A multi-source information fusion gateway device

By designing a multi-source information fusion gateway device and adopting gas circulation, pure water cooling and humidification measures, the problem of short service life of the gateway in high temperature and high humidity environments is solved, the stable operation of the equipment at appropriate temperature and humidity is achieved, and the reliability is improved.

CN119996867BActive Publication Date: 2025-10-03CIVIL AVIATION AIR TRAFFIC CONTROL TECH EQUIP DEVELO
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Patent Information

Application Number
CN202510160673.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-10-03
Estimated Expiration
2045-02-13

AI Technical Summary

Technical Problem

Existing gateway devices have a short service life in high temperature and high humidity environments such as airports, are prone to problems such as corrosion and short circuits, and cannot meet security monitoring needs.

Method used

A multi-source information fusion gateway device was designed, which includes a mounting plate, a gateway body, a sealing component, a box, a cooling component, a humidification component and a circulation component. Through gas circulation, pure water cooling and humidification measures, the gateway body is kept working within the appropriate temperature and humidity range.

Benefits of technology

It effectively extends the service life of the gateway device, ensures normal operation in high temperature and high humidity environments, avoids corrosion and static electricity problems of electrical components, and improves the reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a multi-source information fusion gateway device, which relates to the field of gateway technology and includes: a mounting plate, a rubber plate provided on the top of the mounting plate; a gateway body, the gateway body being placed on the top of the rubber plate; two sealing assemblies, the two sealing assemblies being respectively fixed on the two side walls of the mounting plate, the two sealing assemblies both being in contact with the two side walls of the gateway body having ventilation holes; and a first box body, the first box body being provided above the gateway body, the two sealing assemblies both being connected to the first box body. When the humidity in the gateway body is low, the present invention can also, through the action of a circulation assembly and in conjunction with a humidifying assembly, inject a very small amount of pure water in the second box body into the first box body in the form of water mist, and the humidifying assembly further evaporates the water mist, thereby increasing the humidity in the gateway body and avoiding contact between liquid water and electrical components in the gateway body, thereby ensuring that the gateway body can operate normally.
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Description

Technical Field

[0001] The present invention relates to the field of gateway technology, and in particular to a multi-source information fusion gateway device. Background Art

[0002] In order to improve security monitoring capabilities and reduce blind spots in monitoring, a large number of video surveillance equipment are generally installed in places such as airports. In order to centrally display the image information collected by multiple video surveillance devices, a gateway is required to fuse the information. When processing a large amount of information, the gateway generally generates more calculations, so it requires higher heat dissipation requirements. For this purpose, a multi-source information fusion gateway device is provided.

[0003] In the prior art, most general gateway devices only use the built-in cooling fan of the gateway for heat dissipation during operation. Since airports use a large number of gateways and they are generally placed in a relatively concentrated location, the ambient temperature of the gateways is also relatively high. In addition, due to the influence of weather, the humidity of the location where the gateways are placed is uncontrollable. Electrical components will experience corrosion and short circuits when working in a high humidity environment. When the humidity is low, the electrical components will generate static electricity, which directly causes the gateway to malfunction. Therefore, most gateway devices in the prior art have a short service life. Due to the importance of video surveillance at airports, gateways with a short service life cannot meet the needs of airports. Summary of the Invention

[0004] The purpose of the present invention is to provide a multi-source information fusion gateway device to solve the technical problems in the prior art.

[0005] The present invention provides a multi-source information fusion gateway device, comprising:

[0006] A mounting plate, with a rubber plate provided on the top of the mounting plate;

[0007] a gateway body, the gateway body being placed on top of the rubber plate;

[0008] Two sealing assemblies, the two sealing assemblies are respectively fixed on the two side walls of the mounting plate, and the two sealing assemblies are in conflict with the two side walls of the gateway body where the ventilation holes are provided;

[0009] A first box body, the first box body is arranged above the gateway body, the two sealing assemblies are both connected to the first box body, and the two side walls of the first box body are fixed with adjustment assemblies, the two adjustment assemblies are both fixed to the two sealing assemblies, and the two adjustment assemblies are used to adjust the distance between the two sealing assemblies;

[0010] a second box body, the second box body being fixed to the top of the first box body, the top of the first box body and the bottom of the second box body both being provided with rectangular holes, the same partition being fixed in the two rectangular holes, the second box body being used to hold purified water, the top of the second box body being provided with a water filling hole, the top of the second box body being hinged with a sealing plate near the water filling hole, and the bottom of the second box body being fixed with a baffle;

[0011] Two cooling assemblies, the two cooling assemblies being arranged on two side walls of the second box body, and the two cooling assemblies being used for cooling the pure water;

[0012] Two heat-conducting components, the two heat-conducting components are respectively fixed at both sides of the bottom of the partition, and both heat-conducting components pass through the top of the partition;

[0013] A humidifying component is disposed in the first housing and is used to adjust the humidity in the gateway body;

[0014] A circulation component is provided in the second box body, the circulation component is connected to the humidification component, and the circulation component is used to drive the pure water circulation in the second box body.

