CN118012185B - Environment intelligent regulation system and control method for machine room construction - Google Patents

Environment intelligent regulation system and control method for machine room construction Download PDF

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Publication number
CN118012185B
CN118012185B CN202410421065.7A CN202410421065A CN118012185B CN 118012185 B CN118012185 B CN 118012185B CN 202410421065 A CN202410421065 A CN 202410421065A CN 118012185 B CN118012185 B CN 118012185B
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electric
monitoring
environment
adjusting
equipment
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CN118012185A (en
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柳红刚
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Datang Shengye Science And Technology Co ltd
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Datang Shengye Science And Technology Co ltd
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Abstract

The invention belongs to the technical field of operating electric devices, and discloses an intelligent environment adjusting system and a control method for machine room construction, wherein the intelligent environment adjusting system comprises a floor, a plurality of first equipment for machine rooms are sequentially arranged at the top of the floor, a ceiling assembly is arranged at the top end of the floor in parallel, and the intelligent environment adjusting system further comprises: the temperature adjusting device is vertically arranged on the top of the floor; the environment adjusting and monitoring equipment is arranged at the bottom of the ceiling assembly and the top of the floor, and is arranged in parallel with the first equipment of the machine room; the operating electric device is connected to the top of the environment adjusting and monitoring equipment; according to the invention, the electric device is controlled to regionally move the environment adjusting and monitoring equipment, so that the environment adjusting and monitoring equipment can comprehensively monitor the internal area of the machine room and monitor a plurality of equipment at a short distance, each environmental parameter in the machine room is effectively mastered, the environment in the machine room can be adjusted in real time according to the environmental parameter, and the number of sensors is small.

Description

Environment intelligent regulation system and control method for machine room construction
Technical Field
The invention belongs to the technical field of operation electric devices, and particularly relates to an environment intelligent regulation system and a control method for machine room construction.
Background
With the development of information technology, the number of computer systems and communication devices is increasing, the scale is also increasing, and central machine rooms, IDCs and the like become core sites for business management of various large units. In order to ensure the safe and normal operation of the machine room, a power system, an environment system, a security system and a fire protection system matched with the machine room are required to stably and coordinately operate at any moment. If the power of the machine room and the environmental equipment are in failure, the computer is down due to light weight, and the data is lost due to heavy weight. Therefore, a system capable of carrying out twenty-four hours of real-time monitoring on a machine room is very important. The machine room environment monitoring is a machine room centralized monitoring system integrating the whole distribution environment of the machine room, and is a complete indoor centralized monitoring system. Is directed at centralized monitoring management of machine room power and environment, and the monitoring object is mainly equipment such as machine room power and environment
Reference: 2017111465025 discloses a control device for remotely controlling an electrical apparatus, comprising an input device and a control panel, the control panel comprising: the operation panel, the user draws the characteristic element of the electrical equipment needing to be controlled on the operation panel by using the input equipment; a capture device located above or below the operation panel, the capture device for capturing the presence of the input device at a location on the operation panel; an identification circuit connected to the capturing device, the identification circuit identifying feature elements drawn on the operation panel by the user through the capturing device, and combining the feature elements to generate an image; and a processing circuit connected to the recognition circuit, the processing circuit judging the electric appliance to be controlled and the control mode thereof based on the generated image, and the user being able to control the electric appliance to be controlled by the control mode. The control device can remotely control different electrical equipment in the home, and the operation steps are simpler.
In this scheme, the control device of the remote control electrical equipment in the patent number is partially adopted, for example, when the plurality of sensors, the temperature adjusting equipment and the humidity adjusting equipment in this scheme operate, the remote electrical operation can be performed through the scheme.
Reference: 2018202667583 discloses a computer lab monitoring devices and system, its device including be used for detecting the environmental parameter's in the computer lab environmental sensing detect the front end, be used for detecting the electric power monitoring front end, signal shielding ware, host computer and the alarm component of electric power parameter in the computer lab, environmental sensing detect the front end, electric power monitoring front end and signal shielding ware respectively with the host computer electricity be connected, the host computer is connected with the alarm component electricity. The environment parameters in the machine room and the electric power parameters in the machine room can be detected in real time respectively through the environment sensing detection front end and the electric power monitoring front end and are automatically sent to the host computer, whether the environment parameters in the machine room and the electric power parameters in the machine room are in a set safety range or not is judged by the host computer, manual input is not needed, the storage is convenient, errors can not occur, the monitoring accuracy and the real-time performance are greatly improved, meanwhile, external interference signals can be shielded through the signal shielding device, and the working stability of equipment in the machine room is improved.
However, in this solution, the environment of the machine room is mostly adjusted by the sensor to adjust the environmental temperature, but there is actually a larger error, and the machine room is generally monitored by the temperature sensor, the humidity sensor, the pressure sensor, the position sensor, etc., when the sensor monitors data and accords with the set data range, the sensor will transmit signals to the PC, and the PC will operate the temperature adjusting device, the humidity adjusting device, etc. in the machine room, so as to control the internal environment of the machine room, but clearly, the monitoring range of the sensor is limited, to be precise, the monitoring range of the sensor is smaller, and the internal devices of the machine room are more and larger, and it is difficult for the smaller number of sensors to accurately monitor each device and each area in the machine room, so that the other end device of the sensor often has temperature deviation, humidity deviation, etc., and the internal device of the machine room is not known in time and is damaged;
In addition, in some situations in the machine room, professional electric engineers or machine room engineers are required to judge factors, solutions and the like of the problems, but certainly, the professional engineers are difficult to monitor a single machine room for twenty-four hours, which certainly wastes human resources greatly;
in summary, the internal environment of the machine room needs to be monitored comprehensively for a long time, and a professional engineer is required to cooperate to confirm and adjust the environment of the machine room, but the existing machine room does not have the characteristics, so that the environment in the machine room and equipment in the machine room cannot be adjusted in time, and the conditions of reducing the service life of the equipment, damaging the equipment and the like occur.
