Monitoring device for optical cable line channel
By designing a fiber optic cable line channel monitoring device with a drive motor and photovoltaic panels, the problem of insufficient power supply was solved, enabling comprehensive video image acquisition and stable power supply, ensuring long-term operation of the device in outdoor environments and the detection of potential hazards.
Patent Information
- Application Number
- CN202520952948.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-05-15
AI Technical Summary
The existing optical cable line channel monitoring device suffers from insufficient power supply after long-term use, especially due to insufficient light and heat absorption caused by the photovoltaic panel's inability to rotate effectively.
A monitoring device comprising an ultraviolet laser, a fluorescent target, a photovoltaic panel, and a camera was designed. The device uses a drive motor to rotate the rotating base and column to achieve omnidirectional video image acquisition and utilizes the photovoltaic panel to provide a continuous power supply.
It enables all-round, multi-angle video image acquisition of optical cable lines, ensuring that the device can operate autonomously for a long time in outdoor environments, providing a stable power supply, and timely detecting potential safety hazards.
Smart Images

Figure CN223955714U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the monitoring field of optical cable line channel, especially relates to a monitoring device for optical cable line channel. BACKGROUND
[0002] With the rapid development of communication technology, as an important carrier of information transmission, the safe and stable operation of the optical cable line channel is crucial. In the complex outdoor environment, the optical cable line is easily affected by natural factors, human activities and other factors, and needs real-time and effective monitoring means. The existing monitoring technology continues to explore and innovate in data acquisition, environmental adaptability and other aspects, providing technical support for the normal operation of the optical cable line, and a monitoring device with complete functions, convenient installation and high reliability is urgently needed to meet the growing monitoring needs of the optical cable line.
[0003] The prior art has developed some monitoring devices for optical cable line channels, for example, the Chinese patent with publication number "CN214429640U" discloses a monitoring device for optical cable line channel, which emits a laser beam through an ultraviolet laser on the support, generates a detection point on the laser beam fluorescent target, detects the inclination of the optical cable line channel by the centering of the detection point and the scale line on the fluorescent target, and displays the positions of the detection point and the scale line in real time and intuitively on the PC through the camera. The PC diagnoses and analyzes the inclination of the tower through the received image information, can early detect hidden troubles of the optical cable line channel, timely eliminate hidden troubles and faults, and improves the reliability of the communication line operation.
[0004] Although the above structure can emit a laser beam through an ultraviolet laser on the support, generate a detection point on the laser beam fluorescent target, detect the inclination of the optical cable line channel by the centering of the detection point and the scale line on the fluorescent target, timely eliminate hidden troubles and faults, and improve the reliability of the communication line operation, but the stand in the above structure cannot effectively drive the photovoltaic panel to rotate, so that the photovoltaic panel cannot effectively absorb more light and heat in long-term use, which may cause power shortage. UTILITY MODEL CONTENTS
[0005] In view of the problems mentioned in the background art, the utility model aims to provide a monitoring device for optical cable line channel to solve the problem of monitoring the optical cable line channel.
[0006] The above technical purpose of the utility model is realized through the following technical scheme.
[0007] A monitoring device for optical cable line channel, including ground and iron tower, the iron tower is fixedly installed on the ground upper end one side, the ground upper end is away from the iron tower's one side fixedly installed with bottom plate, the iron tower upper end fixedly installed with vertical board, the vertical board is away from the iron tower's one side upper end integral moulded with support, the support is away from the vertical board's one end inside screw thread connection has the mounting block, the mounting block bottom integral moulded with connecting column, the connecting column inside fixedly installed with ultraviolet laser, the bottom plate upper end fixedly installed with fluorescent target, the bottom plate upper end is away from the fluorescent target's one side fixedly installed with fixed seat, the fixed seat one side integral moulded with fixed shell, the fixed seat inner bottom rotatably installed with first gear, the fixed shell inside fixedly installed with drive motor, the drive motor output shaft fixedly installed with second gear, the first gear upper end fixedly installed with rotary seat, the rotary seat upper end inside clamping installation has the stand, the stand upper end fixedly installed with photovoltaic board, the stand upper end outer ring one side fixedly installed with camera, the camera electrically connected with PC.
