An intelligent transmitting antenna and adjustment system based on wireless communication
By designing protection, detection and adjustment of the structure on the antenna, the problem of easy damage and installation difficulties in extreme weather is solved, and the durability and efficient installation of the antenna are achieved.
Patent Information
- Application Number
- CN202111200590.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-10-14
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2041-10-14
AI Technical Summary
Existing antennas are prone to damage in extreme weather conditions, have high installation heights and are inconvenient for detection and adjustment, resulting in shortened service life and low installation efficiency.
An intelligent transmitting antenna system based on wireless communication is designed, including a protection structure, a detection structure and a detachable adjustment structure. The protection structure protects the antenna through the shield part and the buffer ring, the detection structure detects the installation status through the pressure sensor and the alarm, and the adjustment structure adjusts the installation height and position through the clamping part and the hydraulic cylinder.
Protect the antenna in harsh environments, extend the service life, and ensure normal installation status through the detection structure, and improve installation efficiency.
Smart Images

Figure CN113937485B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of antenna technology, and in particular to an intelligent transmitting antenna for wireless communication and an adjustment system thereof. Background Art
[0002] The signal transmitter uses an antenna to radiate electromagnetic waves, and the signal receiver uses an antenna to sense electromagnetic waves. Therefore, no matter what kind of communication system, as long as it adopts wireless transmission, it must use an antenna.
[0003] Existing antennas are directly exposed to the outside. When exposed to extreme weather conditions, the antennas are easily damaged due to the lack of protective structures. In addition, due to the high installation height, it is difficult to detect the installation status of the antennas, and the normal operation of the antennas cannot be guaranteed, which shortens the service life of the antennas. In addition, during installation, it is difficult to adjust and install the antennas, resulting in low installation efficiency. In view of this, in-depth research on the above-mentioned issues has led to the creation of this case. Summary of the Invention
[0004] The purpose of the present invention is to solve the above-mentioned problems. An intelligent transmitting antenna and adjustment system for wireless communication are designed to solve the problems that the existing antenna is directly exposed to the outside. When in extreme weather conditions, the antenna is easily damaged due to the lack of a protective structure. In addition, due to the high installation height, it is inconvenient to detect the installation status of the antenna, which cannot ensure the normal use of the antenna and shortens the service life of the antenna. In addition, it is inconvenient to adjust and install the antenna during installation, resulting in low installation efficiency.
[0005] The technical solution of the present invention to achieve the above-mentioned purpose is: an intelligent transmitting antenna for wireless communication and an adjustment system, comprising a base, an antenna body provided on the base, a protective structure provided on the antenna body, a detection structure provided on the protective structure, and an adjustment structure provided on the base;
[0006] The protective structure includes: a connecting portion, a first fixing seat, a first motor, a first screw rod, a first slider, two slide slots, two travel switches and a protective cover portion;
[0007] The connecting part is installed on the antenna body, the first fixing seat is installed on the connecting part, the first motor is installed on the first fixing seat, the first screw rod is movably inserted into the first fixing seat, and one end of the first screw rod is connected to the driving end of the first motor, the first slider is movably sleeved on the first screw rod, the two slide grooves are symmetrically opened on the first fixing seat, the two limit switches are symmetrically installed on one of the two slide grooves, and the protective cover is installed on the first slider.
[0008] Preferably, the shield portion comprises: two cross bars, two rotating rods, two outer covers, four buffer rings, two telescopic components, two power components and two ventilation components;
[0009] The two cross bars respectively pass through the two slide grooves, and the two cross bars are installed on the side wall of the first slider, the two rotating rods are respectively movably installed on one end of the two cross bars, the two outer covers are respectively installed on one end of the two rotating rods, four arc-shaped notches are symmetrically opened on the two outer covers, four buffer rings are respectively installed on the four arc-shaped notches, the two telescopic components are installed on the two cross bars and the two rotating rods, the two power components are respectively installed on the two telescopic components, and the two ventilation components are respectively installed on the inner wall of the two outer covers.
[0010] Preferably, the connecting portion includes: a first connecting plate, a second connecting plate, a plurality of first bolts, a plurality of first nuts and a plurality of springs;
[0011] The first connecting plate is installed on the antenna body, the second connecting plate is installed on the first fixing seat, a plurality of the first bolts are inserted into the first connecting plate and the second connecting plate at equal distances, a plurality of the first nuts are respectively fitted on a plurality of the first bolts, a plurality of the springs are respectively fitted on a plurality of the first bolts, and the plurality of the springs are all located between the first connecting plate and the second connecting plate.
