Intelligent machine room 3D visual management device
Through data acquisition, processing and display modules, the problem of the 3D model not being updated in time when equipment changes in the smart computer room and the internal conditions of the cabinet are difficult to understand, and the environmental adjustment and safety management of the smart computer room are realized.
Patent Information
- Application Number
- CN202422131031.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-30
AI Technical Summary
The existing 3D visual management system in smart computer rooms cannot update the cabinet location and equipment changes in time, cannot understand the internal operating conditions of the cabinet, and lacks environmental regulation capabilities.
The data acquisition module is used to collect the 3D model, temperature and humidity, smoke concentration, power and monitoring screen data of the smart computer room, process it through the controller module and store it in the 3D model memory, and read the internal data of the cabinet using the cabinet communication interface module, combine it with the 3D model display module to display it in real time and perform temperature adjustment and fire extinguishing warning through the output control module.
It realizes timely updates of 3D models in the smart computer room and understands the internal conditions of the cabinet, has temperature regulation and fire extinguishing capabilities, and improves the flexibility and safety of computer room environmental management.
Smart Images

Figure CN223140222U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of visualization management equipment, and particularly relates to an intelligent computer room 3D visualization management equipment. Background Technique
[0002] With the accelerating digital transformation of enterprises and organizations, the demand for efficient, safe and reliable server equipment infrastructure has increased sharply. As a key link to support large-scale data storage, processing and transmission, intelligent computer rooms have received extensive attention, and at the same time, it is particularly important to make the intelligent computer rooms operate normally and stably. To make the intelligent computer rooms operate normally and stably, it is necessary to manage various environmental equipment and cabinets in the computer room. Traditional intelligent computer room management equipment cannot meet the management requirements of the computer room.
[0003] The patent with publication number CN215813779U provides an intelligent computer room 3D visualization management system, including: a 3D visualization management platform, which is set to display the computer room scene by using 3D technology; a BI cockpit, which is set to display the asset configuration information and operation status of the computer room; a monitoring platform, which is set to provide the monitoring information of all asset objects in the computer room to the 3D visualization management platform and the BI cockpit; restoring the building where the data center computer room is located, the computer room layout, equipment and network links in 3D form; displaying the data of the system monitoring platform in the form of a BI data cockpit, realizing the combination of the visualization management of equipment and network links in the 3D scene and the data monitoring, dynamic environment monitoring, video monitoring, access control monitoring, asset monitoring and wiring monitoring systems of the BI cockpit, and realizing the real-time monitoring of equipment performance and alarms.
[0004] However, this system cannot meet the timely change of the 3D model when the equipment in the intelligent computer room changes, and at the same time, it is impossible to understand the internal operation status of the cabinets in the intelligent computer room, and there is also a lack of a certain adjustment ability for the intelligent computer room.
[0005] Based on the above problems, there is an urgent need in the field for an intelligent computer room 3D visualization management equipment that can update the model at any time according to the position adjustment of the cabinets in the computer room, manage the internal operation status of the equipment, and have a certain adjustment ability for the intelligent computer room environment. Content of the Utility Model
[0006] The purpose of the utility model is to provide an intelligent computer room 3D visualization management equipment to solve the problems put forward in the above background technique.
[0007] To achieve the above purpose, the utility model provides the following technical solutions:
[0008] An intelligent computer room 3D visualization management equipment, including:
[0009] Data acquisition module, which is electrically connected to the controller module and is used to collect 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring video data in the intelligent computer room and send them to the controller module. The data acquisition module includes a 3D model acquisition module, a temperature and humidity detection module, a smoke detection module, a power detection module, and a camera module. The 3D model acquisition module is used to collect 3D model data in the intelligent computer room. The temperature and humidity detection module is installed in the cabinets within the rooms of the intelligent computer room and is used to detect the temperature and humidity data in the cabinets within the rooms of the intelligent computer room. The smoke detection module is installed in the intelligent computer room and is used to detect the smoke concentration data in the intelligent computer room. The power detection module is installed on the power supply cable in the intelligent computer room and is used to detect the real-time power data of the intelligent computer room. The camera module is used to monitor the real-time video in the intelligent computer room;
[0010] 3D model memory, which is electrically connected to the controller module and is used to store the 3D model data inside the intelligent computer room;
[0011] Controller module, which processes the received 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring video data in the intelligent computer room, reads the internal data of the cabinets in the intelligent computer room through the cabinet communication interface module, and displays the collected data in real time through the 3D model display module, and issues control instructions to the output control module to adjust and give early warnings to the intelligent computer room;
[0012] Cabinet communication interface module, which is electrically connected to the controller module and is used for the controller module to read the internal data of the cabinets in the intelligent computer room;
[0013] 3D model display module, which is electrically connected to the controller module and is used to display the temperature and humidity data, smoke concentration data, power data, monitoring video data in the intelligent computer room, and the internal data of the cabinets in the intelligent computer room in real time in the form of a 3D visualization model;
[0014] Output control module, which is electrically connected to the controller module and is used to adjust the temperature, extinguish fires, and send out warning signals under the control instructions of the controller module.
