Multi-modal data extraction method and device for intelligent power service
By designing a multimodal data extraction device for intelligent power services, using flexible structural design and transmission mechanism, the problem of inconvenience in mobility of existing devices is solved, efficient and flexible data acquisition is achieved, and the quality and reliability of data acquisition are significantly improved.
Patent Information
- Application Number
- CN202411909804.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-05-13
AI Technical Summary
Currently, the multimodal data extraction device is large in size, which leads to inconvenience in movement, requires a lot of manpower and time to change position, and requires multiple repeated movement operations to reach the ideal monitoring point, affecting the efficiency and quality of data extraction.
A multimodal data extraction device for intelligent power services is designed, and the device base adopts a rectangular seat structure is equipped with an extraction slide, an adjustment seat and an installation base. By adjusting the push cylinder and adjusting the motor, the height and acquisition orientation of the image extraction components and the radio components are flexibly adjusted, and the device is easily moved and fixed through the coordination of the transmission slide and the detection slide.
It improves the flexibility and efficiency of data acquisition, can quickly adjust the acquisition location, avoid data acquisition blind spots, significantly improves the comprehensiveness and accuracy of data acquisition, and ensures the stability and reliability of the data extraction process.
Smart Images

Figure CN119983093A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power service data extraction, and in particular to a multimodal data extraction method and device for intelligent power service. Background Art
[0002] The multimodal data extraction device of smart power services collects data from multiple sources, including electrical signal data obtained by sensors on power equipment, image data collected by surveillance cameras in places such as substations and distribution rooms, text data such as power system operation logs and equipment maintenance records, and audio data emitted by power equipment during operation.
[0003] In the scenario of smart power service, when using multimodal data extraction devices to extract data from related equipment, it often involves accurate data collection of the surrounding environment conditions of the smart power service equipment and the sound information generated during the operation of the equipment. Due to the wide distribution of power service equipment and diverse monitoring needs, this requires that the multimodal data extraction device must be flexibly moved to different locations to ensure that the required data can be fully and accurately obtained. However, the multimodal data extraction devices currently used generally have the problem of large volume. This large volume characteristic makes it face many inconveniences during its movement. Each change of position requires a lot of manpower and time, and often requires repeated movement operations to reach the ideal monitoring point. After the multimodal data extraction device has been moved to the designated position after difficulty, it is necessary to re-fix and support it firmly to ensure its stability and accuracy during the data extraction process. The whole process involves a large number of cumbersome operating steps, from the transportation and movement of the device, position adjustment to the final fixed installation, all need to be completed manually, which undoubtedly greatly increases the labor intensity of data extraction work, seriously affects the efficiency and quality of data extraction, and also forms a major obstacle to the efficient development of smart power service data collection work. Summary of the invention
[0004] The present invention application discloses a multimodal data extraction device for smart power services to solve the problem of large size of the currently used multimodal data extraction devices mentioned in the above background technology. This large volume characteristic makes it face many inconveniences during its movement. Each change of position requires a lot of manpower and time, and often requires multiple repeated movement operations to reach the ideal monitoring point.
[0005] The present invention provides a multimodal data extraction method and device for smart power services, and the purpose and efficacy thereof, specifically comprising: a device base, the device base is shaped like a rectangular seat structure design, and an extraction slide is slidably arranged on the top of the device base; an adjustment seat is rotatably arranged on the top of the extraction slide; a mounting base is symmetrically installed and fixedly arranged on the bottom of the device base; the device base comprises: an adjustment push cylinder, the adjustment push cylinder is fixedly installed in the middle of the top of the device base; a piston rod of the adjustment push cylinder is fixedly connected to the bottom of the extraction slide; an installation side head, the installation side head is shaped like an arc-shaped head structure design, and the number of the installation side heads is set to two, and the installation side heads are symmetrically fixedly arranged on both sides of the adjustment push cylinder; a limit column, the limit column is shaped like a circular column structure design, and the limit column is fixedly installed between the installation side head and the device base.
[0006] Furthermore, the base of the device also includes: a connecting shell, which is shaped like a long strip shell structure, and the number of the connecting shells is set to two, and the connecting shells are symmetrically installed and fixed at the top rear end of the device base; a pushing seat, which is shaped like an L-shaped seat structure, and the number of the pushing seats is set to two, and the pushing seat is symmetrically installed and fixed at the top rear end of the connecting shell.
