Electric power asset full-life-cycle panoramic display and process monitoring device

The device enables automated monitoring of power assets throughout their entire lifecycle, reducing labor costs, improving monitoring efficiency, and supporting equipment status display and lifespan prediction.

CN224037153UActive Publication Date: 2026-03-24BEIJING YINHU INTELLIGENT TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In existing technologies, power asset monitoring requires a large amount of manpower, resulting in high monitoring costs and a heavy workload.

Method used

The system employs a panoramic display and process monitoring device for the entire life cycle of power assets, utilizing a circular slide rail and detectors for automated barcode scanning and detection, and combining BIM modeling for data recording and remote transmission.

Benefits of technology

It significantly reduces labor costs, improves monitoring efficiency, and supports equipment status display and lifespan prediction through real-time data analysis.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224037153U_ABST
    Figure CN224037153U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of equipment maintenance, in particular to an electric power asset full-life-cycle panoramic display and process monitoring device, which comprises a detector capable of moving around equipment, and the detector moves to scan a bar code attached to the equipment and provided with the content including the production date and the installation date of the equipment; meanwhile, a camera on the detector is used for shooting pictures, a temperature sensor is used for detecting the temperature of the equipment, and data are remotely transmitted to a control center; modeling equipment assets on the control center equipment through a BIM technology, comparing photo data by a background to judge whether high-temperature burning discoloration occurs or not, and analyzing temperature data to judge whether an abnormal heating point occurs or not; and if the abnormity occurs, the bar code information is combined to identify the corresponding position of the model through the screen so as to intuitively give an early warning to workers. The device provided by the utility model has the advantages that information of different devices can be detected and recorded, so that the whole-life-cycle operation condition of the devices can be intuitively mastered.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to equipment maintenance technical field especially relates to power asset whole life cycle panorama display and process monitoring device. BACKGROUND

[0002] The power asset whole life cycle panorama display is an advanced management concept and method, which mainly integrates the power asset from the planning stage to the retirement stage into unified management. Because of the wide distribution range, large base number, high automation degree, high unit value, and fast equipment updating of the power grid equipment in the power industry, and the large proportion of fixed assets in the power grid industry, the power industry belongs to the asset-intensive industry.

[0003] Taking the distribution station as an example, the information collection and data monitoring need to be carried out on the transformer, circuit breaker, load switch, distribution switch and the like in the distribution station. If only manpower is relied on for registration, detection and recording, not only a large number of people are needed, but also the work load is very large, and the monitoring cost is high.

[0004] Therefore, in view of the above problems, the power asset whole life cycle panorama display and process monitoring device are needed. SUMMARY

[0005] (I) Technical problem to be solved

[0006] The technical problem to be solved by the utility model is to solve how to reduce the manpower for monitoring.

[0007] (II) Technical scheme

[0008] In order to solve the above technical problem, the utility model provides the power asset whole life cycle panorama display and process monitoring device, which comprises a top rail, a ground rail, an upper drive, a lower drive, a detector and an extender. The annular top rail is fixedly connected above the equipment, the annular ground rail is fixedly connected on the ground outside the equipment, the upper drive is slidably connected to the top rail, the lower drive is slidably connected to the ground rail, the detector is slidably connected between the upper drive and the lower drive, and the detector moves to scan the equipment to which the bar code including the equipment production date and installation date is attached. One end of the extender is tied to the shielded part, and the other end of the extender is attached to the bar code and extends out of the equipment.

[0009] As a further description of the utility model, preferably, a driving rod is rotatably connected to the upper drive, the driving rod is a threaded rod, the length direction of the driving rod is vertical and rotatably connected with the lower drive, and the middle part of the driving rod is threadedly connected with the detector.

[0010] As a further description of the utility model, preferably, a light rod is fixedly connected between the upper drive and the lower drive, the length direction of the light rod is the same as that of the driving rod, the light rod penetrates through the detector and is slidably connected with the detector.

[0011] As a further description of the utility model, preferably, the detector is provided with a bar code scanner and a camera on the side close to the equipment to identify the position of the bar code.

[0012] As a further description of the utility model, preferably, the detector is provided with a temperature sensor on the side close to the equipment to detect abnormal heating points of the equipment.