Disclosure of Invention
The invention aims to provide an intelligent environment adjusting system and a control method for machine room construction, which are used for solving the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions: the intelligent environment regulating system for building machine room includes floor board, several first equipment with ceiling assembly in parallel to the top of the floor board, and further includes
The temperature adjusting device is vertically arranged on the top of the floor;
the environment adjusting and monitoring equipment is arranged at the bottom of the ceiling assembly and the top of the floor, and is arranged in parallel with the first equipment of the machine room;
A steering electric device connected to the top of the environmental conditioning and monitoring apparatus, and located on top of the ceiling assembly;
the connecting component is positioned between the environment adjusting and monitoring equipment and the operating electric device, is used for connecting the operating electric device and the environment adjusting and monitoring equipment, and can change the displacement of the environment adjusting and monitoring equipment.
Preferably, a plurality of bearing columns are arranged between the floor and the ceiling assembly, the bearing columns are symmetrically distributed on the floor, and at least one machine room second device is arranged at the top of the floor;
The top of floor is equipped with at least one humidity control equipment, the top of floor is equipped with at least one workstation, temperature control equipment's surface is equipped with the air outlet.
Preferably, the ceiling assembly comprises a plurality of ceiling blocks, the plurality of ceiling blocks are mutually parallel and distributed in an array, a limited moving distance is formed between two adjacent ceiling blocks, the distance between each limited moving distance is consistent, a limiting top plate is arranged in the middle of the top end of each ceiling block, and mounting holes are symmetrically formed in the top ends of the limiting top plates.
Preferably, the connecting assembly comprises a rotating disc seat, a linkage main rod is arranged at the top of the rotating disc seat, the linkage main rod penetrates through a limiting moving distance to be connected with an operating electric device, an L-shaped linkage seat is arranged on one side of the rotating disc seat, a telescopic rod is connected to one side of the L-shaped linkage seat, and the end part of the telescopic rod is connected with an environment adjusting and monitoring device through a longitudinal connecting block.
Preferably, the environment adjusting and monitoring equipment comprises an environment adjusting main board, monitoring shells are symmetrically distributed on two sides of the environment adjusting main board, monitoring cameras are arranged at the bottoms of the monitoring shells, temperature sensors, humidity sensors and pressure sensors are sequentially arranged on the surface of the environment adjusting main board, a smoke detecting bottom shell plate is arranged at the bottom of the environment adjusting main board, a plurality of smoke sensors are arranged on the surface of the smoke detecting bottom shell plate, and a smoke detecting bottom block is arranged at the bottom of the smoke detecting bottom shell plate.
Preferably, the manipulation electric device comprises an electric device shell, an internal cavity is formed in the middle of the electric device shell, two groups of moving mechanisms and auxiliary steering mechanisms are arranged in the internal cavity, each moving mechanism comprises a plurality of electric device top plates, an external linkage frame is connected to the bottom of each electric device top plate through rotation of a steering bottom shaft, an electric moving device is connected to the middle of each external linkage frame in a rotating mode, an electric driving motor is arranged on the outer side wall of each external linkage frame, an output shaft of each electric driving motor is connected with each electric moving device, and after the electric driving motor operates, each electric driving motor drives each electric moving device to rotate.
Preferably, the auxiliary steering mechanism comprises an adjusting long column, a first tooth column is uniformly arranged on one side, close to the top plate of the electric device, of the adjusting long column, an elongated arc plate is arranged on one side, close to the adjusting long column, of the top plate of the electric device, a second tooth column is arranged on the outer wall of the elongated arc plate, the second tooth column is meshed with the first tooth column, a directional rotating shaft is arranged at the top of the elongated arc plate, the top of the directional rotating shaft is connected with the shell of the electric device, and the elongated arc plate performs circular motion with the center of the directional rotating shaft.
Preferably, the top of every regulation long post all is equipped with the second spliced pole, one side of second spliced pole is equipped with the electric control pole, the tip that the second spliced pole was kept away from to the electric control pole is equipped with first spliced pole, just be equipped with the gap between the diapire of first spliced pole and the roof of regulation long post, the top of first spliced pole is connected with electric device shell, be equipped with the gap between second spliced pole and the electric device shell.
Preferably, the two groups of moving mechanisms are symmetrically distributed in the built-in cavity, and the diameter of the shell of the electric device is consistent with the distance between two adjacent limiting top plates;
The electric moving device is positioned on the top wall of the ceiling block, a gap is arranged between the electric device shell and the ceiling block, and the width of the limited moving distance is smaller than the length of the moving mechanism.