[0012] Preferably, the telescopic assembly includes: a slide rail, a mounting seat, a rotating sleeve and a fixed column;
[0013] The slide rail is embedded in the side wall of the rotating rod, the mounting seat is movably mounted on the lower wall of the cross bar, the rotating sleeve is inserted into the lower wall of the mounting seat through a bearing, the fixed column is movably inserted into the rotating sleeve through a thread, and one end of the fixed column is movably mounted on the movable end of the slide rail.
[0014] Preferably, the power assembly includes: a driven ring gear, a second motor and a driving gear;
[0015] The driven gear ring is sleeved on the rotating sleeve, the second motor is mounted on the lower wall of the mounting seat, the driving gear is sleeved on the driving end of the second motor, and the driving gear and the driven gear ring are meshed with each other.
[0016] Preferably, the ventilation assembly includes: a plurality of ventilation holes and a dustproof pad;
[0017] A plurality of ventilation holes are arranged at equal distances on the outer cover, and the dustproof pad is installed on the inner wall surface of the outer cover.
[0018] Preferably, the detection structure includes: two concave seats, a plurality of cylinders, a plurality of pressure sensors and an alarm;
[0019] The two concave seats are symmetrically installed on the inner wall surfaces of the two outer covers, the cylinders are symmetrically installed in pairs on the two concave seats, the pressure sensors are installed on the telescopic ends of the cylinders, and the alarm is installed on the antenna body.
[0020] Preferably, the adjustment structure includes: a mounting portion, a second fixing seat, a third motor, a second screw rod, two second sliders and a clamping portion;
[0021] The mounting portion is mounted on the upper wall of the base, the second fixing seat is mounted on the mounting portion, the third motor is mounted on the second fixing seat, the second screw rod is movably inserted into the second fixing seat, and one end of the second screw rod is connected to the driving end of the third motor, the two second sliders are movably mounted on the second screw rod, and the clamping portion is mounted on the two second sliders.
[0022] Preferably, the clamping portion comprises: a mounting plate, a plurality of hydraulic cylinders and a plurality of vacuum suction cups;
[0023] The mounting plate is mounted on the two second sliding blocks, a plurality of the hydraulic cylinders are symmetrically mounted on the mounting plate in pairs, and a plurality of the vacuum suction cups are respectively mounted on the telescopic ends of a plurality of the hydraulic cylinders.
[0024] Preferably, the mounting portion includes: two fixing plates and a plurality of second bolts;
[0025] The two fixing plates are movably fitted on the upper wall of the base, and the two fixing plates are symmetrically installed on the side wall of the second fixing seat. Several mounting holes are opened on the base, several second bolts pass through the two fixing plates, and several second bolts are inserted into several mounting holes.
[0026] The intelligent transmitting antenna and adjustment system for wireless communications manufactured using the technical solution of the present invention have a protective structure provided on the antenna to protect the antenna in harsh environments. While protecting the antenna, the detection structure provided detects the installation status of the antenna to ensure normal use of the antenna and extend the service life of the antenna. The detachable adjustment structure installed on the base is used to assist in the installation of the antenna, facilitating adjustment of the installation height and position of the antenna, thereby improving installation efficiency. After installation is completed, the adjustment structure is removed to ensure the normal operation of the antenna. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a schematic diagram of the main structure of an intelligent transmitting antenna for wireless communication and an adjustment system according to the present invention.
[0028] Figure 2 This is a side sectional structural diagram of an intelligent transmitting antenna for wireless communication and an adjustment system according to the present invention.
[0029] Figure 3 This is a partial main structural diagram of a protective structure based on an intelligent transmitting antenna for wireless communication and an adjustment system according to the present invention.
[0030] Figure 4 This is a schematic diagram of the main cross-sectional structure of the housing of the intelligent transmitting antenna for wireless communication and the adjustment system according to the present invention in a non-working state.
[0031] Figure 5 This is a partial front view cross-sectional structural diagram of a shield portion of an intelligent transmitting antenna for wireless communication and an adjustment system according to the present invention.
[0032] Figure 6 This is a schematic diagram of a top-down cross-sectional structure of an intelligent transmitting antenna for wireless communication and an adjustment system according to the present invention.
[0033] Figure 7 For the present invention Figure 2 A schematic diagram of a locally enlarged structure of a smart transmitting antenna and an adjustment system for wireless communication.