[0015] In one embodiment, the output control module includes an air-conditioning module, a fire-fighting module, and a warning module. The air-conditioning module is used to adjust the temperature and humidity in the intelligent computer room under the control instructions of the controller module. The fire-fighting module is used to extinguish fires in the intelligent computer room under the control instructions of the controller module. The warning module is used to send out warning signals under the control instructions of the controller module.
[0016] In one embodiment, the cabinet communication interface module includes an RS485 communication interface, an Ethernet communication interface, and a USB communication interface.
[0017] In one embodiment, the fire protection module uses a cabinet-type heptafluoropropane fire extinguishing device.
[0018] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0019] The present utility model collects 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring screen data in the intelligent computer room through a data acquisition module, and sends them to a controller module. The controller module stores the 3D model data in a 3D model memory, and reads the internal data of the cabinets in the intelligent computer room through the cabinet communication interface module. The various received and read data are displayed in real time through a 3D model display module, and the temperature is adjusted, fire extinguishing is carried out, and a warning signal is sent through an output control module according to the collected data information. By collecting the 3D model data in the intelligent computer room through the acquisition module, the problem that the 3D model cannot be changed in time when the equipment in the intelligent computer room changes is effectively solved. At the same time, the internal data of the cabinets in the intelligent computer room is read through the cabinet communication interface module, realizing an understanding of the internal operation status of the cabinets in the intelligent computer room. Through the output control module, the intelligent computer room has a certain temperature adjustment and fire extinguishing ability. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic structural diagram of the system of the present utility model.
[0021] In the figure: 10 acquisition module, 11 3D model acquisition module, 12 temperature and humidity detection module, 13 smoke detection module, 14 power detection module, 15 camera module, 20 3D model memory, 30 controller module, 40 cabinet communication interface module, 50 3D model display module, 60 output control module, 61 air conditioning module, 62 fire protection module, 63 warning module. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0023] Embodiment:
[0024] Please refer to Figure 1 , the present utility model provides a technical solution:
[0025] An intelligent computer room 3D visualization management device, including a data acquisition module 10, a 3D model memory 20, a controller module 30, a cabinet communication interface module 40, a 3D model display module 50, and an output control module 60, where;
[0026] The data acquisition module 10, the data acquisition module 10 is electrically connected to the controller module 30, and is used to collect 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring screen data in the intelligent computer room, and send them to the controller module 30. The data acquisition module 10 includes a 3D model acquisition module 11, a temperature and humidity detection module 12, a smoke detection module 13, a power detection module 14, and a camera module 15. The 3D model acquisition module 11 uses a 3D scanner with the model number Abdo-3W, which can obtain 3D model data of the object structure by scanning the object structure, and is used to collect 3D model data in the intelligent computer room. The temperature and humidity detection module 12 uses a temperature and humidity sensor with the model number CWS19. The temperature and humidity sensor is a sensor device used to measure the temperature and humidity in the environment. Its main function is to monitor and send the current temperature and humidity data of the environment in real time, providing data support for adjusting the temperature and humidity in the computer room. The temperature and humidity detection module 12 is installed in the cabinets in the intelligent computer room and in the rooms, and is used to detect the temperature and humidity data in the cabinets in the intelligent computer room and in the rooms. The smoke detection module 13 uses a smoke sensor with the model number Y7500M. The smoke sensor is a device used to detect the smoke concentration in the air, mainly used to monitor the smoke concentration in the current environment in real time, providing data support for the fire extinguishing module 62 to extinguish fires and the warning module 63 to give warnings. The smoke detection module 13 is installed in the intelligent computer room and is used to detect the smoke concentration data in the intelligent computer room. The power detection module 14 uses an electric energy digital display meter with the model number PD606E, calculates the electric energy data by collecting current and voltage data, and is installed on the power supply cable in the intelligent computer room, and is used to detect the real-time power data of the intelligent computer room. The camera module 15 uses a camera with the model number HH-A1-8, which can collect the monitoring data in the computer room in real time, and is used to monitor the real-time pictures in the intelligent computer room.