[0013] As a further description of the utility model, preferably, the extender comprises a flexible rod and a bar code sticking plate, the flexible rod is sleeved on the obstructed part at one end, the bar code sticking plate is in a square plate structure and is rotationally connected at the other end of the flexible rod, and the bar code sticking plate is provided with a bar code of the production date and the installation date of the obstructed part on the exposed plane.

[0014] As a further description of the utility model, preferably, the flexible rod is fixedly connected with a fixing plate at the end connected with the part, the fixing plate is fixedly connected with a flexible limiting strip, one end of the limiting strip is connected with the fixing plate, the other end of the limiting strip is sleeved on the part and penetrates through the fixing plate, a plurality of limiting grooves are formed at the end of the limiting strip penetrating through the fixing plate, and the fixing plate is partially embedded in the limiting grooves.

[0015] As a further description of the utility model, preferably, the bar code sticking plate is fixedly connected with a rotating drum at one side, the rotating drum is sleeved on the flexible rod and rotationally connected with the flexible rod, a handle is threadedly connected to the rotating drum, and one end of the handle is abutted against the flexible rod.

[0016] As a further description of the utility model, preferably, the flexible rod is fixedly connected with a limiting sheet at one end of the bar code sticking plate, and the limiting sheet is in a disc shape and has an outer diameter greater than that of the rotating drum.

[0017] As a further description of the utility model, preferably, the power station is externally provided with a warning light, and the warning light is electrically connected with the detector.

[0018] (Three) beneficial effects

[0019] The above technical scheme of the utility model has the following advantages:

[0020] The utility model discloses a bar code scanning device for equipment and parts, which comprises a detector, a bar code sticking plate and a flexible rod. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is the top rail installation effect drawing of the utility model;

[0022] Figure 2 is the detector position diagram of the utility model;

[0023] Figure 3 is Figure 2 is the enlarged view of A in the middle;

[0024] Figure 4 is the ground rail installation effect diagram of the utility model;

[0025] Figure 5 is the extender structural diagram of the utility model;

[0026] Figure 6 is the extender side view of the utility model.

[0027] In the drawing: 1, top rail; 11, beam frame; 2, ground rail; 3, upper driver; 31, driving rod; 32, light pole; 4, lower driver; 5, detector; 51, bar code scanner; 52, temperature sensor; 53, camera; 6, extender; 61, flexible rod; 62, bar code pasting plate; 63, fixed plate; 64, limiting strip; 65, limiting groove; 66, rotating drum; 67, handle; 68, limiting sheet; 7, early warning lamp. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.

[0029] The power asset full life cycle panoramic display and process monitoring device combines Figure 2 , Figure 4 and Figure 5 , including top rail 1, ground rail 2, upper driver 3, lower driver 4, detector 5 and extender 6, annular top rail 1 is fixedly connected above the equipment, annular ground rail 2 is fixedly connected on the ground outside the equipment, upper driver 3 is slidingly connected on top rail 1, lower driver 4 is slidingly connected on ground rail 2, detector 5 is slidingly connected between upper driver 3 and lower driver 4, and extender 6 is sleeved outside the part.

[0030] combined with Figure 1 , Figure 3, the top rail 1 and the ground rail 2 are the same shape, the beam frame 11 is fixed at the top of the power station house, and the top rail 1 is fixed on the beam frame 11, which is more convenient to disassemble, maintain and assemble than being directly fixed on the ceiling. The upper drive 3 and the lower drive 4 are both internally provided with a motor and a driving wheel, the driving wheel is clamped in the top rail 1 and the ground rail 2 respectively, which can make the upper drive 3 and the lower drive 4 move along the rail and avoid derailing. The upper drive 3 is rotatably connected with a driving rod 31, the driving rod 31 is a threaded rod, the length direction of the driving rod 31 is vertical and rotatably connected with the lower drive 4, and the middle part of the driving rod 31 is threadedly connected with the detector 5. By arranging the driving rod 31, the detector 5 can be driven to move in the vertical direction, so that the detector 5 can scan equipment and parts of different heights. The light rod 32 is fixed between the upper drive 3 and the lower drive 4, the length direction of the light rod 32 is the same as the length direction of the driving rod 31, and the light rod 32 penetrates through the detector 5 and is slidably connected with the detector 5. The light rod 32 is arranged to connect the upper drive 3 and the lower drive 4, and to limit the rotation of the detector 5 in the horizontal plane, so as to stabilize the movement of the detector 5.