[0034] Figure 8 For the present invention Figure 4 A schematic diagram of a locally enlarged structure of a smart transmitting antenna and an adjustment system for wireless communication.
[0035] In the figure: 1. base, 2. antenna body, 3. first fixing seat, 4. first motor, 5. first screw rod, 6. first slider, 7. travel switch, 8. cross bar, 9. rotating rod, 10. outer cover, 11. buffer ring, 12. first connecting plate, 13. second connecting plate, 14. first bolt, 15. first nut, 16. spring, 17. slide rail, 18. mounting seat, 19. rotating sleeve, 20. fixing column, 21. driven gear ring, 22. second motor, 23. driving gear, 24. dustproof pad, 25. concave seat, 26. cylinder, 27. pressure sensor, 28. alarm, 29. second fixing seat, 30. third motor, 31. second screw rod, 32. second slider, 33. mounting plate, 34. hydraulic cylinder, 35. vacuum suction cup, 36. fixing plate, 37. second bolt. DETAILED DESCRIPTION
[0036] The present invention will be described in detail below with reference to the accompanying drawings. Figure 1 -8 shows an intelligent transmitting antenna and adjustment system for wireless communication.
[0037] Through the use of wires by those skilled in the art, all electrical components in this case are connected to their corresponding power supplies, and appropriate controllers should be selected according to actual conditions to meet control requirements. The specific connection and control sequence should refer to the following working principle, in which the electrical components are electrically connected in sequence. The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process, and does not explain the electrical control.
[0038] Embodiment: An intelligent transmitting antenna and adjustment system for wireless communication, comprising a base 1, an antenna body 2 provided on the base 1, a protective structure provided on the antenna body 2, a detection structure provided on the protective structure, and an adjustment structure provided on the base 1;
[0039] It should be noted that: the base 1 is used to install the antenna body 2, the protective structure on the antenna body 2 and the detection structure on the protective structure are used to protect and detect the antenna body 2. In extreme weather, the antenna body 2 is protected. While protecting the antenna body 2, the installation status of the antenna body 2 is detected to ensure the normal use of the antenna body 2 and extend the service life of the antenna body 2. The detachable adjustment structure installed on the base 1 is used to assist in the installation of the antenna body 2. After the installation is completed, the adjustment structure is removed to ensure the normal operation of the antenna body 2.
[0040] In the specific implementation process, the protective structure may preferably adopt the following structure, which includes: a connecting portion, a first fixing seat 3, a first motor 4, a first screw rod 5, a first slider 6, two slide grooves, two limit switches 7 and a protective cover portion; the connecting portion is mounted on the antenna body 2, the first fixing seat 3 is mounted on the connecting portion, the first motor 4 is mounted on the first fixing seat 3, the first screw rod 5 is movably inserted into the first fixing seat 3, and one end of the first screw rod 5 is connected to the driving end of the first motor 4, the first slider 6 is movably sleeved on the first screw rod 5, the two slide grooves are symmetrically opened on the first fixing seat 3, the two limit switches 7 are symmetrically mounted on one of the two slide grooves, and the protective cover portion is mounted on the first slider 6;
[0041] It should be noted that: the first fixing base 3 is mounted on the antenna body 2 through the connecting portion, the first motor 4 is operated to drive the first screw rod 5 to rotate, and the first slider 6 thereby drives the shield portion to rise and fall, and the two limit switches 7 are used to control the working state of the first motor 4;
[0042] During the specific implementation process, the shield part can preferably adopt the following structure, which includes: two cross bars 8, two rotating rods 9, two outer covers 10, four buffer rings 11, two telescopic assemblies, two power assemblies and two ventilation assemblies; the two cross bars 8 respectively pass through the two slide grooves, and the two cross bars 8 are installed on the side wall of the first slider 6, the two rotating rods 9 are movably installed on one end of the two cross bars 8, the two outer covers 10 are respectively installed on one end of the two rotating rods 9, four arc-shaped notches are symmetrically opened on the two outer covers 10, the four buffer rings 11 are respectively installed on the four arc-shaped notches, the two telescopic assemblies are installed on the two cross bars 8 and the two rotating rods 9, the two power assemblies are respectively installed on the two telescopic assemblies, and the two ventilation assemblies are respectively installed on the inner wall of the two outer covers 10;
[0043] It should be noted that: when the antenna body 2 needs to be protected, the first slider 6 drives the two cross bars 8 to move downward through the two slide grooves. When the cross bar 8 contacts the limit switch 7 located below, the first motor 4 stops working, and the two power components work to drive the two telescopic components to work, so that the two rotating rods 9 rotate at one end of the two cross bars 8, so that the two outer covers 10 approach each other until they are closed, buckling the plate antenna on the antenna body 2. When closed, the four buffer rings 11 embrace the holding rod on the antenna body 2 to prevent the buffer ring 11 from wearing each other with the holding rod. When protection is no longer needed, the two outer covers 10 are separated, the first motor 4 is reversed, and the first slider 6 rises. When the cross bar 8 contacts the limit switch 7 located above, the first motor 4 stops working.
