Intelligent monitoring device for switch cabinet group
By designing the intelligent monitoring device of the switch cabinet group, using lift detection components and a variety of sensors, automatic lift detection and real-time monitoring of the equipment in the switch cabinet are achieved, solving the problem of manual operation dependence in the existing technology, and improving the detection efficiency and intelligence level.
Patent Information
- Application Number
- CN202510198493.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-22
- Publication Date
- 2025-05-16
AI Technical Summary
The existing switch cabinets rely on manual operation in regular temperature measurement and real-time monitoring of internal conditions, with low operating convenience and intelligence levels, and the regular switching detection of electrical components is not automated enough.
An intelligent monitoring device for switch cabinet group is designed, including a mobile detection structure and several detection and drainage structures. Through components such as lifting T-blocks, lifting T-blocks, lifting ring electromagnets and magnets, stable lifting and lowering detection of equipment in the switch cabinet is realized, and high-definition cameras, infrared temperature measurement sensors, sound recognition sensors and vibration measurement sensors are integrated to conduct all-round real-time monitoring.
It realizes automation, accurate lifting and real-time monitoring of equipment in the switch cabinet group, improves detection efficiency and accuracy, reduces the demand for manual operations, and improves the level of intelligence.
Smart Images

Figure CN120016318A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of intelligent monitoring of switch cabinets, and in particular to an intelligent monitoring device for a switch cabinet group. Background Art
[0002] Switchgear plays a vital role in the power system. They are not only responsible for opening and closing, controlling and protecting electrical equipment in the process of power generation, transmission, distribution and power conversion, but also have built-in circuit breakers, disconnectors, load switches, operating mechanisms, transformers and various protection devices and other key components. According to different classification standards, switchgear can be divided into many types, such as removable and fixed types according to the installation method of circuit breakers, open type, metal enclosed type and metal enclosed armored type according to the cabinet structure, and high-voltage, medium-voltage and low-voltage switchgear according to the voltage level. These switchgears are widely used in power plants, substations, petrochemicals, metallurgical steel rolling, light industry and textiles, factories and mines, residential areas, high-rise buildings and other occasions. However, since a large number of electrical components are usually installed in the switchgear, the internal temperature of the cabinet needs to be regularly detected during long-term use to eliminate safety hazards. For this reason, some switchgears are equipped with infrared windows. This optical window can transmit ultraviolet rays, visible light and infrared rays, so that the switchgear can perform infrared imaging temperature measurement when it is in operation. Unfortunately, at present, this type of switch cabinet with infrared windows still needs manual regular temperature measurement, and the convenience of operation needs to be improved. At the same time, common switch cabinets also have shortcomings in real-time monitoring of internal conditions and regular switch detection of electrical components. They often need to be manually opened for operation, and the level of intelligence is relatively low. In view of this, in-depth research on the above issues led to the creation of this case. Summary of the invention
[0003] The technical solution of the present invention for achieving the above-mentioned purpose is: an intelligent monitoring device for a switch cabinet group, comprising: a switch cabinet group, an electrical room, a mobile detection structure and a plurality of detection and drainage structures, the switch cabinet group is installed on the inner side of the electrical room, the mobile detection structure is installed on the inner side of the electrical room, and a plurality of the detection and drainage structures are respectively installed on the inner side of the switch cabinet group, and the detection and drainage structure comprises: a pair of lifting T-shaped blocks, a pair of lifting T-shaped moving blocks, a pair of lifting moving limit blocks, a pair of lifting concave moving limit blocks, a pair of lifting limit shafts, a pair of lifting ring electromagnets, a pair of lifting ring magnets, a transfer set circular block and a pair of hydraulic sealing doors; The transfer set circular block is installed on the inner top of the switch cabinet, a pair of the hydraulic sealing doors are inserted on the transfer set circular block, a pair of the lifting concave movable limit blocks are relatively parallel installed on the transfer set circular block, a pair of the lifting movable limit blocks are respectively movably inserted on the inner sides of a pair of the lifting concave movable limit blocks, a pair of the lifting T-shaped moving blocks are respectively installed on a pair of the lifting movable limit blocks, a pair of the lifting T-shaped blocks are relatively parallel installed on the inner side of the switch cabinet, and a pair of the lifting T-shaped blocks and a pair of the lifting T-shaped moving blocks form a cross shape, a pair of the lifting limit shafts are respectively inserted on the inner sides of a pair of the lifting concave movable limit blocks, and a pair of the lifting limit shafts are respectively movably inserted on a pair of the lifting movable limit blocks, a pair of the lifting ring electromagnets are respectively installed on a pair of the lifting concave movable limit blocks, and a pair of the lifting ring magnets are respectively installed on a pair of the lifting movable limit blocks; It should be noted that, in the above, the lifting detection component on it is driven by the mobile detection structure to stably guide the lifting detection component to a pair of lifting T-shaped moving blocks on the inner side of the lifting and lowering circular bracket of the switch cabinet group on the inner side of the switch cabinet group, and at the same time, the detection component on it is driven by the lifting detection component to be stably lifted to the inner side of the switch cabinet, and a pair of hydraulic sealing doors are operated, and no lifting and lowering limit support is provided for the lifting detection component. A pair of lifting ring electromagnets on a pair of lifting concave moving limit blocks are energized, and a pair of lifting ring electromagnets are respectively magnetically adsorbed or repelled by a pair of lifting ring magnets, and the lifting and lowering moving limit blocks on it are driven by the lifting ring magnets to be stably lifted and lowered, so that the lifting and lowering moving limit blocks are stably lifted and lowered along the lifting limit axis inside the concave moving limit block, and the track of the lifting T-shaped moving block is changed to be stably lifted and lowered, so as to achieve the stable lifting and lowering of the lifting detection component.