[0015] Preferably, the sealing assembly comprises:

[0016] A hose, the hose being provided through the side wall of the first box body;

[0017] A sealing box, the sealing box is fixedly connected to the end of the hose, and a sealing strip is fixed to the side wall of the sealing box;

[0018] Two connecting components are fixed to the bottom of the sealing box, and both connecting components are fixed to the mounting plate.

[0019] Preferably, the connection assembly includes:

[0020] A guide rail fixed to a side wall of the mounting plate;

[0021] A slider, wherein the slider is slidably connected to the guide rail, and two springs are provided on the top of the slider, and both springs are fixed to the sealing box;

[0022] A circular hole is provided on the top of the slider, a connecting shaft is slidably arranged in the circular hole, and the connecting shaft and the sealing box are fixed.

[0023] Preferably, the adjustment component includes:

[0024] A mounting block, the mounting block being fixed to the side wall of the first box body, the side wall of the mounting block being provided with a fixing hole;

[0025] A double-axis cylinder is fixed in a fixing hole, and both telescopic ends of the double-axis cylinder are fixed with ear plates, and the two ear plates are respectively fixed to two sealing boxes.

[0026] Preferably, the cooling assembly comprises:

[0027] A cover body, wherein the cover body is fixed to a side wall of the second box body, and a connecting hole is formed on the side wall of the second box body;

[0028] A semiconductor refrigeration sheet, wherein the semiconductor refrigeration sheet is fixed in the connecting hole;

[0029] A first fin and a second fin, wherein the first fin is fixed to the hot end of the semiconductor refrigeration plate, and the second fin is fixed to the cold end of the semiconductor refrigeration plate;

[0030] A cleaning assembly is fixed to the inner wall of the cover and is used for cleaning the first fin;

[0031] A plurality of square tubes are provided, each of the square tubes is obliquely penetrated on the side wall of the cover body, and a first fan is fixed on the side wall of each square tube.

[0032] Preferably, the cleaning component comprises:

[0033] An electric slide and a connecting seat, wherein the electric slide is fixed to the top inner wall of the cover, and the connecting seat is fixed to the bottom inner wall of the cover;

[0034] A connecting block, the connecting block being fixed on the moving end of the electric slide, and the connecting block and the connecting seat being slidably connected;

[0035] The plate body is fixed to the connecting block, and the side wall of the plate body is fixed with multiple cleaning units.

[0036] Preferably, the cleaning unit comprises:

[0037] Two fixing plates, both of which are fixed to the plate body;

[0038] Two sponge blocks, the two sponge blocks and two fixing plates are fixed relative to the side walls.

[0039] Preferably, the heat conducting component comprises:

[0040] a third fin, the third fin being fixed to the bottom of the partition;

[0041] A plurality of heat pipes are fixed to the partition, and the plurality of heat pipes pass through the top of the partition.

[0042] Preferably, the humidifying component comprises:

[0043] A connecting pipe is fixed to the bottom of the partition and passes through the top of the partition, and a solenoid valve is fixed to the top of the connecting pipe;

[0044] A connecting seat, which is fixed to the bottom end of the connecting pipe and is connected to the connecting pipe;

[0045] A plurality of atomizing nozzles, wherein the plurality of atomizing nozzles are all provided through the bottom of the connecting seat;

[0046] The frame is fixed at the bottom of the partition and contacts the inner wall of the second box. A mesh is fixed on the inner wall of the frame. A plurality of second fans are fixed on both side walls of the frame.

[0047] Preferably, the circulation component comprises:

[0048] A sleeve, wherein the sleeve is fixed on the top of the solenoid valve, and the solenoid valve and the sleeve are in communication;

[0049] a piston, the piston being slidably disposed in the sleeve;

[0050] A transmission rod, the transmission rod being fixed to the top of the piston;

[0051] Two first one-way valves, both of which are arranged through the bottom of the side wall of the sleeve, and the output ends of the two first one-way valves are fixed with water supply pipes;

[0052] Two connecting pipes, the two connecting pipes are connected to the two water supply pipes respectively, and each connecting pipe is provided with two groups of multiple through holes distributed vertically;

[0053] Two second one-way valves, both of which are disposed through the side wall of the sleeve;

[0054] Two support plates, both of which are fixed to the sleeve, wherein a guide rod is fixed to one of the support plates, and the guide rod is fixed to the inner wall of the top of the second box body, and a double-axis lead screw is rotatably provided on the other support plate, and the double-axis lead screw is rotatably connected to the inner wall of the top of the second box body;

[0055] A connecting plate, wherein the connecting plate and the guide rod are slidably connected, and the connecting plate and the transmission rod are fixed, a mounting hole is opened on one side of the top of the connecting plate, a shaft sleeve is fixed in the mounting hole, and the double-axis lead screw passes through the shaft sleeve;

[0056] The motor is fixed on the top of the second box body, and the output shaft of the motor is fixed to the double-axis lead screw.