[0044] In a specific implementation, the connection portion may preferably adopt the following structure, which includes: a first connecting plate 12, a second connecting plate 13, a plurality of first bolts 14, a plurality of first nuts 15, and a plurality of springs 16; the first connecting plate 12 is mounted on the antenna body 2, the second connecting plate 13 is mounted on the first fixing base 3, a plurality of the first bolts 14 are equidistantly inserted into the first connecting plate 12 and the second connecting plate 13, a plurality of the first nuts 15 are respectively fitted onto the plurality of the first bolts 14, a plurality of the springs 16 are respectively fitted onto the plurality of the first bolts 14, and the plurality of the springs 16 are all located between the first connecting plate 12 and the second connecting plate 13;
[0045] It should be noted that the first connecting plate 12 and the second connecting plate 13 are connected by a plurality of first bolts 14 and a plurality of first nuts 15. The plurality of springs 16 serve to keep the first connecting plate 12 and the second connecting plate 13 in close contact with the plurality of first bolts 14 and the plurality of first nuts 15 to ensure connection quality.
[0046] In a specific implementation process, the telescopic assembly may preferably adopt the following structure, which includes: a slide rail 17, a mounting seat 18, a rotating sleeve 19 and a fixed column 20; the slide rail 17 is embedded in the side wall surface of the rotating rod 9, the mounting seat 18 is movably mounted on the lower wall surface of the cross bar 8, the rotating sleeve 19 is inserted into the lower wall surface of the mounting seat 18 through a bearing, and the fixed column 20 is movably inserted into the rotating sleeve 19 through a thread, and one end of the fixed column 20 is movably mounted on the movable end of the slide rail 17;
[0047] It should be noted that: the power assembly works to rotate the rotating sleeve 19 on the mounting seat 18, and the rotating sleeve 19 rotates on the fixed column 20, thereby changing the apparent length of the rotating sleeve 19 and the fixed column 20. One end of the fixed column 20 moves on the rotating rod 9 via the slide rail 17, thereby changing the angle between the cross bar 8 and the rotating rod 9.
[0048] In a specific implementation, the power assembly may preferably adopt the following structure, which includes: a driven ring gear 21, a second motor 22, and a driving gear 23; the driven ring gear 21 is sleeved on the rotating sleeve 19, the second motor 22 is mounted on the lower wall of the mounting base 18, the driving gear 23 is sleeved on the driving end of the second motor 22, and the driving gear 23 and the driven ring gear 21 are meshed with each other;
[0049] It should be noted that: the second motor 22 works to drive the driving gear 23 to rotate, and the driven ring gear 21 thus drives the rotating sleeve 19 to rotate on the mounting seat 18;
[0050] In a specific implementation process, the ventilation assembly may preferably adopt the following structure, which includes: a plurality of ventilation holes and a dustproof pad 24; the plurality of ventilation holes are equidistantly opened on the outer cover 10, and the dustproof pad 24 is installed on the inner wall surface of the outer cover 10;
[0051] It should be noted that: a plurality of ventilation holes are used for ventilation to prevent the two outer covers 10 from shaking when the wind blows on the outer covers 10, and the dustproof pad 24 is used to block and isolate dust;
[0052] In the specific implementation process, the detection structure can preferably adopt the following structure, which includes: two concave seats 25, a plurality of cylinders 26, a plurality of pressure sensors 27 and an alarm 28; the two concave seats 25 are symmetrically mounted on the inner wall surfaces of the two outer covers 10, the plurality of cylinders 26 are symmetrically mounted on the two concave seats 25, the plurality of pressure sensors 27 are respectively mounted on the telescopic ends of the plurality of cylinders 26, and the alarm 28 is mounted on the antenna body 2;
[0053] It should be noted that when the two outer covers 10 are closed, the two concave seats 25 are inserted into the two sides of the plate antenna on the antenna body 2. Subsequently, the plurality of cylinders 26 are extended, and the plurality of pressure sensors 27 are attached to the two sides of the plate antenna on the antenna body 2. If the pressure values detected by the pressure sensors 27 are different, it means that the plate antenna on the antenna body 2 is skewed, and there is a problem with the installation status of the plate antenna on the antenna body 2. The alarm 28 is activated to warn the staff.
