CN110634273A - Transformer substation management and control system based on no inductance - Google Patents

Transformer substation management and control system based on no inductance Download PDF

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Publication number
CN110634273A
CN110634273A CN201910668726.5A CN201910668726A CN110634273A CN 110634273 A CN110634273 A CN 110634273A CN 201910668726 A CN201910668726 A CN 201910668726A CN 110634273 A CN110634273 A CN 110634273A
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CN
China
Prior art keywords
management
video monitoring
camera
server
control
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
CN201910668726.5A
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Chinese (zh)
Inventor
李倩玉
李逸荣
茅俊
陈炜
林楠
钱少锋
何颖梅
张如宏
王海鹰
潘伟勇
胡冬良
陈金锋
汪铭峰
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Hangzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Original Assignee
Hangzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
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Application filed by Hangzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd filed Critical Hangzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
Priority to CN201910668726.5A priority Critical patent/CN110634273A/en
Publication of CN110634273A publication Critical patent/CN110634273A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/18Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength
    • G08B13/189Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems
    • G08B13/194Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems
    • G08B13/196Actuation by interference with heat, light, or radiation of shorter wavelength; Actuation by intruding sources of heat, light, or radiation of shorter wavelength using passive radiation detection systems using image scanning and comparing systems using television cameras
    • G08B13/19639Details of the system layout
    • G08B13/19645Multiple cameras, each having view on one of a plurality of scenes, e.g. multiple cameras for multi-room surveillance or for tracking an object by view hand-over
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/10Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using wireless transmission systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast

Abstract

The embodiment of the application provides a transformer substation management and control system based on non-inductance, which comprises a station-in server arranged at a transformer substation and video monitoring equipment connected to the station-in server and arranged in a preset mode; the in-station server receives control requests based on at least two types sent by the management platform through a wireless network, controls the video monitoring equipment to acquire monitoring information of the current transformer substation based on the control requests, and sends the monitoring information to the management platform through the wireless network. Through realizing key point location to a plurality of regions in the transformer substation, key regional video covers, has accomplished guide in advance, early warning in the affairs, traceing back after the affairs, has promoted the management and control ability of transformer substation security protection.

Description

Transformer substation management and control system based on no inductance
Technical Field
The invention belongs to the field of transformer substation management and control, and particularly relates to a transformer substation management and control system based on non-inductance.
Background
At present, security management of a transformer substation is always based on an administrator system, and when no administrator works at the transformer substation, dangerous conditions that irrelevant personnel enter a transformer substation operation area and the like easily occur, so that the security management is similar to the virtual serious problem.
Disclosure of Invention
In order to overcome the defects and shortcomings in the prior art, the invention provides a transformer substation management and control system based on non-inductance, the transformer substation is managed and controlled in a full-scale mode through video monitoring, and the defect of management failure is overcome.
The transformer substation management and control system based on no inductance that this application embodiment provided, transformer substation management and control system includes:
the system comprises a station-in server arranged at a transformer station and video monitoring equipment which is connected to the station-in server and arranged in a preset mode;
the in-station server receives control requests based on at least two types sent by the management platform through a wireless network, controls the video monitoring equipment to acquire monitoring information of the current transformer substation based on the control requests, and sends the monitoring information to the management platform through the wireless network.
Optionally, the control request includes access control, intelligent operation and maintenance workstation control, field operation control, and server deployment control.
Optionally, when the control request relates to access control, the video monitoring device arranged in a preset manner includes:
the vehicle video monitoring device and the human body video monitoring device are installed at the vehicle entrance;
the vehicle video monitoring equipment comprises a first license plate recognition camera installed at a vehicle entrance and a first geomagnetic coil triggering the license plate recognition camera to work, a gate controller controlling a gate switch is further connected to the license plate recognition camera, the output end of the gate controller is connected with a gate shaft motor driving the gate switch, and a second license plate recognition camera and a second geomagnetic coil triggering the license plate recognition camera to work are arranged at the vehicle exit.