[0027] The 3D model memory 20 uses an industrial-grade solid-state drive with the model number P4510. Due to its faster data read and write speed and lower access latency, it can improve the read and write speed of the device for 3D models. It is electrically connected to the controller module 30 and is used to store the 3D model data inside the intelligent computer room.
[0028] The controller module 30 uses an industrial control host with the model number P720 P920 to process the 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring screen data received in the intelligent computer room. It reads the internal data of the cabinets in the intelligent computer room through the cabinet communication interface module 40, and displays the collected data in real time through the 3D model display module 50, and issues control instructions to the output control module 60 to adjust and give early warnings to the intelligent computer room.
[0029] The staff uses the handheld 3D model acquisition module 11 to scan the intelligent computer room and the cabinet equipment in the computer room into a 3D model, and sends the 3D model to the controller module 30. The controller module 30 stores the 3D model of the intelligent computer room after scanning in the 3D model memory 20 for convenient real-time reading of the model. The controller module 30 sends the temperature and humidity data, smoke concentration data, power data, and monitoring screen data collected by the data acquisition module 10 and the 3D model of the intelligent computer room to the 3D model display module 50, and displays the temperature and humidity data, smoke concentration data, power data, and monitoring screen data in a 3D model visualization form in real time. When the environment and spatial layout in the intelligent computer room change, the staff only needs to use the 3D model acquisition module 11 to rescan the intelligent computer room to generate a new model.
[0030] The cabinet communication interface module 40 uses an interface module with the model number 2003U2, which is electrically connected to the controller module 30 and is used for the controller module 30 to read the internal data of the cabinets in the intelligent computer room.
[0031] Further, the cabinet communication interface module 40 includes an RS485 communication interface, an Ethernet communication interface, and a USB communication interface.
[0032] The controller module 30 can also read the internal data of the cabinets in the intelligent computer room through the cabinet communication interface module 40, detect the real-time operating status of each cabinet, so that the staff can understand the operating conditions of the equipment in the cabinet, so as to better adjust the equipment and prevent the equipment from overloading. The rich interfaces of the cabinet communication interface module 40 can adapt to different cabinet models.
[0033] The 3D model display module 50 uses a display screen with the model number GS-N322TP, which is electrically connected to the controller module 30 and is used to display the temperature and humidity data, smoke concentration data, power data, monitoring screen data in the intelligent computer room, and the internal data of the cabinets in the intelligent computer room in the form of a 3D visualization model in real time.
[0034] The output control module 60 is electrically connected to the controller module 30 and is used to adjust the temperature, extinguish fires, and issue early warning signals under the control instructions of the controller module 30.
[0035] Furthermore, the output control module 60 includes an air-conditioning module 61, a fire-fighting module 62, and a warning module 63. The air-conditioning module 61 uses an industrial air conditioner with the model number XAC-25. The air conditioner can adjust and maintain the temperature and humidity in the computer room within an ideal range. The electronic devices in the computer room operate within a relatively stable temperature range to ensure their performance and reliability. Low humidity, however, may increase the risk of electrostatic discharge. The air-conditioning module 61 is used to adjust the temperature and humidity in the intelligent computer room under the control command of the controller module 30. The fire-fighting module 62 uses a fire extinguishing device with the model number GQQ40 / 2.5, which is used to extinguish fires in the intelligent computer room under the control command of the controller module 30. The warning module 63 uses an audible and visual alarm with the model number LTE-1101J. The audible and visual alarm emits a loud sound and a strong flashing light to alert the staff of the occurrence of a dangerous event and is used to send a warning signal under the control command of the controller module 30.
[0036] Furthermore, the fire-fighting module 62 uses a cabinet-type fire extinguishing device filled with heptafluoropropane. Heptafluoropropane does not cause damage to equipment and electronic components during the fire extinguishing process because it is non-conductive, non-corrosive, and does not cause short circuits or oxidation of electronic devices. This makes it particularly suitable for protecting expensive electronic devices, servers, data storage devices, etc. in the computer room.
