Internet-of-things real-time monitoring and scanning device for operation state of port equipment

By introducing an adjustable rotating shaft and a scanning housing angle adjustment knob into the port equipment monitoring device, and combining multiple scanning devices, the problem of incomplete scanning by existing devices has been solved, enabling comprehensive and accurate monitoring of equipment status and convenient maintenance.

CN223882087UActive Publication Date: 2026-02-06TIANJIN RES INST FOR WATER TRANSPORT ENG M O T
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Patent Information

Application Number
CN202520713659.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2026-02-06
Estimated Expiration
2035-04-16

AI Technical Summary

Technical Problem

Existing port equipment operation status monitoring devices lack angle adjustment function, resulting in incomplete scanning, complicated operation, inconvenient maintenance, and difficulty in accurately obtaining equipment status information.

Method used

A monitoring and scanning ring housing with an adjustable rotating shaft and an angle adjustment knob for the scanning housing was designed. It combines a laser scanning template, a monitoring and scanning camera, and an infrared scanning sensor, and is equipped with a scanning rotating disk and a direction indicator disk to support multi-dimensional data acquisition and real-time transmission.

Benefits of technology

It enables comprehensive and accurate monitoring of port equipment, improves operational convenience and efficiency, reduces maintenance time and costs, and provides multi-dimensional data support.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a port equipment operation state Internet of Things real-time monitoring scanning device, which comprises an Internet of Things real-time monitoring scanning support, a scanning U-shaped frame body is arranged above the Internet of Things real-time monitoring scanning support, and the angle of a monitoring scanning annular shell can be flexibly adjusted by adjusting a rotating shaft and a scanning shell angle adjusting knob. And the monitoring coverage range is expanded. And a laser scanning template, a monitoring scanning camera and an infrared scanning sensor are integrated, so that multi-dimensional data acquisition is realized, and rich basis is provided for judging the state of equipment. The scanning rotating disc is combined with the scanning direction indicating disc, so that the scanning direction can be quickly adjusted to adapt to complex environments. And through convenient angle adjustment, a rotating disc protection ring and a camera protection film, the operation convenience is improved, core components are protected, and it is guaranteed that images are clear. The device overhaul plate is convenient to overhaul and maintain, and cost is reduced. And data can be transmitted to a monitoring center in real time, so that managers can timely grasp the equipment state and timely deal with abnormities.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of port monitoring, and more particularly to a port equipment operation state internet of things real time monitoring scanning device. BACKGROUND

[0002] With the development of port industry, the port cargo handling capacity is greatly improved, and the port mechanical equipment is developing towards mechanization, continuity and high efficiency. However, the existing port equipment operation state monitoring technology has the following shortcomings: the existing monitoring method may not be able to comprehensively and accurately obtain the operation state information of the port equipment. Some monitoring is only based on conventional indicators to reflect the situation from one side, such as measuring the congestion degree of the port by the container carrying capacity of the container ship in the port in the analysis of port congestion, without considering the difference of the same carrying capacity in different service capacity ports and the ships that have no influence on the congestion degree, which leads to the inability to accurately reflect the equipment operation state and the actual situation of the port.

[0003] The port monitoring scanning device currently in use lacks the design of the rotating shaft and the scanning shell angle adjusting knob, which makes it impossible to flexibly adjust the angle of the monitoring scanning annular shell. This makes the laser scanning template, the monitoring scanning camera and the infrared scanning sensor only be able to scan the port equipment at a fixed angle, which is difficult to comprehensively cover all parts of the equipment and is likely to miss the detailed information on the surface of the equipment, and cannot accurately and comprehensively obtain the operation state of the equipment.

[0004] Without the structure of the scanning shell angle adjusting knob of the utility model, the operator is difficult to easily adjust the angle of the monitoring scanning annular shell when facing port equipment of different heights and different inclinations, and often needs complex operation or even additional auxiliary equipment, which not only increases the workload of the operator, but also wastes a lot of time and energy, greatly reduces the convenience and efficiency of the monitoring work.