[0004] Preferably, the mobile detection structure comprises: a vertical and horizontal screw module, a movable plate, a lifting and lowering round-shaped bracket, two pairs of lifting and lowering limit convex blocks, two pairs of lifting and lowering shielding concave blocks, two pairs of lifting and lowering shielding convex blocks, two pairs of lifting and lowering shielding electromagnets, two pairs of lifting and lowering shielding magnets, a detection component and a lifting and lowering detection component; The vertical and horizontal screw module is installed on the inner side of the electrical room, the movable plate is installed on the movable end of the vertical and horizontal screw module, the lifting and lowering round-shaped bracket is installed on the movable plate, the two pairs of lifting and lowering limit convex blocks are installed on the inner side of the lifting and lowering round-shaped bracket in a cross shape, the two pairs of lifting and lowering shielding concave blocks are inserted in the bottom end of the lifting and lowering round-shaped bracket in a cross shape, the two pairs of lifting and lowering shielding electromagnets are respectively installed on the inner sides of the two pairs of lifting and lowering shielding concave blocks, the two pairs of lifting and lowering shielding convex blocks are respectively movably inserted on the inner sides of the two pairs of lifting and lowering shielding concave blocks, the two pairs of lifting and lowering shielding magnets are respectively installed on the two pairs of lifting and lowering shielding convex blocks, the lifting detection component is movably arranged on the inner side of the lifting and lowering round-shaped bracket, and the detection component is installed on the inner side of the lifting detection component; It should be noted that, in the above, the operation of the vertical and horizontal screw modules drives the movable plate thereon to perform stable horizontal vertical and horizontal movement, and the movable plate drives the lifting and lowering circular bracket thereon to perform stable horizontal vertical and horizontal movement, and the lifting and lowering electromagnets on the inner sides of the two pairs of lifting and lowering limit convex blocks on the inner sides of the two pairs of lifting and lowering concave blocks are energized, and magnetic repulsion or adsorption is performed through a pair of lifting and lowering magnets, so that the two pairs of lifting and lowering convex blocks are stably moved horizontally along the inner sides of the two pairs of lifting and lowering concave blocks, and the lifting and lowering detection components are actively supported by the two pairs of lifting and lowering convex blocks.
