CN202652408U - Map video monitoring system based on SIP protocol and video transmission system - Google Patents

Map video monitoring system based on SIP protocol and video transmission system Download PDF

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Publication number
CN202652408U
CN202652408U CN 201220125827 CN201220125827U CN202652408U CN 202652408 U CN202652408 U CN 202652408U CN 201220125827 CN201220125827 CN 201220125827 CN 201220125827 U CN201220125827 U CN 201220125827U CN 202652408 U CN202652408 U CN 202652408U
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CN
China
Prior art keywords
map
subordinate
server
level
platform
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Expired - Lifetime
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CN 201220125827
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Chinese (zh)
Inventor
李福祥
马玫
卫小凡
杨鸿昌
张颖
伍小波
邓创
唐娜
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State Grid Corp of China SGCC
China Electric Power Research Institute Co Ltd CEPRI
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China Electric Power Research Institute Co Ltd CEPRI
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Priority to CN 201220125827 priority Critical patent/CN202652408U/en
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Publication of CN202652408U publication Critical patent/CN202652408U/en
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Abstract

The utility model discloses a map video monitoring system based on an SIP protocol. The map video monitoring system comprises a lower-level platform, an upper-level platform and an SIP protocol gateway. The lower-level platform comprises a lower-level map server, a lower-level management server, a lower-level Web server and a number of cameras. A number of cameras are connected with the lower-level map server. The lower-level map server, the lower-level management server and the lower-level Web server are connected with each other. The lower-level Web server is connected with an upper-level Web server through the SIP protocol gateway. The upper-level Web server, an upper-level map server and an upper-level management server are connected with each other. According to the utility model, corresponding camera focus information are configured by the lower-level platform in an electronic map, and the configured map resources are pushed to the upper-level platform through the SIP gateway, thus the problem that scene is multiply arranged in multi-level platform interconnection is solved, conflict caused by multiple arrangement is avoided, and map resource sharing between the lower-level platform and the upper-level platform is realized.