The control method of the intelligent environment adjusting system for the construction of the machine room comprises the following steps:
Setting the movement of the environment adjusting and monitoring equipment and monitoring the route track, and automatically moving the environment adjusting and monitoring equipment according to the requirement;
The method comprises the steps of running a plurality of electric driving motors, enabling the electric driving motors to drive the electric moving devices to rotate, enabling the electric moving devices to move on the top wall of the ceiling block, and enabling two groups of electric moving devices to be symmetrically distributed on two sides of a limited moving distance all the time in the moving process;
When the operation electric device moves, the linkage main rod moves together through the movement of the operation electric device, and the linkage main rod always moves within a limited movement distance, so that the operation electric device drives the connecting assembly, the environment adjustment and the monitoring equipment to move;
When the electric device is in a required rotation direction, the auxiliary steering mechanism can be operated, the electric adjusting rod is operated, the electric adjusting rod drives the second connecting column and the adjusting long column to move, and the first tooth column on the adjusting long column is meshed with the second tooth column, so that acting force can be transmitted to the lengthened arc plate, the lengthened arc plate performs circular motion with the circle center of the directional rotating shaft, the displacement of the top plate of the electric device, the electric moving device and the electric driving motor is changed, the state can be seen, the turning of the electric device is more conveniently controlled, and the electric auxiliary operation effect is achieved;
When the electric device is operated to drive the environment adjusting and monitoring equipment to move, the monitoring of the picture in the machine room can be realized through the monitoring camera, so that on one hand, the situation in the machine room can be more clearly watched, the machine room can be flexibly moved, and on the other hand, a certain protection effect can be provided for the environment adjusting main board, so that the environment adjusting main board can avoid obstacles through the monitoring camera;
Different from the traditional fixed sensor, the smoke sensor, the pressure sensor, the humidity sensor and the temperature sensor are integrated on the environment-adjusting main board, the environment-adjusting main board can adjust angles and positions according to use requirements, when the environment-adjusting main board moves to a required monitoring area or before the equipment, the environment-adjusting and monitoring equipment is stopped from moving, so that the environment-adjusting and monitoring equipment is static at the moment, the smoke sensor, the pressure sensor, the humidity sensor and the temperature sensor are operated, various environment parameters such as temperature parameters, humidity parameters and position parameters of the area or the equipment are monitored, the parameters of the area are summarized to a PC end, the temperature-adjusting equipment and the humidity-adjusting equipment are operated through the PC end, the environment parameters in a machine room are restored to the set environment parameter range, and a professional engineer can remotely move the environment-adjusting and monitoring equipment through a connecting component and an electric control device, so that the engineer can remotely monitor the equipment at different positions in the machine room through the environment-adjusting and monitoring equipment, the working efficiency of the engineer is greatly improved, and the manpower resources can be saved.
Compared with the prior art, the invention has the beneficial effects that:
According to the invention, the electric device is controlled to regionally move the environment adjusting and monitoring equipment, so that the environment adjusting and monitoring equipment can comprehensively monitor the internal area of the machine room and monitor a plurality of equipment at a short distance, effectively master various environmental parameters in the machine room, adjust the environment in the machine room according to the environmental parameters in real time, use fewer sensors, integrate the plurality of sensors on the environment adjusting and monitoring equipment, fully play the roles of the sensors, reduce the waste in quantity, and simultaneously monitor more accurate data, timely adjust the positions according to the use requirements, and effectively adjust the environment in the machine room, and is very convenient to use and high in automation degree.
According to the invention, the temperature sensor, the humidity sensor and the pressure sensor can monitor the environmental parameters in each area in the machine room, such as the temperature parameter, the humidity parameter, the position parameter and the like, the parameters of each area are summarized to the PC end, the temperature adjusting equipment and the humidity adjusting equipment are operated through the PC end, so that the monitored environmental parameters in the machine room are restored to the set environmental parameter range, and a professional engineer can remotely move the environmental adjusting and monitoring equipment through the connecting assembly and the operating electric device, so that the engineer can remotely monitor the equipment at different positions in the machine room through the environmental adjusting and monitoring equipment, the working efficiency of the engineer is greatly improved, the condition of the equipment can be remotely monitored and confirmed, and the manpower resource is saved.
The circular motion is done to environmental conditioning mainboard accessible rolling disc seat for the angle of environmental conditioning mainboard can rotate, makes environmental conditioning mainboard monitorable angle more extensive, and the environmental conditioning mainboard accessible telescopic link carries out displacement adjustment, can make environmental conditioning and monitoring facilities remove and monitor during operation, can put position adaptation adjustment displacement according to equipment in the computer lab, has further improved the flexibility, and the staff also can set for the monitoring route that environmental conditioning and monitoring facilities removed, and it is more convenient to use.
The environment adjusting and monitoring equipment is greatly improved in functionality and practicality through the operation electric device, the operation electric device is matched with the ceiling assembly, the operation electric device is composed of two groups of moving mechanisms and auxiliary steering mechanisms, when the environment adjusting and monitoring equipment needs to move, the two groups of moving mechanisms can operate, namely, movement is achieved, and when the operation electric device needs to turn, the auxiliary steering mechanisms can cooperate with the moving mechanisms to steer, so that the moving direction of the operation electric device is changed, the operation electric device, the environment adjusting and monitoring equipment can be moved to any position in a machine room, accurate monitoring of each equipment and each area in the machine room by a small number of sensors is achieved, the conditions of temperature deviation, humidity deviation and the like of data monitored by the sensors are reduced, and the problem that equipment in the machine room is damaged due to the fact that emergency situations are not known in time is solved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
fig. 2 is a perspective view of a first device of the machine room of the present invention;
FIG. 3 is a top view of the ceiling assembly of the present invention;
FIG. 4 is a bottom view of the ceiling assembly of the present invention;
FIG. 5 is a perspective view of a floor of the present invention;
FIG. 6 is a perspective view of the ceiling assembly of the present invention;