[0005] In addition, the existing device also has great problems in maintenance. The structure design does not take into account the convenient maintenance requirement, when the device fails or needs regular maintenance, the operator is difficult to quickly check, maintain and replace the internal components, which leads to long maintenance time and high cost of the equipment, and further affects the reliability and usability of the equipment. Therefore, we propose a port equipment operation state internet of things real time monitoring scanning device. Utility model content

[0006] The utility model discloses a purpose at: the problem that the background technology of present existence is proposed. In order to realize above -mentioned practical new type purpose, the utility model provides the following technical scheme: a port equipment operating state internet of things real -time monitoring scanning device, including internet of things real -time monitoring scanning support, the internet of things real -time monitoring scanning support top is provided with scanning U -shaped frame body, the scanning U -shaped frame body two bars between placing has monitoring scanning annular shell, the monitoring scanning annular shell side edge is embedded with the adjusting rotation axis, and the adjusting rotation axis is located the top of scanning U -shaped frame body two bars, the adjusting rotation axis one side is installed with scanning shell angle adjusting knob.

[0007] As the preferred technical scheme of the utility model, the front end of the monitoring scanning annular shell is fixed with a laser scanning template, a monitoring scanning camera is installed on the front plate of the laser scanning template, and the monitoring scanning camera is provided with a protective film.

[0008] As the preferred technical scheme of the utility model, an infrared scanning sensor is installed below the monitoring scanning camera, and the monitoring scanning camera and the infrared scanning sensor are connected with a power supply battery in the monitoring scanning annular shell through a power supply line.

[0009] As the preferred technical scheme of the utility model, a bottom support rod is installed below the scanning U-shaped frame body.

[0010] As the preferred technical scheme of the utility model, a scanning direction indicating disc is nested between the internet of things real -time monitoring scanning support and the bottom support rod, and scanning direction indicating marks are engraved on the top outer edge of the scanning direction indicating disc.

[0011] As the preferred technical scheme of the utility model, a device maintenance plate is installed on the outer surface of the internet of things real -time monitoring scanning support.

[0012] As the preferred technical scheme of the utility model, a scanning rotary disc is rotatably installed at the bottom of the internet of things real -time monitoring scanning support, and a rotary disc mounting base is connected below the scanning rotary disc.

[0013] As the preferred technical scheme of the utility model, a protective ring reinforcing link is embedded on the outer edge above the rotary disc mounting base, and a rotary disc protective ring is fixed above the protective ring reinforcing link.

[0014] Compared with the prior art, the utility model has the beneficial effects that:

[0015] The utility model discloses through the angle adjustment knob of adjusting rotating shaft and scanning shell, can flexibly adjust the angle of monitoring scanning annular shell, makes laser scanning template, monitoring scanning camera and infrared scanning sensor can scan port equipment from different angles.

[0016] The utility model discloses integrated laser scanning template, monitoring scanning camera and infrared scanning sensor three different types of monitoring equipment. Laser scanning can obtain the geometric shape and profile information of equipment, and is used for detecting whether equipment has deformation, wear and tear and other problems;Monitoring scanning camera can real -time shoot the operation picture of equipment, and observes the appearance state and component movement of equipment;Infrared scanning sensor can detect the temperature distribution of equipment surface, and discovers potential failure in time that equipment overheats. Multidimensional data acquisition provides abundant basis for accurate judgment equipment operation state.

[0017] The scanning rotating disc can drive the whole device to rotate circumferentially, combined with the scanning direction indicating disc and the scanning direction indicating mark, the operator can quickly and accurately adjust the device to the required scanning direction, and adapt to port equipment with different layouts and positions. This makes the device flexible in the complex environment of the port, improving the efficiency of monitoring work.

[0018] The structure of the scanning shell angle adjustment knob allows the operator to easily adjust the angle of the monitoring scanning annular shell, and the device can be monitored for port equipment with different heights and different inclinations without complex operation. This convenient angle adjustment method saves the operator's time and effort, and improves the convenience of work.

[0019] The rotating disc protection ring is fixed above the rotating disc mounting base through the protection ring reinforcing connecting rod, which can effectively prevent the collision and damage of external objects to the scanning rotating disc, protect the core rotating parts of the device and prolong its service life. At the same time, the protective film of the monitoring scanning camera can prevent dust, water vapor and other pollutants from eroding the camera lens, ensuring the clarity and stability of image acquisition.

[0020] The utility model discloses the device maintenance board installed on the outer surface of the internet of things real -time monitoring scanning support, when the device fails or needs to be maintained regularly, the operator can quickly open the maintenance board to check, repair and replace the internal components. This structure reduces the maintenance time and cost of the equipment, improves the reliability and usability of the equipment.

[0021] The utility model discloses a real -time transmission of the laser scanning data, image data and temperature data etc. of collection to monitoring center.