[0007] Furthermore, the base of the device also includes: a connecting seat, which is shaped like a rectangular seat structure and is fixedly arranged at the rear end of the top of the adjustment push cylinder; a fixed connection between the connecting seat and one side of the push seat; a universal wheel, the number of which is set to two, and the universal wheels are symmetrically installed and fixed at the bottom of the front end of the device base.
[0008] Furthermore, the base of the device also includes: a transmission slider, which is shaped like a rectangular block structure and is slidably arranged inside the pushing seat; a spring is installed between the transmission slider and the pushing seat; a transmission joint, which is shaped like a round head structure and the number of transmission joints is set to two, and the transmission joints are symmetrically fixed at one end of the transmission slider; a transmission plate, which is shaped like a rectangular plate structure and is fixedly arranged at the other end behind the transmission slider.
[0009] Furthermore, the base of the device also includes: a proximity switch, which is installed inside the connecting shell; a detection slider, which is designed in the shape of a rectangular block structure and is slidably arranged inside the connecting shell, a trigger head is provided on one side of the detection slider, and a spring is installed between the trigger head of the connecting shell and the detection slider.
[0010] Furthermore, the base of the device also includes: a transmission seat, which is shaped like a concave seat structure and is fixedly arranged on the top of the detection slider; a transmission groove, which is shaped like an elliptical groove structure design, and the number of the transmission grooves is set to two, and the transmission grooves are opened on both sides of the transmission seat in an oblique symmetrical shape; and a sliding connection between the transmission groove and the transmission joint.
[0011] Furthermore, the device base also includes: a limiting tooth, which is arranged at the bottom of the detection slider.
[0012] Furthermore, the extraction slide includes: a limiting pillar, which is shaped like a rectangular column structure, and the number of the limiting pillars is set to two, and the limiting pillars are symmetrically and integrally arranged on both sides of the bottom of the extraction slide; a limiting joint, which is shaped like an arc head structure, and the limiting joint is fixedly arranged on one side of the bottom of the limiting pillar; and the limiting joint is slidably connected to the limiting pillar.
[0013] Furthermore, the extraction slide also includes: a fixed side plate, which is shaped like a rectangular plate structure and is fixedly arranged at the bottom of the extraction slide; and an adjustment motor, which is installed on one side of the fixed side plate.
[0014] Furthermore, the extraction slide also includes: a transmission gear, which is fixedly installed on the top of the rotating shaft of the adjustment motor.
[0015] Furthermore, the adjustment seat also includes: a transmission gearwheel, which is fixedly installed at the bottom of the adjustment seat; the transmission gearwheel is meshed with the transmission gear; a sound collecting cover, which is fixedly installed on one side of the adjustment seat; and a sound receiving component, which is installed in the middle of one side of the sound collecting cover.
[0016] Furthermore, the adjustment seat also includes: a data extraction device body, which is fixedly installed on the top of the adjustment seat; an image extraction component, which is installed on one side of the data extraction device body; and an electrical connection between the data extraction device body and the sound receiving component, the adjustment push cylinder, and the proximity switch.
[0017] Furthermore, the mounting base includes: a transmission wheel, which is rotatably arranged at the bottom of the mounting base; a limiting wheel, which has a matching tooth on the outside and is fixedly arranged at one end of the rotating shaft of the transmission wheel; the matching tooth of the limiting wheel is consistent with the limiting tooth.
[0018] Furthermore, the mounting base also includes: a matching baffle, which is designed in the shape of a circular plate structure and is fixedly arranged on one side of the limiting wheel; a connecting groove, which is opened on the top of the mounting base; and a sliding connection between the connecting groove and the detection slider.