[0057] Compared with the prior art, the present invention has the following beneficial effects:

[0058] (1) The present invention can realize the promotion of gas circulation in the first box through the operation of the humidifying component by setting the first box, the second box, the heat conducting component and the humidifying component, and realize the gas circulation in the gateway body and the first box in conjunction with the sealing component. The air temperature in the first box can be the same as the water temperature in the second box through the heat conducting component and the pure water in the second box. Since the specific heat capacity of water is large, it can ensure that the air temperature in the gateway body is within the normal range for a long time when the cooling component is not working.

[0059] (2) The present invention can realize that during use, the circulation component, the cooling component and the humidifying component are provided, and the circulation of the pure water in the second box can be promoted through the operation of the circulation component to ensure that the pure water in the second box can be cooled quickly and evenly when the cooling component is working. In addition, when the humidity in the gateway body is low, the circulation component can be used in conjunction with the humidifying component to inject a very small amount of pure water in the second box into the first box in the form of water mist, and the water mist is further evaporated by the humidifying component to increase the humidity in the gateway body, and avoid contact between liquid water and electrical components in the gateway body, thereby ensuring that the gateway body can work normally. BRIEF DESCRIPTION OF THE DRAWINGS

[0060] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the specific embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0061] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;

[0062] Figure 2 It is a schematic diagram of the mounting plate and guide rail structure of the present invention;

[0063] Figure 3 This is a schematic diagram of the explosion structure of the connecting shaft and the circular hole of the present invention;

[0064] Figure 4 It is a schematic cross-sectional structural diagram of the second box body of the present invention;

[0065] Figure 5 It is a schematic diagram of the heat pipe and partition structure of the present invention;

[0066] Figure 6 is a schematic diagram of the third fin and baffle structure of the present invention;

[0067] Figure 7 This is a schematic diagram of the exploded structure of the frame and the second fan of the present invention;

[0068] Figure 8 It is a schematic diagram of the cross-sectional structure of the sleeve of the present invention;

[0069] Figure 9 It is a schematic structural diagram of the cleaning unit of the present invention.

[0070] Reference numerals:

[0071] 1. Gateway body; 2. First box; 3. Second box; 4. Baffle; 5. Cover; 6. Square tube; 7. First fan; 8. Mounting block; 9. Dual-axis cylinder; 10. Ear plate; 11. Sealing box; 12. Sealing strip; 13. Hose; 14. Guide rail; 15. Slider; 16. Motor; 17. Sealing plate; 18. Mounting plate; 19. Rubber sheet; 20. Spring; 21. Round hole; 22. Connecting shaft; 23. Semiconductor cooling plate; 24. First fin; 25. Second fin; 26. Connecting seat; 27. Heat pipe; 2 8. Partition; 29. ​​Sleeve; 30. Connecting pipe; 31. Through hole; 32. Water supply pipe; 33. Connecting plate; 34. Guide rod; 35. Double-axis screw; 36. Third fin; 37. Connecting seat; 38. Atomizing nozzle; 39. Second fan; 40. Frame; 41. Mesh; 42. Bushing; 43. First one-way valve; 44. Second one-way valve; 45. Solenoid valve; 46. Connecting pipe; 47. Transmission rod; 48. Piston; 49. Electric slide; 50. Connecting block; 51. Plate; 52. Fixing plate; 53. Sponge block. DETAILED DESCRIPTION

[0072] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0073] The components of the embodiments of the present invention generally described and shown in the drawings herein may be arranged and designed in a variety of different configurations. Therefore, the following detailed description of the embodiments of the invention provided in the drawings is not intended to limit the scope of the claimed invention, but merely represents selected embodiments of the invention.

[0074] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative work shall fall within the scope of protection of the present invention.