Description

A kind of map video monitoring system and Video transmission system based on Session Initiation Protocol
Technical field
The utility model relates to a kind of video monitoring system, relates in particular to a kind of differentiated control and realizes the map video monitoring system based on Session Initiation Protocol of upper and lower level information sharing.
Background technology
Video monitoring system for substation in the existing electric power system is at different times, form with the disparity items construction by different departments, what adopt also is system and the equipment of distinct device producer, different times, has formed that present product type is numerous, the irregular present situation that differs, can't unify centralized monitor of technical performance index.Not only can't satisfy the requirement of Unattended substation, more can't satisfy the growth requirement of electrical network intelligent construction, the intellectuality that has had a strong impact on video monitoring system promotes, and can't effectively bring into play the technical support of video monitoring system on company's lean management and intensive management.Therefore, unified construction criteria, unified technical system and unified platform management, satisfy the growth requirement of video monitoring system globalize, integration, become the key technology that each producer's video monitoring system of solution interconnects, there is no at present bibliographical information and the application case of head it off.
The utility model content
The map video monitoring system based on Session Initiation Protocol of the purpose of this utility model with regard to being a kind of differentiated control to be provided in order addressing the above problem and to realize the information sharing of upper and lower level.
In order to achieve the above object, the utility model has adopted following technical scheme:
The utility model comprises subordinate's platform, superior platforms and Session Initiation Protocol gateway, described subordinate platform comprises subordinate's map server, subordinate's management server, subordinate's Web server and a plurality of video camera, described superior platforms comprises higher level's map server, upper management server and higher level's Web server, the signal output part of a plurality of described video cameras is connected with the video signal input terminal of described subordinate map server respectively, the management communication port of described subordinate map server is connected with described subordinate management server, the network communication port of described subordinate map server is connected with described subordinate Web server, the control signal input of described subordinate Web server is connected with the control signal output of described subordinate management server, the remote communications port of described subordinate Web server is connected with the remote communications port of described higher level's Web server by described Session Initiation Protocol gateway, described higher level's Web server is connected with the network communication port of described higher level's map server, the management communication port of described higher level's map server is connected with described upper management server, and the control signal input of described higher level's Web server is connected with the control signal output of described upper management server.
In the application, on the transformer station's floor plan or primary equipment connection diagram of carrying, the video camera hot information that configuration is associated when clicking primary equipment, can show the real time video image that all monitor the video camera of this primary equipment.A plurality of video cameras are classified by image resource differently, and have corresponding coding, so that the identification of map server.The utility model take the map hot-zone of required monitoring, focus is as tabulation, sort merge is carried out in the different presetting bits of different cameras, and this resource pushed to superior platforms by subordinate's platform by the Session Initiation Protocol gateway, can realize the communication between the dissimilar supervisory control systems, be convenient to the power transformation operation personnel and obtain the map video resource that they want.
The beneficial effects of the utility model are:
The utility model can be realized the information sharing of transformer station's map resource in the video monitoring platform networking.At the corresponding video camera hot information of electronic chart configuration, the map resource that configures is pushed to superior platforms by the SIP gateway by subordinate's platform, solves the problem of the multiple setting of the interconnected Scene of multi-stage platform, the conflict of having avoided multiple setting to bring.Map resource by subordinate's platform and superior platforms is shared, and has realized that different level personnel call consistency and the instantaneity of corresponding video resource by map resource.
Description of drawings
Accompanying drawing is system architecture diagram of the present utility model.
Embodiment
Below in conjunction with accompanying drawing the utility model is further described in detail:
As shown in drawings, the utility model comprises subordinate's platform, superior platforms and Session Initiation Protocol gateway, described subordinate platform comprises subordinate's map server, subordinate's management server, subordinate's Web server and a plurality of video camera, video camera comprises the first video camera among the figure, the second video camera, the N video camera, superior platforms comprises higher level's map server, upper management server and higher level's Web server, the signal output part of a plurality of video cameras is connected with the video signal input terminal of subordinate map server respectively, the management communication port of subordinate's map server is connected with the subordinate management server, the network communication port of subordinate's map server is connected with the subordinate Web server, the control signal input of subordinate's Web server is connected with the control signal output of subordinate's management server, the remote communications port of subordinate's Web server is connected with the remote communications port of higher level's Web server by the Session Initiation Protocol gateway, higher level's Web server is connected with the network communication port of higher level's map server, the management communication port of higher level's map server is connected with the upper management server, and the control signal input of higher level's Web server is connected with the control signal output of upper management server.
In the application, with prefecture-level transformer station's platform as subordinate's platform, with provincial transformer station's platform as superior platforms.On the transformer station's floor plan or primary equipment connection diagram that carries in subordinate's platform, the video camera hot information that configuration is associated when clicking primary equipment, can show the real time video image that all monitor the video camera of this primary equipment.A plurality of video cameras are classified by image resource differently, and have corresponding coding, so that the identification of map server.