[0019] The present invention discloses a multimodal data extraction method for smart power services, comprising the following steps: ① When collecting data for smart power services, the image of the smart power service equipment is collected through the image extraction component, and the operating sound of the smart power service equipment is collected through the sound receiving component. Both the image collection data and the sound collection data will be transmitted to the data extraction device body, and the data extraction device body will analyze the data to complete the data extraction; ②. By starting the adjustment push cylinder, the adjustment push cylinder will drive the extraction slide to move through the piston rod, so that the height position of the image extraction component and the sound receiving component will change; ③. When the adjustment motor is started, the adjustment motor will drive the adjustment seat to rotate through the transmission gear and the transmission gear, and then the collection direction of the image extraction component and the sound receiving component will change, ensuring the collection and extraction of the operation data of the smart power service equipment; ④. When the data collection position needs to be moved, the push seat can be contacted manually. At this time, the staff's hand will also contact the transmission plate, so that it touches the transmission plate to drive the transmission slider to move backward. The transmission slider will drive the transmission joint so that one end of the transmission groove moves to the other end of the transmission groove. The transmission seat will move upward, and the transmission seat will drive the detection slider to move. The limit tooth at the bottom of the detection slider is disengaged from the limit wheel. At this time, the device can be moved and then installed to other suitable positions; ⑤. When the device does not need to be moved, the operator's hand can be separated from the push seat, and the limiting teeth at the bottom of the detection slider are engaged with the limiting wheel, so that the device cannot be moved, thereby completing the moving operation of the device; ⑥. When the limiting tooth is engaged with the limiting wheel, the trigger head on one side of the detection slider will trigger the proximity switch, and the proximity switch will send a signal to the data extraction device body. Only when the data extraction device body receives the signal will data collection and extraction work be performed.
[0020] Beneficial Effects Through the cooperation between the detection slider and the transmission slider, the device can be easily moved and supported and fixed at the same time. When the data collection position needs to be moved, the transmission slider will move backward through the contact of the transmission plate of the staff's hand, and the transmission slider will drive the transmission seat to move through the cooperation between the transmission joint and the transmission groove. The transmission seat will drive the detection slider to move synchronously, thereby disengaging the limiting tooth at the bottom of the detection slider from the limiting wheel. At this time, the device is freed from the constraint of the limiting wheel and can be easily moved to other suitable positions with the help of the staff or other handling tools. This convenient movement method greatly improves the flexibility of data collection and can quickly adjust the collection position according to actual needs. Whether in the complex layout of power facilities or in response to the switching of different monitoring key areas, the position change can be completed efficiently, effectively avoiding the data collection blind area caused by the fixed device, significantly improving the comprehensiveness and accuracy of data collection, and providing richer and more accurate data support for smart power services.
[0021] When the device does not need to move, the staff only needs to disengage their hands from the push seat and the transmission plate. At this time, the detection slider and the transmission slider will return to the initial position, and the limiting teeth at the bottom of the detection slider will re-engage with the limiting wheel, so that the device is locked again and cannot move at will, thereby stably fixing it in the current position to ensure that the data collection process is not disturbed by the outside world. In addition, when the limiting teeth are engaged with the limiting wheel, the trigger head on one side of the detection slider will touch the proximity switch, and the proximity switch will quickly send a signal to the data extraction device body. Only when the data extraction device body receives the signal will the data collection and extraction work be started; on the contrary, if the trigger head on one side of the detection slider does not touch the proximity switch, the data extraction device body will not start the data collection and extraction work. This startup mechanism ensures that the device can only perform data extraction work under the premise of being stable and not moving, effectively preventing data collection errors or data deviations caused by accidental movement of the device, greatly improving the reliability and effectiveness of data collection, and helping to improve the operation management level of the power system and the accuracy of fault diagnosis.
[0022] When collecting image data and sound data, the extraction slide is driven to move smoothly along the predetermined track by starting the adjustment push cylinder. This process allows the height position of the image extraction component and the sound receiving component installed on the extraction slide to change flexibly according to the actual collection needs. After the height position is adjusted, the adjustment motor is started, and its output power is transmitted to the transmission gear. The precise meshing and transmission between the transmission gear and the transmission gear will drive the adjustment seat to rotate smoothly and accurately. When facing smart power service equipment with different height layouts, the image extraction component can be easily adjusted to the best shooting height and angle to obtain clear, complete and unobstructed equipment image information. Whether it is for detailed monitoring of the appearance of the equipment, such as checking whether the equipment shell has signs of damage or corrosion, or for observing the identification of key parts of the equipment and the status of indicator lights, it can provide a very favorable shooting angle, greatly improving the quality and availability of image data. At the same time, the sound receiving component can also be adjusted to a suitable height and angle to more accurately capture various sound signals generated during the operation of the smart power service equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings of the embodiment are briefly introduced below.