[0075] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0076] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0077] The following combination Figures 1 to 9 As shown, an embodiment of the present invention provides a multi-source information fusion gateway device, including:

[0078] A mounting plate 18, with a rubber plate 19 provided on top of the mounting plate 18;

[0079] The gateway body 1 is placed on top of the rubber plate 19;

[0080] Two sealing components, the two sealing components are respectively fixed on the two side walls of the mounting plate 18, and the two sealing components are in conflict with the two side walls of the gateway body 1 where the ventilation holes are provided;

[0081] The first box body 2 is arranged above the gateway body 1. The two sealing assemblies are both connected to the first box body 2. Adjustment assemblies are fixed to the two side walls of the first box body 2. The two adjustment assemblies are fixed to the two sealing assemblies and are used to adjust the distance between the two sealing assemblies.

[0082] The second box body 3 is fixed to the top of the first box body 2. A rectangular hole is opened on the top of the first box body 2 and the bottom of the second box body 3. The same partition 28 is fixed in the two rectangular holes. The second box body 3 is used to hold pure water. A water filling hole is opened on the top of the second box body 3. A sealing plate 17 is hinged on the top of the second box body 3 near the water filling hole. A baffle 4 is fixed to the bottom of the second box body 3;

[0083] Two cooling assemblies, which are arranged on two side walls of the second box 3 and are used to cool the pure water;

[0084] Two heat-conducting components, the two heat-conducting components are respectively fixed on both sides of the bottom of the partition 28, and both heat-conducting components pass through the top of the partition 28;

[0085] A humidifying component is provided in the first box 2 and is used to adjust the humidity in the gateway body 1;

[0086] The circulation component is arranged in the second box body 3, the circulation component is connected to the humidification component, and the circulation component is used to drive the pure water circulation in the second box body 3.

[0087] During the operation of the circulation component, the flow of the pure water in the second box 3 can be effectively promoted, so that the pure water in the second box 3 can be evenly cooled when the cooling component is working;

[0088] During the operation of the circulation component, if it is necessary to increase the temperature in the gateway body 1, a small amount of pure water in the second box 3 can be input into the first box 2 in the form of water mist by accelerating the operation of the component, and combined with the air flow circulation to increase the humidity in the gateway body 1, thereby ensuring that the various electrical components in the gateway body 1 can operate under appropriate temperature and humidity conditions, thereby increasing the service life of the gateway body 1.

[0089] Furthermore, the sealing assembly includes:

[0090] The hose 13 is provided through the side wall of the first box body 2;

[0091] The sealing box 11 is fixedly connected to the end of the hose 13, and a sealing strip 12 is fixed to the side wall of the sealing box 11;

[0092] Two connecting components, both of which are fixed to the bottom of the sealing box 11 , and both of which are fixed to the mounting plate 18 .

[0093] Furthermore, the connection component includes:

[0094] Guide rail 14, guide rail 14 is fixed to the side wall of mounting plate 18;

[0095] The slider 15 is slidably connected to the guide rail 14. Two springs 20 are provided on the top of the slider 15, and the two springs 20 are fixed to the sealing box 11;

[0096] The circular hole 21 is opened on the top of the slider 15 . A connecting shaft 22 is slidably provided in the circular hole 21 , and the connecting shaft 22 and the sealing box 11 are fixed.

[0097] The sealing box 11 can move up and down by the action of the spring 20 and the sliding between the connecting shaft 22 and the circular hole 21 . Therefore, after the gateway body 1 is installed, the gateway body 1 can be kept fixed by the action of the spring 20 .

[0098] Furthermore, the adjustment component includes:

[0099] Mounting block 8, the mounting block 8 is fixed to the side wall of the first box body 2, and the side wall of the mounting block 8 is provided with a fixing hole;

[0100] The double-axis cylinder 9 is fixed in the fixing hole. Both telescopic ends of the double-axis cylinder 9 are fixed with ear plates 10, and the two ear plates 10 are respectively fixed to the two sealing boxes 11.

[0101] Turn on the switches of the two double-axis cylinders 9. When the two double-axis cylinders 9 are working, the ear plates 10 on the telescopic ends of the double-axis cylinders 9 separate the two sealing boxes 11 from each other, and then pull the second box body 3 upward. The spring 20 is extended and contracted to make the baffle 4 on the first box body 2 move away from the gateway body 1, and the gateway body 1 can be removed. The new gateway body 1 is placed on the rubber plate 19, and the second box body 3 is loosened. Under the action of the spring 20, the baffle 4 on the first box body 2 is squeezed on the top of the gateway body 1 to fix the gateway body 1. The two double-axis cylinders 9 work again to make the two sealing boxes 11 approach each other. In the process of the two sealing boxes 11 approaching each other, the sealing strip 12 contacts the side wall of the gateway body 1 to achieve sealing between the sealing box 11 and the ventilation hole on the gateway body 1. Finally, the wiring harness is inserted into the new gateway body 1 to achieve quick replacement of the gateway body 1.