FIG. 7 is an exploded view of the environmental conditioning and monitoring apparatus of the present invention;
FIG. 8 is an exploded view of the steering electric device of the present invention;
FIG. 9 is a top view of the housing of the electric device of the present invention;
FIG. 10 is a perspective view of an elongated arcuate plate of the present invention;
FIG. 11 is a perspective view of an adjustable column of the present invention;
FIG. 12 is a schematic view of the top plate of the electric device after turning;
In the figure:
100. A ceiling assembly; 101. a limiting top plate; 102. a mounting hole; 103. ceiling blocks; 104. defining a movement pitch;
200. A first device of the machine room; 201. the second equipment of the machine room;
300. A temperature regulating device; 301. a humidity adjusting device; 302. an air outlet;
400. A floor; 401. a bearing column; 402. a work table;
500. An environmental conditioning and monitoring device; 501. monitoring the outer housing; 502. an environment-adjusting main board; 503. smoke detection bottom shell plate; 504. a smoke detection bottom block; 505. a smoke sensor; 506. a pressure sensor; 507. a humidity sensor; 508. a temperature sensor; 509. monitoring a camera;
600. A connection assembly; 601. a longitudinal connecting block; 602. rotating the disc seat; 603. a linkage main rod; 604. an L-shaped linkage seat; 605. a telescopic rod;
700. Operating the electric device; 701. an electric device housing; 702. a built-in cavity; 703. an electric moving device; 704. an electric drive motor; 705. an external linkage frame; 706. a top plate of the electric device; 707. lengthening the arc plate; 708. adjusting the long column; 709. a first connection post; 710. a directional rotation shaft; 711. a first tooth post; 712. a second tooth post; 713. an electric adjusting rod; 714. a second connection post; 715. and steering the bottom shaft.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1 to 12, the present invention provides a technical solution: the intelligent environment regulating system for building machine room includes floor 400, several first equipment 200 in the top of the floor 400, ceiling assembly 100 in parallel to the top of the floor 400, and further includes
The temperature adjusting device 300 is vertically installed on top of the floor 400;
The environment adjusting and monitoring device 500 is arranged at the bottom of the ceiling assembly 100 and the top of the floor 400, and the environment adjusting and monitoring device 500 is arranged in parallel with the first equipment 200 of the machine room;
Operating motor 700, attached to the top of environmental conditioning and monitoring apparatus 500, and operating motor 700 is located on top of ceiling assembly 100;
The connection assembly 600 is located between the environment adjustment and monitoring apparatus 500 and the manipulation motor 700, and the connection assembly 600 is used to manipulate the connection of the motor 700 and the environment adjustment and monitoring apparatus 500, and the displacement of the environment adjustment and monitoring apparatus 500 can be changed by the connection assembly 600.
According to the invention, the electric device is controlled to regionally move the environment adjusting and monitoring equipment 500, so that the environment adjusting and monitoring equipment 500 can comprehensively monitor the internal area of the machine room and monitor a plurality of equipment at a short distance, effectively master various environmental parameters in the machine room, adjust the environment in the machine room according to the environmental parameters in real time, use fewer sensors, integrate the plurality of sensors on the environment adjusting and monitoring equipment 500, fully play the roles of the sensors, reduce the waste in quantity, monitor more accurate data, timely adjust the position according to the use requirement, and effectively adjust the environment in the machine room.
Environmental parameters in each area in the machine room can be monitored through a temperature sensor 508, a humidity sensor 507 and a pressure sensor 506.
In this embodiment, as shown in fig. 1,2 and 5, preferably, a plurality of bearing columns 401 are disposed between the floor 400 and the ceiling assembly 100, and the bearing columns 401 are symmetrically distributed on the floor 400, and at least one machine room second device 201 is further disposed on top of the floor 400;
at least one humidity adjusting apparatus 301 is provided on the top of the floor 400, at least one working table 402 is provided on the top of the floor 400, and an air outlet 302 is provided on the surface of the temperature adjusting apparatus 300.
After each area and each equipment parameter in the computer lab are monitored to environmental conditioning and monitoring equipment 500, accessible PC end operation temperature regulation equipment 300, humidity control equipment 301 for monitoring environmental parameter resumes in the computer lab and sets for environmental parameter within range, has realized intelligent regulation computer lab environmental parameter, and also can be according to the staff demand, manual regulation environmental conditioning and the position of monitoring equipment 500, the flexibility ratio is higher.
In this embodiment, as shown in fig. 1,2, 3,4 and 6, preferably, the ceiling assembly 100 includes a plurality of ceiling blocks 103, the plurality of ceiling blocks 103 are distributed in parallel in an array, a limited moving distance 104 is formed between two adjacent ceiling blocks 103, the distance between each limited moving distance 104 is consistent, a limiting top plate 101 is disposed in the middle of the top end of each ceiling block 103, and mounting holes 102 are symmetrically disposed at the top ends of the limiting top plates 101.
The distance between two adjacent ceiling blocks 103 in the transverse direction or two adjacent ceiling blocks 103 in the longitudinal direction is defined as a moving distance 104, the distances are consistent, the plurality of ceiling blocks 103 are not only parallel to each other, but also perpendicular to each other, and meanwhile, each ceiling block 103 and the limiting top plate 101 at the top of the ceiling block 103 are of the same structure. And the top structure of the ceiling block 103 can be seen in fig. 6, the bottom wall of the ceiling block 103 is very smooth, and fig. 4 can be seen.
In this embodiment, as shown in fig. 1, 2, 3, 6 and 7, preferably, the connection assembly 600 includes a rotating disc seat 602, a linkage main rod 603 is disposed at the top of the rotating disc seat 602, and the linkage main rod 603 passes through the limiting moving space 104 to be connected with the operating motor 700, an L-shaped linkage seat 604 is disposed at one side of the rotating disc seat 602, a telescopic rod 605 is connected to one side of the L-shaped linkage seat 604, and an end portion of the telescopic rod 605 is connected with the environmental conditioning and monitoring device 500 through a longitudinal connection block 601.
The telescopic link 605 can carry out horizontal length adjustment for environmental conditioning and monitoring facilities 500 can carry out displacement adjustment along with the telescopic link 605, can effectually make environmental conditioning and monitoring facilities 500 be close to equipment more, can also avoid the barrier simultaneously, and when rotating disk seat 602 is rotatory, also can drive environmental conditioning and monitoring facilities 500 and rotate in the same place, make environmental conditioning and monitoring facilities 500 can be according to the position of putting of equipment, shape adaptation is adjusted, make environmental conditioning mainboard 502 can monitor the angle more extensive, make environmental conditioning and monitoring facilities 500 more convenient, nimble be close to computer lab first equipment 200, computer lab second equipment 201, carry out accurate environmental monitoring, and carry environmental monitoring parameter to the PC end, further the flexibility has been improved, the staff also can set for environmental conditioning and monitoring facilities 500 removal's monitoring route, and is more convenient to use.