[0022] The utility model discloses multidimensional data acquisition and real -time transmission provide abundant material for subsequent data integration and analysis. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 The utility model provides structural schematic diagram for providing the utility model;

[0024] Figure 2 The utility model provides scanning U -shaped frame body structure schematic diagram for providing the utility model;

[0025] Figure 3 The utility model provides scanning direction indicating disc structure schematic diagram for providing the utility model;

[0026] Figure 4 The utility model provides partial structure schematic diagram.

[0027] Indicated in the drawing:

[0028] 1, internet of things real -time monitoring scanning support;2, scanning U -shaped frame body;3, monitoring scanning annular shell;4, adjusting rotation axis;5, scanning shell angle adjusting knob;6, laser scanning template;7, monitoring scanning camera;8, infrared scanning sensor;9, bottom support rod;10, scanning direction indicating disc;11, scanning direction indicating mark;12, device overhauls board;13, scanning rotary disc;14, rotary disc installation base;15, protection ring reinforcing link;16, rotary disc protection ring. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical scheme and advantage of the utility model embodiment more clear, the technical scheme in the utility model embodiment will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiment is a part of the embodiment of the utility model, not all the embodiment.

[0030] Therefore, the following detailed description of embodiments of the present application is not intended to limit the scope of the claimed application, but merely to indicate some embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application. It should be noted that the embodiments in the present application and the features and technical solutions in the embodiments can be combined with each other without conflict, and attention should be paid to: similar reference numerals and letters represent similar items in the following drawings, so that once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0031] Embodiment 1: please refer to Figures 1-4 , the port equipment running state internet of things real-time monitoring scanning device, including internet of things real-time monitoring scanning support 1, scanning U-shaped frame body 2 is arranged above internet of things real-time monitoring scanning support 1, monitoring scanning annular shell 3 is placed between the two bars of scanning U-shaped frame body 2, adjusting rotating shaft 4 is embedded on the side of monitoring scanning annular shell 3, and adjusting rotating shaft 4 is located at the top of the two bars of scanning U-shaped frame body 2, scanning shell angle adjusting knob 5 is installed on one side of adjusting rotating shaft 4.

[0032] The front end of monitoring scanning annular shell 3 is fixed with laser scanning template 6, monitoring scanning camera 7 is installed on the front plate of laser scanning template 6, and monitoring scanning camera 7 is provided with a protective film.

[0033] Infrared scanning sensor 8 is installed below monitoring scanning camera 7, and monitoring scanning camera 7 and infrared scanning sensor 8 are connected with power supply battery in monitoring scanning annular shell 3 through power supply line.

[0034] Bottom support rod 9 is installed below scanning U-shaped frame body 2.

[0035] Scan direction indicating disc 10 is nested between internet of things real-time monitoring scanning support 1 and bottom support rod 9, and scan direction indicating mark 11 is engraved on the outer edge of the top of scan direction indicating disc 10.

[0036] Device maintenance plate 12 is installed on the outer surface of internet of things real-time monitoring scanning support 1.

[0037] Scan rotating disc 13 is rotatably installed at the bottom of internet of things real-time monitoring scanning support 1, and rotating disc mounting base 14 is connected below scan rotating disc 13.

[0038] Protective ring reinforcing link 15 is embedded on the outer edge above rotating disc mounting base 14, and rotating disc protective ring 16 is fixed above protective ring reinforcing link 15.

[0039] The device aims to monitor and scan the running state of port equipment in real time, and transmit monitoring data by means of Internet of Things technology to realize real-time grasp of the running state of port equipment. The device collects data on port equipment from different perspectives and dimensions through laser scanning templates with adjustable angles and directions, monitoring and scanning cameras, and infrared scanning sensors.

[0040] Working principle of port equipment running state Internet of Things real-time monitoring and scanning device:

[0041] Adjusting the angle of the rotating shaft and the scanning shell angle adjusting knob: The adjusting rotating shaft 4 is installed at the top of the two bars of the scanning U-shaped frame body 2 and embedded in the side of the monitoring and scanning ring-shaped shell 3. The operator can rotate the scanning shell angle adjusting knob 5 to drive the adjusting rotating shaft 4 to rotate, thereby changing the angle of the monitoring and scanning ring-shaped shell 3. This allows the laser scanning template 6, the monitoring and scanning camera 7, and the infrared scanning sensor 8 to be adjusted to the appropriate scanning angle to adapt to port equipment in different positions and states, ensuring that device information can be obtained comprehensively and accurately.