[0024] The drawings described below are only related to some embodiments of the present invention, but are not intended to limit the present invention.
[0025] In the attached picture: Figure 1 It is a schematic diagram of the overall axial stereoscopic structure of a multimodal data extraction device for smart power services according to an embodiment of the present invention.
[0026] Figure 2 It is a schematic diagram of the structure of a device base of a multimodal data extraction device for smart power services according to an embodiment of the present invention.
[0027] Figure 3 It is a schematic diagram of the disassembled structure of the connection shell of the multimodal data extraction device for smart power service according to an embodiment of the present invention.
[0028] Figure 4 It is a schematic diagram of the transmission slider structure of the multimodal data extraction device for smart power service according to an embodiment of the present invention.
[0029] Figure 5 It is a schematic diagram of the detection slider structure of the multimodal data extraction device for smart power service according to an embodiment of the present invention.
[0030] Figure 6 It is a schematic diagram of the structure of an extraction slide of a multimodal data extraction device for a smart power service according to an embodiment of the present invention.
[0031] Figure 7 It is a schematic diagram of the structure of an adjustment base of a multimodal data extraction device for smart power service according to an embodiment of the present invention.
[0032] Figure 8 It is a schematic diagram of the structure of an installation base of a multimodal data extraction device for smart power services according to an embodiment of the present invention.
[0033] Reference numerals list 1. Device base; 101. Adjust push cylinder; 102. Install side head; 103. Limit column; 104. Connect shell; 105. Push seat; 106. Connect seat; 107. Universal wheel; 108. Transmission slider; 109. Transmission joint; 110. Transmission plate; 111. Proximity switch; 112. Detection slider; 113. Transmission seat; 114. Transmission slot; 115. Limiting tooth; 2. Extraction slide; 201. Limiting pillar; 202. Limiting joint; 203. Fixed side plate; 204. Adjustment motor; 205. Transmission gear; 3. Adjustment seat; 301. Transmission gear; 302. Sound collecting cover; 303. Sound receiving assembly; 304. Data extraction device body; 305. Image extraction assembly; 4. Mounting base; 401. Transmission wheel; 402. Limiting wheel; 403. Matching baffle; 404. Connecting slot. DETAILED DESCRIPTION
[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of specific embodiments of the present invention.
[0035] Example: Please refer to Figures 1 to 8 As shown: The present invention provides a multimodal data extraction method and device for smart power service, comprising: a device base 1, the device base 1 is in the shape of a rectangular seat structure design, and an extraction slide 2 is slidably arranged on the top of the device base 1; an adjustment seat 3 is rotatably arranged on the top of the extraction slide 2; a mounting base 4 is symmetrically installed and fixedly arranged at the bottom of the device base 1; the device base 1 comprises: an adjustment push cylinder 101, the adjustment push cylinder 101 is fixedly arranged in the middle of the top of the device base 1; a piston rod of the adjustment push cylinder 101 is fixedly connected to the bottom of the extraction slide 2; a mounting side head 102, the mounting side head 102 is in the shape of an arc head structure design, and the number of the mounting side heads 102 is set to two, and the mounting side heads 102 are symmetrically fixedly arranged on both sides of the adjustment push cylinder 101 ; Limiting column 103, the limiting column 103 is shaped like a circular column structure design, and the limiting column 103 is installed and fixed between the installation side head 102 and the device base 1; connecting shell 104, the connecting shell 104 is shaped like a long strip shell structure design, and the number of connecting shells 104 is set to two, and the connecting shells 104 are symmetrically installed and fixed at the top rear end of the device base 1; pushing seat 105, the pushing seat 105 is shaped like an L-shaped seat structure design, and the number of pushing seats 105 is set to two, and the pushing seat 105 is symmetrically installed and fixed at the top rear end of the connecting shell 104; connecting seat 106, the connecting seat 106 is shaped like a rectangular seat structure