Roadside 5G antenna hanging rod for highway
By using a drive motor to rotate and close the photovoltaic panel assembly and insert the auxiliary fixing components into the soil, the problem of 5G antenna poles being easily damaged and having insufficient wind resistance in severe weather has been solved, thereby improving the stability of signal transmission and extending their service life.
Patent Information
- Application Number
- CN202520572723.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-03-29
AI Technical Summary
Existing 5G antenna poles are easily damaged in severe weather, photovoltaic panels are easily damaged, and their wind resistance is insufficient, affecting the stability of signal transmission.
A drive motor is used to automatically rotate and close the photovoltaic panel modules in severe weather, reducing the stress area. A threaded sleeve drives the auxiliary fixing components to be inserted into the soil, enhancing the stability of the support pole.
It effectively protects the photovoltaic panels and 5G antennas, improves wind resistance, and ensures the stability of signal transmission and the lifespan of the antennas.
Smart Images

Figure CN223612666U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of communication antenna, specifically point to a kind of roadside 5G antenna hanging pole for highway. BACKGROUND
[0002] 5G antenna is an important component in the communication system of wisdom highway, and antenna hanging pole is the support for installing 5G antenna;However, the existing 5G antenna hanging pole has the following problems:
[0003] (1) Although the existing 5G antenna hanging pole partly uses photovoltaic panel as energy supplement, photovoltaic panel is easy to be damaged in bad weather, which affects its service life and energy conversion efficiency;
[0004] (2) The existing 5G antenna hanging pole is insufficient in protective measures under bad weather conditions to maintain low-loss propagation, and 5G antenna is easy to be damaged in extreme weather such as strong wind, which affects its stability and service life;
[0005] (3) The traditional 5G antenna hanging pole is fixed by single mode of rod body or base buried in the ground, and it is easy to incline or damage in strong wind weather, which leads to the failure of antenna to work normally. INVENTION CONTENTS
[0006] The utility model overcomes the insufficient of prior art, provides a kind of roadside 5G antenna hanging pole for highway, utilize transmission motor to drive photovoltaic panel assembly to be automatically rotated and folded under bad weather, effectively reduce stress area, prevent arc photovoltaic panel damage, simultaneously, arc photovoltaic panel is covered after folding installation platform, reduce the stress of 5G antenna and mounting bracket, protect antenna from bad weather, ensure signal transmission stability, and threaded sleeve drives auxiliary fixing assembly insertion soil simultaneously, realize the stable fixation of support rod body, significantly improve wind resistance.
[0007] The utility model adopts the technical scheme as follows: the scheme provides a roadside 5G antenna hanging pole for highway, including base, support pole body, installation platform and installation support, the support pole body is fixedly established on the upper wall of base, as main bearing structure, is responsible for bearing the weight of installation platform, installation support and 5G antenna, the installation platform is fixedly established on the circumference wall of support pole body upper part, provides a stable support platform for installation support and 5G antenna, the installation support circumference array is fixedly established on the top of installation platform, is used for fixing 5G antenna, guarantees the correct orientation and stability of antenna, the upper wall of base is fixedly provided with transmission motor, the machine axle of transmission motor is fixedly provided with transmission worm, the upper wall of base is fixedly provided with guide housing, the circumference wall of guide housing is fixedly provided with guide groove, protects internal transmission mechanism, and the guide groove is provided to limit the movement track of transmission ring, the top of support pole body is fixedly provided with anemorumbometer, monitors wind speed, the anemorumbometer is electrically connected with transmission motor, the outer wall of support pole body is rotatably provided with threaded sleeve, realizes the up-down movement of transmission assembly, the lower circumference of threaded sleeve is fixedly provided with worm gear, the worm gear is meshed with transmission worm, the threaded sleeve is screw-connected with transmission assembly, the transmission assembly moves linearly along guide housing,
[0008] The circumference wall of guide housing is fixedly provided with photovoltaic panel assembly, collects solar energy under normal circumstances, rotates to the protection state when the wind speed is too large, the lower circumference of the circumference wall of guide housing is fixedly provided with auxiliary fixing assembly, inserts into the soil when the wind speed is too large, increases the stability of support pole body.