In this embodiment, preferably, as shown in fig. 1, fig. 2, fig. 3, fig. 6, and fig. 7, the environment adjusting and monitoring device 500 includes an environment adjusting main board 502, two sides of the environment adjusting main board 502 are symmetrically distributed with monitoring outer shells 501, a monitoring camera 509 is disposed at the bottom of each monitoring outer shell 501, a temperature sensor 508, a humidity sensor 507, and a pressure sensor 506 are sequentially disposed on the surface of the environment adjusting main board 502, a smoke detecting bottom shell 503 is disposed at the bottom of the environment adjusting main board 502, a plurality of smoke sensors 505 are disposed on the surface of the smoke detecting bottom shell 503, and a smoke detecting bottom block 504 is disposed at the bottom of the smoke detecting bottom shell 503.
The monitoring to the picture in the computer lab can be realized through monitoring camera 509, on the one hand can more clear watch the condition in the computer lab to can remove in a flexible way, on the other hand can provide certain protection effect to environment regulation mainboard 502, make environment regulation mainboard 502 avoid the barrier through monitoring camera 509.
Unlike the conventional stationary sensor, the smoke sensor 505, the pressure sensor 506, the humidity sensor 507, and the temperature sensor 508 are integrated on the environment adjustment main board 502, and the environment adjustment main board 502 can adjust angles and positions according to usage requirements, when the environment adjustment main board 502 moves to a required monitoring area or before equipment, the movement of the environment adjustment and monitoring equipment 500 is stopped, so that the environment adjustment and monitoring equipment 500 is stationary at this time, and the smoke sensor 505, the pressure sensor 506, the humidity sensor 507, and the temperature sensor 508 are operated, so as to monitor various environmental parameters of the area or the equipment, such as temperature parameters, humidity parameters, position parameters, and the like, and collect various area parameters to a PC end, and operate the temperature adjustment equipment 300 and the humidity adjustment equipment 301 through the PC end, so that the monitored environmental parameters in the machine room are restored to a set environmental parameter range, and a professional engineer can remotely move the environment adjustment and monitoring equipment 500 through the connection assembly 600 and the operation of the electric device 700, so that the engineer can remotely monitor equipment at different positions in the machine room through the environment adjustment and the monitoring equipment 500, the work efficiency of the engineer is greatly increased, and the condition of the engineering engineer can be confirmed, and the human resources can be saved.
In this embodiment, preferably, as shown in fig. 1, 2, 6, 7, 8, 9, 10, 11 and 12, the operating electric device 700 includes an electric device housing 701, a built-in cavity 702 is formed in the middle of the electric device housing 701, two groups of moving mechanisms and auxiliary steering mechanisms are disposed in the built-in cavity 702, the moving mechanisms include a plurality of electric device top plates 706, the bottom of the electric device top plates 706 is rotationally connected with an external linkage frame 705 through a steering bottom shaft 715, the middle of the external linkage frame 705 is rotationally connected with an electric moving device 703, an outer side wall of the external linkage frame 705 is provided with an electric driving motor 704, and an output shaft of the electric driving motor 704 is connected with the electric moving device 703, when the electric driving motor 704 runs, the electric driving motor 704 drives the electric moving device 703 to rotate.
As shown in fig. 10, a set of moving mechanisms actually consists of four electric device top plates 706, an external linkage frame 705, an electric moving device 703 and an electric driving motor 704, and two sets of moving mechanisms are symmetrically distributed in the electric device housing 701, so that the movement of the electric device housing 701 is realized, and the electric device housing 701 is in symmetrical equipment, so that the center of gravity of the electric device housing 701 is relatively stable.
The output shaft of the electric driving motor 704 and the electric moving devices 703 are arranged in the same center of a circle, and each electric moving device 703 is provided with an independent electric driving motor 704, so that horsepower of each electric moving device 703 is large, and a certain electric driving motor 704 is damaged immediately, so that the equipment can normally move.
The operating motor device 700 greatly improves the functionality and the practicability of the environment adjusting and monitoring equipment 500, the operating motor device 700 is matched with the ceiling assembly 100 for use, the operating motor device 700 is composed of two groups of moving mechanisms and auxiliary steering mechanisms, when the environment adjusting and monitoring equipment 500 needs to move, the two groups of moving mechanisms can operate to realize movement, and when the operating motor device 700 needs to turn, the auxiliary steering mechanisms are matched with the moving mechanisms to steer, so that the moving direction of the operating motor device 700 is changed, the operating motor device 700 and the environment adjusting and monitoring equipment 500 can be moved to any position in a machine room, accurate monitoring of each equipment and each area in the machine room by a small number of sensors is realized, the conditions of temperature deviation, humidity deviation and the like of data monitored by the sensors are reduced, and the problem that the equipment in the machine room is damaged due to the fact that sudden conditions are not known in time is solved.
In fact, the manipulating motor 700 and the environmental conditioning and monitoring device 500 only move in the area of the ceiling assembly 100, that is, the linkage main rod 603 moves in the gap formed by the limiting movement distance 104, so that the movement route of the linkage main rod 603 is a straight line or two perpendicular straight lines, and the movement route of the linkage main rod 603 has no curve, so that the movement track of the manipulating motor 700 and the environmental conditioning and monitoring device 500 on the ceiling assembly 100 is very concise and clear, and the movement of the environmental conditioning and monitoring device 500 is more convenient.
