Fine-tuned high-efficiency antenna and prevention method for preventing bad-weather floaters from damaging

By designing an adjustable protective cover and fan system, the problems of antennas being hit by gravel and birds landing in severe weather were solved, thus achieving antenna protection and stable signal transmission.

CN114784498BActive Publication Date: 2026-03-20SZ FOXEER INNOVATIONS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-09
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In severe weather, antennas are easily struck by gravel, affecting signal transmission, and connecting cables are prone to attracting birds, affecting signal reception performance.

Method used

A fine-tuning high-efficiency antenna was designed, equipped with an adjustable protective cover and a fan. The antenna is automatically shielded in severe weather by a drive assembly and a traction belt to prevent impact from gravel, and to scare away birds in normal weather to maintain signal transmission.

Benefits of technology

It effectively prevents the antenna from being damaged by falling rocks in severe weather, extending its service life, while also preventing birds from landing on it and maintaining stable signal transmission.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The fine-tuning type high-efficiency antenna and the prevention method can prevent the bad weather floating object from hitting, and belongs to the technical field of fine-tuning type antenna. In order to solve the problem that the antenna in the bad environment is easily hit by the gravel rolled up by the wind force, the normal operation of the antenna is affected, and even the signal transmission operation of the antenna is directly interrupted. If a protective device is directly added around the antenna, the signal receiving performance of the antenna is easily affected. The cover plate is swung to the upper end of the fine-tuning type antenna part to form a shielding cover, and is in an inclined state. At this time, the fan is towards the upper end of the fine-tuning type antenna part, and the wind force is applied to the fine-tuning type antenna part from top to bottom. The shielding cover shields the fine-tuning type antenna part in the bad weather. The rotation axis points of the traction swing rod and the cover plate are perpendicular to each other, so as to expand the activity range of the cover plate and the traction swing rod. Under the mutual auxiliary cooperation, the flying birds are driven away regularly, and the functionality of the cover plate is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fine-tuning type antennas, in particular to a fine-tuning type high-efficiency antenna capable of preventing damage caused by floating objects in severe weather and a prevention method. BACKGROUND

[0002] Common antennas include mobile base station antennas, broadcast antennas, radar antennas, WI FI antennas, and mobile phone antennas. When alternating current flows through the conductors, electromagnetic waves can be radiated. If the distance between two conductors is very close, the induced fields generated by the two conductors will be counteracted, and thus the radiation will be very weak. If the two conductors are spread apart, the induced fields generated by the two conductors will be superimposed in the same direction, and thus the radiation will be stronger. The radiation capacity is related to the length and shape of the conductors.

[0003] An antenna is a device that radiates and receives radio waves. However, in severe weather with high wind and rain, the wind will lift up the gravel on the ground, which will easily hit the antenna in a harsh environment, affecting the normal operation of the antenna, and even directly interrupting the signal transmission operation of the antenna. If a protective device is directly added around the antenna, it can prevent the impact force from the outside to a certain extent, but it will affect the signal receiving performance of the antenna. In addition, the antenna surface is equipped with a plurality of connection cables, and the directly exposed cables are easy to attract flying birds to stay.

[0004] In view of the above problems, the present application improves the existing device and provides a fine-tuning type high-efficiency antenna capable of preventing damage caused by floating objects in severe weather and a prevention method. SUMMARY

[0005] The present application aims to provide a fine-tuning type high-efficiency antenna capable of preventing damage caused by floating objects in severe weather and a prevention method, which solves the problem that the antenna is a device that radiates and receives radio waves, but in severe weather with high wind and rain, the wind will lift up the gravel on the ground, which will easily hit the antenna in a harsh environment, affecting the normal operation of the antenna, and even directly interrupting the signal transmission operation of the antenna. If a protective device is directly added around the antenna, it can prevent the impact force from the outside to a certain extent, but it will affect the signal receiving performance of the antenna. In addition, the antenna surface is equipped with a plurality of connection cables, and the directly exposed cables are easy to attract flying birds to stay.