design, and the connecting seat 106 is fixedly set at the top rear end of the adjustment push cylinder 101; The receiving seat 106 is fixedly connected to one side of the pushing seat 105; the universal wheel 107, the number of the universal wheel 107 is set to two, and the universal wheel 107 is symmetrically installed and fixed at the bottom of the front end of the device base 1; the transmission slider 108, the shape of the transmission slider 108 is a rectangular block structure design, and the transmission slider 108 is slidably set inside the pushing seat 105; a spring is installed between the transmission slider 108 and the pushing seat 105; the transmission joint 109, the shape of the transmission joint 109 is a circular head structure design, and the number of the transmission joint 109 is set to two, and the transmission joint 109 is symmetrically fixed at one end of the transmission slider 108; the transmission plate 110, the shape of the transmission plate 110 is a rectangular plate structure, and the transmission plate 110 is fixedly set At the other end behind the transmission slider 108; a proximity switch 111, which is installed inside the connecting shell 104; a detection slider 112, which is shaped like a rectangular block structure, and the detection slider 112 is slidably arranged inside the connecting shell 104, and a trigger head is provided on one side of the detection slider 112, and a spring is installed between the trigger head of the connecting shell 104 and the detection slider 112; a transmission seat 113, which is shaped like a concave seat structure, and the transmission seat 113 is fixedly arranged on the top of the detection slider 112; a transmission groove 114, which is shaped like an elliptical groove structure, and the number of the transmission grooves 114 is set to two, and the transmission grooves 114 are obliquely symmetrically opened on both sides of the transmission seat 113;The transmission groove 114 is slidably connected to the transmission joint 109; the limiting latch 115 is provided at the bottom of the detection slider 112. ;
[0036] Among them, the extraction slide 2 includes: a limiting pillar 201, the limiting pillar 201 is shaped like a rectangular column structure design, and the number of the limiting pillars 201 is set to two, and the limiting pillars 201 are symmetrically arranged on both sides of the bottom of the extraction slide 2; a limiting joint 202, the limiting joint 202 is shaped like an arc head structure, and the limiting joint 202 is fixedly arranged on one side of the bottom of the limiting pillar 201; the limiting joint 202 is slidably connected to the limiting pillar 103; a fixed side plate 203, the fixed side plate 203 is shaped like a rectangular plate structure design, and the fixed side plate 203 is fixedly arranged at the bottom of the extraction slide 2; an adjustment motor 204, the adjustment motor 204 is installed and arranged on one side of the fixed side plate 203; a transmission gear 205, the transmission gear 205 is installed and fixedly arranged on the top of the rotating shaft of the adjustment motor 204.
[0037] Among them, the adjustment seat 3 also includes: a transmission gear 301, which is fixedly installed at the bottom of the adjustment seat 3; the transmission gear 301 is meshed with the transmission gear 205; a sound collecting cover 302, which is fixedly installed on one side of the adjustment seat 3; a sound receiving component 303, which is installed in the middle of one side of the sound collecting cover 302; a data extraction device body 304, which is fixedly installed on the top of the adjustment seat 3; an image extraction component 305, which is installed on one side of the data extraction device body 304; the data extraction device body 304 is electrically connected to the sound receiving component 303, the adjustment push cylinder 101, and the proximity switch 111.
[0038] Among them, the mounting base 4 includes: a transmission wheel 401, which is rotatably set at the bottom of the mounting base 4; a limiting wheel 402, which has a matching tooth on the outside and is fixedly set at one end of the rotating shaft of the transmission wheel 401; the matching tooth of the limiting wheel 402 is consistent with the limiting tooth 115; a matching baffle 403, which has a circular plate structure design, and is fixedly set on one side of the limiting wheel 402; a connecting groove 404, which is opened at the top of the mounting base 4; and the connecting groove 404 is slidably connected to the detection slider 112.