[0054] In a specific implementation process, the adjustment structure may preferably adopt the following structure, which includes: a mounting portion, a second fixing seat 29, a third motor 30, a second screw rod 31, two second sliders 32, and a clamping portion; the mounting portion is mounted on the upper wall of the base 1, the second fixing seat 29 is mounted on the mounting portion, the third motor 30 is mounted on the second fixing seat 29, the second screw rod 31 is movably inserted into the second fixing seat 29, and one end of the second screw rod 31 is connected to the driving end of the third motor 30, the two second sliders 32 are movably sleeved on the second screw rod 31, and the clamping portion is mounted on the two second sliders 32;
[0055] It should be noted that the second fixing base 29 is mounted on the base 1 via the mounting portion. When the plate antenna on the antenna body 2 is mounted, the plate antenna on the antenna body 2 is mounted on the clamping portion. The third motor 30 is activated, the second screw rod 31 rotates, and the two second sliders 32 thereby drive the clamping portion to rise and fall, thereby adjusting the installation height.
[0056] In a specific implementation, the clamping portion may preferably adopt the following structure, which includes: a mounting plate 33, a plurality of hydraulic cylinders 34, and a plurality of vacuum suction cups 35; the mounting plate 33 is mounted on the two second sliders 32, the plurality of hydraulic cylinders 34 are symmetrically mounted on the mounting plate 33, and the plurality of vacuum suction cups 35 are respectively mounted on the telescopic ends of the plurality of hydraulic cylinders 34;
[0057] It should be noted that: a plurality of vacuum suction cups 35 suck the plate antenna on the body. When the height of the plate antenna is adjusted to the target height, a plurality of hydraulic cylinders 34 extend to position the plate antenna on the antenna body 2 so that it can be installed on the holding pole on the antenna body 2. Then, the plate antenna on the antenna body 2 is installed, thereby improving installation efficiency.
[0058] In a specific implementation, the mounting portion may preferably adopt the following structure, which includes: two fixing plates 36 and a plurality of second bolts 37; the two fixing plates 36 are movably attached to the upper wall of the base 1, and the two fixing plates 36 are symmetrically mounted on the side wall of the second fixing seat 29; the base 1 is provided with a plurality of mounting holes, a plurality of the second bolts 37 pass through the two fixing plates 36, and a plurality of the second bolts 37 are inserted into a plurality of the mounting holes;
[0059] It should be noted that the second fixing seat 29 is mounted on the base 1 via two fixing plates 36 and a plurality of second bolts 37 for easy installation and removal.
[0060] The above technical solutions only reflect the preferred technical solutions of the technical solutions of the present invention. Any changes that may be made to certain parts thereof by those skilled in the art all reflect the principles of the present invention and fall within the scope of protection of the present invention.
Claims
1. An intelligent transmitting antenna and adjustment system for wireless communication, comprising a base (1), characterized in that: An antenna body (2) is provided on the base (1), a protective structure is provided on the antenna body (2), a detection structure is provided on the protective structure, and an adjustment structure is provided on the base (1); The protective structure comprises: a connecting portion, a first fixing seat (3), a first motor (4), a first screw rod (5), a first slider (6), two sliding grooves, two travel switches (7) and a protective cover portion; The connecting portion is mounted on the antenna body (2), the first fixing seat (3) is mounted on the connecting portion, the first motor (4) is mounted on the first fixing seat (3), the first screw rod (5) is movably inserted into the first fixing seat (3), and one end of the first screw rod (5) is connected to the driving end of the first motor (4), the first slider (6) is movably sleeved on the first screw rod (5), the two sliding grooves are symmetrically opened on the first fixing seat (3), the two travel switches (7) are symmetrically mounted on one of the two sliding grooves, and the shield portion is mounted on the first slider (6); The shield portion comprises: two cross bars (8), two rotating bars (9), two outer covers (10), four buffer rings (11), two telescopic assemblies, two power assemblies and two ventilation assemblies; The two cross bars (8) respectively pass through the two slide grooves, and the two cross bars (8) are installed on the side wall surface of the first slider (6), the two rotating rods (9) are respectively movably installed on one end of the two cross bars (8), the two outer covers (10) are respectively installed on one end of the two rotating rods (9), four arc-shaped notches are symmetrically opened on the two outer covers (10), the four buffer rings (11) are respectively installed on the four arc-shaped notches, the two telescopic components