[0102] Furthermore, the cooling assembly includes:

[0103] The cover body 5 is fixed to the side wall of the second box body 3, and the side wall of the second box body 3 is provided with a connecting hole;

[0104] Semiconductor refrigeration sheet 23, the semiconductor refrigeration sheet 23 is fixed in the connecting hole;

[0105] A first fin 24 and a second fin 25, wherein the first fin 24 is fixed to the hot end of the semiconductor refrigeration plate 23, and the second fin 25 is fixed to the cold end of the semiconductor refrigeration plate 23;

[0106] A cleaning assembly is fixed on the inner wall of the cover 5 and is used to clean the first fin 24;

[0107] A plurality of square tubes 6 are provided obliquely and penetrate the side wall of the cover body 5 , and a first fan 7 is fixed to the side wall of each square tube 6 .

[0108] Furthermore, the cleaning component includes:

[0109] The electric slide 49 and the connecting seat 26 are fixed to the top inner wall of the cover 5 and the connecting seat 26 is fixed to the bottom inner wall of the cover 5;

[0110] The connecting block 50 is fixed on the moving end of the electric slide 49, and the connecting block 50 is slidably connected to the connecting seat 26;

[0111] The plate body 51 is fixed to the connecting block 50 , and a plurality of cleaning units are fixed on the side wall of the plate body 51 .

[0112] Furthermore, the cleaning unit includes:

[0113] Two fixing plates 52, both of which are fixed to the plate body 51;

[0114] The two sponge blocks 53 and the two fixing plates 52 are fixed relative to the side walls.

[0115] As the working time increases, dust is inevitably attached to the first fin 24, affecting the cooling effect of the pure water in the second box 3. When cleaning the first fin 24, it is necessary to turn on the switch of the electric slide 49, and then cooperate with the sliding between the connecting seat 26 and the connecting block 50. The connecting block 50 is driven to move by the electric slide 49. During the movement of the connecting block 50, the fixed plate 52 is driven to move through the plate body 51, and then the sponge block 53 on the fixed plate 52 moves along the surface of the first fin 24. The dust on the surface of the first fin 24 can be cleaned by the sponge block 53.

[0116] Furthermore, the heat conducting component includes:

[0117] The third fin 36 is fixed to the bottom of the partition 28;

[0118] The plurality of heat pipes 27 are all fixed to the partition 28 , and the plurality of heat pipes 27 pass through the top of the partition 28 .

[0119] Through the action of the heat pipe 27, the temperature of the third fin 36 is close to the temperature of the pure water in the second box 3. Since water has a high specific heat capacity, the pure water in the second box 3 can maintain the air temperature in the gateway body 1 within a suitable range.

[0120] Furthermore, the humidification component includes:

[0121] The connecting pipe 46 is fixed to the bottom of the partition 28 and passes through the top of the partition 28. The solenoid valve 45 is fixed to the top of the connecting pipe 46;

[0122] The connecting seat 37 is fixed to the bottom end of the connecting pipe 46, and the connecting seat 37 and the connecting pipe 46 are connected;

[0123] Multiple atomizing nozzles 38, each of which is disposed through the bottom of the connecting seat 37;

[0124] The frame 40 is fixed to the bottom of the partition 28 and contacts the inner wall of the second box 3 . A mesh 41 is fixed on the inner wall of the frame 40 . A plurality of second fans 39 are fixed on both side walls of the frame 40 .

[0125] Furthermore, the loop component includes:

[0126] Sleeve 29, sleeve 29 is fixed on the top of the solenoid valve 45, and the solenoid valve 45 and sleeve 29 are in communication;

[0127] A piston 48 is slidably disposed within the sleeve 29;

[0128] Transmission rod 47, transmission rod 47 is fixed to the top of piston 48;

[0129] Two first one-way valves 43, both of which are arranged through the bottom of the side wall of the sleeve 29, and the output ends of the two first one-way valves 43 are fixed with water supply pipes 32;

[0130] Two connecting pipes 30, the two connecting pipes 30 are connected to the two water supply pipes 32 respectively, and each connecting pipe 30 is provided with two groups of multiple through holes 31 distributed vertically;

[0131] Two second one-way valves 44, both of which are disposed through the side wall of the sleeve 29;

[0132] Two support plates, both of which are fixed to the sleeve 29, a guide rod 34 is fixed to one of the support plates, and the guide rod 34 is fixed to the top inner wall of the second box body 3, and a double-axis screw 35 is rotatably provided on the other support plate, and the double-axis screw 35 is rotatably connected to the top inner wall of the second box body 3;

[0133] The connecting plate 33 is slidably connected to the guide rod 34 and fixed to the transmission rod 47. A mounting hole is provided on one side of the top of the connecting plate 33. A shaft sleeve 42 is fixed in the mounting hole, and the dual-axis lead screw 35 passes through the shaft sleeve 42.