[0039] The present invention discloses a multimodal data extraction method for smart power services, comprising the following steps: ①. When collecting data for smart power services, the image of the smart power service equipment is collected by the image extraction component 305, and the operating sound of the smart power service equipment is collected by the sound receiving component 303. The image collection data and the sound data collection are transmitted to the data extraction device body 304, and the data extraction device body 304 analyzes the data to complete the data extraction; ②, by starting the adjustment push cylinder 101, the adjustment push cylinder 101 will drive the extraction slide 2 to move through the piston rod, so that the height position of the image extraction component 305 and the sound receiving component 303 changes; ③. By starting the adjustment motor 204, the adjustment motor 204 will drive the adjustment seat 3 to rotate through the transmission gear 205 and the transmission gear 301, and then the collection direction of the image extraction component 305 and the sound receiving component 303 will change, ensuring the collection and extraction of the operation data of the smart power service equipment; ④. When the data collection position needs to be moved, the push seat 105 can be contacted manually. At this time, the staff's hand will also contact the transmission plate 110, so that it touches the transmission plate 110 to drive the transmission slider 108 to move backward. The transmission slider 108 will drive the transmission joint 109 so that one end of the transmission groove 114 moves to the other end of the transmission groove 114, and the transmission seat 113 will move upward. The transmission seat 113 will drive the detection slider 112 to move, and the limiting tooth 115 at the bottom of the detection slider 112 will be disengaged from the limiting wheel 402. At this time, the device can be moved and then moved to other suitable positions; ⑤. When the device does not need to be moved, the operator's hand can be separated from the push seat 105, and the limiting tooth 115 at the bottom of the detection slider 112 is engaged with the limiting wheel 402, so that the device cannot be moved, thereby completing the moving operation of the device; ⑥. When the limiting tooth 115 is engaged with the limiting wheel 402, the trigger head on one side of the detection slider 112 will trigger the proximity switch 111, and the proximity switch 111 will send a signal to the data extraction device body 304. Only when the data extraction device body 304 receives the signal will data collection and extraction be performed.
[0040] Specific usage and function of this embodiment: In the present invention, when collecting data for smart power services, the device is placed in a suitable position, and then the image capture component 305 is used to capture images of the smart power service equipment, and the sound receiving component 303 is used to collect data on the operating sound of the smart power service equipment. Both the image capture data and the sound data capture will be transmitted to the data extraction device body 304, and the data extraction device body 304 will analyze the data to complete the data extraction.
[0041] When collecting image data and sound data, by starting the adjustment push cylinder 101, the adjustment push cylinder 101 will drive the extraction slide 2 to move through the piston rod, so that the height position of the image extraction component 305 and the sound receiving component 303 will change. At this time, by starting the adjustment motor 204, the adjustment motor 204 will drive the adjustment seat 3 to rotate through the transmission gear 205 and the transmission gear 301, and then the collection direction of the image extraction component 305 and the sound receiving component 303 will change, ensuring the collection and extraction of the operating data of the smart power service equipment.
[0042] When it is necessary to move the data collection position, the push seat 105 can be contacted manually. At this time, the staff's hand will also contact the transmission plate 110, so that it touches the transmission plate 110 to drive the transmission slider 108 to move backward, and the transmission slider 108 will drive the transmission joint 109 to move one end of the transmission groove 114 to the other end of the transmission groove 114. Since the transmission groove 114 is arranged in an inclined shape, when the transmission joint 109 moves from one end of the transmission groove 114 to the other end of the transmission groove 114, the transmission seat 113 will move upward, and the transmission seat 113 will drive the detection slider 112 to move, and the limiting tooth 115 at the bottom of the detection slider 112 will be disengaged from the limiting wheel 402. At this time, the device can be moved and then installed to other suitable positions.
[0043] When the device does not need to move, the staff can disengage their hands from the push seat 105 and the transmission plate 110 at the same time. At this time, the transmission plate 110 will move to the other side driven by the spring, and the transmission plate 110 will drive the transmission joint 109 from one end of the transmission groove 114 to the other end of the transmission groove 114. At this time, the transmission seat 113 will move downward driven by the spring and the transmission joint 109, and the transmission seat 113 will drive the detection slider 112 to move, and the limiting tooth 115 at the bottom of the detection slider 112 will engage with the limiting wheel 402, so that the device It is impossible to move, thereby completing the moving operation of the device. When the limiting tooth 115 is engaged with the limiting wheel 402, the trigger head on one side of the detection slider 112 will touch the proximity switch 111, and the proximity switch 111 will send a signal to the data extraction device body 304. When the data extraction device body 304 receives the signal, it will perform data collection and extraction. On the contrary, when the trigger head on one side of the detection slider 112 does not touch the proximity switch 111, the data extraction device body 304 will not start the data collection and extraction work, ensuring that the device will not move before performing data extraction.