[0009] Further, the transmission assembly includes a first transmission ring, which is screw-connected to the threaded sleeve and moves along the guide groove, a first sliding block is fixedly arranged on the outer circumference wall of the first transmission ring and slidably matched with the guide groove, and a transmission rack is fixedly arranged on the end of the first sliding block away from the support pole body.
[0010] Further, the photovoltaic panel assembly includes a first rotating connecting plate, a driven gear, a connecting rod, and an arc-shaped photovoltaic panel, the first rotating connecting plate is fixedly arranged on the circumference wall of the guide housing and serves as a basic fixing part of the photovoltaic panel assembly, the driven gear is rotatably connected to the side wall of the first rotating connecting plate, the driven gear is meshed with the transmission rack, and when the transmission rack moves, the arc-shaped photovoltaic panel is rotated, one end of the connecting rod is fixedly arranged on the circumference wall of the driven gear, and the rotation of the driven gear is transmitted to the arc-shaped photovoltaic panel, and the arc-shaped photovoltaic panel is fixedly arranged on the other end of the connecting rod, collects solar energy under normal conditions, and rotates to a cylindrical shape when the wind speed is too large to reduce the stress area.
[0011] Further, the transmission assembly further comprises a second transmission ring, the second transmission ring is threadedly connected to the threaded sleeve and moves along the guide groove, a second sliding block in sliding fit with the guide groove is fixedly arranged on the outer circumferential wall of the second transmission ring, and a transmission rod is rotatably arranged at the end of the second sliding block away from the support rod body.
[0012] Further, the auxiliary fixing assembly comprises a second rotating connecting plate, an auxiliary inserting rod and a cross inserting rod, the second rotating connecting plate is symmetrically fixed on both sides of the guide groove, one end of the auxiliary inserting rod is rotatably connected with the second rotating connecting plate, the stability of the support rod body is improved, the end of the transmission rod away from the support rod body is rotatably connected with the circumferential wall of the auxiliary inserting rod, and the cross inserting rod is fixedly arranged on the circumferential wall of the auxiliary inserting rod, the contact area with the soil is increased through the cross structure, and the fixing stability is improved.
[0013] The beneficial effects achieved by the utility model are as follows:
[0014] (1) When the wind speed reaches the set value through the anemometer, the transmission motor drives the threaded sleeve to rotate through the meshing fit of the transmission worm and the worm gear teeth, drives the first transmission ring to move downward through the threaded connection, drives the transmission rack and the driven gear to meshing fit, and then drives the connecting rod and the arc-shaped photovoltaic panel to rotate, so that the arc-shaped photovoltaic panel can be automatically folded into a cylindrical shape under adverse weather, the stress area is reduced, and the arc-shaped photovoltaic panel is prevented from being damaged;
[0015] (2) Meanwhile, the second transmission ring is also driven to move downward in the rotating process of the threaded sleeve, the transmission rod is driven to move downward by the second transmission ring, the auxiliary inserting rod is pressed to rotate by the transmission rod, the cross inserting rod and the auxiliary inserting rod are inserted into the soil, so that the double fixing of the support rod body is realized, the wind resistance of the support column is enhanced, and the risk of the support rod body tilting caused by strong wind is reduced;
[0016] (3) After the arc-shaped photovoltaic panel is folded, the outer periphery of the arc-shaped photovoltaic panel covers the mounting table, the stress of the mounting bracket and the 5G antenna is reduced, and the 5G antenna is protected from damage caused by adverse weather. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 A structure schematic view of the utility model is provided for a roadside 5G antenna hanging rod for highways;
[0018] Figure 2 A use state schematic view of the utility model in strong wind weather is provided;
[0019] Figure 3 A cross-sectional structure schematic view of the utility model is provided for a roadside 5G antenna hanging rod for highways;
[0020] Figure 4The combined state structure schematic view of the support rod body and the threaded sleeve is provided for the utility model.