[0134] The motor 16 is fixed on the top of the second box body 3, and the output shaft of the motor 16 and the double-axis screw 35 are fixed.

[0135] When the motor 16 is working, it drives the double-axis screw 35 to rotate, and cooperates with the work of the sleeve 42 to make the connecting plate 33 reciprocate up and down. During the up and down reciprocating motion, the connecting plate 33 drives the piston 48 to reciprocate up and down through the transmission rod 47. During the rising process of the piston 48, the pure water in the second box 3 enters the sleeve 29 through the second one-way valve 44. During the descending process of the piston 48, the pure water in the sleeve 29 is input into the two water supply pipes 32 through the two first one-way valves 43, and enters the two connecting pipes 30. Through the two groups of multiple through holes 31 on the connecting pipes 30, the water flows through the surface of the second fin 25, and then the pure water circulates in the second box 3 to ensure that the temperature of the pure water in the second box 3 is evenly distributed, so as to achieve the cooling effect of the gateway body 1;

[0136] When the humidity in the gateway body 1 is too low, it is necessary to turn on the switch of the solenoid valve 45. After that, as the piston 48 descends, part of the pure water in the sleeve 29 enters the connecting seat 37 through the solenoid valve 45 and the connecting pipe 46, and is sprayed out through the atomizing nozzle 38. The water mist output by the atomizing nozzle 38 adheres to the mesh 41 along with the air flow and evaporates along with the air flow to increase the gas humidity in the gateway body 1.

[0137] The specific working method is: when in use, it is necessary to install a temperature and humidity sensor inside the gateway body 1, and connect this device and the temperature and humidity sensor to the control microcontroller to form an automatic control system;

[0138] When the gateway body 1 is in operation, the two sets of second fans 39 work to form airflow in the first box 2. Together with the two sets of hoses 13, the sealing box 11, and the sealing strip 12, air circulation is formed in the gateway body 1, thereby utilizing the airflow to drive the gas flow in the gateway body 1.

[0139] During the above process, the heat pipe 27 allows the temperature of the third fin 36 to approach the temperature of the purified water in the second tank 3. Since water has a high specific heat capacity, the purified water in the second tank 3 can maintain the temperature in the gateway body 1 within a suitable range. When the temperature output by the temperature and humidity sensor in the gateway body 1 is high, the control system turns on the semiconductor cooling plate 23 and the first fan 7.

[0140] When the semiconductor cooling chip 23 is working, the heat of the purified water in the second box 3 is transferred to the first fins 24 through the second fins 25. The operation of the first fan 7 generates airflow in the cover 5 to remove the heat of the first fins 24, thereby reducing the temperature of the purified water in the second box 3 and further reducing the temperature in the gateway body 1.

[0141] At the same time, the switch of the motor 16 is turned on. When the motor 16 is working, it drives the double-axis screw 35 to rotate, and cooperates with the work of the sleeve 42 to make the connecting plate 33 reciprocate up and down. During the up and down reciprocating motion, the connecting plate 33 drives the piston 48 to reciprocate up and down through the transmission rod 47. During the rising process of the piston 48, the pure water in the second box 3 enters the sleeve 29 through the second one-way valve 44. During the descending process of the piston 48, the pure water in the sleeve 29 is input into the two water supply pipes 32 through the two first one-way valves 43, and enters the two connecting pipes 30. Through the two groups of multiple through holes 31 on the connecting pipes 30, the water flows through the surface of the second fin 25, thereby making the pure water circulate in the second box 3 to ensure that the temperature of the pure water in the second box 3 is evenly distributed, so as to achieve the cooling effect of the gateway body 1;

[0142] As the working time increases and the humidity in the environment becomes lower, the humidity in the gateway body 1 will also be affected. When the humidity in the gateway body 1 is too low, the solenoid valve 45 needs to be turned on. Thereafter, as the piston 48 descends, part of the pure water in the sleeve 29 enters the connecting seat 37 through the solenoid valve 45 and the connecting pipe 46 and is sprayed out through the atomizing nozzle 38. The water mist output by the atomizing nozzle 38 adheres to the mesh 41 along with the air flow and evaporates with the air flow, thereby increasing the humidity of the gas in the gateway body 1.