Claims
1. A multimodal data extraction device for smart power services, characterized in that: include: The device base (1) is in the shape of a rectangular seat structure design, and an extraction slide seat (2) is slidably arranged on the top of the device base (1); an adjustment seat (3) is rotatably arranged on the top of the extraction slide seat (2); a mounting base (4) is symmetrically installed and fixedly arranged on the bottom of the device base (1); the device base (1) comprises: an adjustment push cylinder (101), the adjustment push cylinder (101) is installed and fixedly arranged in the middle of the top of the device base (1); a piston rod of the adjustment push cylinder (101) is connected to the extraction slide seat (2); The bottom of the slide seat (2) is fixedly connected; the side head (102) is installed, the side head (102) is designed in the shape of an arc head structure, and the number of the side heads (102) is set to two, and the side heads (102) are symmetrically fixedly arranged on both sides of the adjustment push cylinder (101); the limit column (103) is designed in the shape of a circular column structure, and the limit column (103) is installed and fixedly arranged between the side head (102) and the device base (1); the outer shell (104) is connected to the outer shell The shell (104) is shaped like a strip shell structure, and the number of connected shells (104) is set to two, and the connected shells (104) are symmetrically installed and fixedly arranged at the top rear end of the device base (1); the push seat (105) is shaped like an L-shaped seat structure, and the number of the push seat (105) is set to two, and the push seat (105) is symmetrically installed and fixedly arranged at the top rear end of the connected shell (104); the transmission slider (108) is shaped like A rectangular block structure is designed, and a transmission slider (108) is slidably arranged inside a push seat (105); a spring is installed between the transmission slider (108) and the push seat (105); a detection slider (112) is designed in the shape of a rectangular block structure, and the detection slider (112) is slidably arranged inside a connecting shell (104); a trigger head is opened on one side of the detection slider (112), and a spring is installed between the trigger head of the connecting shell (104) and the detection slider (112).
2. A multimodal data extraction device for smart power services as claimed in claim 1, characterized in that: The device base (1) further comprises: a connecting seat (106) having a rectangular seat structure and fixedly arranged at the top rear end of the adjustment push cylinder (101); and the connecting seat (106) is fixedly connected to one side of the push seat (105).
3. A multimodal data extraction device for smart power services as claimed in claim 2, characterized in that: The device base (1) further comprises: universal wheels (107), the number of the universal wheels (107) being two, and the universal wheels (107) being symmetrically mounted and fixed at the bottom of the front end of the device base (1).
4. A multimodal data extraction device for smart power services as claimed in claim 3, characterized in that: The device base (1) further comprises: a transmission joint (109), the transmission joint (109) being in the shape of a circular head structure, the number of which is set to two, the transmission joint (109) being symmetrically fixedly arranged at one end of the transmission slider (108); and a transmission plate (110), the transmission plate (110) being in the shape of a rectangular plate structure, and the transmission plate (110) being fixedly arranged at the other end behind the transmission slider (108).
5. A multimodal data extraction device for smart power services as claimed in claim 4, characterized in that: The device base (1) further comprises a proximity switch (111), wherein the proximity switch (111) is installed inside the connection housing (104).
6. A multimodal data extraction device for smart power services as claimed in claim 5, characterized in that: The device base (1) further comprises: a transmission seat (113), the transmission seat (113) being in the shape of a concave seat structure and being fixedly arranged on the top of the detection slider (112); a transmission groove (114), the transmission groove (114) being in the shape of an elliptical groove structure design, and the number of the transmission grooves (114) being set to two, and the transmission grooves (114) being arranged on both sides of the transmission seat (113) in an obliquely symmetrical shape; and the transmission groove (114) being slidably connected to the transmission joint (109).
7. A multimodal data extraction device for smart power services as claimed in claim 6, characterized in that: The device base (1) also includes: a limiting latch tooth (115), wherein the limiting latch tooth (115) is disposed at the bottom of the detection slider (112).
8. The multimodal data extraction device for smart power service according to claim 1, characterized in that: The extraction slide (2) comprises: a limiting pillar (201), the limiting pillar (201) is shaped like a rectangular pillar structure, the number of the limiting pillars (201) is set to two, and the limiting pillars (201) are symmetrically arranged on both sides of the bottom of the extraction slide (2); a limiting joint (202), the limiting joint (202) is shaped like an arc head structure, and the limiting joint (202) is fixedly arranged on one side of the bottom of the limiting pillar (201); and the limiting joint (202) is slidably connected to the limiting pillar (103).