The human body video monitoring equipment comprises a human face entrance guard for collecting human face data and a small door lock for limiting the walking of a human body.
Optionally, when the control request relates to management and control of an intelligent operation and inspection workstation, the video monitoring device arranged in a preset manner includes:
the face recognition camera is used for collecting face data, the touch sensor is used for activating the face recognition camera, and the output end of the face recognition camera is connected with the intelligent lock.
Optionally, when the control request relates to field operation management and control, the video monitoring device arranged in a preset manner includes:
a first video monitoring equipment set arranged in the switch room,
A second video monitoring equipment set arranged in the gas insulated substation,
A third video monitoring equipment set arranged in the capacitor chamber,
A fourth video monitoring device group arranged in the arc suppression coil chamber,
Optionally, the first video monitoring device group installed in the switch room includes:
the alarm snapshot camera is arranged on the wall of the switch room, the industrial laser radar is arranged on equipment cabinets on two sides of a corridor of the switch room, and the alarm loudspeaker is connected with the alarm snapshot camera.
Optionally, the second video monitoring device group installed in the gas insulated substation chamber includes:
the system comprises an alarm snapshot camera arranged on the wall of the gas insulated substation, a laser range finder arranged on the wall and right facing an entrance, a human face track camera arranged on the wall and close to the entrance, and an alarm loudspeaker connected with the alarm snapshot camera.
Optionally, the third video monitoring device group installed in the capacitor chamber includes:
the area intrusion snapshot camera is arranged on the wall of the capacitor chamber, and the face track camera is opposite to the entrance.
Optionally, the fourth video monitoring device group installed in the crowbar coil chamber includes:
the device comprises a regional invasion snapshot camera arranged on the wall of the capacitor chamber, a human face track camera facing an inlet and an alarm loudspeaker connected with the regional invasion snapshot camera.
Optionally, when the control request relates to server deployment management and control, the video monitoring device arranged in the preset manner includes:
the system comprises a first server serving as a system application management server, a second server integrating a data processing server, an intelligent hard disk video recorder used for executing face data comparison analysis and video recording storage and forwarding, and a gigabit switch serving as a core data switching node in a station:
the display for server debugging and state checking: and the protective air switch is used for preventing related equipment in the station system from generating power supply abnormity.
The technical scheme provided by the invention has the beneficial effects that:
through realizing key point location to a plurality of regions in the transformer substation, key regional video covers, has accomplished guide in advance, early warning in the affairs, traceing back after the affairs, has promoted the management and control ability of transformer substation security protection.
Drawings
In order to more clearly illustrate the technical solution of the present invention, the drawings needed to be used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a transformer substation management and control system based on non-inductance provided in an embodiment of the present application.
Detailed Description
To make the structure and advantages of the present invention clearer, the structure of the present invention will be further described with reference to the accompanying drawings.
Example one
The transformer substation management and control system based on no inductance that this application embodiment provided, as shown in fig. 1, transformer substation management and control system includes:
the system comprises a station-in server arranged at a transformer station and video monitoring equipment which is connected to the station-in server and arranged in a preset mode;
the in-station server receives control requests based on at least two types sent by the management platform through a wireless network, controls the video monitoring equipment to acquire monitoring information of the current transformer substation based on the control requests, and sends the monitoring information to the management platform through the wireless network.
In implementation, the management platform communicates with the video monitoring device through a wireless network, and does not need to complete the above process by means of multiple types of sensors, so that the management platform is called as non-inductive. Therefore, the method is suitable for the control operation process in the transformer substation operation area under different environments. In the specific embodiment, the transformer substation management and control system is described in detail in different implementation scenarios.
Based on the transformer substation management and control system structure shown in fig. 1, the following functions can be realized
1) Face recognition entrance guard
1. The human face information can be input on site, and the management background can issue the human face information remotely;
2. after the face information is recorded and the authority is set, the electronic lock can be linked to open the personnel access door;
3. the management background can be remotely called on site to carry out voice interaction.