[0143] During operation, if a problem occurs with the gateway body 1 and the gateway body 1 needs to be replaced, all wiring harnesses on the gateway body 1 are unplugged, and then the switches of the two dual-axis cylinders 9 are turned on. When the two dual-axis cylinders 9 are working, the ear plates 10 on the telescopic ends of the dual-axis cylinders 9 separate the two sealing boxes 11 from each other. Then, the second box body 3 is pulled upward, and the baffle 4 on the first box body 2 is moved away from the gateway body 1 through the expansion and contraction of the spring 20. The gateway body 1 can be removed, and the new gateway body 1 is placed on top of the rubber plate 19. The second box body 3 is loosened, and the baffle 4 on the first box body 2 is driven by the spring 20 to squeeze the top of the gateway body 1 to fix the gateway body 1. The two dual-axis cylinders 9 are used again to make the two sealing boxes 11 approach each other. During the process of the two sealing boxes 11 approaching each other, the sealing strip 12 contacts the side wall of the gateway body 1 to achieve sealing between the sealing box 11 and the ventilation hole on the gateway body 1. Finally, the wiring harness is inserted into the new gateway body 1 to achieve quick replacement of the gateway body 1.

[0144] As the working time increases, dust is inevitably attached to the first fin 24, affecting the cooling effect of the pure water in the second box 3. When cleaning the first fin 24, it is necessary to turn on the switch of the electric slide 49, and then cooperate with the sliding between the connecting seat 26 and the connecting block 50. The connecting block 50 is driven to move by the electric slide 49. During the movement of the connecting block 50, the fixed plate 52 is driven to move through the plate body 51, and then the sponge block 53 on the fixed plate 52 moves along the surface of the first fin 24. The dust on the surface of the first fin 24 can be cleaned by the sponge block 53.

[0145] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A multi-source information fusion gateway device, characterized in that: include: A mounting plate (18), wherein a rubber plate (19) is provided on the top of the mounting plate (18); A gateway body (1), the gateway body (1) being placed on top of the rubber plate (19); Two sealing assemblies, the two sealing assemblies are respectively fixed on two side walls of the mounting plate (18), and the two sealing assemblies are in contact with two side walls of the gateway body (1) where the ventilation holes are provided; A first box (2), the first box (2) being arranged above the gateway body (1), the two sealing assemblies being in communication with the first box (2), the two side walls of the first box (2) being fixed with adjustment assemblies, the two adjustment assemblies being fixed to the two sealing assemblies, and the two adjustment assemblies being used to adjust the distance between the two sealing assemblies; A second box body (3), the second box body (3) is fixed on the top of the first box body (2), the top of the first box body (2) and the bottom of the second box body (3) are both provided with rectangular holes, the same partition (28) is fixed in the two rectangular holes, the second box body (3) is used to contain pure water, the top of the second box body (3) is provided with a water filling hole, the top of the second box body (3) is hinged with a sealing plate (17) near the water filling hole, and the bottom of the second box body (3) is fixed with a baffle (4); Two cooling assemblies, the two cooling assemblies being arranged on two side walls of the second box (3), and the two cooling assemblies being used for cooling pure water; Two heat-conducting components, the two heat-conducting components are respectively fixed at two sides of the bottom of the partition (28), and the two heat-conducting components both pass through the top of the partition (28); A humidifying component, the humidifying component being arranged in the first box (2), and the humidifying component being used to adjust the humidity in the gateway body (1); A circulation component is provided in the second box (3), the circulation component is connected to the humidification component, and the circulation component is used to drive the pure water circulation in the second box (3).

2. A multi-source information fusion gateway device according to claim 1, characterized in that: The sealing assembly comprises: A hose (13), the hose (13) being arranged through the side wall of the first box (2); A sealing box (11), wherein the sealing box (11) is fixedly connected to the end of the hose (13), and a sealing strip (12) is fixed to the side wall of the sealing box (11); Two connecting assemblies are fixed to the bottom of the sealing box (11), and both connecting assemblies are fixed to the mounting plate (18).

3. A multi-source information fusion gateway device according to claim 2, characterized in that: The connection component includes: A guide rail (14), wherein the guide rail (14) is fixed to a side wall of the mounting plate (18); A slider (15), wherein the slider (15) is slidably connected to the guide rail (14), and two springs (20) are provided on the top of the slider (15), and both springs (20) are fixed to the sealing box (11); A circular hole (21) is provided on the top of the slider (15), a connecting shaft (22) is slidably arranged in the circular hole (21), and the connecting shaft (22) and the sealing box (11) are fixed.

4. A multi-source information fusion gateway device according to claim 1, characterized in that: The adjustment component includes: A mounting block (8), the mounting block (8) being fixed on a side wall of the first box body (2), and the side wall of the mounting block (8) being provided with a fixing hole; A double-axis cylinder (9) is fixed in a fixing hole, and both telescopic ends of the double-axis cylinder (9) are fixed with ear plates (10), and the two ear plates (10) are respectively fixed to two sealing boxes (11).