By reference to the accompanying drawings, the Video transmission system that the utility model adopts, be used for subordinate's platform superior platform and push cartographic information, may further comprise the steps: may further comprise the steps: after (1) subordinate platform was registered by employing standard SIP flow process authentication mode superior platform, superior platforms learnt that subordinate's platform is online; (2) subordinate's platform is initiated a dialog events, and subordinate's platform superior platform sends NOTIFY, and superior platforms is informed in event; (3) to be pushed to the type of the message body of superior platforms be XML to subordinate's platform, and subordinate's platform is with based on the mode superior platform of set membership pushed information step by step; (4) push father node information in the XML message body, father node information comprise map resource geocoding, display name, active state, map file download address, map resource attributed region geocoding, whether be root cartographic information, map file type and the quantity of carrying child node; (5) the child node information in the XML message body, child node information comprise hot-zone, focus, camera icon, alarm source icon, alarm output icon, scene monitoring icon, child node type, active state, flag, title, geocoding and coordinate information; (6) superior platforms sends " 200 " to subordinate's platform, and the expression confirmation pushes complete.
In the said system, the corresponding unique coding of map resource, each map resource has the unique sign of the whole network; Subordinate's platform imports map and configures hot-zone, focus hierarchical relationship between each map in this locality; Subordinate's platform sets the download path of map file, allows superior platforms to download based on http protocol; The map resource information that subordinate's platform is pushed to superior platforms comprises the correspondingly download path of image resource.
Superior platforms is received when subordinate's platform pushes the map resource of coming, download path automatic or manual according to this map resource is downloaded map file, and automatically sets up the incidence relation that subordinate's platform pushes map according to the map incidence relation in the PUSH message in this platform.
The map file format of subordinate's platform and superior platforms support is svg and jpg.
The below explains the process of hotspot map resource supplying with concrete message examples, and its process programming is as follows:
F1:NOTIFY sip: superior platforms geocoding@superior platforms IP address SIP/2.0
Via:SIP/2.0/UDP subordinate platform IP address; Branch=z9hG4bK-asdfqe
Max-Forwards: 70
Contact:<sip: platform geocoding subordinate of subordinate platform IP address: port 〉
From: display name<sip: platform geocoding subordinate of subordinate platform IP address 〉; Tag=BK32B1U8DKDrB
To: display name<sip: superior platforms geocoding@superior platforms IP address 〉
Call-ID: 17250
CSeq:1 NOTIFY
Content-type: Application/GXML
Content-Length: the byte length of message entity
< xml version="1.0" encoding=“GB2312”>
<Action>
<Variable>EMap</Variable>
<MapAddress〉the map resource geocoding</MapAddress 〉
<MapInfo>
<Name〉the map resource display name</Name 〉
<Status〉active state</Status 〉
<ImageUrl〉the map file download URL</ImageUrl 〉
<!--geocoding of map resource attributed region (subordinate's platform, the end etc. of standing)--〉
<Home〉map resource attributed region geocoding</Home 〉
<RootFlag〉whether be the root map</RootFlag
<MapType〉map file type (jpg, bmp.svg etc.), optional parameters</MapType 〉
</MapInfo>
<!--child node comprises hot-zone, focus, camera icon, alarm source icon--〉
<SubNum〉this message child node total quantity of carrying</SubNum 〉
<Sublist>
<Item>
<ItemType〉node type (hot-zone/focus/camera icon/alarm source icon/alarm output icon/scene monitoring icon)</ItemType 〉
<Status〉active state</Status 〉
<Flag〉flag</Flag 〉
<Name〉title</Name 〉
<Address〉geocoding (map of video camera/alarm source/hot-zone link)</Address 〉
<!-coordinate position (focus X, the mode of Y is described, and the hot-zone polygon is with X1, Y1; X2; Y2...... mode is described)--〉
<!-coordinate position is the percentage relative position--〉
<Position〉coordinate information</Position 〉
</Item>
</Sublist>
</Action>
F2:200 OK
Via:SIP/2.0/UDP subordinate platform IP address; Branch=z9hG4bK-asdfqe
Contact:<sip: platform geocoding subordinate of subordinate platform IP address: port 〉
From: display name<sip: platform geocoding subordinate of subordinate platform P address 〉; Tag=BK32B1U8DKDrB
To: display name<sip: superior platforms geocoding@superior platforms IP address 〉; Tag=ef00d678
Call-ID: 17250
CSeq:1 NOTIFY
Or:
400 Bad Request
Via:SIP/2.0/UDP subordinate platform IP address; Branch=z9hG4bK-asdfqe
Contact:<sip: platform geocoding subordinate of subordinate platform IP address: port 〉
From: display name<sip: platform geocoding subordinate of subordinate platform IP address 〉; Tag=BK32B1U8DKDrB
To: display name<sip: superior platforms geocoding@superior platforms IP address 〉; Tag=ef00d678
Call-ID: 17250
CSeq:1 NOTIFY
The key parameter explanation:
Video channel resource supplying message parameter
Parameter name Optional sign Parameter type Meaning of parameters and value
EMap Essential NA Sign map resource generic operation
MapInfo Optional NA When will send the essential information of map, need to add, if just send the hot-zone hot information of this map or video camera, alarm source information can not send, in order to avoid repeat to send
MapAddress Essential Base64String The geocoding of map resource file, the whole network is unique
Name Essential Base64String The title of map resource file is described
Status Essential INT32 The state of map resource file, 1 expression is available, and 2 expressions are unavailable, and 3 expressions remove
ImageUrl Essential Base64String The download URL of map file, the longest 127 bytes
Home Essential Base64String The geocoding of map resource file ownership platform, the end of standing
RootFlag Essential INT32 Whether be the entrance map of platform, 0 expression is not the entrance map of platform if identifying this map file, 1 expression is platform entrance map
MapType Optional Base64String The type of sign map file, value is jpg/bmp etc.If map style is jpg, this parameter can not carried.
ItemType Essential INT32 Node type: 0 expression hot-zone; 1 expression focus; 2 expression camera icon; 3 expression alarm source icons; 3 expression scene areas.
Flag Essential Base48String The sign of node resource in this map, comparison during in order to later modification and deletion
Name Essential Base64String The node resource title is used for showing on the map
Position Essential Base64String The coordinate position (one or more point) of node on supergraph, each point is described with percentage relative coordinate (X, Y).If LinkType is 0, string format is " X, Y ".If LinkType is 1, string format is " X1, Y1; X2, Y2; X3, Y3; ... " (maximum quantity of point is 6);
Video channel resource supplying answer code is described
Conditional code Describe
200 Push successfully
400 Message format is incorrect
403 Push refusal, father node does not exist
500 The internal logic mistake