2) License plate recognition unit
1. After the license plate information is input and the authority is given, when the vehicle passes through, the license plate recognition camera can be linked with the gate motor to open the gate and then pass through;
2. vehicles which are not recorded or given authority cannot enter the station through the camera linkage gate motor.
3) The face recognition camera carries out face comparison analysis on the personnel acquiring the working information according to the requirement of the operation content, the entered personnel analysis has the authority, and no prompt is entered for the personnel, so that the personnel can not enter the external personnel.
4) The intelligent lock control workstation can give the opening authority of the lock control key for leading in and the authority for clearing according to the relevant operation information.
5) Face track camera
1. Recording face information of all personnel entering the deployed area, outputting key personnel comparison information, and recording position, time, personnel information and the like;
2. the device can support audio input and output and realize the access of a loudspeaker and a sound pick-up.
6) Area intrusion camera
1. Setting a related alarm area in a video coverage area, and after personnel enter a configuration area, providing alarm information according to the permission setting condition;
2. the device can support audio input and output and realize the access of a loudspeaker and a sound pick-up.
7) Alarm snapshot camera
1. The background can check and know all video information in the coverage area of the warning camera in real time;
2. when the radar trigger information appears, the alarm camera can immediately snapshot the image information in the area in charge of for feedback.
8) Industrial laser radar
And configuring a coverage area according to the coverage radius of the laser radar, defining corresponding authority, and giving corresponding position information to the background when triggering the area in the corresponding authority.
9) Industrial distance measuring instrument
The device is arranged in a GIS room type area by utilizing the measurable characteristic of laser, is used for detecting the coordinates shielded when an operator enters the operation area, and outputs and feeds back the coordinates to a background.
10) Speaker unit
1. After relevant associated equipment is triggered on site, local voice can carry out alarm prompt;
2. the backstage can be long-rangely shout the operation to on-the-spot personnel, can collect on-the-spot sound simultaneously.
Optionally, the control request includes access control, intelligent operation and maintenance workstation control, field operation control, and server deployment control.
When the control request relates to access control, the video monitoring device arranged in a preset mode comprises: the vehicle video monitoring device and the human body video monitoring device are installed at the vehicle entrance;
the vehicle video monitoring equipment comprises a first license plate recognition camera installed at a vehicle entrance and a first geomagnetic coil triggering the license plate recognition camera to work, a gate controller controlling a gate switch is further connected to the license plate recognition camera, the output end of the gate controller is connected with a gate shaft motor driving the gate switch, and a second license plate recognition camera and a second geomagnetic coil triggering the license plate recognition camera to work are arranged at the vehicle exit.
The human body video monitoring equipment comprises a human face entrance guard for collecting human face data and a small door lock for limiting the walking of a human body.
In the implementation, the face identification entrance guard mounted position orientation avoids the direct sunlight, prevents that the rate of recognition reduces behind the backlight, and equipment need be equipped with non-transparent buckler, covers along needing lengthening, left and right sides is waterproof. The installation angle of the license plate recognition camera is determined according to the height of the upright stanchion and the detection distance, but the overlooking angle is ensured to be less than 30 degrees, so that the level of the license plate in the video is ensured as much as possible. After being connected with vehicle inspection ware, ground sense coil, guarantee that ground sense line is inside not to have the rupture, look for the number of circles and can satisfy that the coil can trigger the camera when the vehicle passes through and take a candid photograph. The face recognition entrance guard is specifically a 7-inch LCD touch display screen, a 200-ten-thousand-pixel wide-angle camera, can scan a two-dimensional code, has a face recognition distance of 0.3-1 m, and supports photo video anti-counterfeiting; adopting a deep learning algorithm to support 10000 face white lists; 1: n, the face comparison time is less than or equal to 0.5S/person, and the face verification accuracy is more than 99%; the working temperature is-20-65 ℃, the DC is 12V/2A, and the power is 25W. The sensor type of the license plate recognition camera is 1/1.8' Progressive Scan CMOS, the minimum illumination color is 0.002Lux @ (F1.4, AGC ON), the shutter is 1/30 seconds to 1/100 seconds and 00 seconds, the lens electric lens is 5.2-13mm, and 12V/3A 22W.