[0021] Figure 5 The structure schematic view of the first transmission ring is provided for the utility model.
[0022] Figure 6 The structure schematic view of the second transmission ring is provided for the utility model.
[0023] Figure 7 The structure schematic view of the threaded sleeve is provided for the utility model.
[0024] Wherein, 1, base, 11, transmission motor, 111, transmission worm, 14, guide housing, 141, guide groove, 15, anemorumbler, 2, support rod body, 21, threaded sleeve, 211, worm gear tooth, 22, transmission assembly, 212, first transmission ring, 213, first sliding block, 214, transmission rack, 215, second transmission ring, 216, second sliding block, 217, transmission rod, 3, mounting table, 4, mounting support, 5, photovoltaic panel assembly, 51, first rotary connecting plate, 52, driven gear, 53, connecting rod, 54, arc photovoltaic panel, 6, auxiliary fixing assembly, 61, second rotary connecting plate, 62, auxiliary inserting rod, 63, cross inserting rod.
[0025] The accompanying drawings are used to provide further understanding of the utility model, and constitute a part of the specification, are used to explain the utility model together with the embodiments of the utility model, and do not constitute the limitation on the utility model. DETAILED DESCRIPTION
[0026] The technical scheme in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model, obviously, the described embodiments only are a part of the embodiments of the utility model, not all the embodiments of the utility model, based on the embodiments in the utility model, all other embodiments obtained by the ordinary skill in the art without making the creative labor belong to the range of the utility model protection.
[0027] Embodiment one: please refer to Figures 1-5 And Figure 7The utility model provides a roadside 5G antenna hanging pole for highway, including base 1, support pole body 2, installation platform 3 and installation support 4, support pole body 2 is fixed on the upper wall of base 1, as the main bearing structure, is responsible for the weight of installation platform 3, installation support 4 and 5G antenna, installation platform 3 is fixed on the circumferential wall of the upper portion of support pole body 2, provides a stable support platform for installation support 4 and 5G antenna, installation support 4 circumferential array is fixed on the top of installation platform 3, is used for fixing 5G antenna, ensures the stability and security of antenna, installation support 4 has adjustable support, allows the angle of antenna to be adjusted according to actual needs, to optimize signal coverage, and this is the existing mature technology, therefore, here is not superfluous, the upper wall of base 1 is fixed with transmission motor 11, the machine shaft of transmission motor 11 is coaxially fixed with transmission worm 111, the upper wall of base 1 is fixed with guide housing 14, the circumferential wall of guide housing 14 is circumferentially provided with guide groove 141, the top of support pole body 2 is fixed with anemorumbometer 15, anemorumbometer 15 is electrically connected with transmission motor 11, the outer wall of support pole body 2 is rotatably provided with threaded sleeve 21, the lower circumferential side of threaded sleeve 21 is fixed with worm gear teeth 211, worm gear teeth 211 are meshed with transmission worm 111, threaded sleeve 21 is threadedly connected with transmission assembly 22, transmission assembly 22 includes first transmission ring 212, first transmission ring 212 is threadedly connected on threaded sleeve 21, the outer circumferential wall of first transmission ring 212 is fixed with first sliding block 213 that is slidably connected with guide groove 141, the end of first sliding block 213 away from support pole body 2 is fixed with transmission rack 214, the circumferential wall of guide housing 14 is circumferentially rotatably connected with four photovoltaic panel assemblies 5, photovoltaic panel assemblies 5 are drivingly connected with transmission rack 214, photovoltaic panel assemblies 5 include first rotary connecting plate 51, driven gear 52, connecting rod 53 and arc photovoltaic panel 54, first rotary connecting plate 51 is fixed on the circumferential wall of guide housing 14, driven gear 52 is rotatably connected to the side wall of first rotary connecting plate 51, driven gear 52 is meshed with transmission rack 214, one end of connecting rod 53 is fixed on the circumferential wall of driven gear 52, arc photovoltaic panel 54 is fixed on the other end of connecting rod 53.