are installed on the two cross bars (8) and the two rotating rods (9), the two power components are respectively installed on the two telescopic components, and the two ventilation components are respectively installed on the inner wall surfaces of the two outer covers (10); The ventilation assembly comprises: a plurality of ventilation holes and a dustproof pad (24); A plurality of ventilation holes are equidistantly provided on the outer cover (10), and the dustproof pad (24) is installed on the inner wall surface of the outer cover (10); The detection structure comprises: two concave seats (25), a plurality of cylinders (26), a plurality of pressure sensors (27) and an alarm (28); The two concave seats (25) are symmetrically mounted on the inner side walls of the two outer covers (10), the plurality of cylinders (26) are symmetrically mounted on the two concave seats (25), the plurality of pressure sensors (27) are mounted on the telescopic ends of the plurality of cylinders (26), and the alarm (28) is mounted on the antenna body (2); The adjustment structure comprises: a mounting portion, a second fixing seat (29), a third motor (30), a second screw rod (31), two second sliding blocks (32) and a clamping portion; The mounting portion is mounted on the upper wall of the base (1), the second fixing seat (29) is mounted on the mounting portion, the third motor (30) is mounted on the second fixing seat (29), the second screw rod (31) is movably inserted into the second fixing seat (29), and one end of the second screw rod (31) is connected to the driving end of the third motor (30), the two second sliders (32) are movably sleeved on the second screw rod (31), and the clamping portion is mounted on the two second sliders (32).
2. The intelligent transmitting antenna and adjustment system for wireless communication according to claim 1, characterized in that: The connecting portion comprises: a first connecting plate (12), a second connecting plate (13), a plurality of first bolts (14), a plurality of first nuts (15) and a plurality of springs (16); The first connecting plate (12) is mounted on the antenna body (2), the second connecting plate (13) is mounted on the first fixing seat (3), a plurality of the first bolts (14) are equidistantly inserted into the first connecting plate (12) and the second connecting plate (13), a plurality of the first nuts (15) are respectively fitted onto the plurality of the first bolts (14), a plurality of the springs (16) are respectively fitted onto the plurality of the first bolts (14), and the plurality of the springs (16) are all located between the first connecting plate (12) and the second connecting plate (13).
3. The intelligent transmitting antenna and adjustment system for wireless communication according to claim 2, characterized in that: The telescopic assembly comprises: a slide rail (17), a mounting seat (18), a rotating sleeve (19) and a fixing column (20); The slide rail (17) is embedded in the side wall of the rotating rod (9), the mounting seat (18) is movably mounted on the lower wall of the cross bar (8), the rotating sleeve (19) is inserted into the lower wall of the mounting seat (18) through a bearing, the fixed column (20) is movably inserted into the rotating sleeve (19) through a thread, and one end of the fixed column (20) is movably mounted on the movable end of the slide rail (17).
4. The intelligent transmitting antenna and adjustment system for wireless communication according to claim 2, characterized in that: The power assembly comprises: a driven ring gear (21), a second motor (22) and a driving gear (23); The driven gear ring (21) is sleeved on the rotating sleeve (19), the second motor (22) is mounted on the lower wall of the mounting seat (18), the driving gear (23) is sleeved on the driving end of the second motor (22), and the driving gear (23) and the driven gear ring (21) are meshed with each other.
5. The intelligent transmitting antenna and adjustment system for wireless communication according to claim 2, characterized in that: The clamping portion comprises: a mounting plate (33), a plurality of hydraulic cylinders (34) and a plurality of vacuum suction cups (35); The mounting plate (33) is mounted on the two second sliders (32), a plurality of hydraulic cylinders (34) are symmetrically mounted on the mounting plate (33), and a plurality of vacuum suction cups (35) are respectively mounted on the telescopic ends of the plurality of hydraulic cylinders (34).
6. The intelligent transmitting antenna and adjustment system for wireless communication according to claim 1, characterized in that: The mounting portion includes: two fixing plates (36) and a plurality of second bolts (37); The two fixing plates (36) are movably fitted on the upper wall of the base (1), and the two fixing plates (36) are symmetrically mounted on the side wall of the second fixing seat (29). The base (1) is provided with a plurality of mounting holes, a plurality of the second bolts (37) pass through the two fixing plates (36), and a plurality of the second bolts (37) are inserted into a plurality of the mounting holes.
Citation Information
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