[0005] Preferably, the lifting detection assembly comprises: a lifting detection box, a battery, two pairs of concave set blocks, four pairs of convex extrusion blocks, a plurality of movable limit shafts, a plurality of movable set springs, eight pairs of extrusion lifting wheels, four pairs of extrusion lifting shafts, four pairs of transmission helical gear sets, four pairs of transmission shafts, four pairs of transmission set shaft tubes, a plurality of transmission pins, two pairs of transmission gear sets and two pairs of lifting drive machines; Two pairs of the concave set blocks are cross-shaped and installed on the outside of the lifting detection box, and a pair of convex extrusion grooves are respectively opened on the two pairs of the concave set blocks, and four pairs of the convex extrusion blocks are movably inserted in the inner sides of the four pairs of the convex extrusion grooves, and a number of the lifting limit shafts are respectively inserted in the inner sides of the four pairs of the convex extrusion grooves, and a number of the lifting limit shafts are respectively movably inserted on the four pairs of the convex extrusion blocks, and a number of the moving set springs are respectively set on a number of the moving limit shafts, and a pair of concave moving grooves are respectively opened on the four pairs of the convex extrusion blocks, and the four pairs of the conduction shafts are respectively on eight pairs of the concave moving grooves, and eight pairs of the extrusion lifting wheels are respectively installed on the four pairs of the extrusion lifting shafts, and the four pairs of the convex extrusion blocks are respectively provided with driving grooves. The driving groove is located between the eight pairs of the concave movable grooves, the four pairs of the transmission sleeve shaft tubes are respectively inserted into the inner sides of the four pairs of the driving grooves, the four pairs of the transmission shafts are respectively movably inserted into the inner sides of the four pairs of the transmission sleeve shaft tubes, the four pairs of the transmission bevel gear sets are respectively installed on the four pairs of the transmission shafts and the four pairs of the extrusion lifting shafts, the four pairs of the transmission shafts are respectively provided with a plurality of pin grooves, the four pairs of the transmission sleeve shaft tubes are provided with a plurality of pin holes, a plurality of the transmission pins are respectively movably inserted into the plurality of the pin holes and the inner sides of the plurality of the pin grooves, the two pairs of the transmission gear sets are respectively sleeved on the four pairs of the transmission sleeve shaft tubes, the two pairs of the lifting drive motor driving ends are respectively connected to the two pairs of the transmission gear sets, and the storage battery is installed on the inner side of the lifting detection box; It should be noted that, in the above, the operation of the lifting drive machine drives the transmission gear set on the driving end of the lifting drive machine to operate, and the transmission gear set drives several transmission sleeve shaft tubes thereon to rotate, and the transmission sleeve shaft tube drives the transmission pins thereon, and the transmission pins drive the transmission lifting shaft thereon, so that the transmission lifting shaft is stably lifted and lowered along the inner side of the transmission sleeve shaft tube, and at the same time, through the cooperation of the transmission pins, stable extension and retraction are achieved, and at the same time, the transmission bevel gear set thereon is driven to rotate through the extrusion lifting shaft, and the extrusion lifting shaft is driven to rotate stably through the transmission bevel gear set, and a pair of extrusion lifting wheels thereon are driven to rotate stably through the extrusion lifting shaft, and through the extrusion rotation of the pair of extrusion lifting wheels, the concave set block is stably lifted and lowered along the lifting T-shaped moving block and the lifting T-shaped block, so that the detection component is stably lifted and lowered on the inner side of the switch cabinet group, and the concave set block is stably lifted and lowered.
[0006] Preferably, the mobile detection structure includes: a high-definition camera, a panoramic imaging module, an infrared temperature sensor, a sound recognition sensor, a vibration measurement sensor and a wireless communication module; The high-definition camera, the panoramic imaging module, the infrared temperature sensor, the voice recognition sensor, the vibration measurement sensor and the wireless communication module are installed on the lifting detection box; It should be noted that, in the above, the high-definition camera and panoramic imaging module: install the high-definition camera and panoramic imaging module at the appropriate position inside the switch cabinet to ensure that the equipment area that needs to be detected can be covered; adjust the angle and focal length of the camera to obtain the best shooting effect; infrared temperature sensor: install the infrared temperature sensor according to the location of the equipment that needs to be detected; set the measurement range and temperature threshold of the sensor; sound recognition sensor: install the sound recognition sensor at the appropriate position inside the switch cabinet; configure the sound recognition algorithm and sensitivity of the sensor; vibration measurement sensor: install the vibration measurement sensor near the equipment that needs to detect vibration; set the measurement range and sensitivity of the sensor; wireless communication module: ensure that all sensors and monitoring equipment are connected through the wireless communication module to realize real-time data transmission; start detection: remotely start the high-definition camera, panoramic imaging module, infrared temperature sensor, sound recognition sensor and vibration measurement sensor through the wireless communication module; image acquisition: high-definition camera and panoramic imaging The module starts to collect image information from the inside of the switch cabinet; it can zoom in or out on specific areas as needed; temperature detection: the infrared temperature sensor detects the temperature of the equipment inside the switch cabinet; if equipment with abnormal temperature is found, it will be recorded and alarmed in time; sound recognition: the sound recognition sensor monitors the sound information inside the switch cabinet; if abnormal sound (such as discharge sound, mechanical friction sound, etc.) is identified, it will be recorded and alarmed in time; vibration measurement: the vibration measurement sensor measures the vibration of the equipment inside the switch cabinet; if equipment with abnormal vibration is found, it will be recorded and alarmed in time; the data collected by each sensor is transmitted to the monitoring device or data center in real time through the wireless communication module; data analysis: the collected image, temperature, sound and vibration data are processed and analyzed; abnormal equipment or areas are identified, and a detection report is generated; alarm and notification: if an abnormal situation is found, the monitoring device or data center will send an alarm signal in time; the alarm information is sent to relevant personnel through the wireless communication module for timely processing.