[0042] The laser scanning template 6 emits a laser beam at the front end of the monitoring and scanning ring-shaped shell 3, and uses the principle of laser reflection to scan the port equipment. When the laser beam shines on the surface of the port equipment, part of the laser will be reflected back, and the laser scanning template 6 receives the reflected light and analyzes it to obtain the shape, contour, and other geometric information of the device surface, providing data support for determining whether the device has deformation, wear, and other conditions.

[0043] The monitoring and scanning camera 7 installed on the front panel of the laser scanning template 6 is responsible for image acquisition of the port equipment. The protective film on its surface can prevent dust, water vapor, and other pollutants from damaging the camera lens, ensuring the clarity of the image. The monitoring and scanning camera 7 captures the running picture of the port equipment in real time, and through image recognition technology, it can monitor the appearance state of the equipment, the movement of the components, etc., such as whether there are loose parts, whether the equipment is running normally, etc.

[0044] The infrared scanning sensor 8 located below the monitoring and scanning camera 7 can detect the infrared radiation of the surface of the port equipment, thereby obtaining the temperature distribution information of the equipment. Different running states and fault conditions will cause the surface temperature of the equipment to change, and by analyzing the temperature data collected by the infrared scanning sensor 8, it can timely discover whether the equipment has abnormal conditions such as overheating and local high temperature, and give early warning of equipment failure.

[0045] The monitoring scanning camera 7 and the infrared scanning sensor 8 are connected with the power supply battery in the monitoring scanning annular shell 3 through the power supply line, and are provided with stable power support by the power supply battery, so that the continuous data acquisition work is ensured. The scanning direction indicating disc 10 is nested between the connection end of the Internet of Things real-time monitoring scanning support 1 and the bottom support rod 9, and the scanning direction indicating mark 11 is engraved on the top outer edge of the scanning direction indicating disc 10. The operator can adjust the scanning direction of the device according to the actual needs by observing the scanning direction indicating mark 11, so that the device can be aligned with the port equipment to be monitored, and the pertinence and accuracy of scanning are improved.

[0046] The scanning rotary disc 13 is rotatably installed at the bottom of the Internet of Things real-time monitoring scanning support 1, and the operator can manually rotate the scanning rotary disc 13, so that the whole monitoring scanning device is driven to rotate in a circle, and the scanning range is expanded. The rotation of the scanning rotary disc 13 cooperates with the scanning direction indicating disc 10, so that the device can flexibly adjust the scanning direction and adapt to port equipment with different layouts and positions.

[0047] The rotary disc protection ring and the protection ring reinforcing connecting rod: the protection ring reinforcing connecting rod 15 is embedded on the outer edge above the rotary disc mounting base 14, and the rotary disc protection ring 16 is fixed above the protection ring reinforcing connecting rod 15. The rotary disc protection ring 16 can protect the scanning rotary disc 13 from being collided by external objects, so as to ensure the normal rotation and service life of the scanning rotary disc 13. The protection ring reinforcing connecting rod 15 enhances the stability and firmness of the rotary disc protection ring 16.

[0048] The device maintenance plate 12 is installed on the outer surface of the Internet of Things real-time monitoring scanning support 1. When the device fails or needs to be maintained, the operator can open the device maintenance plate 12, so as to facilitate the inspection, repair and replacement of the internal components of the device, and ensure the normal operation of the device.

[0049] Through the cooperation of the above components, the port equipment running state Internet of Things real-time monitoring scanning device can realize real-time, comprehensive and accurate monitoring and scanning of the running state of the port equipment, and transmit the collected data to the monitoring center through the Internet of Things, so as to provide strong support for the safe operation and maintenance management of the port equipment.

[0050] The working process of the port equipment running state Internet of Things real-time monitoring scanning device is as follows: the rotary disc mounting base is fixed: the rotary disc mounting base 14 is stably installed at a suitable monitoring position of the port, so as to ensure that the whole device has a stable support foundation.

[0051] The device maintenance plate 12 is opened, the power of the power supply battery in the monitoring scanning annular shell 3 is checked, and the connection condition is checked, so as to ensure that the power supply battery has sufficient power and is normally connected with the monitoring scanning camera 7 and the infrared scanning sensor 8 through the power supply line.