9. A multimodal data extraction device for smart power services as claimed in claim 8, characterized in that: The extraction slide (2) further comprises: a fixed side plate (203) having a rectangular plate structure and fixedly arranged at the bottom of the extraction slide (2); and an adjustment motor (204) installed at one side of the fixed side plate (203).
10. A multimodal data extraction device for smart power services as claimed in claim 9, characterized in that: The extraction slide (2) further comprises a transmission gear (205), wherein the transmission gear (205) is fixedly mounted on the top of the rotating shaft of the adjustment motor (204).
11. The multimodal data extraction device for smart power service according to claim 1, characterized in that: The adjustment seat (3) further comprises: a transmission gear (301), the transmission gear (301) being fixedly mounted on the bottom of the adjustment seat (3); the transmission gear (301) being meshed with the transmission gear (205); a sound collecting cover (302), the sound collecting cover (302) being fixedly mounted on one side of the adjustment seat (3); and a sound receiving assembly (303), the sound receiving assembly (303) being mounted in the middle of one side of the sound collecting cover (302).
12. A multimodal data extraction device for smart power services as claimed in claim 11, characterized in that: The adjustment seat (3) further comprises: a data extraction device body (304), the data extraction device body (304) being fixedly mounted on the top of the adjustment seat (3); an image extraction component (305), the image extraction component (305) being mounted on one side of the data extraction device body (304); and the data extraction device body (304) being electrically connected to the sound receiving component (303), the adjustment push cylinder (101), and the proximity switch (111).
13. The multimodal data extraction device for smart power service according to claim 1, characterized in that: The mounting base (4) comprises: a transmission wheel (401) which is rotatably arranged at the bottom of the mounting base (4); a limiting wheel (402) which is provided with matching teeth on the outside and is fixedly arranged at one end of the rotating shaft of the transmission wheel (401); the matching teeth of the limiting wheel (402) are matched with the limiting teeth (115).
14. A multimodal data extraction device for smart power services as claimed in claim 13, characterized in that: The mounting base (4) further comprises: a matching baffle (403), the matching baffle (403) being in the shape of a circular plate structure and being fixedly arranged on one side of the limiting wheel (402); a connecting groove (404), the connecting groove (404) being arranged on the top of the mounting base (4); and a sliding connection between the connecting groove (404) and the detection slider (112).
15. A multimodal data extraction method for smart power services according to any one of claims 1 to 14, characterized in that: The following steps are involved: ①, when collecting data for the smart power service, the image of the smart power service device is collected by the image extraction component (305), and the operating sound of the smart power service device is collected by the sound receiving component (303). The image collection data and the sound collection data are transmitted to the data extraction device body (304), and the data extraction device body (304) analyzes the data to complete the data extraction; ②, by starting the adjustment push cylinder (101), the adjustment push cylinder (101) will drive the extraction slide (2) to move through the piston rod, so that the height positions of the image extraction component (305) and the sound receiving component (303) are changed; ③. By starting the adjustment motor (204), the adjustment motor (204) drives the adjustment seat (3) to rotate through the transmission gear (205) and the transmission gear (301), thereby changing the collection direction of the image acquisition component (305) and the sound receiving component (303), thereby ensuring that the operation data of the intelligent power service equipment is collected and extracted; ④. When the data collection position needs to be moved, the push seat (105) can be manually contacted. At this time, the staff's hand will also contact the transmission plate (110), so that it touches the transmission plate (110) to drive the transmission slider (108) to move backward. The transmission slider (108) will drive the transmission joint (109) so that one end of the transmission groove (114) moves to the other end of the transmission groove (114), and the transmission seat (113) will move upward. The transmission seat (113) will drive the detection slider (112) to move, and the limiting tooth (115) at the bottom of the detection slider (112) will be disengaged from the limiting wheel (402). At this time, the device can be moved and then moved to other suitable positions; ⑤. When the device does not need to be moved, the operator's hand can be disengaged from the push seat (105), and the limiting teeth (115) at the bottom of the detection slide block (112) can be engaged with the limiting wheel (402), so that the device cannot be moved, thereby completing the moving operation of the device; ⑥. When the limiting tooth (115) is engaged with the limiting wheel (402), the trigger head on one side of the detection slider (112) will trigger the proximity switch (111), and the proximity switch (111) will send a signal to the data extraction device body (304). When the data extraction device body (304) receives the signal, data collection and extraction will be performed.