[0006] In order to achieve the above object, the present application provides the following technical scheme: The fine-tuning type high-efficiency antenna capable of preventing bad weather floating object from injuring, comprising an antenna pole and an assembly installed on the surface of the antenna pole, the surface of the assembly is provided with a fine-tuning type antenna part, the top end of the antenna pole is provided with a positioning beam rod, the lower end of the positioning beam rod is provided with a steering adjusting part, one side of the steering adjusting part is provided with a protective cover, the positioning beam rod comprises a mounting handle disc installed at the top end of the antenna pole and an extension rod installed on the side surface of the mounting handle disc, one side of the extension rod is provided with a positioning sleeve frame, the steering adjusting part comprises a driving combination part installed at one end of the extension rod and an outer traction disc arranged on one side of the driving combination part, the side surface of the extension rod is provided with a connecting sleeve rod, the outer traction disc is sleeved at one end of the connecting sleeve rod, one side of the outer traction disc is provided with a sleeved traction disc, the sleeved traction disc is sleeved on the surface of the antenna pole, the surface of the driving combination part, the outer traction disc and the sleeved traction disc is sleeved with a guide traction belt.

[0007] The protective cover comprises a cover plate arranged at the upper end of the fine-tuning type antenna part and a fan arranged on the surface of the cover plate, one end of the cover plate is provided with a spliced long rod, one end of the spliced long rod is provided with an adjusting tooth disc, the driving combination part comprises a base disc arranged on the surface of the extension rod and a spliced connecting rod installed on one side of the base disc, one end of the spliced connecting rod is provided with a driving traction disc, the middle end of the base disc, the spliced connecting rod and the driving traction disc is provided with a driving shaft, the side surface of the base disc is provided with a positioning clasp, and the positioning clasp is arranged on the inner side of the spliced connecting rod, the adjusting tooth disc comprises a gear disc part and a limiting convex block arranged on the side surface of the gear disc part, the gear disc part is arranged between the base disc and the driving traction disc, the other side of the gear disc part is connected with the spliced long rod, the side surface of the limiting convex block is provided with a limiting annular groove, the size of the limiting annular groove is larger than that of the positioning clasp, and the limiting annular groove is connected with the positioning clasp.

[0008] The inner side surface of the driving traction disc is provided with a butt joint ring, the butt joint ring is arranged on the outer side of the spliced connecting rod, the outer surface of the butt joint ring is provided with an annular tooth surface, the annular tooth surface is connected with the gear disc part in meshing mode, the spliced long rod comprises a first butt joint rod connected with the center of the gear disc part and a second butt joint rod connected with one end of the cover plate, a movable rotating part is arranged between the first butt joint rod and the second butt joint rod, one side of the movable rotating part is provided with a driving extension part, the other side of the movable rotating part is provided with a positioning control part, one end of the driving extension part and the positioning control part is connected with the first butt joint rod, the other end of the driving extension part and the positioning control part is connected with the second butt joint rod.

[0009] Further, the movable rotating part comprises a first connecting block connected with the first butt joint rod and a second connecting block connected with the second butt joint rod, a movable connecting part is arranged between the first connecting block and the second connecting block, and the driving extension part and the positioning control part are located on both sides of the movable connecting part.

[0010] Further, the driving elongated member comprises mounting abutting blocks arranged on the side surfaces of the first and second abutting rods and movable grooves opened on the surfaces of the mounting abutting blocks, and the mounting abutting blocks are arranged in two groups.

[0011] Further, the inside of the movable grooves is provided with sleeving rotating shafts, and the inside of the movable grooves is provided with connecting semicircular blocks, the mounting abutting blocks are connected with the connecting semicircular blocks through the sleeving rotating shafts, the connecting semicircular blocks are arranged in two groups, and the driving telescopic rods are arranged between the two groups of connecting semicircular blocks.

[0012] Further, the positioning control member comprises fixed engaging blocks arranged on the side surfaces of the first and second abutting rods and first folding rods arranged on the inside of the fixed engaging blocks, the inside of the first folding rods is provided with second folding rods, one end of the first folding rods is connected with one group of fixed engaging blocks, and one end of the second folding rods is connected with another group of fixed engaging blocks.

[0013] Further, the first folding rods comprise transverse outer rods connected with the fixed engaging blocks and sliding open grooves opened on the surfaces of the transverse outer rods, and the inside of the sliding open grooves is provided with positioning sliding grooves on both sides.

[0014] Further, the second folding rods comprise transverse inner rods connected with the sliding open grooves and communication through sliding grooves opened on the surfaces of the transverse inner rods, the inside of the communication through sliding grooves is provided with abutting connecting rods, the two ends of the abutting connecting rods are connected with the positioning sliding grooves, and the transverse outer rods are connected with the transverse inner rods through the abutting connecting rods.