[0007] Preferably, an identification sheet is provided on the switch cabinet group.
[0008] Preferably, a scanning camera is provided on the vertical and horizontal screw module.
[0009] Preferably, a charger is provided in the electrical room.
[0010] Preferably, a buffer pad is provided on the inner side of the switch cabinet group.
[0011] Preferably, a plurality of electromagnetic catapults are arranged inside the switch cabinet group.
[0012] Preferably, a pair of sealing rubber rings are provided on the transfer set circular block.
[0013] The switch cabinet group intelligent monitoring device made by the technical solution of the present invention has the remarkable advantages of its highly integrated, automated and intelligent design concept; the system realizes stable and accurate lifting detection of the equipment in the switch cabinet group through the precise coordination of the mobile detection structure and the lifting detection component; the lifting component runs smoothly on a specific track, is not restricted by the hydraulic sealing door, and the interaction between the electromagnet and the magnet enhances the stability and flexibility of the lifting; at the same time, the vertical and horizontal screw module drives the lifting and lowering back-shaped bracket to move horizontally and vertically, and cooperates with the lifting and lowering shielding block with magnetic design to provide reliable support for the detection component; the system also integrates a variety of sensors, such as high-definition cameras, infrared temperature measurement, sound recognition and vibration measurement sensors, to collect data in a comprehensive and real-time manner. The wireless communication module ensures that the data is transmitted to the monitoring center in real time, and the data analysis function quickly identifies abnormalities and generates reports. Once an abnormality is found, the system immediately alarms and quickly notifies relevant personnel to handle it through wireless communication. This highly integrated, automated and intelligent detection system greatly improves the detection efficiency and accuracy and ensures the reliable operation of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic front and cross-sectional view of an intelligent monitoring device for a switch cabinet group according to the present invention.
[0015] Figure 2 It is a top view and cross-sectional schematic diagram of an intelligent monitoring device for a switch cabinet group described in the present invention.
[0016] Figure 3 for Figure 1 A partial enlarged view of "A".
[0017] Figure 4 for Figure 1 A partial enlarged view of "B".
[0018] Figure 5 for Figure 2 A partial enlarged view of "C" in the figure.
[0019] In the figure: 1, switch cabinet group; 2, electrical room; 101, lifting T-block; 102, lifting T-moving block; 103, lifting moving limit block; 104, lifting concave moving limit block; 105, lifting limit shaft; 106, lifting ring electromagnet; 107, lifting ring magnet; 108, transfer set circular block; 109, hydraulic sealing door; 201, vertical and horizontal screw module; 202, moving plate; 203, lifting circular bracket; 204, lifting limit convex block; 205, lifting shield Concave block; 206, lifting and blocking convex block; 207, lifting and blocking electromagnet; 208, lifting and blocking magnet; 301, lifting detection box; 302, concave set block; 303, convex extrusion block; 304, movable limit shaft; 305, movable set spring; 306, extrusion lifting wheel; 307, extrusion lifting shaft; 308, transmission bevel gear set; 309, transmission shaft; 310, transmission set shaft tube; 311, transmission pin; 312, transmission gear set; 313, lifting drive motor. DETAILED DESCRIPTION
[0020] The present invention will be described in detail below in conjunction with the accompanying drawings. Figure 1-5 As shown, an intelligent monitoring device for a switch cabinet group.
