measured and shows and set up.
Further, central server cluster is made of several central processing units.
Further, embeded processor FPGA.
The utility model the utility model has the advantages that
1, by the video acquisition shown to radar to be measured and its PPI, and image procossing and OCR knowledge are carried out in collection terminal Not, simplify the data to central server cluster, save bandwidth, improve effective, and after merging to data, realize radar Display is simplified in the unification of screen monitoring;
2, this system uses the thought of decentralization, and computing module is preposition, is divided by executing at or near data source Analysis and knowledge formation reduce institute between the video camera as sensor and the central server cluster as central data center The communication bandwidth needed, after front end carries out identifying processing, only need to transmit result data gives central server cluster, is saving bandwidth While, reduce the data processing amount of central server, can reach the demand that this system needs superelevation real-time;
3, by front-end processing, edge calculations are realized, after part calculating task is unloaded to edge from cloud, entirely System reduces 30% ~ 40% to the consumption of the energy, can reduce by 20 times of time in terms of data are in integration, and Improve the safety of data;
4, it solves the problems, such as that many kinds of radar information data disunity is unfavorable for observing and show, is provided more to charge center Intuitive radar information data simplify and accuse the phenomenon that operation difficulty of platform is lagged with information processing.
Detailed description of the invention
Fig. 1 is the hardware block diagram of Tthe utility model system.
Specific embodiment
In order to keep the purpose, technical solution and specific implementation method of the application apparent, in conjunction with attached Example to this Shen It please be further elaborated.
It is as shown in Figure 1 that generalization radar screen described in the utility model embodiment monitors display system.
A kind of generalization radar screen monitors display system, including the data storage end, central server cluster, display end and The front-end processor being set at radar and its PPI display to be measured.
The data storage end connects central server cluster.Display end connects central server cluster.Front-end processor connection Central server cluster.
Preferably, embeded processor, the data storage end, display end connect central server cluster by interchanger, Convenient for the extension and multifunctional dot application of system.
Video camera and being made of one of embeded processor equipment, constitute front-end processor, and front-end processor rear end uses Network interface output connection interchanger.Under special circumstances, customizable to be revised as aviation connector such as airborne situation, it can convenient for data It is directly entered airborne the spread of the rumours system.
Each radar screen to be measured and its PPI, which are shown, is corresponding with a front-end processor.Front-end processor includes video camera And embeded processor.Video camera connects embeded processor, and embeded processor connects central server cluster.
Central server cluster is made of several central processing units.
Video camera is directed at radar screen and its PPI to be measured and shows and set up, for acquire radar screen to be measured and its PPI is shown, is not specified concrete model, is needed according to the actual situation, such as distance, picture range, selects the ginseng of camera and camera lens Number.
Embeded processor, the video for acquiring to video camera carry out image procossing and OCR identification.Mainly to video Image carries out noise, removal shooting shake, goes unless PPI image, and show that information identifies to PPI, identification uses OCR Identification saves transmission bandwidth to achieve the effect that be handled in front end, improves effective.Specifically, in view of common insertion Formula single-chip microcontroller can not carry this identified amount, it is contemplated that some restraining factors such as the high power consumption of GPU, high heat production, volume be big;Meanwhile In view of the particularity of system, the detection of airborne radar screen needs small size, low-power consumption, high real-time environment, and is directed to mesh It marks single, does not need the super large calculation amount of GPU, embeded processor can be held using FPGA by the hardware mode based on FPGA Carry this front-end processing identifying system.
Due to the front-end processing mode using edge calculations, central processing unit does not need to add GPU chip, it is only necessary to adopt Use the server of common cpu chip as core processing unit.
The data storage end, for storing radar type information, icon information, radar image and lteral data information, according to Needed for system actual application environment, configuration data storage end size.
Display end, is display screen or display, and the fused data for conveying central server cluster is shown.
Central server cluster, from the data storage end extract corresponding with radar to be measured radar type information, icon information, Radar image and lteral data information, and carry out data with the image data of corresponding preprocessor conveying and identification data and melt Conjunction processing.
Central server cluster carries out virtual radar image by the data transmission after fusion treatment to display end, in display end Interface display, the data of display, according to the transmission of implementation update, the data of display include target location coordinate, height, course, Speed, track, frame number and mark that manually radar is operated or is controlled etc..
By front-end processing, edge calculations, decentralization are realized.Part calculating task from cloud be unloaded to edge it Afterwards, whole system reduces 30% ~ 40% to the consumption of the energy, when data can reduce 20 times in terms of integrating Between, and improve the safety of data.
In the present system, all identification modules, the embeded processor identified including image procossing, OCR are all preposition to taking the photograph Camera end.Front-end processor is customization integral type video camera, includes embedded data processor and video camera.To Mei Geqian End sensor is all an identification module.After front end carries out identifying processing, only need to transmit result data gives central server collection Group, while saving bandwidth, reduces the data processing amount of central server, can reach this system and need superelevation real-time Demand.Central server cluster need to only complete fusion treatment work, by the image data of image procossing output and OCR identification output Identification data, carry out data fusion with the radar type information of extraction, icon information, radar image and lteral data information. Finally, the part that need to be shown is exported to display end according to practical operation demand.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this Within the spirit and principle of utility model, any modification, equivalent replacement, improvement and so on should be included in the utility model Protection scope within.