In this embodiment, preferably, as shown in fig. 1, fig. 2, fig. 6, fig. 7, fig. 8, fig. 9, fig. 10, fig. 11, and fig. 12, the auxiliary steering mechanism includes an adjusting long column 708, a first tooth column 711 is uniformly disposed on a side of the adjusting long column 708 near the electric device top plate 706, an elongated arc 707 is disposed on a side of the electric device top plate 706 near the adjusting long column 708, a second tooth column 712 is disposed on an outer wall of the elongated arc 707, the second tooth column 712 is engaged with the first tooth column 711, an orientation rotation shaft 710 is disposed at a top of the elongated arc 707, and the top of the orientation rotation shaft 710 is connected with the electric device housing 701, and the elongated arc 707 performs a circular motion around a center of the orientation rotation shaft 710.
When the electric device 700 is operated to turn, the electric adjusting rod 713 can be operated, the electric adjusting rod 713 drives the second connecting post 714 and the adjusting long post 708 to move, and the first tooth post 711 on the adjusting long post 708 is meshed with the second tooth post 712, so that the acting force can be transmitted to the lengthened arc plate 707, and the lengthened arc plate 707 moves circularly around the center of the directional rotating shaft 710, so that the displacement of the top plate 706, the electric moving device 703 and the electric driving motor 704 of the electric device is changed, and the state can be seen in fig. 12, so that the turning of the electric device 700 is more conveniently operated, and the effect of electric auxiliary operation is achieved.
In this embodiment, as shown in fig. 1,2, 6,7, 8, 9, 10, 11 and 12, the top of each adjusting column 708 is provided with a second connecting column 714, one side of the second connecting column 714 is provided with an electric adjusting rod 713, the end of the electric adjusting rod 713 far away from the second connecting column 714 is provided with a first connecting column 709, a gap is arranged between the bottom wall of the first connecting column 709 and the top wall of the adjusting column 708, the top of the first connecting column 709 is connected with the electric device housing 701, and a gap is arranged between the second connecting column 714 and the electric device housing 701.
The first connection post 709 is fixed on the housing 701 of the electric device, and the second connection post 714 is fixed with the adjustment long post 708, so that when the electric adjustment lever 713 is expanded or contracted, the second connection post 714 and the adjustment long post 708 can be driven to move together; meanwhile, two groups of second connecting posts 714 and electric adjusting posts 713 and 719 can be arranged on the adjusting long posts 708, and the two groups of moving effects are better.
In this embodiment, as shown in fig. 6, preferably, the two sets of moving mechanisms are symmetrically distributed in the built-in cavity 702, and the diameter of the housing 701 of the electric device is consistent with the distance between the two adjacent limiting top plates 101.
The electric device housing 701 is always located between the two limiting top plates 101, and the distance between the two limiting top plates 101 is consistent with the diameter of the electric device housing 701, so that when the electric device housing 701 moves on the ceiling assembly 100, the adjacent two limiting top plates 101 can also have a limiting effect on the electric device housing 701.
In this embodiment, the electric moving device 703 is preferably located on the top wall of the ceiling block 103, a gap is provided between the electric device housing 701 and the ceiling block 103, and the width of the defined moving space 104 is smaller than the length of the moving mechanism.
So that when the electric moving device 703 rotates, the electric moving device can move on the top wall of the ceiling block 103, and the gap between the electric device housing 701 and the ceiling block 103 can enable the electric moving device 703 not to contact with the electric moving device 703 when moving, so that the normal movement of the electric moving device 703 is not affected.
The control method of the intelligent environmental regulation system for the construction of the machine room is characterized by comprising the following steps of: comprising the following steps:
Setting the movement of the environment adjusting and monitoring device 500, monitoring the route track, and automatically moving the environment adjusting and monitoring device 500 according to the requirement;
running a plurality of electric driving motors 704, so that the electric driving motors 704 drive the electric moving devices 703 to rotate, the plurality of electric moving devices 703 move on the top wall of the ceiling block 103, and in the moving process, two groups of electric moving devices 703 are symmetrically distributed on two sides defining a moving distance 104 all the time;
When the operation motor 700 moves, the linkage main rod 603 moves together through the movement of the operation motor 700, and the linkage main rod 603 always moves within the limited movement distance 104, so that the operation motor 700 drives the connection assembly 600 and the environment adjustment and monitoring device 500 to move by the ceiling block 103;
When the electric steering device moves in the required rotation direction, the auxiliary steering mechanism can be operated, the electric adjusting rod 713 is operated, the electric adjusting rod 713 drives the second connecting post 714 and the adjusting long post 708 to move, and the first tooth post 711 on the adjusting long post 708 is meshed with the second tooth post 712, so that acting force can be transmitted to the lengthened arc-shaped plate 707, and the lengthened arc-shaped plate 707 performs circular motion with the center of the directional rotation shaft 710, so that the displacement of the top plate 706 of the electric device, the electric moving device 703 and the electric driving motor 704 is changed, and the state can be seen in fig. 12, and at the moment, the turning of the electric device 700 is more conveniently operated, and the effect of electric auxiliary operation is achieved;
when the electric device 700 is operated to drive the environment adjusting and monitoring equipment 500 to move, the monitoring of the picture in the machine room can be realized through the monitoring camera 509, so that on one hand, the situation in the machine room can be more clearly watched, the machine room can be flexibly moved, and on the other hand, a certain protection effect can be provided for the environment adjusting main board 502, so that the environment adjusting main board 502 can avoid obstacles through the monitoring camera 509;
unlike the conventional stationary sensor, the smoke sensor 505, the pressure sensor 506, the humidity sensor 507, and the temperature sensor 508 are integrated on the environment adjustment main board 502, and the environment adjustment main board 502 can adjust angles and positions according to usage requirements, when the environment adjustment main board 502 moves to a required monitoring area or before equipment, the movement of the environment adjustment and monitoring equipment 500 is stopped, so that the environment adjustment and monitoring equipment 500 is stationary at this time, and the smoke sensor 505, the pressure sensor 506, the humidity sensor 507, and the temperature sensor 508 are operated, so as to monitor various environmental parameters of the area or the equipment, such as temperature parameters, humidity parameters, position parameters, and the like, and collect various area parameters to a PC end, and operate the temperature adjustment equipment 300 and the humidity adjustment equipment 301 through the PC end, so that the monitored environmental parameters in the machine room are restored to a set environmental parameter range, and a professional engineer can remotely move the environment adjustment and monitoring equipment 500 through the connection assembly 600 and the operation of the electric device 700, so that the engineer can remotely monitor equipment at different positions in the machine room through the environment adjustment and the monitoring equipment 500, the work efficiency of the engineer is greatly increased, and the condition of the engineering engineer can be confirmed, and the human resources can be saved.