Claims (1)

1. map video monitoring system based on Session Initiation Protocol, it is characterized in that: comprise subordinate's platform, superior platforms and Session Initiation Protocol gateway, described subordinate platform comprises subordinate's map server, subordinate's management server, subordinate's Web server and a plurality of video camera, described superior platforms comprises higher level's map server, upper management server and higher level's Web server, the signal output part of a plurality of described video cameras is connected with the video signal input terminal of described subordinate map server respectively, the management communication port of described subordinate map server is connected with described subordinate management server, the network communication port of described subordinate map server is connected with described subordinate Web server, the control signal input of described subordinate Web server is connected with the control signal output of described subordinate management server, the remote communications port of described subordinate Web server is connected with the remote communications port of described higher level's Web server by described Session Initiation Protocol gateway, described higher level's Web server is connected with the network communication port of described higher level's map server, the management communication port of described higher level's map server is connected with described upper management server, and the control signal input of described higher level's Web server is connected with the control signal output of described upper management server.
CN 201220125827 2012-03-29 2012-03-29 Map video monitoring system based on SIP protocol and video transmission system Expired - Lifetime CN202652408U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103369296A (en) * 2012-03-29 2013-10-23 四川省电力公司通信自动化中心 SIP protocol-based map video monitoring system and video transmission method
CN106803943A (en) * 2016-03-31 2017-06-06 小蚁科技(香港)有限公司 Video monitoring system and equipment

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103369296A (en) * 2012-03-29 2013-10-23 四川省电力公司通信自动化中心 SIP protocol-based map video monitoring system and video transmission method
CN106803943A (en) * 2016-03-31 2017-06-06 小蚁科技(香港)有限公司 Video monitoring system and equipment
CN106803943B (en) * 2016-03-31 2021-02-09 小蚁科技(香港)有限公司 Video monitoring system and device

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C14 Grant of patent or utility model
GR01 Patent grant
C53 Correction of patent of invention or patent application
CB03 Change of inventor or designer information

Inventor after: Li Fuxiang

Inventor after: Ma Mei

Inventor after: Wei Xiaofan

Inventor after: Yang Hongchang

Inventor after: Zhang Ying

Inventor after: Wu Xiaobo

Inventor after: Deng Chuang

Inventor after: Tang Na

Inventor before: Li Fuxiang

Inventor before: Ma Mei

Inventor before: Wei Xiaofan

Inventor before: Yang Hongchang

Inventor before: Zhang Ying

Inventor before: Wu Xiaobo

Inventor before: Deng Chuang

Inventor before: Tang Na

ASS Succession or assignment of patent right

Owner name: STATE GRID CORPORATION OF CHINA

Effective date: 20140127

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20140127

Address after: 610000, 50 pear flower street, Chengdu, Sichuan, Jinjiang District

Patentee after: China Electric Power Research Institute

Patentee after: State Grid Corporation of China

Address before: 610000, 50 pear flower street, Chengdu, Sichuan, Jinjiang District

Patentee before: China Electric Power Research Institute

CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20130102