[0037] The controller module 30 adjusts the temperature and humidity, extinguishes fires, and issues timely warnings in the computer room based on the temperature and humidity data and smoke concentration data collected by the data acquisition module 10 in the intelligent computer room, which increases the adjustment ability and safety of the computer room environment. Since a large number of high-power devices such as servers and hosts are installed in the intelligent computer room, a large amount of heat is generated, causing the temperature in the computer room to rise. The humid and hot environment seriously affects the operating speed of the equipment and may even lead to fires. By adjusting the temperature and humidity in the intelligent computer room within a safe range through the air-conditioning module 61, it is beneficial for the stable operation of the equipment in the computer room. The temperature and humidity detection module 12 installed in the cabinet collects the temperature and humidity of each cabinet to manage the equipment in more detail. The staff further analyzes whether the cabinets with too high temperature are overloaded based on the power consumption data collected by the power detection module 14. When a fire occurs, the smoke detection module 13 detects the smoke and sends a signal to the controller module 30. The controller module 30 controls the fire-fighting module 62 to extinguish the fire and then controls the warning module 63 to issue a warning. Since there are a large number of circuits in the intelligent computer room, a cabinet-type fire extinguishing device filled with heptafluoropropane is used, which will not damage the electronic devices and circuits. When an abnormality is detected, the staff can view it through the camera module 15.
[0038] The working principle of the present utility model: When in use, the present utility model collects 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring screen data in the intelligent computer room through the data acquisition module, and sends them to the controller module. The controller module stores the 3D model data in the 3D model memory, and reads the internal data of the cabinets in the intelligent computer room through the cabinet communication interface module. The controller module displays the latest equipment layout 3D model data collected in the computer room on the 3D model display module, and displays the real-time collected temperature and humidity data, smoke concentration data, power data, and monitoring screen data in the 3D model of the computer room in a 3D form for real-time data monitoring. The controller module adjusts the temperature and humidity in the computer room through the air conditioning module according to the collected temperature and humidity data, conducts fire protection in the computer room through the fire protection module according to whether the smoke concentration data exceeds the safety threshold, and issues a warning signal through the warning module.
[0039] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. An intelligent computer room 3D visualization management device, characterized in that, Including: A data acquisition module (10), which is electrically connected to the controller module (30) and is used to collect 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring screen data in the intelligent computer room and send them to the controller module (30). The data acquisition module (10) includes a 3D model acquisition module (11), a temperature and humidity detection module (12), a smoke detection module (13), a power detection module (14), and a camera module (15). The 3D model acquisition module (11) is used to collect 3D model data in the intelligent computer room. The temperature and humidity detection module (12) is installed in the cabinets in the intelligent computer room and is used to detect the temperature and humidity data in the cabinets in the intelligent computer room. The smoke detection module (13) is installed in the intelligent computer room and is used to detect the smoke concentration data in the intelligent computer room. The power detection module (14) is installed on the power supply cable in the intelligent computer room and is used to detect the real-time power data of the intelligent computer room. The camera module (15) is used to monitor the real-time pictures in the intelligent computer room; A 3D model memory (20), which is electrically connected to the controller module (30) and is used to store the 3D model data inside the intelligent computer room; A controller module (30), which processes the received 3D model data, temperature and humidity data, smoke concentration data, power data, and monitoring screen data in the intelligent computer room, reads the internal data of the cabinets in the intelligent computer room through the cabinet communication interface module (40), and displays the collected data in real time through the 3D model display module (50), and issues control instructions to the output control module (60) to adjust and give early warnings to the intelligent computer room; A cabinet communication interface module (40), which is electrically connected to the controller module (30) and is used for the controller module (30) to read the internal data of the cabinets in the intelligent computer room; A 3D model display module (50), which is electrically connected to the controller module (30) and is used to display the temperature and humidity data, smoke concentration data, power data, monitoring screen data in the intelligent computer room, and the internal data of the cabinets in the intelligent computer room in the form of a 3D visualization model in real time; An output control module (60), which is electrically connected to the controller module (30) and is used to adjust the temperature, extinguish fires, and send out early warning signals under the control instructions of the controller module (30).
2. The intelligent computer room 3D visualization management device according to claim 1, characterized in that: The output control module (60) includes an air-conditioning module (61), a fire-fighting module (62), and an early warning module (63). The air-conditioning module (61) is used to adjust the temperature and humidity in the intelligent computer room under the control instructions of the controller module (30). The fire-fighting module (62) is used to extinguish fires in the intelligent computer room under the control instructions of the controller module (30). The early warning module (63) is used to send out early warning signals under the control instructions of the controller module (30).
3. An intelligent computer room 3D visualization management device according to claim 1, characterized in that: The cabinet communication interface module (40) includes an RS485 communication interface, an Ethernet communication interface, and a USB communication interface.
4. The intelligent computer room 3D visualization management device according to claim 2, wherein: The fire protection module (62) adopts a cabinet-type heptafluoropropane fire extinguishing device.
Citation Information
Patent Citations
Intelligent machine room 3D visual management system
CN215813779U