[0021] Through the personnel in this field, all the electrical components in this case are connected to their adapted power supplies through wires, and the appropriate controller should be selected according to the actual situation to meet the control requirements. The specific connection and control sequence should refer to the following working principle. The electrical connection between the electrical components is completed in sequence. The detailed connection means are well-known in the field. The following mainly introduces the working principle and process, and does not explain the electrical control. (Through the personnel in this field, the components in this case are connected in sequence. The specific connection and operation sequence should refer to the following working principle. The detailed connection means are well-known in the field. The following mainly introduces the working principle and process.) Example: The present invention will be described in detail below in conjunction with the accompanying drawings. Figure 1-5As shown, the switch cabinet group 1 is installed on the inner side of the electrical room 2, the mobile detection structure is installed on the inner side of the electrical room 2, and several detection and drainage structures are respectively installed on the inner side of the switch cabinet group 1, and the detection and drainage structure includes: a pair of lifting T-shaped blocks 101, a pair of lifting T-shaped moving blocks 102, a pair of lifting moving limit blocks 103, a pair of lifting concave moving limit blocks 104, a pair of lifting limit shafts 105, a pair of lifting circular electromagnets 106, a pair of lifting circular magnets 107, a transfer set circular block 108 and a pair of hydraulic sealing doors 109; the transfer set circular block 108 is installed on the inner top of the switch cabinet, and a pair of hydraulic sealing doors 109 are inserted into the transfer set circular block 108 A pair of the lifting concave movable limit blocks 104 are relatively parallelly installed on the transfer set circular block 108, a pair of the lifting movable limit blocks 103 are respectively movably inserted on the inner sides of the pair of lifting concave movable limit blocks 104, a pair of the lifting T-shaped movable blocks 102 are respectively installed on the pair of lifting movable limit blocks 103, a pair of the lifting T-shaped blocks 101 are relatively parallelly installed on the inner side of the switch cabinet, and the pair of the lifting T-shaped blocks 101 and the pair of the lifting T-shaped movable blocks 102 form a cross shape, a pair of the lifting limit shafts 105 are respectively inserted on the inner sides of the pair of lifting concave movable limit blocks 104, and a pair of the lifting limit shafts 105 are respectively movably inserted on the pair of lifting movable limit blocks 103 A pair of lifting ring electromagnets 106 are respectively installed on a pair of lifting concave movable limit blocks 104, and a pair of lifting ring magnets 107 are respectively installed on a pair of lifting movable limit blocks 103; the moving detection structure includes: a longitudinal and transverse screw module 201, a moving plate 202, a lifting round-shaped bracket 203, two pairs of lifting limit convex blocks 204, two pairs of lifting shielding concave blocks 205, two pairs of lifting shielding convex blocks 206, two pairs of lifting shielding electromagnets 207, two pairs of lifting shielding magnets 208, a detection component and a lifting detection component; the longitudinal and transverse screw module 201 is installed on the inner side of the electrical room 2, the moving plate 202 is installed on the moving end of the longitudinal and transverse screw module 201, the lifting round-shaped bracket The frame 203 is installed on the movable plate 202, the two pairs of lifting limit convex blocks 204 are cross-shaped and installed on the inner side of the lifting round-shaped bracket 203, the two pairs of lifting shielding concave blocks 205 are cross-shaped and inserted at the bottom end of the lifting round-shaped bracket 203, the two pairs of lifting shielding electromagnets 207 are respectively installed on the inner sides of the two pairs of lifting shielding concave blocks 205, the two pairs of lifting shielding convex blocks 206 are respectively movably inserted on the inner sides of the two pairs of lifting shielding concave blocks 205, the two pairs of lifting shielding magnets 208 are respectively installed on the two pairs of lifting shielding convex blocks 206, the lifting detection component is movably arranged on the inner side of the lifting round-shaped bracket 203, and the detection component is installed on the inner side of the lifting detection component;The lifting detection assembly includes: a lifting detection box 301, a battery, two pairs of concave set blocks 302, four pairs of convex extrusion blocks 303, a plurality of movable limit shafts 304, a plurality of movable set springs 305, eight pairs of extrusion lifting wheels 306, four pairs of extrusion lifting shafts 307, four pairs of transmission bevel gear sets 308, four pairs of transmission shafts 309, four pairs of transmission set shaft tubes 310, a plurality of transmission pins 311, two pairs of transmission gear sets 312 and two pairs of lifting drive machines 313; the two pairs of the concave set blocks 302 are cross-shaped and installed on the outer side of the lifting detection box 301, the two pairs of the concave set blocks 302 are respectively provided with a pair of convex extrusion grooves, and the four pairs of the convex extrusion blocks 303 are respectively movably inserted into the four pairs of the convex extrusion grooves. On the inner side, several lifting limit shafts 105 are respectively inserted into