[0031] In combination Figure 2 , Figure 3 The detector 5 is a square shell, a bar code scanner 51 is arranged on the side of the detector 5 close to the equipment to scan the bar code attached to the equipment, the bar code numbers each equipment, the control center models each equipment and part through BIM and corresponds to the number, and records information including the production date, the purchase date, the installation date, the detection date, the corresponding detection result, the expected service life and the like under the number. A temperature sensor 52 is arranged on the side of the detector 5 close to the equipment to detect abnormal heating points of the equipment, when the bar code scanner 51 scans the bar code, the detector 5 controls the temperature sensor 52 to start temperature measurement on the equipment or part corresponding to the bar code, if there is an abnormal heating point, a signal is sent to the control center, the control center marks the model at the bar code and gives an alarm through the screen. The worker can directly repair according to the position displayed on the screen.

[0032] In combination Figure 2 , Figure 3 A camera 53 is further arranged on the side of the detector 5 close to the equipment to identify the position of the bar code and take a picture of the equipment, and the gray scale information of the picture is sent to the control center to be compared with the previously taken picture, if there is a significant color difference, it means that the part may be discolored due to high temperature burning, and the model of the corresponding faulty part can be highlighted on the screen to remind the worker to directly go to the scene for further detection. In addition, a warning light 7 is arranged outside the power station, the warning light 7 is electrically connected with the detector 5, when the detector 5 receives the feedback information from the control center, if it is determined that there is a fault, the warning light 7 is controlled to be extinguished, the worker in the field can observe the extinguished warning light 7 and quickly go to the scene, contact the staff in the control center through a mobile phone or intercom and directly repair at the fault position, so as to improve the safety.

[0033] In combination Figure 5 , Figure 6 , the extender 6 comprises a flexible rod 61 and a bar code sticker plate 62, the flexible rod 61 is a cylindrical rod which can be freely broken into any shape. The flexible rod 61 is sleeved on the shielded part at one end, and the bar code sticker plate 62 is a square plate structure and is rotationally connected at the other end of the flexible rod 61, and a bar code is also pasted on the exposed plane of the bar code sticker plate 62 to correspond to the information of the shielded part. Since the shielded part is small in size, such as various switches and cable joints, there is little space to paste the bar code, so as to avoid the failure of the detector 5 to recognize it, and the range of the bar code that can be pasted is expanded through the extender, and according to the model design, the bar code sticker plate 62 can be located at the specified position by breaking the flexible rod 61, so as to facilitate the camera 53 of the detector 5 to capture and position when moving.

[0034] In combination Figure 5 , Figure 6 , the flexible rod 61 is fixedly connected with a fixed plate 63 at the end connected with the part, the flexible rod 61 is fixedly connected with a flexible limiting strip 64 on the fixed plate 63, one end of the limiting strip 64 is connected with the fixed plate 63, the other end of the limiting strip 64 is sleeved on the part and penetrates through the fixed plate 63, and a plurality of limiting grooves 65 are arranged at intervals on the end of the limiting strip 64 penetrating through the fixed plate 63, and the fixed plate 63 is partially embedded in the limiting grooves 65. Through the above arrangement, the extender 6 can be tied on the parts and cables of different sizes, and the applicability of the extender 6 is improved. One side of the bar code sticker plate 62 is fixedly connected with a rotating drum 66, the rotating drum 66 is sleeved outside the flexible rod 61 and is rotationally connected with the flexible rod 61, a handle 67 is threadedly connected on the rotating drum 66, and one end of the handle 67 abuts against the flexible rod 61. In order to prevent the bar code sticker plate 62 from not being kept vertical when the flexible rod 61 is broken, the rotating drum 66 and the handle 67 are used to limit the bar code sticker plate 62, so that the bar code sticker plate 62 is always opposite to the detector 5, and the detector 5 can recognize the bar code. The flexible rod 61 is fixedly connected with a limiting sheet 68 at one end of the bar code sticker plate 62, the limiting sheet 68 is disc-shaped and has an outer diameter larger than that of the rotating drum 66, and the limiting sheet 68 is arranged to prevent the rotating drum 66 and the bar code sticker plate 62 from sliding out of the flexible rod 61.