[0008] As a preferred technical scheme, the vertical plate is internally provided with a strip-shaped hole on the upper and lower sides, two bands are sleeved in the strip-shaped hole, and one end of the two bands away from the vertical plate is fixedly installed on the two sides of the lock plate.
[0009] As a preferred technical scheme, the vertical plate is internally provided with a strip-shaped hole on the upper and lower sides, two bands are sleeved in the strip-shaped hole, and one end of the two bands away from the vertical plate is fixedly installed on the two sides of the lock plate.
[0010] As a preferred technical scheme, the vertical plate is internally provided with a strip-shaped hole on the upper and lower sides, two bands are sleeved in the strip-shaped hole, and one end of the two bands away from the vertical plate is fixedly installed on the two sides of the lock plate.
[0011] As a preferred technical scheme, the vertical plate is internally provided with a strip-shaped hole on the upper and lower sides, two bands are sleeved in the strip-shaped hole, and one end of the two bands away from the vertical plate is fixedly installed on the two sides of the lock plate.
[0012] As a preferred technical scheme, the vertical plate is internally provided with a strip-shaped hole on the upper and lower sides, two bands are sleeved in the strip-shaped hole, and one end of the two bands away from the vertical plate is fixedly installed on the two sides of the lock plate.
[0013] As a preferred technical solution, the connecting block is internally provided with notches on both sides, springs are fixedly installed inside the notches, the ends of the springs away from the notches are fixedly installed with clamping blocks, the clamping blocks are clamped and installed inside the clamping grooves, and the connecting block is slidably installed inside the upper end of the rotating seat through the arranging groove.
[0014] As a preferred technical solution, the first gear outer ring is engaged with the second gear through a circular port, and the PC is fixedly installed on the ground on the side away from the bottom plate.
[0015] In summary, the utility model mainly has the following beneficial effects:
[0016] When the driving motor is started, the second gear drives the first gear to rotate, and then the rotating seat fixed on the upper end of the first gear rotates, the column is clamped and engaged with the clamping groove of the rotating seat arranging groove through the clamping block of the bottom connecting block, rotates synchronously with the rotating seat, the camera installed on the column also rotates, can realize all-around and multi-angle video image acquisition of the optical cable line channel, can obtain the surrounding environment information of the optical cable line in real time, can also effectively provide better light source and heat for the photovoltaic panel, effectively provide power supply for the driving motor and the camera, effectively prevent the driving motor and the camera from stopping running, and improve the better usability. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of the utility model;
[0018] Figure 2 It is a first bolt structure schematic diagram of the utility model;
[0019] Figure 3 It is an internal thread hole structure schematic diagram of the utility model;
[0020] Figure 4 It is an internal thread groove structure schematic diagram of the utility model;
[0021] Figure 5 It is a top view structure schematic diagram of the utility model;
[0022] Figure 6 It is a fixed seat internal section view structure schematic diagram of the utility model;
[0023] Figure 7 It is an A part enlarged structure schematic diagram of the utility model Figure 6 .
[0024] Label: 1, strap; 2, vertical plate; 3, lock plate; 4, support; 5, first bolt; 6, connecting column; 7, controller; 8, fixed adhesive tape; 9, tilt sensor; 10, ground; 11, iron tower; 12, fluorescent target; 13, photovoltaic panel; 14, camera; 15, stand; 16, PC; 17, bottom plate; 19, fixing seat; 20, strip hole; 21, mounting hole; 22, mounting block; 23, ultraviolet laser; 24, cover; 25, internal thread hole; 26, second bolt; 27, internal thread groove; 28, connecting block; 29, notch; 30, installation groove; 31, clamping groove; 32, clamping block; 33, rotating seat; 34, spring; 35, circular port; 36, first gear; 37, drive motor; 38, fixed shell; 39, second gear. DETAILED DESCRIPTION
[0025] EMBODIMENT
[0026] REFERENCE Figures 1-7 The monitoring device for optical cable line channel of the embodiment comprises a ground 10 and an iron tower 11. The iron tower 11 is fixedly installed on one side of the upper end of the ground 10. A bottom plate 17 is fixedly installed on the upper end of the ground 10 away from the iron tower 11. The iron tower 11 is fixedly installed on the upper end of the vertical plate 2. The support 4 is integrally formed on the upper end of the side of the vertical plate 2 away from the iron tower 11. The mounting block 22 is screw-connected in the end of the support 4 away from the vertical plate 2. The connecting column 6 is integrally formed on the bottom of the mounting block 22. The ultraviolet laser 23 is fixedly installed in the connecting column 6. The fluorescent target 12 is fixedly installed on the upper end of the bottom plate 17. The fixing seat 19 is fixedly installed on the upper end of the bottom plate 17 away from the fluorescent target 12. The fixing shell 38 is integrally formed on one side of the fixing seat 19. The first gear 36 is rotatably installed on the inner bottom of the fixing seat 19. The drive motor 37 is fixedly installed in the fixing shell 38. The output shaft of the drive motor 37 is fixedly installed with the second gear 39. The rotating seat 33 is fixedly installed on the upper end of the first gear 36. The stand 15 is clampingly installed in the inner upper end of the rotating seat 33. The photovoltaic panel 13 is fixedly installed on the upper end of the stand 15. The camera 14 is fixedly installed on the outer circle of the upper end of the stand 15. The PC 16 is electrically connected with the camera 14.
[0027] REFERENCE Figure 1 , Figures 2-4 The strip holes 20 are formed on the inner upper and lower sides of the vertical plate 2. The two straps 1 are sleeved in the strip holes 20. The two straps 1 are fixedly installed on the two sides of the lock plate 3 away from the vertical plate 2. The lock plate 3 is fixedly installed on one side of the upper end of the iron tower 11. The fixed adhesive tape 8 is pasted on the end of the lock plate 3 away from the iron tower 11. The vertical plate 2 can be effectively fixedly installed on the outer circle of the upper end of the iron tower 11.
[0028] REFERENCE Figures 3-4A tilt sensor 9 is fixedly installed on the side of the vertical plate 2 away from the iron tower 11, below the support 4. A controller 7 is fixedly installed at the bottom of the support 4. An installation hole 21 is opened inside the support 4. An installation block 22 is slidably installed inside the installation hole 21. An internal thread groove 27 is opened inside the upper end of the installation block 22. A first bolt 5 is threaded inside the internal thread groove 27. The tilt sensor 9 installed on the vertical plate 2 can monitor the tilt status of the iron tower 11 and the entire device in real time. Once an abnormal tilt occurs, it can transmit the signal to the relevant system in a timely manner, so that the staff can take corresponding measures.
[0029] refer to Figures 1-3 A housing 24 is fixedly installed inside the connecting column 6. The ultraviolet laser 23 is fixedly installed inside the housing 24. The ultraviolet laser 23 is fixedly installed inside the connecting column 6 through the housing 24. The ultraviolet laser 23 irradiates the upper end of the fluorescent target 12. The ultraviolet laser 23 at the bottom of the connecting column 6 is installed inside the housing 24, which can accurately emit ultraviolet laser. By adjusting the position of the mounting block 22, the ultraviolet laser 23 can irradiate the fluorescent target 12 on the base plate 17, thereby establishing the initial monitoring and positioning benchmark.
[0030] refer to Figures 3-5 The base plate 17 is rotatably installed with second bolts 26 on all four sides inside. The ground 10 has four internal threaded holes 25. The ends of the four second bolts 26 away from the base plate 17 are threaded into the internal threaded holes 25 inside the ground 10, which can effectively fix the base plate 17 on the upper part of the ground 10 and prevent the base plate 17 from moving or shifting.
[0031] refer to Figures 6-7 The bottom inner ring of the fixed base 19 has a circular opening 35, and the first gear 36 rotates inside the circular opening 35. The upper end of the rotating base 33 has a mounting groove 30, and both sides of the mounting groove 30 have slots 31. The bottom of the column 15 has a connecting block 28 integrally formed, and both sides of the connecting block 28 have slots 29. Springs 34 are fixedly installed inside the slots 29. The end of the spring 34 away from the slot 29 is fixedly installed with a locking block 32. The locking block 32 is engaged inside the slot 31. The connecting block 28 is slidably installed inside the upper end of the rotating base 33 through the mounting groove 30. The outer ring of the first gear 36 meshes with the second gear 39 through the circular opening 35. The PC 16 is fixedly installed on the upper end of the ground 10 away from the base plate 17. The column 15 is engaged with the slot 31 of the mounting groove 30 of the rotating base 33 through the locking block 32 of the bottom connecting block 28, which facilitates the disassembly and replacement of the column 15 in the future.
[0032] Principle and advantages: before use, the vertical plate 2 is fixed on the upper end of the iron tower 11 through the binding belt 1, the lock plate 3 and the fixed adhesive tape 8, which ensures the stable installation of the vertical plate 2, the support 4 on the vertical plate 2 provides a mounting base for the mounting block 22, the mounting block 22 is connected at one end of the support 4 through screw connection, which is convenient for disassembly and adjustment, the ultraviolet laser 23 at the bottom of the connecting column 6 is installed in the sleeve shell 24, which can accurately emit ultraviolet laser, and by adjusting the position of the mounting block 22, the ultraviolet laser 23 can irradiate on the fluorescent target 12 on the bottom plate 17, so as to establish the initial monitoring positioning reference, the fixed seat 19 is fixed on the bottom plate 17, the driving motor 37 is installed in the fixed shell 38 on one side of the fixed seat 19, the second gear 39 connected with the output shaft of the driving motor 37 is engaged with the first gear 36 at the bottom of the fixed seat 19, when the driving motor 37 starts, the second gear 39 drives the first gear 36 to rotate, and then the rotating seat 33 fixed on the upper end of the first gear 36 rotates, the stand column 15 is clamped with the clamping groove 31 of the rotating seat 33 through the clamping block 32 of the bottom connecting block 28, and rotates synchronously with the rotating seat 33, the camera 14 installed on the stand column 15 also rotates, which can realize omnidirectional and multi-angle video image acquisition of the optical cable line channel, real-time acquisition of the surrounding environment information of the optical cable line, the photovoltaic panel 13 at the upper end of the stand column 15 can convert solar energy into electric energy, which provides continuous and stable power supply for the driving motor 37, the camera 14 and other device components, ensures the long-term self-operation of the device in outdoor environment, the video image data collected by the camera 14 is transmitted to the PC 16 in real time through electrical connection, the staff can remotely view and analyze the condition of the optical cable line channel at the PC 16 end, and timely find potential safety hazards, in addition, the inclination sensor 9 installed on the vertical plate 2 can monitor the inclination state of the iron tower 11 and the whole device in real time, once abnormal inclination occurs, the signal can be transmitted to the related system in time, which is convenient for the staff to take corresponding measures.
Claims
1. A monitoring device for optical cable line passages, comprising a ground (10) and a tower (11), characterized in that: The iron tower (11) is fixedly installed on one side of the upper end of the ground (10), the upper end of the ground (10) is fixedly installed with a bottom plate (17) away from the iron tower (11), the upper end of the iron tower (11) is fixedly installed with a vertical plate (2), the side away from the iron tower (11) of the vertical plate (2) is integrally formed with a support (4) at the upper end, the inside of one end of the support (4) away from the vertical plate (2) is threadedly connected with a mounting block (22), the bottom of the mounting block (22) is integrally formed with a connecting column (6), the inside of the connecting column (6) is fixedly installed with an ultraviolet laser (23), the upper end of the bottom plate (17) is fixedly installed with a fluorescent target (12), the side away from the fluorescent target (12) of the upper end of the bottom plate (17) is fixedly installed with a fixed seat (19), the fixed seat (19) is integrally formed with a fixed shell (38) on one side, the inside of the fixed seat (19) is rotatably installed with a first gear (36), the inside of the fixed shell (38) is fixedly installed with a driving motor (37), the output shaft of the driving motor (37) is fixedly installed with a second gear (39), the upper end of the first gear (36) is fixedly installed with a rotating seat (33), the inside of the upper end of the rotating seat (33) is clampedly installed with a stand column (15), the upper end of the stand column (15) is fixedly installed with a photovoltaic panel (13), the outer circle of the upper end of the stand column (15) is fixedly installed with a camera (14), the camera (14) is electrically connected with a PC (16).
2. A monitoring device for an optical cable line path according to claim 1, characterized in that: The inside of the vertical plate (2) is provided with a strip-shaped hole (20) on the upper and lower sides, two strip-shaped holes (20) are sleeved with two bands (1), and the ends of the two bands (1) away from the vertical plate (2) are fixedly installed on the two sides of the lock plate (3), the side of the lock plate (3) is fixedly installed on the upper end of the iron tower (11), and the end of the lock plate (3) away from the iron tower (11) is pasted with a fixed adhesive tape (8).
3. A monitoring device for optical cable line paths according to claim 1, characterized in that: The side away from the iron tower (11) of the vertical plate (2) is fixedly installed with an inclination sensor (9) below the support (4), the bottom of the support (4) is fixedly installed with a controller (7), the inside of the support (4) is provided with a mounting hole (21), the mounting block (22) is slidably installed in the inside of the mounting hole (21), and the inside of the upper end of the mounting block (22) is provided with an internal thread groove (27), and the internal thread groove (27) is threadedly connected with a first bolt (5).
4. A monitoring device for optical cable line paths according to claim 1, characterized in that: The inside of the connecting column (6) is fixedly installed with a sleeve shell (24), the ultraviolet laser (23) is fixedly installed in the inside of the sleeve shell (24), and the ultraviolet laser (23) is fixedly installed in the inside of the connecting column (6) through the sleeve shell (24), and the ultraviolet laser (23) irradiates on the upper end of the fluorescent target (12).
5. A monitoring device for optical cable line paths according to claim 1, characterized in that: The inside of the bottom plate (17) is rotatably installed with a second bolt (26) around, the inside of the ground (10) is provided with four internal thread holes (25), and the ends of the four second bolts (26) away from the bottom plate (17) are threadedly connected in the internal thread holes (25) in the inside of the ground (10).
6. A monitoring device for optical cable line paths according to claim 1, characterized in that: The bottom inner ring of the fixing base (19) is provided with a circular port (35), the first gear (36) rotates inside the circular port (35), the inner upper end of the rotating base (33) is provided with a placing groove (30), both sides of the inner placing groove (30) are provided with clamping grooves (31).
7. A monitoring device for optical cable line paths according to claim 1, characterized in that: The bottom of the stand (15) is integrally formed with a connecting block (28), both sides of the inner connecting block (28) are provided with notches (29), the inner notches (29) are fixedly installed with springs (34), one end of the spring (34) away from the notch (29) is fixedly installed with a clamping block (32), the clamping block (32) is clamped and installed in the clamping groove (31), and the connecting block (28) is slidably installed in the inner upper end of the rotating base (33) through the placing groove (30).
8. A monitoring device for optical cable line paths according to claim 1, characterized in that: The outer ring of the first gear (36) is engaged with the second gear (39) through the circular port (35), and the PC (16) is fixedly installed on one side, away from the bottom plate (17), of the upper end of the ground (10).