the inner sides of the four pairs of convex extrusion grooves, and several lifting limit shafts 105 are respectively movably inserted into the four pairs of convex extrusion blocks 303, several mobile sleeve springs 305 are respectively sleeved on several mobile limit shafts 304, and the four pairs of convex extrusion blocks 303 are respectively provided with a pair of concave moving grooves, four pairs of conduction shafts 309 are respectively on eight pairs of concave moving grooves, eight pairs of extrusion lifting wheels 306 are respectively installed on four pairs of extrusion lifting shafts 307, four pairs of convex extrusion blocks 303 are respectively provided with driving grooves, and the four pairs of driving grooves are located between the eight pairs of concave moving grooves, and four pairs of conduction sleeve shaft tubes 310 are respectively inserted into the four pairs of The inner side of the driving groove, the four pairs of the transmission shafts 309 are respectively movably inserted into the inner sides of the four pairs of the transmission sleeve shaft tubes 310, the four pairs of the transmission bevel gear sets 308 are respectively installed on the four pairs of the transmission shafts 309 and the four pairs of the extrusion lifting shafts 307, the four pairs of the transmission shafts 309 are respectively provided with a plurality of pin grooves, the four pairs of the transmission sleeve shaft tubes 310 are provided with a plurality of pin holes, a plurality of the transmission pins 311 are respectively movably inserted into the plurality of the pin holes and the inner sides of the plurality of the pin grooves, the two pairs of the transmission gear sets 312 are respectively provided on the four pairs of the transmission sleeve shaft tubes 310, the driving ends of the two pairs of the lifting driving machines 313 are respectively connected to the two pairs of the transmission gear sets 312, the storage battery is installed on the lifting detection The inside of the box 301; the mobile detection structure includes: a high-definition camera, a panoramic imaging module, an infrared temperature sensor, a voice recognition sensor, a vibration measurement sensor and a wireless communication module; the high-definition camera, the panoramic imaging module, the infrared temperature sensor, the voice recognition sensor, the vibration measurement sensor and the wireless communication module are installed on the lifting detection box 301; the switch cabinet group 1 is provided with an identification sheet; the vertical and horizontal screw module 201 is provided with a scanning camera; the electrical room 2 is provided with a charger; the inside of the switch cabinet group 1 is provided with a buffer pad; the inside of the switch cabinet group 1 is provided with a number of electromagnetic ejectors; the transfer set round block 108 is provided with a pair of sealing rubber rings. ;
[0022] According to the attached Figure 1-5It is concluded that the lifting detection component on it is driven by the mobile detection structure, and the lifting detection component is stably guided to a pair of lifting T-shaped moving blocks 102 on the inner side of the lifting round bracket 203 of the switch cabinet group 1 inside the switch cabinet group 1. At the same time, the detection component on it is driven by the lifting detection component to be stably lifted to the inside of the switch cabinet, and a pair of hydraulic sealing doors 109 are operated, and no lifting limit support is provided for the lifting detection component. A pair of lifting ring electromagnets 106 on a pair of lifting concave moving limit blocks 104 are energized, and a pair of lifting ring electromagnets 106 are used to magnetically adsorb or repel a pair of lifting ring magnets 107 respectively, and the lifting ring magnets 107 drive the lifting moving limit blocks 103 on it to be stably lifted. The lifting and lowering movement limit block 103 is stably lifted and lowered along the lifting and lowering limit shaft 105 inside the concave movable limit block, and the track of the lifting T-shaped moving block 102 is stably lifted and lowered by changing the track of the lifting and lowering detection component; the vertical and horizontal screw module 201 is operated to drive the moving plate 202 thereon to perform stable horizontal vertical and horizontal movement, and the moving plate 202 drives the lifting and lowering circular bracket 203 thereon to perform stable horizontal vertical and horizontal movement, and the lifting and lowering shielding electromagnets 207 inside the two pairs of lifting and lowering limit convex blocks 204 inside the two pairs of lifting and lowering shielding concave blocks 205 are energized, and a pair of lifting and lowering shielding magnets 208 are used for magnetic repulsion or adsorption, so that the two pairs of lifting and lowering shielding convex blocks 206 are It moves stably horizontally along the inner side of the two pairs of lifting shielding concave blocks 205, and the lifting detection assembly is actively supported by the two pairs of lifting shielding convex blocks 206; the lifting driving machine 313 is operated to drive the transmission gear set 312 on the driving end of the lifting driving machine 313 to operate, and the transmission gear set 312 drives several transmission sleeve shaft tubes 310 thereon to rotate, and the transmission sleeve shaft tube 310 drives the transmission pin 311 thereon, and the transmission lifting shaft thereon is driven by the transmission pin 311, so that the transmission lifting shaft is stably lifted and lowered along the inner side of the transmission sleeve shaft tube 310, and at the same time, through the cooperation of the transmission pin 311, stable extension and retraction are