The face recognition NVR is used for supporting face name list library comparison alarm (16 paths of picture stream and at most 4 paths of video stream) and is larger than 4 face name list libraries, the total library capacity is larger than 1 ten thousand devices, the device simultaneously has 1 HDMI, 1 VGA and HDMI + VGA in-group homology and supports hard disk hot plug, and the device has 1 gigabit network port, 1 USB2.0 interface, 1 USB3.0 interface, 1 eSATA interface and 1 miniSAS interface in the aspect of network.
Optionally, when the control request relates to management and control of an intelligent operation and inspection workstation, the video monitoring device arranged in a preset manner includes:
the face recognition camera is used for collecting face data, the touch sensor is used for activating the face recognition camera, and the output end of the face recognition camera is connected with the intelligent lock.
In implementation, the face recognition camera is connected with a face recognition NVR, the latter is a device which supports face name list library comparison alarm (16 paths of picture stream and at most 4 paths of video stream) and is larger than 4 face name list libraries, the total library capacity is larger than 1 ten thousand, and the device simultaneously has 1 HDMI, 1 VGA, and HDMI + VGA group homology, supports hard disk hot plug, and has 1 gigabit network port, 1 USB2.0 interface, 1 USB3.0 interface, 1 eSATA interface and 1 miniSAS interface in the network aspect.
The staff activates the detection of face identification camera through touching touch-type inductor, and the face identification camera sends the video data who gathers to face identification NVR, and the result of the latter feedback is after verifying, to the transmission signal of unblanking of intelligent lock.
Optionally, when the control request relates to field operation management and control, the video monitoring device arranged in a preset manner includes:
the first video monitoring equipment group is installed in the switch chamber, the second video monitoring equipment group is installed in the gas insulated transformer chamber, the third video monitoring equipment group is installed in the capacitor chamber, and the fourth video monitoring equipment group is installed in the arc suppression coil chamber.
A first set of video monitoring devices installed in a switchroom, comprising:
the alarm snapshot camera is arranged on the wall of the switch room, the industrial laser radar is arranged on equipment cabinets on two sides of a corridor of the switch room, and the alarm loudspeaker is connected with the alarm snapshot camera.
The alarm snapshot camera is a 200 ten thousand 1/2.7' CMOS ICR cylindrical network camera; support H.265/H.264/MJPEG lens: 2.7-12mm @ F1.4 frame rate: 50Hz at 25fps (1920 × 1080,1280 × 960,1280 × 720); wide dynamic range: 120 dB; and (4) intelligent alarm: border crossing detection, area intrusion detection, scene change detection, face detection, virtual focus detection, article leaving detection, dynamic analysis, shielding alarm and infrared irradiation distance: 20-30 m; support retrieval after intelligence, operating temperature: -30 ℃ to 60 ℃, protection rating: IP 67; supporting the motorized lens; there are 1 pair of audio input (Line in)/output interfaces (plug-in interfaces).
The working area of the industrial laser radar is 0.5-20 m, the laser level is 1 grade, the light source infrared ray (905nm), the opening angle is 270 degrees, the scanning frequency is 25Hz/50Hz, the angular resolution is 0.25/0.5 degree, the reflectivity is 10 percent more than 18 meters, the working environment is-30 ℃ to +50 ℃, the fog correction is supported, and the protection level is IP 67; 24V/3A, 35W. The range measurement range is 30m, the laser level is 1 grade, a light source pulse laser diode is started at 270 degrees, the scanning frequency is 25Hz/50Hz, the angular resolution is 0.5 degree, the reflectivity is 15 percent more than 8 meters, the working environment is-10 to +50 ℃, and the protection level is IP 65; 24V/3A, 35W.