[0052] Check whether the laser scanning template 6, the protective film of the monitoring scanning camera 7, the infrared scanning sensor 8 and other components are intact, and whether the movable components such as the rotating shaft 4, the scanning shell angle adjustment knob 5 and the scanning rotating disc 13 can rotate normally.

[0053] Determine the scanning direction: according to the position of the port equipment to be monitored, refer to the scanning direction indication mark 11 on the top outer edge of the scanning direction indication disc 10, manually rotate the scanning rotating disc 13 to align the device as a whole to the target port equipment, and preliminarily determine the scanning direction.

[0054] Rotate the scanning shell angle adjustment knob 5 to drive the adjustment rotating shaft 4 to rotate, thereby adjusting the angle of the monitoring scanning annular shell 3, so that the laser scanning template 6, the monitoring scanning camera 7 and the infrared scanning sensor 8 are at the optimal scanning angle to fully cover the target port equipment.

[0055] The laser scanning template 6 emits a laser beam to irradiate the surface of the port equipment, and the reflected laser beam is received by the laser scanning template 6. The laser scanning template 6 analyzes and processes the reflected light to obtain geometric information such as the shape and contour of the surface of the port equipment.

[0056] The monitoring scanning camera 7 captures the running picture of the port equipment in real time, and records information such as the appearance state of the equipment and the movement of the components through image recognition technology. The protective film on its surface can prevent external pollutants from affecting the image acquisition quality.

[0057] The infrared scanning sensor 8 detects the infrared radiation of the surface of the port equipment to obtain the temperature distribution information of the equipment, so as to find out whether the equipment has abnormal conditions such as overheating and local high temperature.

[0058] Integrate and package the data collected by the laser scanning template 6, the monitoring scanning camera 7 and the infrared scanning sensor 8, so as to transmit them through the Internet of Things.

[0059] Use the Internet of Things communication technology to send the packaged data to the port equipment monitoring center or the related data processing platform.

[0060] The monitoring center or the data processing platform processes and analyzes the received data, for example, by comparing the geometric shape, image features and temperature distribution of the equipment under normal state to judge whether the equipment has abnormal running state, and generates corresponding reports and warning information.

[0061] The device scans and collects data of the port equipment according to the set time interval or continuously, realizing real-time monitoring of the running state of the equipment.

[0062] Periodically adjust the scanning direction and angle according to the layout change and running state change of the port equipment, to ensure that the device can continuously and accurately monitor the equipment.

[0063] Periodically inspect the device to check the working condition of each part, the connection and whether the appearance is damaged.

[0064] When the device fails, open the device maintenance board 12 to repair or replace the faulty parts. If the monitoring scanning camera 7 has image blur problem, check whether the protective film is damaged or the lens is stained, and clean or replace it if necessary.

[0065] Periodically maintain the adjustable parts such as adjusting rotating shaft 4 and scanning rotary disc 13, and add lubricating oil to ensure flexible rotation.

[0066] The working process of the port equipment running state Internet of Things real-time monitoring scanning device is as follows:

[0067] Fixed rotary disc installation base: Install the rotary disc installation base 14 stably in the monitoring position of the port to ensure that the whole device has a stable support foundation.

[0068] Check the power supply battery: Open the device maintenance board 12 to check the power supply battery in the monitoring scanning ring-shaped shell 3 and the connection to ensure that the power supply battery has sufficient power and is normally connected with the monitoring scanning camera 7 and the infrared scanning sensor 8 through the power supply line.

[0069] Check the integrity of each part: Check whether the laser scanning template 6, the protective film of the monitoring scanning camera 7, the infrared scanning sensor 8 and other parts are intact, and whether the adjustable rotating shaft 4, the scanning shell angle adjusting knob 5 and the scanning rotary disc 13 can rotate normally.

[0070] According to the position of the port equipment to be monitored, refer to the scanning direction indication mark 11 on the top outer edge of the scanning direction indication disc 10, manually rotate the scanning rotary disc 13 to align the whole device with the target port equipment, and preliminarily determine the scanning direction.

[0071] Rotate the scanning shell angle adjusting knob 5 to drive the adjusting rotating shaft 4 to rotate, thereby adjusting the angle of the monitoring scanning ring-shaped shell 3, so that the laser scanning template 6, the monitoring scanning camera 7 and the infrared scanning sensor 8 are at the best scanning angle to fully cover the target port equipment.

[0072] The laser scanning template 6 emits a laser beam to irradiate the surface of the port equipment, and the reflected laser beam is received by the laser scanning template 6. The laser scanning template 6 analyzes and processes the reflected light to obtain the geometric information such as the shape and contour of the surface of the port equipment.