[0028] In the embodiment, in the initial state, the arc-shaped photovoltaic panels 54 are distributed perpendicularly to the support rod body 2. When the anemograph 15 monitors that the wind speed reaches 17.2 m / s or above, the transmission motor 11 is started to rotate forward. The transmission motor 11 rotates forward to drive the transmission worm 111 to mesh with the worm gear teeth 211, so that the threaded sleeve 21 rotates. The threaded sleeve 21 drives the first transmission ring 212 to move downward along the guide groove 141. The first transmission ring 212 drives the transmission rack 214 to move downward. The transmission rack 214 meshes with the driven gear 52 to drive the driven gear 52 to rotate, thereby driving the connecting rod 53 and the arc-shaped photovoltaic panels 54 to rotate. After the four arc-shaped photovoltaic panels 54 rotate and fold to a cylindrical shape, the stress area is reduced, and the arc-shaped photovoltaic panels 54 are prevented from being damaged. At the same time, after the arc-shaped photovoltaic panels 54 are folded, the outer periphery of the mounting table 3 is covered, the stress on the mounting brackets 4 and the 5G antenna is reduced, and the antenna is prevented from being damaged in severe weather. When the wind speed is lower than 17.2 m / s, the transmission motor 11 is started to rotate reversely. The transmission motor 11 reversely rotates to drive the transmission worm 111 to mesh with the worm gear teeth 211, so that the threaded sleeve 21 reversely rotates. The threaded sleeve 21 drives the first transmission ring 212 to move upward along the guide groove 141. The first transmission ring 212 drives the transmission rack 214 to move upward. The transmission rack 214 meshes with the driven gear 52 to drive the driven gear 52 to reversely rotate, thereby driving the connecting rod 53 and the arc-shaped photovoltaic panels 54 to reversely rotate to the initial state.
[0029] Embodiment two: Based on the above embodiment, please refer to Figures 1-6 In the embodiment, the transmission assembly 22 further includes a second transmission ring 215. The second transmission ring 215 is threadedly connected to the threaded sleeve 21. A second sliding block 216 that is in sliding fit with the guide groove 141 is fixedly arranged on the outer circumferential wall of the second transmission ring 215. A transmission rod 217 is rotatably arranged at the end of the second sliding block 216 away from the support rod body 2. A plurality of auxiliary fixing assemblies 6 are rotatably connected in a circumferential array on the circumferential wall of the guide housing 14. The auxiliary fixing assemblies 6 are in transmission fit with the transmission rod 217. The auxiliary fixing assembly 6 includes a second rotation connecting plate 61, an auxiliary plug rod 62, and a cross plug rod 63. The second rotation connecting plate 61 is symmetrically fixedly arranged on both sides of the guide groove 141. One end of the auxiliary plug rod 62 is rotatably connected to the second rotation connecting plate 61. The end of the transmission rod 217 away from the support rod body 2 is rotatably connected to the circumferential wall of the auxiliary plug rod 62. The cross plug rod 63 is fixedly arranged on the circumferential wall of the auxiliary plug rod 62.
[0030] In the initial state, the auxiliary insertion rod 62 is upwardly away from the one end of the threaded sleeve 21, after the threaded sleeve 21 is rotated, the threaded sleeve 21 drives the second transmission ring 215 to move downward along the guide groove 141, the second transmission ring 215 drives the transmission rod 217 to move downward, the transmission rod 217 drives the auxiliary insertion rod 62 to rotate, the one end of the auxiliary insertion rod 62 away from the support rod body 2 rotates downward, the cross insertion rod 63 is first inserted into the soil to preliminarily fix the support rod body 2, with the continuous downward movement of the second transmission ring 215, the transmission rod 217 presses the auxiliary insertion rod 62 to continue to rotate, the auxiliary insertion rod 62 is in contact with the soil to further fix the support rod body 2, improve the wind resistance of the support rod body 2, reduce the risk of the support rod body 2 tilting caused by strong wind, improve the stability of signal transmission of the 5G antenna in the strong wind weather, when the wind speed is lower than 17.2m / s, the transmission motor 11 is started to rotate reversely, the transmission motor 11 reversely rotates to drive the transmission worm 111 and the worm gear tooth 211 to mesh with each other, so that the threaded sleeve 21 is reversely rotated, the threaded sleeve 21 drives the second transmission ring 215 to move upward along the guide groove 141, the second transmission ring 215 drives the transmission rod 217 to move upward, the transmission rod 217 drives the auxiliary insertion rod 62 to reversely rotate, the auxiliary insertion rod 62 and the cross insertion rod 63 are separated from the soil and rotated to the initial state.