The human face track camera is arranged at the entrance of a room and has the height: h0.18 × D +1.5, D monitoring distance.
The warning snapshot camera is deployed in a laser radar arrangement area, a video can cover the whole radar arrangement area, and through the operation content of an operation area in the video recording channel, when the laser radar has trigger information, operation pictures in the operation area are immediately grabbed and fed back to the background for archiving.
The regional invasion camera is arranged at the upper part of the key equipment region, covers key regions, key parts and detects the entering and staying conditions of people, such as: and carrying out intrusion detection in a knife switch area of the arc suppression coil chamber.
There are two kinds of mounting methods for industrial laser radar, one is vertical ground mounting: according to the coverage radius of the laser radar, the laser light curtain is generally arranged at the top position of the middle of the screen cabinet, and the distance between the coverage surface of the laser light curtain and the screen cabinet is kept to be 20cm-30 cm. The second is parallel ground installation: and arranging the laser light curtain at an installation position capable of covering the largest operation area according to the scanning radius of the laser radar and the regularity of the operation area, wherein when the laser light curtain is parallel to the ground, the height from the ground is kept between 1m and 1.4 m.
Industry laser range finder mainly used indoor laser radar coverage area's replenishment appears sheltering from, coverage area exists certain blind zone when the radar then available laser range finder covers the measurement, if: 110Kv indoor GIS room.
The loudspeaker units are arranged with corresponding output power and number of loudspeaker devices according to the actual size of the room, and are generally arranged in the diagonal vicinity of the room, and the specific number is configured as follows:
serial number Type of room Specification of equipment Number of deployments
1 Switch chamber below 110Kv Active, output power 30W, matching pickup 2 table
2 220Kv or above switch chamber Active, output power 60W, matching pickup 2 table
3 Switch chamber below 110Kv Active, output power 30W, matching pickup 1 table
4 220Kv or above switch chamber Active, output power 60W, matching pickup 2 table
5 Other chambers below 110Kv Active, output power 30W, matching pickup 1 table
6 Other chambers above 220Kv Active, output power 60W, matching pickup 1 table
Optionally, the second video monitoring device group installed in the gas insulated substation chamber includes:
the system comprises an alarm snapshot camera arranged on the wall of the gas insulated substation, a laser range finder arranged on the wall and right facing an entrance, a human face track camera arranged on the wall and close to the entrance, and an alarm loudspeaker connected with the alarm snapshot camera.
The alarm snapshot camera is a 200 ten thousand 1/2.7' CMOS ICR cylindrical network camera; support H.265/H.264/MJPEG lens: 2.7-12mm @ F1.4 frame rate: 50Hz at 25fps (1920 × 1080,1280 × 960,1280 × 720); wide dynamic range: 120 dB; and (4) intelligent alarm: border crossing detection, area intrusion detection, scene change detection, face detection, virtual focus detection, article leaving detection, dynamic analysis, shielding alarm and infrared irradiation distance: 20-30 m; support retrieval after intelligence, operating temperature: -30 ℃ to 60 ℃, protection rating: IP 67; supporting the motorized lens; there are 1 pair of audio input (Line in)/output interfaces (plug-in interfaces).
Measurement range of laser rangefinder: 50mm to 5,300mm, 18% reflectance, resolution 0.1mm, laser grade 1, light source infrared laser, response time: 2.5 ms.
The alarming loudspeaker is a waterproof sound column, an active access connection mode is adopted, a 3.5mm audio interface is supported, the playing power is 30W/40W/70W, and the protection level is more than IP 65; 24V/1A, 30W.
Optionally, the third video monitoring device group installed in the capacitor chamber includes:
the area intrusion snapshot camera is arranged on the wall of the capacitor chamber, and the face track camera is opposite to the entrance.