[0035] As described above, the utility model is assisted by BIM modeling, and the detector 5 scans and detects the bar code of the equipment, realizes the working state display of the whole life cycle of the assets in the power station, and can frequently detect and record data, so as to provide rich data reference for accurately predicting the service life of the equipment and parts. The utility model replaces the manpower to monitor part indexes, saves manpower and improves monitoring efficiency, and achieves two goals at one time.

[0036] Finally, it should be noted that: the above examples are used to illustrate the technical solutions of the present application, but not limited to; although the present application is described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still be modified to the technical solutions recorded in the foregoing examples, or part of the technical features are replaced; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A device for power asset life cycle panoramic presentation and process monitoring, characterized in that: The device comprises a top rail (1), a ground rail (2), an upper driver (3), a lower driver (4), a detector (5) and an extender (6), the annular top rail (1) is fixed above the device, the annular ground rail (2) is fixed on the ground outside the device, the upper driver (3) is slidingly connected to the top rail (1), the lower driver (4) is slidingly connected to the ground rail (2), the detector (5) is slidingly connected between the upper driver (3) and the lower driver (4), the detector (5) moves to scan the device to which a barcode including the production date and installation date of the device is attached; one end of the extender (6) is tied to the obstructed part, and the other end of the extender (6) is attached to the barcode and extends out of the device.

2. The electric power asset life cycle panoramic presentation and process monitoring device of claim 1, wherein: A driving rod (31) is rotatably connected to the upper driver (3), the driving rod (31) is a threaded rod, the length direction of the driving rod (31) is vertical and rotatably connected to the lower driver (4), and the middle part of the driving rod (31) is threadedly connected to the detector (5).

3. The electric power asset life cycle panoramic presentation and process monitoring apparatus of claim 2, wherein: A light rod (32) is fixed between the upper driver (3) and the lower driver (4), the length direction of the light rod (32) is the same as that of the driving rod (31), the light rod (32) penetrates through the detector (5) and is slidingly connected to the detector (5).

4. The electric power asset life cycle panoramic presentation and process monitoring apparatus of claim 3, wherein: A barcode scanner (51) and a camera (53) are arranged on the side of the detector (5) close to the device to identify the position of the barcode.

5. The electric power asset life cycle panoramic presentation and process monitoring device of claim 4, wherein: A temperature sensor (52) is arranged on the side of the detector (5) close to the device to detect the abnormal heating point of the device.

6. The electric power asset life cycle panoramic presentation and process monitoring apparatus of claim 5, wherein: The extender (6) comprises a flexible rod (61) and a barcode sticking plate (62), one end of the flexible rod (61) is sleeved on the obstructed part, the barcode sticking plate (62) is a square plate structure and is rotatably connected to the other end of the flexible rod (61), and the barcode sticking plate (62) has a barcode of the production date and installation date of the obstructed part attached to the exposed surface.

7. The electric power asset life cycle panoramic presentation and process monitoring apparatus of claim 6, wherein: A fixed plate (63) is fixed to one end of the flexible rod (61) connected to the part, a flexible limiting strip (64) is fixed to the fixed plate (63), one end of the limiting strip (64) is connected to the fixed plate (63), the other end of the limiting strip (64) is sleeved on the part and penetrates through the fixed plate (63), a plurality of limiting grooves (65) are arranged at intervals on the end of the limiting strip (64) penetrating through the fixed plate (63), and part of the fixed plate (63) is embedded in the limiting grooves (65).

8. The electric power asset life cycle panoramic presentation and process monitoring apparatus of claim 7, wherein: A rotating drum (66) is fixed to one side of the barcode sticking plate (62), the rotating drum (66) is sleeved outside the flexible rod (61) and rotatably connected to the flexible rod (61), a handle (67) is threadedly connected to the rotating drum (66), and one end of the handle (67) abuts against the flexible rod (61).

9. The electric power asset life cycle panoramic presentation and process monitoring device of claim 8, wherein: A limiting piece (68) is fixed to one end of the flexible rod (61) located at the barcode sticking plate (62), the limiting piece (68) is a disc and has an outer diameter larger than that of the rotating drum (66).

10. The electric power asset life cycle panoramic presentation and process monitoring apparatus of claim 9, wherein: An early warning lamp (7) is arranged outside the power station and is electrically connected to the detector (5).