[0031] The above describes the present application and its embodiments, which are not restrictive, and the embodiments shown in the drawings are only one of the embodiments of the present application, and the actual structure is not limited thereto. In summary, if a person skilled in the art is inspired by it, without departing from the creative purpose of the present application, without creative design, similar structure and embodiments of the technical scheme, which should belong to the protection scope of the present application.
Claims
1. A roadside 5G antenna mounting pole for highways, comprising a base (1), a support rod (2), a mounting platform (3), and a mounting bracket (4), wherein the support rod (2) is fixedly mounted on the upper wall of the base (1), the mounting platform (3) is fixedly mounted on the circumferential wall of the upper part of the support rod (2), and the mounting bracket (4) is circumferentially arrayed and fixedly mounted on the top of the mounting platform (3), characterized in that: A drive motor (11) is fixedly mounted on the upper wall of the base (1). A drive worm (111) is coaxially fixed on the output shaft of the drive motor (11). A guide housing (14) is fixedly mounted on the upper wall of the base (1). A threaded sleeve (21) is rotatably mounted on the outer wall of the support rod (2). The threaded sleeve (21) meshes with the drive worm (111). A drive assembly (22) is threadedly connected to the threaded sleeve (21). The drive assembly (22) moves linearly along the guide housing (14). A photovoltaic panel assembly (5) is arranged in a circular array on the upper part of the circumferential wall of the guide housing (14). An auxiliary fixing assembly (6) is arranged in a circular array on the lower part of the circumferential wall of the guide housing (14).
2. A roadside 5G antenna mounting pole for highways according to claim 1, characterized in that: The transmission assembly (22) includes a first transmission ring (212), which is threadedly connected to a threaded sleeve (21). A first slider (213) is fixedly provided on the outer circumferential wall of the first transmission ring (212), and a transmission rack (214) is fixedly provided at the end of the first slider (213) away from the support rod (2).
3. A roadside 5G antenna mounting pole for highways according to claim 2, characterized in that: The photovoltaic panel assembly (5) includes a driven gear (52), a connecting rod (53), and an arc-shaped photovoltaic panel (54). The driven gear (52) is rotatably connected to the guide housing (14). The driven gear (52) meshes with the transmission rack (214). One end of the connecting rod (53) is fixedly disposed on the circumferential wall of the driven gear (52), and the arc-shaped photovoltaic panel (54) is fixedly disposed on the other end of the connecting rod (53).
4. A roadside 5G antenna mounting pole for highways according to claim 1, characterized in that: The transmission assembly (22) further includes a second transmission ring (215), which is threadedly connected to the threaded sleeve (21). A second slider (216) is fixedly provided on the outer circumferential wall of the second transmission ring (215), and a transmission rod (217) is rotatably provided at the end of the second slider (216) away from the support rod (2).
5. A roadside 5G antenna mounting pole for highways according to claim 4, characterized in that: The auxiliary fixing component (6) includes an auxiliary insert rod (62) and a cross insert rod (63); one end of the auxiliary insert rod (62) is rotatably connected to the guide housing (14), the end of the transmission rod (217) away from the support rod body (2) is rotatably connected to the circumferential wall of the auxiliary insert rod (62), and the cross insert rod (63) is fixedly installed on the circumferential wall of the auxiliary insert rod (62).