The area invasion camera is a 200 ten thousand 1/2.7' CMOS ICR hemispherical network camera; h.265 and H.264 coding is supported; supporting the motorized lens; lens: 2.7-12mm @ F1.4 intelligent alarm: border crossing detection, area intrusion detection, scene change detection and face detection, and the method comprises 1 pair of audio input (Line in)/output interfaces (plug wire type interfaces); working temperature: -30 ℃ to 60 ℃, infrared irradiation distance: 20-30 m; protection grade: IP 67. The face track camera adopts 200 ten thousand 1/1.8' CMOS electric lens: 8-32mm, horizontal field angle: 42 degrees to 13 degrees; and (3) color: 0.001Lux, black and white: 0.0001Lux,0Lux with LEDs, resolution 1920 × 1080/1280 × 720 was optional.
The face track camera adopts 200 ten thousand 1/1.8' CMOS electric lens: 8-32mm, horizontal field angle: 42 degrees to 13 degrees; and (3) color: 0.001Lux, black and white: 0.0001Lux,0Lux with LED; resolution ratio: 1920 × 1080/1280 × 720 is optional.
Optionally, the fourth video monitoring device group installed in the crowbar coil chamber includes:
the device comprises a regional invasion snapshot camera arranged on the wall of the capacitor chamber, a human face track camera facing an inlet and an alarm loudspeaker connected with the regional invasion snapshot camera.
The area invasion camera is a 200 ten thousand 1/2.7' CMOS ICR hemispherical network camera; h.265 and H.264 coding is supported; supporting the motorized lens; lens: 2.7-12mm @ F1.4 intelligent alarm: border crossing detection, area intrusion detection, scene change detection and face detection, and the method comprises 1 pair of audio input (Line in)/output interfaces (plug wire type interfaces); working temperature: -30 ℃ to 60 ℃, infrared irradiation distance: 20-30 m; protection grade: IP 67. The face track camera adopts 200 ten thousand 1/1.8' CMOS electric lens: 8-32mm, horizontal field angle: 42 degrees to 13 degrees; and (3) color: 0.001Lux, black and white: 0.0001Lux,0Lux with LEDs, resolution 1920 × 1080/1280 × 720 was optional.
The face track camera adopts 200 ten thousand 1/1.8' CMOS electric lens: 8-32mm, horizontal field angle: 42 degrees to 13 degrees; and (3) color: 0.001Lux, black and white: 0.0001Lux,0Lux with LED; resolution ratio: 1920 × 1080/1280 × 720 is optional.
The alarming loudspeaker is a waterproof sound column, an active access connection mode is adopted, a 3.5mm audio interface is supported, the playing power is 30W/40W/70W, and the protection level is more than IP 65; 24V/1A, 30W.
Optionally, when the control request relates to server deployment management and control, the video monitoring device arranged in the preset manner includes:
the system comprises a first server serving as a system application management server, a second server integrating a data processing server, an intelligent hard disk video recorder used for executing face data comparison analysis and video recording storage and forwarding, and a gigabit switch serving as a core data switching node in a station:
the display for server debugging and state checking: and the protective air switch is used for preventing related equipment in the station system from generating power supply abnormity.
The server adopts a rack type 1U/2U server, a 4-core CPU, an EMMC memory 16G, an SATA hard disk with more than 1T and a 100M/1000M self-adaptive double network card;
the substation core switch adopts a rack type 1U/2U, the number of ports is not less than 24, the WAN port is not less than 1000M, and the LAN port is not less than 100M.
The sequence numbers in the above embodiments are merely for description, and do not represent the sequence of the assembly or the use of the components.
The above description is only exemplary of the present invention and should not be taken as limiting the invention, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. Transformer substation management and control system based on no inductance ization, its characterized in that, transformer substation management and control system includes:
the system comprises a station-in server arranged at a transformer station and video monitoring equipment which is connected to the station-in server and arranged in a preset mode;
the in-station server receives control requests based on at least two types sent by the management platform through a wireless network, controls the video monitoring equipment to acquire monitoring information of the current transformer substation based on the control requests, and sends the monitoring information to the management platform through the wireless network.