achieved, and at the same time, the transmission bevel gear set 308 thereon is driven by squeezing the lifting shaft 307. Rotate, drive the extrusion lifting shaft 307 on it to rotate stably through the transmission bevel gear set 308, drive the pair of extrusion lifting wheels 306 on it to rotate stably through the extrusion lifting shaft 307, and through the extrusion rotation of the pair of extrusion lifting wheels 306, the concave set block 302 is stably lifted along the lifting T-shaped moving block 102 and the lifting T-shaped block 101, so that the detection component is stably lifted on the inner side of the switch cabinet group 1, so that the concave set block 302 is stably lifted; High-definition camera and panoramic imaging module: install high-definition camera and panoramic imaging module at appropriate positions inside the switch cabinet to ensure that the equipment area that needs to be detected can be covered; adjust the angle and focal length of the camera to obtain the best shooting effect;Infrared temperature sensor: Install infrared temperature sensor according to the location of the equipment to be detected; set the sensor's measurement range and temperature threshold; Voice recognition sensor: Install voice recognition sensor at an appropriate location inside the switch cabinet; configure the sensor's voice recognition algorithm and sensitivity; Vibration measurement sensor: Install vibration measurement sensor near the equipment that needs to detect vibration; set the sensor's measurement range and sensitivity; Wireless communication module: Ensure that all sensors and monitoring equipment are connected through the wireless communication module to achieve real-time data transmission; Start detection: Remotely start the high-definition camera, panoramic imaging module, infrared temperature sensor, voice recognition sensor and vibration measurement sensor through the wireless communication module; Image acquisition: The high-definition camera and panoramic imaging module start to collect image information from the inside of the switch cabinet; specific areas can be zoomed in or out for shooting as needed; Temperature detection: Infrared temperature sensors detect the temperature of the equipment inside the switch cabinet; if equipment with abnormal temperature is found, it will be recorded and alarmed in time; Sound recognition: The sound recognition sensor monitors the sound information inside the switch cabinet; if abnormal sound (such as discharge sound, mechanical friction sound, etc.) is identified, it will be recorded and alarmed in time; Vibration measurement: The vibration measurement sensor measures the vibration of the equipment inside the switch cabinet; if equipment with abnormal vibration is found, it will be recorded and alarmed in time; The data collected by each sensor is transmitted to the monitoring equipment or data center in real time through the wireless communication module; Data analysis: The collected image, temperature, sound and vibration data are processed and analyzed; Abnormal equipment or areas are identified, and a detection report is generated; Alarm and notification: If an abnormal situation is found, the monitoring equipment or data center will send an alarm signal in time; The alarm information is sent to relevant personnel through the wireless communication module for timely processing. ;
[0023] The above technical solutions only reflect the preferred technical solutions of the technical solutions of the present invention. Some changes that may be made to certain parts thereof by technicians in this technical field all reflect the principles of the present invention and fall within the protection scope of the present invention.
Claims
1. An intelligent monitoring device for a switch cabinet group, comprising: A switch cabinet group, an electrical room, a mobile detection structure and a plurality of detection and drainage structures, wherein the switch cabinet group is installed on the inner side of the electrical room, the mobile detection structure is installed on the inner side of the electrical room, and a plurality of detection and drainage structures are respectively installed on the inner side of the switch cabinet group, characterized in that the detection and drainage structure comprises: a pair of lifting T-shaped blocks, a pair of lifting T-shaped moving blocks, a pair of lifting moving limit blocks, a pair of lifting concave moving limit blocks, a pair of lifting limit shafts, a pair of lifting ring electromagnets, a pair of lifting ring magnets, a transfer set circular block and a pair of hydraulic sealing doors; The transfer set circular block is installed on the inner top of the switch cabinet, a pair of hydraulic sealing doors are inserted on the transfer set circular block, a pair of lifting concave movable limit blocks are installed relatively parallel to the transfer set circular block, a pair of lifting movable limit blocks are respectively movably inserted on the inner sides of a pair of lifting concave movable limit blocks, a pair of lifting T-shaped moving blocks are respectively installed on a pair of lifting movable limit blocks, a pair of lifting T-shaped blocks are relatively parallel to the inner side of the switch cabinet, and a pair of lifting T-shaped blocks and a pair of lifting T-shaped moving blocks form a cross shape, a pair of lifting limit shafts are respectively inserted on the inner sides of a pair of lifting concave movable limit blocks, and a pair of lifting limit shafts are respectively movably inserted on a pair of lifting movable limit blocks, a pair of lifting ring electromagnets are respectively installed on a pair of lifting concave movable limit blocks, and a pair of lifting ring magnets are respectively installed on a pair of lifting movable limit blocks.
2. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: The mobile detection structure includes: a vertical and horizontal screw module, a mobile plate, a lifting and lowering circular bracket, two pairs of lifting and lowering limit convex blocks, two pairs of lifting and lowering shielding concave blocks, two pairs of lifting and lowering shielding convex blocks, two pairs of lifting and lowering shielding electromagnets, two pairs of lifting and lowering shielding magnets, a detection component and a lifting and lowering detection component; The vertical and horizontal screw module is installed on the inner side of the electrical room, the movable plate is installed on the movable end of the vertical and horizontal screw module, the lifting and lowering round-shaped bracket is installed on the movable plate, the two pairs of lifting and lowering limit convex blocks are cross-shaped and installed on the inner side of the lifting and lowering round-shaped bracket, the two pairs of lifting and lowering shielding concave blocks are cross-shaped and inserted into the bottom end of the lifting and lowering round-shaped bracket, the two pairs of lifting and lowering shielding electromagnets are respectively installed on the inner sides of the two pairs of lifting and lowering shielding concave blocks, the two pairs of lifting and lowering shielding convex blocks are respectively movably inserted into the inner sides of the two pairs of lifting and lowering shielding concave blocks, the two pairs of lifting and lowering shielding magnets are respectively installed on the two pairs of lifting and lowering shielding convex blocks, the lifting detection component is movably arranged on the inner side of the lifting and lowering round-shaped bracket, and the detection component is installed on the inner side of the lifting detection component.
3. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: The lifting detection assembly comprises: a lifting detection box, a storage battery, two pairs of concave set blocks, four pairs of convex extrusion blocks, a plurality of movable limit shafts, a plurality of movable set springs, eight pairs of extrusion lifting wheels, four pairs of extrusion lifting shafts, four pairs of transmission helical gear sets, four pairs of transmission shafts, four pairs of transmission set shaft tubes, a plurality of transmission pins, two pairs of transmission gear sets and two pairs of lifting drive machines; Two pairs of the concave set blocks are cross-shaped and installed on the outside of the lifting detection box, and a pair of convex extrusion grooves are respectively opened on the two pairs of the concave set blocks, and four pairs of the convex extrusion blocks are movably inserted in the inner sides of the four pairs of the convex extrusion grooves, and a number of the lifting limit shafts are respectively inserted in the inner sides of the four pairs of the convex extrusion grooves, and a number of the lifting limit shafts are respectively movably inserted on the four pairs of the convex extrusion blocks, and a number of the moving set springs are respectively set on a number of the moving limit shafts, and a pair of concave moving grooves are respectively opened on the four pairs of the convex extrusion blocks, and the four pairs of the conduction shafts are respectively on eight pairs of the concave moving grooves, and eight pairs of the extrusion lifting wheels are respectively installed on the four pairs of the extrusion lifting shafts, and the four pairs of the convex extrusion blocks are respectively provided with driving grooves. The driving groove is located between the eight pairs of the concave movable grooves, the four pairs of the conduction sleeve shaft tubes are respectively inserted into the inner sides of the four pairs of the driving grooves, the four pairs of the conduction shafts are respectively movably inserted into the inner sides of the four pairs of the conduction sleeve shaft tubes, the four pairs of the conduction bevel gear sets are respectively installed on the four pairs of the conduction shafts and the four pairs of the extrusion lifting shafts, the four pairs of the conduction shafts are respectively provided with a plurality of pin grooves, the four pairs of the conduction sleeve shaft tubes are provided with a plurality of pin holes, a plurality of the conduction pins are respectively movably inserted into the plurality of the pin holes and the inner sides of the plurality of the pin grooves, the two pairs of the conduction gear sets are respectively mounted on the four pairs of the conduction sleeve shaft tubes, the driving ends of the two pairs of the lifting drive machines are respectively connected to the two pairs of the conduction gear sets, and the battery is installed on the inner side of the lifting detection box.
4. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: The mobile detection structure includes: a high-definition camera, a panoramic imaging module, an infrared temperature sensor, a sound recognition sensor, a vibration measurement sensor and a wireless communication module; The high-definition camera, the panoramic imaging module, the infrared temperature sensor, the voice recognition sensor, the vibration measurement sensor and the wireless communication module are installed on the lifting detection box.
5. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: The switch cabinet group is provided with an identification sheet.
6. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: A scanning camera is arranged on the vertical and horizontal lead screw module.
7. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: A charger is arranged on the electrical room.
8. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: A buffer pad is arranged on the inner side of the switch cabinet group.
9. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: A plurality of electromagnetic catapults are arranged inside the switch cabinet group.
10. The intelligent monitoring device for a switch cabinet group according to claim 1, characterized in that: A pair of sealing rubber rings are arranged on the transfer suit circular block.