[0015] Further, the sleeving traction disc comprises splicing rotating rings sleeved on the surfaces of the antenna rods and traction swing rods arranged on the side surfaces of the splicing rotating rings, the traction swing rods are arranged in two groups, and one end of the two groups of traction swing rods is provided with abutting handle blocks.

[0016] Further, the positioning sleeve frame comprises L-shaped connecting rods connected with the side surfaces of the extending rods at one end and abutting handle strips arranged on one end of the L-shaped connecting rods, the two ends of the abutting handle strips are provided with limiting sleeve rings, and the limiting sleeve rings are connected with the first abutting rods.

[0017] Another technical scheme provided by the application is a fine adjustment type high-efficiency antenna prevention method capable of preventing floating objects in severe weather from causing injuries, comprising the following steps:

[0018] S1: when in severe weather, the driving rotating shaft is started, the base disc and the active traction disc are rotated, the splicing rotating ring is rotated along the antenna rod, the outer traction disc is rotated along the engaging sleeve rod, the adjusting tooth disc is in a rotating state, the edges of the positioning clamping ring are clamped on the inside of the limiting annular groove, and the adjusting tooth disc drives the protective cover to rotate as a whole;

[0019] S2: by shortening the integrated length of the driving elongated member, the second pair of connecting rods is folded relative to the first pair of connecting rods through the movable rotating member, the cover plate swings to the upper end of the fine-tuning antenna member through the movable rotating member, forms a shielding cover, and presents an inclined state, and at this time, the fan is directed to the upper end of the fine-tuning antenna member, and wind force is applied to the fine-tuning antenna member from top to bottom;

[0020] S3: when the integrated length of the driving elongated member is shortened, the distance between the two groups of mounting connecting blocks is constantly close, the distance between the two groups of fixed connecting blocks is constantly far away, the transverse inner rod slides relative to the sliding connecting slot, the two groups of limiting sleeve rings position the spliced long rod, the spliced long rod rotates relative to the limiting sleeve ring, and the L-shaped connecting rod and the extension rod are fixedly connected to support the whole protective cover;

[0021] S4: when the weather is normal and the birds are around the periphery of the fine-tuning antenna member, the guide traction belt drives the driving combination, the outer traction disc and the spliced rotating ring to rotate, the cover plate rotates around the spliced long rod as the axis, the fans on the surface of the cover plate simultaneously apply wind force to the surrounding, the rotating cover plate drives the surrounding birds, and is impacted by the wind flow, thus, all implementation steps are completed.

[0022] Compared with the prior art, the beneficial effects of the present application are:

[0023] 1.The fine-tuning type high-efficiency antenna capable of preventing bad weather floating objects from injuring and the prevention method, when in the initial state, the protective cover is located on the side upper end of the fine-tuning type antenna part, the protective cover is in a vertical form, the protective cover is parallel to the installation of the fine-tuning type antenna part, and the protective cover maintains a proper distance from the fine-tuning type antenna part, which does not affect the signal transmission of the fine-tuning type antenna part in the normal state; when in bad weather, the driving shaft is started, the base disc and the driving traction disc are rotated, under the traction of the guide traction belt, the spliced rotating ring rotates along the antenna rod, the outer traction disc rotates along the connecting sleeve rod, a series of linkage traction components are formed, the meshing connection of the annular tooth surface and the gear disc part makes the adjusting tooth disc in a rotating state, the edge of the positioning snap ring is clamped on the inside of the limiting ring groove, the gear disc part can be perpendicular to the butt joint ring during rotation, the adjusting tooth disc drives the protective cover to rotate as a whole, the protective cover is in a horizontal form, the protective cover is perpendicular to the installation of the fine-tuning type antenna part, the comprehensive length of the driving elongated part is shortened, the second connecting rod is folded relative to the first connecting rod through the movable rotating part, the cover plate swings to the upper end of the fine-tuning type antenna part through the movable rotating part, forms a shielding cover, and is in an inclined state, at this time, the fan is directed to the upper end of the fine-tuning type antenna part, the fine-tuning type antenna part is subjected to wind force from top to bottom, the inclined form of the cover plate enlarges the range of wind force application, and the shielding cover shields the fine-tuning type antenna part in bad weather, avoids the accumulation of rain, snow or hail on the surface of the fine-tuning type antenna part, and intercepts the impact of foreign objects such as stones in a certain direction, so that when the weather prediction module senses that bad weather is coming, the whole operation of the protective cover is controlled to protect the fine-tuning type antenna part in advance, thereby prolonging the service life of the fine-tuning type antenna part.