5. The multi-source information fusion gateway device according to claim 1, characterized in that: The cooling assembly comprises: A cover body (5), wherein the cover body (5) is fixed on a side wall of the second box body (3), and a connecting hole is provided on the side wall of the second box body (3); A semiconductor refrigeration sheet (23), wherein the semiconductor refrigeration sheet (23) is fixed in the connection hole; A first fin (24) and a second fin (25), wherein the first fin (24) is fixed on the hot end of the semiconductor refrigeration plate (23), and the second fin (25) is fixed on the cold end of the semiconductor refrigeration plate (23); A cleaning assembly, the cleaning assembly being fixed on the inner wall of the cover body (5), and the cleaning assembly being used for cleaning the first fin (24); A plurality of square tubes (6) are provided, each of the square tubes (6) being obliquely penetrated on the side wall of the cover body (5), and a first fan (7) is fixed to the side wall of each square tube (6).

6. A multi-source information fusion gateway device according to claim 5, characterized in that: The cleaning component includes: An electric slide (49) and a connecting seat (26), wherein the electric slide (49) is fixed to the top inner wall of the cover (5), and the connecting seat (26) is fixed to the bottom inner wall of the cover (5); A connecting block (50), wherein the connecting block (50) is fixed on the moving end of the electric slide (49), and the connecting block (50) and the connecting seat (26) are slidably connected; A plate body (51) is fixed to the connecting block (50), and a plurality of cleaning units are fixed on the side wall of the plate body (51).

7. A multi-source information fusion gateway device according to claim 6, characterized in that: The cleaning unit comprises: Two fixing plates (52), both of the fixing plates (52) are fixed to the plate body (51); Two sponge blocks (53), the two sponge blocks (53) and the two fixing plates (52) are fixed relative to the side walls.

8. The multi-source information fusion gateway device according to claim 1, characterized in that: The heat conducting component comprises: a third fin (36), the third fin (36) being fixed to the bottom of the partition (28); A plurality of heat pipes (27) are provided, wherein the plurality of heat pipes (27) are all fixed to the partition (28), and the plurality of heat pipes (27) all pass through the top of the partition (28).

9. The multi-source information fusion gateway device according to claim 1, characterized in that: The humidifying component comprises: A connecting pipe (46), the connecting pipe (46) is fixed to the bottom of the partition (28), and the connecting pipe (46) passes through the top of the partition (28), and a solenoid valve (45) is fixed to the top of the connecting pipe (46); A communication seat (37), wherein the communication seat (37) is fixed to the bottom end of the communication pipe (46), and the communication seat (37) and the communication pipe (46) are in communication; A plurality of atomizing nozzles (38), wherein the plurality of atomizing nozzles (38) are all disposed through the bottom of the connecting seat (37); A frame (40) is fixed to the bottom of the partition (28), and the frame (40) contacts the inner wall of the second box (3). A mesh (41) is fixed on the inner wall of the frame (40), and a plurality of second fans (39) are fixed on both side walls of the frame (40).

10. The multi-source information fusion gateway device according to claim 9, characterized in that: The loop components include: A sleeve (29), wherein the sleeve (29) is fixed on the top of the solenoid valve (45), and the solenoid valve (45) and the sleeve (29) are in communication; a piston (48) slidably disposed within the sleeve (29); a transmission rod (47), wherein the transmission rod (47) is fixed to the top of the piston (48); Two first one-way valves (43), both of which are arranged through the bottom of the side wall of the sleeve (29), and the output ends of the two first one-way valves (43) are fixed with water supply pipes (32); Two connecting pipes (30), the two connecting pipes (30) are respectively connected to the two water supply pipes (32), and each connecting pipe (30) is provided with two groups of multiple through holes (31) distributed vertically; Two second one-way valves (44), both of which are disposed through the side wall of the sleeve (29); Two support plates, both of which are fixed to the sleeve (29), a guide rod (34) is fixed on one of the support plates, and the guide rod (34) is fixed to the top inner wall of the second box body (3), and a double-axis screw (35) is rotatably provided on the other support plate, and the double-axis screw (35) is rotatably connected to the top inner wall of the second box body (3); A connecting plate (33), wherein the connecting plate (33) and the guide rod (34) are slidably connected, and the connecting plate (33) and the transmission rod (47) are fixed, and a mounting hole is opened on one side of the top of the connecting plate (33), a shaft sleeve (42) is fixed in the mounting hole, and a double-axis lead screw (35) passes through the shaft sleeve (42); A motor (16) is fixed on the top of the second box body (3), and the output shaft of the motor (16) and the double-axis lead screw (35) are fixed.

Citation Information

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