The above description is only for the purpose of illustrating the technical solution of the present invention and not for the purpose of limiting the same, and other modifications and equivalents thereof by those skilled in the art should be included in the scope of the claims of the present invention without departing from the spirit and scope of the technical solution of the present invention.

Claims (6)

1. Environment intelligent regulation system that computer lab construction was used, including floor (400), the top on floor (400) is equipped with a plurality of computer lab first equipment (200) in proper order, the top parallel on floor (400) is equipped with ceiling subassembly (100), its characterized in that: further comprises:
a temperature adjusting device (300) vertically installed on top of the floor (400);
the environment adjusting and monitoring device (500) is arranged at the bottom of the ceiling assembly (100) and the top of the floor (400), and the environment adjusting and monitoring device (500) is arranged in parallel with the first equipment (200) of the machine room;
a steering motor (700) connected to the top of the environmental conditioning and monitoring apparatus (500), and the steering motor (700) is located on the top of the ceiling assembly (100);
The connecting assembly (600) is positioned between the environment adjusting and monitoring equipment (500) and the operating electric device (700), and the connecting assembly (600) is used for connecting the operating electric device (700) and the environment adjusting and monitoring equipment (500) and can change the displacement of the environment adjusting and monitoring equipment (500) through the connecting assembly (600);
The connecting assembly (600) comprises a rotating disc seat (602), a linkage main rod (603) is arranged at the top of the rotating disc seat (602), the linkage main rod (603) penetrates through a limiting moving distance (104) to be connected with an operating motor device (700), an L-shaped linkage seat (604) is arranged on one side of the rotating disc seat (602), a telescopic rod (605) is connected on one side of the L-shaped linkage seat (604), and the end part of the telescopic rod (605) is connected with an environment adjusting and monitoring device (500) through a longitudinal connecting block (601);
The steering electric device (700) comprises an electric device shell (701), an internal cavity (702) is formed in the middle of the electric device shell (701), two groups of moving mechanisms and auxiliary steering mechanisms are arranged in the internal cavity (702), each moving mechanism comprises a plurality of electric device top plates (706), the bottoms of the electric device top plates (706) are rotationally connected with an external linkage frame (705) through a steering bottom shaft (715), the middle of the external linkage frame (705) is rotationally connected with an electric moving device (703), an electric driving motor (704) is arranged on the outer side wall of the external linkage frame (705), an output shaft of the electric driving motor (704) is connected with the electric moving device (703), and after the electric driving motor (704) runs, the electric driving motor (704) drives the electric moving device (703) to rotate;
The auxiliary steering mechanism comprises an adjusting long column (708), a first tooth column (711) is uniformly arranged on one side, close to an electric device top plate (706), of the adjusting long column (708), an elongated arc plate (707) is arranged on one side, close to the adjusting long column (708), of the electric device top plate (706), a second tooth column (712) is arranged on the outer wall of the elongated arc plate (707), the second tooth column (712) is meshed with the first tooth column (711), an oriented rotating shaft (710) is arranged at the top of the elongated arc plate (707), the top of the oriented rotating shaft (710) is connected with an electric device shell (701), and the elongated arc plate (707) moves circularly around the center of the oriented rotating shaft (710);
The top of every regulation long post (708) all is equipped with second spliced pole (714), one side of second spliced pole (714) is equipped with electric control pole (713), the tip that second spliced pole (714) was kept away from to electric control pole (713) is equipped with first spliced pole (709), just be equipped with the gap between the diapire of first spliced pole (709) and the roof of regulation long post (708), the top of first spliced pole (709) is connected with electric device shell (701), be equipped with the gap between second spliced pole (714) and electric device shell (701).
2. The intelligent environmental conditioning system for building a machine room according to claim 1, wherein: a plurality of bearing columns (401) are arranged between the floor (400) and the ceiling assembly (100), the bearing columns (401) are symmetrically distributed on the floor (400), and at least one machine room second device (201) is further arranged at the top of the floor (400);
The top of the floor (400) is provided with at least one humidity adjusting device (301), the top of the floor (400) is provided with at least one workbench (402), and the surface of the temperature adjusting device (300) is provided with an air outlet (302).
3. The intelligent environmental conditioning system for building a machine room according to claim 2, wherein: the ceiling assembly (100) comprises a plurality of ceiling blocks (103), the plurality of ceiling blocks (103) are distributed in an array in parallel, a limiting moving distance (104) is formed between two adjacent ceiling blocks (103), the distance between each limiting moving distance (104) is identical, a limiting top plate (101) is arranged in the middle of the top end of each ceiling block (103), and mounting holes (102) are symmetrically formed in the top end of each limiting top plate (101).