Claims (9)

1. a kind of generalization radar screen monitors display system characterized by comprising
The video camera shown for acquiring radar screen and its PPI to be measured;
Video for acquiring to video camera carries out the embeded processor of image procossing and OCR identification;
For storing the data storage end of radar type information, icon information, radar image and lteral data information;
For extracting radar type information, icon information, radar image and lteral data information from the data storage end, and with from embedding The image data and identification data that enter the conveying of formula processor carry out the central server cluster of Data Fusion;
The display end that fused data for conveying central server cluster is shown.
2. generalization radar screen according to claim 1 monitors display system, it is characterised in that: video camera connection insertion Formula processor, embeded processor, the data storage end, display end connect central server cluster.
3. generalization radar screen according to claim 2 monitors display system, it is characterised in that: embeded processor, The data storage end, display end connect central server cluster by interchanger.
4. generalization radar screen according to claim 3 monitors display system, it is characterised in that: video camera and embedded Processor integration system is standby, constitutes front-end processor.
5. generalization radar screen according to claim 4 monitors display system, it is characterised in that: front-end processor uses Network interface exports and connects central server cluster by interchanger.
6. generalization radar screen according to claim 4 monitors display system, it is characterised in that: each radar screen to be measured Curtain and its PPI show and are corresponding with a front-end processor.
7. generalization radar screen according to claim 1 monitors display system, it is characterised in that: video camera alignment is to be measured Radar screen and its PPI, which are shown, to be set up.
8. generalization radar screen according to claim 1 monitors display system, it is characterised in that: central server cluster It is made of several central processing units.
9. generalization radar screen according to claim 1 monitors display system, it is characterised in that: embeded processor is FPGA。
CN201821877988.XU 2018-11-15 2018-11-15 A kind of generalization radar screen monitoring display system Active CN209070097U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821877988.XU CN209070097U (en) 2018-11-15 2018-11-15 A kind of generalization radar screen monitoring display system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821877988.XU CN209070097U (en) 2018-11-15 2018-11-15 A kind of generalization radar screen monitoring display system

Publications (1)

Publication Number Publication Date
CN209070097U true CN209070097U (en) 2019-07-05

Family

ID=67099016

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821877988.XU Active CN209070097U (en) 2018-11-15 2018-11-15 A kind of generalization radar screen monitoring display system

Country Status (1)

Country Link
CN (1) CN209070097U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112904291A (en) * 2021-01-28 2021-06-04 湖北省气象信息与技术保障中心 Doppler weather radar fault diagnosis system and method based on codes

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112904291A (en) * 2021-01-28 2021-06-04 湖北省气象信息与技术保障中心 Doppler weather radar fault diagnosis system and method based on codes
CN112904291B (en) * 2021-01-28 2024-01-16 湖北省气象信息与技术保障中心 Code-based Doppler weather radar fault diagnosis system and method

Similar Documents

Publication Publication Date Title
CN205581646U (en) Unmanned aerial vehicle electric power inspection image acquisition and processing system
CN205450784U (en) Unmanned aerial vehicle electric power patrols linear system all
CN106251695A (en) Destination's parking stall intelligent recommendation system and method based on parking space state monitoring
CN110009530A (en) A kind of nerve network system and method suitable for portable power inspection
CN109801265B (en) Real-time transmission equipment foreign matter detection system based on convolutional neural network
CN107181323B (en) Unmanned aerial vehicle line patrol system and method
CN103941746A (en) System and method for processing unmanned aerial vehicle polling image
CN204498252U (en) A kind of police airborne video Reconnaissance system
CN105741466B (en) Aircraft for environment monitoring
CN102307297A (en) Intelligent monitoring system for multi-azimuth tracking and detecting on video object
CN106056624A (en) Unmanned aerial vehicle high-definition image small target detecting and tracking system and detecting and tracking method thereof
CN110084196A (en) A kind of monitor video identifying system for cloud computing
CN112235537A (en) Transformer substation field operation safety early warning method
CN108897342A (en) For the positioning and tracing method and system of the civilian multi-rotor unmanned aerial vehicle fast moved
CN209070097U (en) A kind of generalization radar screen monitoring display system
CN107248091A (en) A kind of recognition of face interactive marketing system
CN202231803U (en) Intelligent monitoring system for multi-aspect video object tracking detection
CN114020043A (en) Unmanned aerial vehicle building project supervision system and method, electronic equipment and storage medium
CN104007733A (en) System and method for monitoring agricultural intensive production
CN104735425B (en) Based on the transmission facility identification method of unmanned plane
CN108737775B (en) Big data acquisition platform
CN115641607A (en) Method, device, equipment and storage medium for detecting wearing behavior of power construction site operator
CN113642425A (en) Multi-mode-based image detection method and device, electronic equipment and storage medium
CN206038015U (en) Intelligent mobile device
CN104714068A (en) Robot for outdoor electric energy meter to read meter

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant