Machine room circuit installation and arrangement device and use method thereof

By using adjustable positioning components and image sensor recognition technology, the problem of existing data center wiring devices being unable to adapt to pipelines of different diameters has been solved, achieving stable fixing and intelligent management, and improving the efficiency and regularity of data center wiring management.

CN121461184APending Publication Date: 2026-02-03CHINA MCC5 GROUP CORP LTD
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Patent Information

Application Number
CN202511400957.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2026-02-03

AI Technical Summary

Technical Problem

The existing cable clamps in the computer room wiring installation devices are mostly of a single specification, with fixed cable tray spacing that cannot be adjusted. This makes it difficult to adapt to pipelines of different diameters, resulting in low sorting efficiency and insecure fixing, which affects the overall neatness.

Method used

An adjustable positioning component, including a first clamp and a second clamp, is used. These are connected by a telescopic column and a screw to form an adjustable clamping mechanism. Combined with an image sensor, the system can identify and display pipeline information in real time to generate a scientific routing path.

Benefits of technology

It achieves stable fixing of pipelines of different diameters, avoids loosening and misalignment, improves the regularity and intelligence of pipeline management, reduces omissions in manual inspections, and improves the standardization and efficiency of pipeline management.

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Abstract

The invention belongs to a machine room circuit installation and arrangement device, and the device comprises a wire arrangement plate, the upper surface of the wire arrangement plate is provided with a positioning assembly, and the positioning assembly carries out the layering and regional clamping of a cable in the wire arrangement plate; wherein the positioning assembly comprises a fixing plate, the upper surface of the fixing plate is movably connected with a connecting bolt, the upper surface of the fixing plate is fixedly connected with a first wire clamp and a second wire clamp, the upper surface of the first wire clamp is provided with a first wire groove, and the first wire groove is a wavy curved surface and is used for placing a cable; telescopic columns are movably connected to the tops of the two sides of the first wire clamp, a second wire clamp is movably connected to the ends, away from the first wire clamp, of the telescopic columns, and the telescopic columns are used for adjusting the relative distance between the first wire clamp and the second wire clamp; the lower surface of the second wire clamp is provided with a second wire groove which is a wavy curved surface. And the first wire clamp and the second wire clamp are combined to enable the curved surfaces of the first wire slot and the second wire slot to be opposite to form a space for accommodating a cable.
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Description

Technical Field

[0001] This invention relates to the field of computer room wiring installation and layout technology, and in particular to a computer room wiring installation and layout device and its usage method. Background Technology

[0002] With the rapid development of information technology, computer rooms, as the core hubs for data processing and communication, face increasingly severe challenges in the installation and layout of their wiring. To address these issues, invention publication CN114744550A discloses a low-voltage intelligent computer room wiring distribution device and its usage method. The device includes a mesh cable tray for distributing wiring and a traction machine for pulling wire harnesses. The traction machine includes a mounting box, with a mounting block fixedly connected to the outer wall of the box. A threaded cylinder is rotatably connected to the mounting block, and a first lead screw is threaded onto the threaded cylinder. A mounting plate is fixedly connected to the bottom of the first lead screw. This invention moves the traction machine on the mesh cable tray and drags the wire harnesses, eliminating the need for manual walking on the mesh cable tray. This prevents workers from falling and falling, avoids deformation and damage to the cable tray due to human weight, and reduces the burden on workers while improving the efficiency of wiring and distribution through mechanical traction of the wire harnesses.

[0003] However, in actual use, the cable clamps of the devices commonly used for data center cable management are mostly of a single specification. The spacing between the cable trays is fixed and cannot be adjusted, making it difficult to adapt to cables of different diameters. If it is necessary to manage cables of various specifications, different cable clamp components often need to be replaced. This is not only cumbersome to operate, but also leads to low management efficiency due to frequent replacements. Furthermore, the fixed cables are prone to loosening due to insecure clamping, affecting the overall neatness of the management and causing inconvenience to the subsequent management of data center cables.

[0004] Therefore, developing a solution to address the problem that existing devices often use a single specification of wire clamps with fixed and unadjustable groove spacing, making it difficult to adapt to pipelines of different diameters is one of the important issues that needs to be solved. Summary of the Invention

[0005] In view of the above-mentioned problems in the prior art, the purpose of the present invention is to provide a data center wiring installation and layout device to solve the problem that the wire clamps of the existing devices mentioned in the background art are mostly of a single specification, and the spacing of the wire grooves is fixed and cannot be adjusted, making it difficult to adapt to pipelines of different diameters.

[0006] Another objective of this invention is to provide a method for using a computer room wiring installation and layout device.

[0007] To solve the above problems, the present invention adopts the following technical solution: a computer room cable installation and layout device, the device including: a cable management board, the upper surface of the cable management board is provided with a positioning component, the positioning component clamps the cables in the cable management board in layers and areas;

[0008] The positioning component includes a fixing plate, with a connecting bolt movably connected to the upper surface of the fixing plate. A first wire clamp and a second wire clamp are fixedly connected to the upper surface of the fixing plate. The upper surface of the first wire clamp has a first wire groove, which is a wavy curved surface used to place cables. Telescopic columns are movably connected to the top of both sides of the first wire clamp. The end of the telescopic column away from the first wire clamp is movably connected to the second wire clamp. The telescopic columns are used to adjust the relative distance between the first wire clamp and the second wire clamp. The lower surface of the second wire clamp has a second wire groove, which is also a wavy curved surface. The first wire clamp and the second wire clamp are combined so that the curved surfaces of the first wire groove and the second wire groove face each other, forming a space for accommodating cables.

[0009] Furthermore, the first and second clamps are each equipped with an image sensor for cable identification and for identifying and labeling the cable type on their surfaces.

[0010] Furthermore, a first fixing frame is fixedly connected to the side surface of the first wire clamp, and a second fixing frame is fixedly connected to the side surface of the second wire clamp. A screw is movably connected inside the first fixing frame; the first fixing frame and the second fixing frame are connected by the screw.

[0011] Furthermore, the first and second fixing brackets are vertical L-shaped fixing members, wherein one end of the first fixing bracket is attached to and fixed to the side of the first wire clamp, and the other end extends outward; one end of the second fixing bracket is attached to and fixed to the side of the second wire clamp, and the other end extends outward; the two fixing brackets are fixed to each other by screws.

[0012] Furthermore, a rotating rod is provided at the top of the screw, which drives the screw to rotate in order to control the tightening or loosening of the first and second wire clamps.

[0013] Furthermore, a limiting plate is fixedly connected to the bottom of the telescopic column, and a spring column is fixedly connected to the end of the limiting plate away from the telescopic column. The bottom of the spring column is provided with a movable groove, which is opened inside the first wire clamp and the second wire clamp. The limiting plate and the spring column are arranged in two symmetrical sets and fixedly connected to the upper and lower ends of the telescopic column.

[0014] Furthermore, it also includes a display screen, which is communicatively connected to the image sensor and displays the cable layout information acquired by the image sensor.

[0015] The present invention also provides a method for using the computer room wiring installation and layout device as described in claim 1, the method comprising the following steps:

[0016] The fixing of the buried wire plate and the positioning component, the cooperation between the fixing plate and the connecting bolt realizes the fixed connection between the positioning component and the wire management plate;

[0017] The pipeline is clamped and fixed. A first clamp is provided on the upper surface of the fixing plate, creating a sorting space in the first wire groove. Different types of pipelines are placed in different levels of wire grooves, achieving physical separation of the pipelines. A second clamp is movably connected to the first clamp via a telescopic column. The second and first clamps are respectively connected to a screw threaded through them via an L-shaped second fixing bracket and a first fixing bracket. When a pipeline needs to be clamped, rotating the rotating rod at the top of the screw drives the second clamp to move downwards along the telescopic column, aligning and closing the second wire groove with the first wire groove, thus achieving pipeline clamping.

[0018] Intelligent detection: The image sensor at the center of the first cable tray surface serves as a visual detection component, which can collect image information of the pipeline inside the tray in real time, process and analyze the images, and identify them. The cable data is synchronized with the display screen in real time, and construction personnel can obtain pipeline status information through the display screen.

[0019] Compared with the prior art, the beneficial technical effects of the present invention are as follows:

[0020] 1. The device of the present invention achieves a stable connection between the positioning component and the cable management plate through the cooperation of the fixing plate and the connecting bolt, ensuring that the overall structure is not easily displaced during construction. Simultaneously, the first and second cable clamps are movably connected by a telescopic column, and a screw passes through the threaded connection structure of the first and second fixing frames, forming an adjustable clamping mechanism. This connection structure ensures the stability of the opening and closing of the cable clamps and allows for precise control of the distance between the first and second cable grooves by rotating the screw, adapting to cables of different diameters and achieving secure fixing of cables of various specifications. This effectively prevents cable loosening or misalignment and improves the neatness of the cable management after processing.

[0021] 2. The device described in this invention application comprises a telescopic column whose upper and lower ends are connected to a spring column via limiting plates and embedded in a movable groove, forming an elastic buffer mechanism. When clamping the pipeline, the deformation of the spring column can offset excessive clamping force, preventing damage to the pipeline sheath due to rigid compression. Simultaneously, the image sensor, fixed to the center of the first groove, can acquire high-definition images of the pipeline within the groove in real time. Using a built-in algorithm, the images undergo depth processing to accurately identify the pipeline type, specific location coordinates, and whether it is entangled. Based on these identification results, the system automatically generates a scientifically sound routing path, clearly defining the zoning placement scheme for different types of pipelines and the separation steps for entangled pipelines. This information is then fed back to the display screen in real time, facilitating timely adjustments by construction personnel, reducing oversights during manual inspections, significantly improving the standardization and intelligence of pipeline layout, and providing convenience for later maintenance. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 This is a side view of the structural positioning component of the present invention;

[0024] Figure 3 This is a front view schematic diagram of the structural positioning component of the present invention;

[0025] Figure 4 This is a side plan sectional view of the partial connection structure between the telescopic column and the first and second wire clamps of the present invention.

[0026] Reference numerals: 1. Cable management plate; 2. Positioning component; 21. Fixing plate; 22. Connecting bolt; 23. First cable clamp; 24. First cable groove; 25. Image sensor; 26. Telescopic column; 27. Second cable clamp; 28. Second cable groove; 29. ​​First fixing frame; 210. Screw; 211. Second fixing frame; 212. Rotating rod; 213. Limiting plate; 214. Spring column; 215. Movable groove; 216. Display screen. Detailed Implementation

[0027] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0028] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "vertical," "horizontal," and "inner," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. Furthermore, unless otherwise explicitly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication between two elements. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0029] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.

[0030] Example 1

[0031] Please see Figure 1-4 The present invention provides a data center cable installation and layout device, the device comprising: a cable management plate 1, wherein a positioning component 2 is provided on the upper surface of the cable management plate 1, and the positioning component 2 performs layered and area-specific clamping of the cables in the cable management plate 1.

[0032] The positioning component 2 includes a fixing plate 21. A connecting bolt 22 is movably connected to the upper surface of the fixing plate 21. A first wire clamp 23 and a second wire clamp 27 are fixedly connected to the upper surface of the fixing plate 21. The upper surface of the first wire clamp 23 is provided with a first wire groove 24, which is a wavy curved surface for placing cables. Telescopic columns 26 are movably connected to the top of both sides of the first wire clamp 23. The end of the telescopic column 26 away from the first wire clamp 23 is movably connected to the second wire clamp 27. The telescopic column 26 is used to adjust the relative distance between the first wire clamp 23 and the second wire clamp 27. The lower surface of the second wire clamp 27 is provided with a second wire groove 28, which is a wavy curved surface. The first wire clamp 23 and the second wire clamp 27 are combined to form a space for accommodating cables.

[0033] The second clamp 27 has a second fixing bracket 211 fixedly connected to its side surface, and the first clamp 23 has a first fixing bracket 29 fixedly connected to its side surface. A screw 210 is movably connected inside the first fixing bracket 29. The first fixing bracket 29 and the second fixing bracket 211 are connected by the screw 210.

[0034] A limiting plate 213 is fixedly connected to the bottom of the telescopic column 26. A spring column 214 is fixedly connected to the end of the limiting plate 213 away from the telescopic column 26. A movable groove 215 is opened at the bottom of the spring column 214. The movable groove 215 is opened inside the first wire clamp 23 and the second wire clamp 27. The limiting plate 213 and the spring column 214 are symmetrically fixedly connected to the upper and lower ends of the telescopic column 26 in two sets.

[0035] In use, the device described in this application achieves a stable connection between the positioning component 2 and the cable management plate 1 through the cooperation of the fixing plate 21 and the connecting bolt 22, ensuring that the overall structure is not easily displaced during construction. Simultaneously, the first cable clamp 23 and the second cable clamp 27 are connected by the telescopic column 26. At the same time, the screw 210 passes through the first fixing frame 29 and the second fixing frame 211 in sequence and is threadedly connected and fixed, so that the first cable clamp 23 and the second cable clamp 27 combine to form an adjustable clamping mechanism. This mechanism not only ensures the stability of the opening and closing of the cable clamps, but also allows for precise control of the distance between the first cable groove 24 and the second cable groove 28 by rotating the screw 210, adapting to pipelines of different diameters and achieving a firm fixation of multi-specification pipelines, effectively preventing pipeline loosening or misalignment, and improving the neatness of the layout.

[0036] In some preferred embodiments, there are two sets of first fixing brackets 29, which are fixedly connected to the left and right ends of the first wire clamp 23, and two sets of second fixing brackets 211, which are fixedly connected to the left and right ends of the second wire clamp 27. Threaded holes are provided at corresponding positions of the first fixing brackets 29 and the second fixing brackets 211, and screws 210 pass through the threaded holes vertically to connect the first fixing brackets 29 and the second fixing brackets 211. Specifically, the second fixing brackets 211 and the first fixing brackets 29 are fixing members with an L-shaped vertical cross-section.

[0037] In some cases, there are a large number of cables, and a single-layer clamping mechanism cannot accommodate all of them. To solve the above problem, the clamping mechanism is a stackable and fixed structure. Specifically, the first clamp 23 and the second clamp 27 are stacked in two sets on the upper surface of the fixing plate 21. The screw 210 passes through the threaded hole from top to bottom and connects the first fixing frame 29 and the second fixing frame 211 to fix the position of the two sets of clamping mechanisms. A rotating rod 212 is fixedly connected to the top of the screw 210.

[0038] A display screen 216 is fixedly connected to the side surface of the first clamp 23. The display screen 216 is connected to the image sensor 25 via a data cable to display the recognition result in real time. The display screen 216 is in two sets and is fixedly connected to the side surfaces of the first clamp 23 and the second clamp 27 respectively.

[0039] In some preferred embodiments, the first groove 24 and the second groove 28 are arranged opposite to each other. An image sensor 25 is provided at the center of the surface of the first groove 24. The image sensor 25 is embedded in the inner wall of the first groove 24 and is used to collect image information of the pipeline in the groove in real time.

[0040] Example 2

[0041] This application provides a method for using a data center cabling installation and routing device, the method comprising the following steps:

[0042] Fixing component 2 to the cable tray 1, and achieving a stable connection between positioning component 2 and cable management tray 1 through the cooperation of fixing plate 21 and connecting bolt 22. The installation and fixing of positioning component 2 provides a stable foundation for the overall cable management work: fixing plate 21 is movably connected to the upper surface of cable management tray 1 through connecting bolt 22. This connection method not only ensures the stable combination of positioning component and cable management tray, but also allows for flexible adjustment of the installation position of positioning component according to pipeline layout requirements, improving the adaptability of the device to different computer room scenarios.

[0043] The clamping and fixing of the pipeline achieves precise adaptation through an adjustable structure. A first clamp 23 is provided on the upper surface of the fixing plate 21, which, together with the first groove 24 on its inner surface, forms a multi-layered sorting space. Different types of pipelines, such as power cables, data cables, and optical fibers, can be placed in different levels of grooves, achieving physical separation of the pipelines. This effectively avoids the maintenance difficulties caused by the mixing and tangling of pipelines in traditional layouts and significantly improves pipeline identification. The second clamp 27 is movably connected to the first clamp 23 via a telescopic column 26. Both sides are respectively connected to the screw 210 through L-shaped second fixing brackets 211 and first fixing brackets 29, with the two sets of fixing brackets symmetrically distributed at both ends of the clamp to ensure balanced force during adjustment. When it is necessary to clamp the pipeline, rotating the rotating rod 212 at the top of the screw 210 drives the second clamp 27 to move downwards along the telescopic column 26, precisely aligning and closing the second groove 28 with the first groove 24. This adjustable structure can flexibly control the spacing of the cable trays according to the diameter of the pipeline, adapting to various specifications from small-diameter pipelines to large-diameter cables. It effectively improves the problem that traditional fixed cable trays cannot be compatible with multiple specifications of pipelines, and achieves stable clamping of different pipelines by a single set of clamps.

[0044] The limiting plates 213 at the upper and lower ends of the telescopic column 26, the spring column 214, and the movable groove 215 constitute an elastic buffer mechanism to further ensure pipeline safety: when the second clamp 27 clamps the pipeline, the spring column 214 is squeezed and deformed in the movable groove 215, which can offset excessive clamping force and prevent the pipeline sheath from being damaged by rigid compression; at the same time, the limiting plates 213 limit the maximum extension and retraction of the telescopic column to prevent the clamp from being misaligned due to excessive adjustment, and ensure that the first groove 24 and the second groove 28 always maintain a relative position, thereby improving the stability of clamping.

[0045] Intelligent detection significantly improves the standardization of pipeline management: The image sensor 25 at the center of the surface of the first cable tray 24 serves as the core visual detection component. It can collect image information of the pipelines in the tray in real time and process and analyze the images. Specifically, it identifies the type of pipeline, such as high voltage or low voltage, specific location coordinates, and whether there is any entanglement, through built-in algorithms. Based on the identification results, it automatically generates the optimal management path, such as the zoning placement scheme for different types of pipelines and the separation steps for entangled pipelines. This identification data, management path, and abnormal status, such as pipelines not completely falling into the cable tray or mixed types, are synchronized in real time to two sets of display screens 216 on the side surfaces of the first clamp 23 and the second clamp 27. Construction personnel can intuitively grasp the status of the pipelines through the display screens 216, which facilitates timely adjustments and avoids omissions in manual inspections.

[0046] This application provides a data center cable installation and routing device to solve the problem that existing devices mostly use single-specification cable clamps with fixed and non-adjustable cable tray spacing, making it difficult to adapt to cables of different diameters. If multiple specifications of cables need to be routed, different cable clamp components often need to be replaced, which is not only cumbersome to operate, but also leads to low routing efficiency due to frequent replacements. Furthermore, the fixed cables are prone to loosening due to insecure clamping, affecting the overall neatness of the routing and causing inconvenience for the subsequent management of data center cables.

[0047] Finally, it should be pointed out that the above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in the present invention should be included within the scope of protection of the present invention.

Claims

1. A data center wiring installation and layout device, characterized in that, The device includes: a cable management board (1), and a positioning component (2) is provided on the upper surface of the cable management board (1). The positioning component (2) clamps the cables in the cable management board (1) in layers and areas. The positioning component (2) includes a fixing plate (21), a connecting bolt (22) is movably connected to the upper surface of the fixing plate (21), a first wire clamp (23) and a second wire clamp (27) are fixedly connected to the upper surface of the fixing plate (21), the first wire clamp (23) has a first wire groove (24) on its upper surface, the first wire groove (24) is a wavy curved surface, used to place cables; telescopic columns (26) are movably connected to the top of both sides of the first wire clamp (23), the end of the telescopic column (26) away from the first wire clamp (23) is movably connected to the second wire clamp (27), the telescopic column 26 is used to adjust the relative distance between the first wire clamp (23) and the second wire clamp (27); the lower surface of the second wire clamp (27) has a second wire groove (28), the second wire groove (28) is a wavy curved surface; the first wire clamp (23) and the second wire clamp (27) are combined so that the curved surfaces of the first wire groove (24) and the second wire groove (28) are opposite each other, forming a space for accommodating cables.

2. The data center wiring installation and layout device according to claim 1, characterized in that, The first clamp (23) and the second clamp (27) are respectively equipped with image sensors (25) for cable identification and identification and labeling of the cable type on their surface.

3. The data center wiring installation and layout device according to claim 1, characterized in that, The first clamp (23) is fixedly connected to a first fixing frame (29) on its side surface, and the second clamp (27) is fixedly connected to a second fixing frame (211) on its side surface. The first fixing frame (29) is movably connected to a screw (210) inside. The first fixing frame (29) and the second fixing frame (211) are connected by the screw (210).

4. The computer room wiring installation and layout device according to claim 3, characterized in that, The first fixing bracket (29) and the second fixing bracket (211) are vertical L-shaped fixing parts. One end of the first fixing bracket (29) is attached to and fixed to the side of the first wire clamp (23), and the other end extends outward. One end of the second fixing bracket (211) is attached to and fixed to the side of the second wire clamp (27), and the other end extends outward. The two fixing brackets are fixed to each other by screws (210).

5. A computer room wiring installation and layout device according to claim 3 or 4, characterized in that, The screw (210) is provided with a rotating rod (212) at the top. The rotating rod (212) drives the screw (210) to rotate, so as to control the tightening or loosening of the first wire clamp (23) and the second wire clamp (27).

6. The data center wiring installation and layout device according to claim 1, characterized in that, The bottom of the telescopic column (26) is fixedly connected to a limiting plate (213). A spring column (214) is fixedly connected to the end of the limiting plate (213) away from the telescopic column (26). A movable groove (215) is opened at the bottom of the spring column (214). The movable groove (215) is opened inside the first wire clamp (23) and the second wire clamp (27). The limiting plate (213) and the spring column (214) are arranged in two symmetrical sets and fixedly connected to the upper and lower ends of the telescopic column (26).

7. The data center wiring installation and layout device according to claim 1, characterized in that, It also includes a display screen (216), the image sensor (25) is communicatively connected to the display screen (216), and the display screen (216) displays the cable layout information acquired by the image sensor (25).

8. A method of using the computer room wiring installation and layout device as described in claim 1, characterized in that, This application provides a method for using a data center cabling installation and routing device, the method comprising the following steps: The fixing of the buried wire plate (1) and the positioning component (2) is achieved by the cooperation of the fixing plate (21) and the connecting bolt (22) to realize the fixed connection between the positioning component (2) and the wire management plate (1); The pipeline is clamped and fixed. The upper surface of the fixing plate (21) is provided with two sets of first wire clamps (23) stacked together, so that the first wire groove (24) forms a sorting space, and different types of pipelines are placed in different levels of wire grooves to achieve physical separation of pipelines. The second wire clamp (27) is movably connected to the first wire clamp (23) through the telescopic column (26). The second wire clamp (27) and the first wire clamp (23) are respectively connected to the screw (210) through the L-shaped second fixing frame (211) and the first fixing frame (29). When it is necessary to clamp the pipeline, the second wire clamp (27) is driven to move downward along the telescopic column (26) by rotating the rotating rod (212) at the top of the screw (210), so that the second wire groove (28) is aligned with the first wire groove (24) and closed; thus achieving clamping of the pipeline. Intelligent detection: The image sensor (25) at the center of the surface of the first cable trench (24) serves as a visual detection component, which can collect image information of the pipeline in the trench in real time, process and analyze the image, and identify it. The cable data is synchronized with the display screen (216) in real time, and the construction personnel can obtain pipeline status information through the display screen (216).

Citation Information

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