4. The intelligent environmental conditioning system for building a machine room according to claim 3, wherein: environmental conditioning and monitoring facilities (500) are including environmental conditioning mainboard (502), the both sides symmetric distribution of environmental conditioning mainboard (502) has monitoring shell body (501), and the bottom of every monitoring shell body (501) all is equipped with monitoring camera (509), the surface of environmental conditioning mainboard (502) is equipped with temperature sensor (508), humidity transducer (507), pressure sensor (506) in proper order, the bottom of environmental conditioning mainboard (502) is equipped with smog detection bottom shell plate (503), the surface of smog detection bottom shell plate (503) is equipped with a plurality of smog sensor (505), the bottom of smog detection bottom shell plate (503) is equipped with smog detection bottom block (504).
5. The intelligent environmental conditioning system for building a machine room according to claim 4, wherein: the two groups of moving mechanisms are symmetrically distributed in the built-in cavity (702), and the diameter of the electric device shell (701) is consistent with the distance between two adjacent limiting top plates (101);
The electric moving device (703) is positioned on the top wall of the ceiling block (103), a gap is arranged between the electric device shell (701) and the ceiling block (103), and the width of the limiting moving distance (104) is smaller than the length of the moving mechanism.
6. The control method of the intelligent environmental conditioning system for building a machine room according to claim 5, wherein: comprising the following steps:
Setting the movement of the environment adjusting and monitoring equipment (500) and monitoring the route track, and automatically moving the environment adjusting and monitoring equipment (500) according to the requirement;
Operating a plurality of electric driving motors (704), so that the electric driving motors (704) drive the electric moving devices (703) to rotate, the plurality of electric moving devices (703) move on the top wall of the ceiling block (103), and in the moving process, the two groups of electric moving devices (703) are symmetrically distributed on two sides of a limited moving distance (104) all the time;
when the operation motor device (700) moves, the linkage main rod (603) moves together through the movement of the operation motor device (700), and the linkage main rod (603) always moves within a limited movement distance (104), so that the operation motor device (700) drives the connecting assembly (600) and the environment adjusting and monitoring equipment (500) to move;
When the direction of rotation is required to move, the auxiliary steering mechanism can be operated, the electric adjusting rod (713) is operated, the electric adjusting rod (713) drives the second connecting column (714) and the adjusting long column (708) to move, and the first tooth column (711) on the adjusting long column (708) is meshed with the second tooth column (712), so that acting force can be transmitted to the lengthened arc plate (707), the lengthened arc plate (707) performs circular motion with the center of the directional rotating shaft (710), the displacement of the top plate (706), the electric moving device (703) and the electric driving motor (704) of the electric device is changed, and the turning of the electric device (700) is more conveniently controlled at the moment, and the effect of electric auxiliary operation is achieved;
When the electric device (700) is operated to drive the environment adjusting and monitoring equipment (500) to move, the monitoring of the picture in the machine room can be realized through the monitoring camera (509), so that on one hand, the situation in the machine room can be more clearly watched, the machine room can be flexibly moved, and on the other hand, a certain protection effect can be provided for the environment adjusting main board (502), so that the environment adjusting main board (502) can avoid obstacles through the monitoring camera (509);
unlike conventional stationary sensors, smoke sensor (505), pressure sensor (506), humidity sensor (507), temperature sensor (508) are integrated on environment adjustment motherboard (502), and environment adjustment motherboard (502) can adjust angle, position according to the user demand, when environment adjustment motherboard (502) moves to the demand monitoring area or before the equipment, stop the movement of environment adjustment and monitoring equipment (500), make environment adjustment and monitoring equipment (500) static this moment, and operate smoke sensor (505), pressure sensor (506), humidity sensor (507), temperature sensor (508), thereby realize the various environmental parameters of monitoring this area or this equipment: temperature parameter, humidity parameter, position parameter to summarize each regional parameter to the PC end, and through PC end operation temperature regulation equipment (300), humidity control equipment (301), make monitoring environment parameter resumes to the settlement environment parameter within range in the computer lab, and professional engineer accessible coupling assembling (600), control electric device (700) carry out long-range mobile environment regulation and monitoring facilities (500), make the engineer can be long-range through environment regulation and monitoring facilities (500) monitor the equipment in different positions in the computer lab, very big increase engineer's work efficiency, but remote monitoring and the condition of confirming equipment, manpower resources are saved.
CN202410421065.7A 2024-04-09 Environment intelligent regulation system and control method for machine room construction Active CN118012185B (en)

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Application Number Priority Date Filing Date Title
CN202410421065.7A CN118012185B (en) 2024-04-09 Environment intelligent regulation system and control method for machine room construction

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Application Number Priority Date Filing Date Title
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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104267697A (en) * 2014-09-28 2015-01-07 任红 Following-type environmental parameter monitoring system of workshop
CN106643892A (en) * 2016-12-13 2017-05-10 天津鹰联科技有限公司 Power environment sensor monitoring system based on technology of internet of things
JP2018105550A (en) * 2016-12-27 2018-07-05 株式会社日立製作所 Environment regulation system, movable body
CN214147342U (en) * 2020-12-21 2021-09-07 大唐盛业科技股份有限公司 Safety device for machine room construction
CN117405178A (en) * 2023-12-15 2024-01-16 成都电科星拓科技有限公司 Mobile monitoring platform and method for automatically detecting indoor environment parameters

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104267697A (en) * 2014-09-28 2015-01-07 任红 Following-type environmental parameter monitoring system of workshop
CN106643892A (en) * 2016-12-13 2017-05-10 天津鹰联科技有限公司 Power environment sensor monitoring system based on technology of internet of things
JP2018105550A (en) * 2016-12-27 2018-07-05 株式会社日立製作所 Environment regulation system, movable body
CN214147342U (en) * 2020-12-21 2021-09-07 大唐盛业科技股份有限公司 Safety device for machine room construction
CN117405178A (en) * 2023-12-15 2024-01-16 成都电科星拓科技有限公司 Mobile monitoring platform and method for automatically detecting indoor environment parameters

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