[0073] The monitoring scanning camera 7 captures real-time operation pictures of the port equipment, and records the appearance state of the equipment, the movement of the components and other information through image recognition technology. The protective film on the surface can prevent external pollutants from affecting the image acquisition quality.

[0074] The infrared scanning sensor 8 detects the infrared radiation on the surface of the port equipment, and obtains the temperature distribution information of the equipment, so as to find out whether the equipment has abnormal conditions such as overheating and local high temperature.

[0075] The data collected by the laser scanning template 6, the monitoring scanning camera 7 and the infrared scanning sensor 8 are integrated and packaged, so as to be transmitted through the Internet of Things.

[0076] The packaged data are sent to the port equipment monitoring center or the related data processing platform through the Internet of Things communication technology. The monitoring center or the data processing platform processes and analyzes the received data, for example, judges whether the equipment has an abnormal running state by comparing the geometric shape, image features and temperature distribution of the equipment under the normal state, and generates corresponding reports and warning information.

[0077] The device scans and collects data of the port equipment according to the set time interval or continuously, so as to realize real-time monitoring of the running state of the equipment. The scanning direction and angle are adjusted regularly according to the layout change and running state change of the port equipment, so as to ensure that the device can continuously and accurately monitor the equipment.

[0078] The device is regularly inspected to check the working state, connection condition and appearance of each component, and whether there is damage. When the device fails, the device maintenance plate 12 is opened to repair or replace the faulty components. If the monitoring scanning camera 7 has image blur problem, check whether the protective film is damaged or the lens has stains, and clean or replace it if necessary. The movable components such as the adjusting rotating shaft 4 and the scanning rotating disc 13 are regularly maintained, and lubricating oil is added to ensure that they rotate flexibly

[0079] The above embodiments are only used to illustrate the technical solutions described in the present application and do not limit the technical solutions described in the present application. Although the present application has been described in detail with reference to the above embodiments, the present application is not limited to the above specific embodiments, and any modification or equivalent replacement of the present application; all technical solutions and improvements within the spirit and scope of the present application are covered in the scope of the claims of the present application.

Claims

1. A port equipment operation state Internet of Things real-time monitoring scanning device, comprising an Internet of Things real-time monitoring scanning support (1), a scanning U-shaped frame body (2) is arranged above the Internet of Things real-time monitoring scanning support (1), characterized in that, The scanning U-shaped frame body (2) is provided with a monitoring scanning annular shell (3) between two rods, the monitoring scanning annular shell (3) is embedded with an adjusting rotating shaft (4) on the side, and the adjusting rotating shaft (4) is located at the top end of the two rods of the scanning U-shaped frame body (2), and the scanning shell angle adjusting knob (5) is installed on one side of the adjusting rotating shaft (4).

2. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 1, characterized in that, The monitoring scanning annular shell (3) is fixed with a laser scanning template (6) at the front end, the laser scanning template (6) is installed with a monitoring scanning camera (7) on the front plate, and the monitoring scanning camera (7) is provided with a protective film.

3. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 2, characterized in that, The monitoring scanning camera (7) is installed below the infrared scanning sensor (8), and the monitoring scanning camera (7) and the infrared scanning sensor (8) are connected with the power supply battery in the monitoring scanning annular shell (3) through the power supply line.

4. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 3, characterized in that, The scanning U-shaped frame body (2) is installed below the bottom support rod (9).

5. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 4, characterized in that, The scanning direction indicating disc (10) is nested in the connection end between the Internet of Things real-time monitoring scanning support (1) and the bottom support rod (9), and the scanning direction indicating disc (10) is engraved with scanning direction indicating marks (11) on the top outer edge.

6. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 5, characterized in that, The device maintenance plate (12) is installed on the outer surface of the Internet of Things real-time monitoring scanning support (1).

7. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 6, characterized in that, The scanning rotary disc (13) is rotatably installed at the bottom of the Internet of Things real-time monitoring scanning support (1), and the rotary disc mounting base (14) is connected below the scanning rotary disc (13).

8. The port equipment operating state Internet of Things real-time monitoring scanning device according to claim 7, characterized in that, The protective ring reinforcing connecting rod (15) is embedded on the outer edge above the rotary disc mounting base (14), and the rotary disc protective ring (16) is fixed above the protective ring reinforcing connecting rod (15).