2. The substation management and control system based on the non-inductance type according to claim 1, wherein the control request comprises access control, intelligent operation and inspection workstation management, field operation management and server deployment management.
3. The substation management and control system based on the non-inductance type according to claim 2, wherein when the control request relates to access control, the video monitoring devices arranged in a preset manner comprise:
the vehicle video monitoring device and the human body video monitoring device are installed at the vehicle entrance;
the vehicle video monitoring equipment comprises a first license plate recognition camera and a first geomagnetic coil, wherein the first license plate recognition camera is installed at a vehicle inlet, the first geomagnetic coil triggers the license plate recognition camera to work, a gate controller for controlling a gate switch is further connected to the license plate recognition camera, the output end of the gate controller is connected with a gate shaft motor for driving the gate switch, and a second license plate recognition camera and a second geomagnetic coil trigger the license plate recognition camera to work are arranged at the vehicle outlet;
the human body video monitoring equipment comprises a human face entrance guard for collecting human face data and a small door lock for limiting the walking of a human body.
4. The substation management and control system based on the non-inductance type according to claim 2, wherein when the control request relates to management and control of an intelligent operation and inspection workstation, the video monitoring devices arranged in a preset manner comprise:
the face recognition camera is used for collecting face data, the touch sensor is used for activating the face recognition camera, and the output end of the face recognition camera is connected with the intelligent lock.
5. The substation management and control system based on the non-inductance type according to claim 2, wherein when the control request relates to field operation management and control, the video monitoring devices arranged in the preset manner comprise:
a first video monitoring equipment group installed in the switch room;
a second video monitoring equipment group installed in the gas insulated substation;
a third video monitoring device group installed in the capacitor chamber;
and the fourth video monitoring equipment group is installed in the arc suppression coil chamber.
6. The substation management and control system based on no inductance of claim 5, characterized in that, the first video monitoring equipment group installed in the switch room comprises:
the alarm snapshot camera is arranged on the wall of the switch room, the industrial laser radar is arranged on equipment cabinets on two sides of a corridor of the switch room, and the alarm loudspeaker is connected with the alarm snapshot camera.
7. The substation management and control system based on no inductance of claim 5, characterized in that, the second video monitoring equipment group installed in the gas insulated substation room includes:
the system comprises an alarm snapshot camera arranged on the wall of the gas insulated substation, a laser range finder arranged on the wall and right facing an entrance, a human face track camera arranged on the wall and close to the entrance, and an alarm loudspeaker connected with the alarm snapshot camera.
8. The substation management and control system based on no inductance of claim 5, characterized in that, the third video monitoring equipment group installed in the capacitor chamber comprises:
the area intrusion snapshot camera is arranged on the wall of the capacitor chamber, and the face track camera is opposite to the entrance.
9. The substation management and control system based on no inductance of claim 5, characterized in that, the fourth video monitoring equipment group installed in the crowbar coil chamber includes:
the device comprises a regional invasion snapshot camera arranged on the wall of the capacitor chamber, a human face track camera facing an inlet and an alarm loudspeaker connected with the regional invasion snapshot camera.
10. The substation management and control system based on the non-inductance type according to claim 2, wherein when the control request relates to server deployment management and control, the video monitoring devices arranged in the preset manner comprise:
the system comprises a first server serving as a system application management server, a second server integrating a data processing server, an intelligent hard disk video recorder used for executing face data comparison analysis and video recording storage and forwarding, and a gigabit switch serving as a core data switching node in a station:
a display for server debugging and viewing status; and the protective air switch is used for preventing related equipment in the station system from generating power supply abnormity.
CN201910668726.5A 2019-07-23 2019-07-23 Transformer substation management and control system based on no inductance Pending CN110634273A (en)

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