[0024] 2.The fine-tuning type high-efficiency antenna capable of preventing bad weather floating objects from injuring and the prevention method, when the comprehensive length of the driving elongated part is shortened, the driving telescopic rod is started, the distance between the two groups of mounting butt joints is constantly reduced, the distance between the two groups of fixed butt joints is constantly increased, the transverse inner rod slides relative to the sliding open slot, and the transverse inner rod and the transverse outer rod remain limited and movable when being folded, not only providing support points for the folding of the spliced long rod, but also enhancing the stability of the first connecting rod and the second connecting rod during folding, the two groups of limiting sleeve rings position the spliced long rod, the spliced long rod rotates relative to the limiting sleeve rings, the L-shaped connecting rod and the extension rod are fixedly connected to support the whole protective cover, share the force applied by the driving traction disc to the gear disc part, and improve the control effect of the operation strength of the protective cover.

[0025] 3. The fine-tuning type high-efficiency antenna and the prevention method of the present application can prevent the bad weather floating object from injuring, when in normal weather, the flying birds around the periphery of the fine-tuning type antenna part, the guide traction belt drives the driving assembly, the outer traction disc and the spliced rotating ring to rotate, the cover plate rotates around the spliced long rod as the axis, the fan on the surface of the cover plate simultaneously applies wind to the periphery, the rotating cover plate drives the flying birds around, and the flying birds are intercepted by the wind flow and stay on the connecting cable arranged on the surface of the antenna, with the rotation of the spliced rotating ring, the traction swing rod rotates around the antenna rod as the axis, the rotation axes of the traction swing rod and the cover plate are perpendicular to each other, so as to expand the activity range of the cover plate and the traction swing rod, and the flying birds are driven away daily in the mutual auxiliary cooperation to improve the functionality of the cover plate. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0027] Figure 2 It is a schematic diagram of the assembly structure of the positioning beam rod and the steering adjusting part of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0028] Figure 3 It is a schematic diagram of the protective cover structure of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0029] Figure 4 It is a schematic diagram of the driving assembly structure of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0030] Figure 5 It is a schematic diagram of the assembly structure of the adjusting tooth disc and the active traction disc of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0031] Figure 6 It is a schematic diagram of the internal plane structure of the spliced long rod of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0032] Figure 7 It is a schematic diagram of the movable rotating part structure of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0033] Figure 8 It is a schematic diagram of the assembly structure of the driving elongated part and the positioning control part of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0034] Figure 9 It is a schematic diagram of the split structure of the first folding rod and the second folding rod of the fine-tuning type high-efficiency antenna of the present application which can prevent the bad weather floating object from injuring;

[0035] Figure 10The structure diagram of the fine-tuning type high-efficiency antenna sleeve joint traction disc capable of preventing the antenna from being hit by floating objects in bad weather;

[0036] Figure 11 The structure diagram of the fine-tuning type high-efficiency antenna positioning sleeve capable of preventing the antenna from being hit by floating objects in bad weather.

[0037] In the figure: 1, antenna pole; 2, assembly; 3, fine-tuning type antenna part; 4, positioning beam pole; 41, mounting handle disc; 42, extension rod; 43, positioning sleeve; 431, L-shaped connecting rod; 432, butt joint handle strip; 433, limiting sleeve ring; 5, steering adjusting part; 51, driving assembly; 511, base disc; 512, splicing connecting rod; 513, active traction disc; 5131, butt joint paste ring; 5132, annular tooth surface; 514, positioning snap ring; 515, driving rotation shaft; 52, connection sleeve rod; 53, outer traction disc; 54, sleeve joint traction disc; 541, splicing rotating ring; 542, butt joint handle block; 543, traction swing rod; 55, guide traction belt; 6, protective cover; 61, cover plate; 62, fan; 63, splicing long rod; 631, first butt joint rod; 632, second butt joint rod; 633, movable rotating part; 6331, first connection block; 6332, second connection block; 6333, movable connecting part; 634, driving extension part; 6341, mounting butt joint block; 6342, movable recess; 6343, sleeve joint rotation shaft; 6344, connecting semicircular block; 6345, driving telescopic rod; 635, positioning control part; 6351, fixed connection block; 6352, first folding rod; 63521, transverse outer rod; 63522, sliding connection open slot; 63523, positioning sliding slot; 6353, second folding rod; 63531, transverse inner rod; 63532, communication through sliding slot; 63533, butt joint connecting rod; 64, adjusting tooth disc; 641, gear disc part; 642, limiting convex circular block; 643, limiting annular slot. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0039] In order to solve the technical problem that in high-intensity rainy weather, the gravel on the ground is rolled up by the wind force, and the antenna in a bad environment is easily hit by the gravel, which affects the normal operation of the antenna, and even directly interrupts the signal transmission operation of the antenna, if a protective device is directly added around the antenna, although the impact force from the outside can be prevented to a certain extent, the signal receiving performance of the antenna is easily affected. Figures 1-6As shown, the following preferred technical solutions are provided:

[0040] The fine-tuning type high-efficiency antenna capable of preventing bad weather floating objects from causing injury includes an antenna rod 1 and an assembly 2 installed on the surface of the antenna rod 1, the surface of the assembly 2 is provided with a fine-tuning type antenna part 3, the top end of the antenna rod 1 is provided with a positioning beam rod 4, the lower end of the positioning beam rod 4 is provided with a steering adjusting part 5, one side of the steering adjusting part 5 is provided with a protective cover 6, the positioning beam rod 4 includes a mounting handle disc 41 installed at the top end of the antenna rod 1 and an extension rod 42 installed on the side surface of the mounting handle disc 41, one side of the extension rod 42 is provided with a positioning sleeve frame 43, the steering adjusting part 5 includes a driving assembly 51 installed at one end of the extension rod 42 and an outer traction disc 53 arranged on one side of the driving assembly 51, the side surface of the extension rod 42 is provided with a connection sleeve rod 52, the outer traction disc 53 is sleeved at one end of the connection sleeve rod 52, one side of the outer traction disc 53 is provided with a sleeved traction disc 54, the sleeved traction disc 54 is sleeved on the surface of the antenna rod 1, and the surfaces of the driving assembly 51, the outer traction disc 53 and the sleeved traction disc 54 are sleeved with a guide traction belt 55.

[0041] The protective cover 6 includes a cover plate 61 arranged at the upper end of the fine-tuning type antenna part 3 and a fan 62 arranged on the surface of the cover plate 61, one end of the cover plate 61 is provided with a spliced long rod 63, one end of the spliced long rod 63 is provided with an adjusting tooth disc 64, the driving assembly 51 includes a base disc 511 arranged on the surface of the extension rod 42 and a spliced connecting rod 512 installed on one side of the base disc 511, one end of the spliced connecting rod 512 is provided with a driving traction disc 513, the middle ends of the base disc 511, the spliced connecting rod 512 and the driving traction disc 513 are provided with driving shafts 515, the side surface of the base disc 511 is provided with a positioning clasp 514, and the positioning clasp 514 is arranged on the inner side of the spliced connecting rod 512, the adjusting tooth disc 64 includes a gear disc part 641 and a limiting convex circular block 642 arranged on the side surface of the gear disc part 641, the gear disc part 641 is arranged between the base disc 511 and the driving traction disc 513, the other side of the gear disc part 641 is connected with the spliced long rod 63, the side surface of the limiting convex circular block 642 is provided with a limiting annular groove 643, the size of the limiting annular groove 643 is larger than that of the positioning clasp 514, and the limiting annular groove 643 is connected with the positioning clasp 514.

[0042] An engagement ring 5131 is installed on the inner surface of the active traction disc 513. The engagement ring 5131 is located on the outer side of the splicing connecting rod 512. The outer surface of the engagement ring 5131 is provided with an annular tooth surface 5132. The annular tooth surface 5132 meshes with the gear disc component 641. The splicing long rod 63 includes a first engagement rod 631 connected to the center of the gear disc component 641 and a second engagement rod 632 connected to one end of the cover plate 61. A movable rotating component 633 is installed between the first engagement rod 631 and the second engagement rod 632. A drive extension component 634 is provided on one side of the movable rotating component 633. A positioning control component 635 is installed on the other side of the movable rotating component 633. One end of the drive extension component 634 and the positioning control component 635 is connected to the first engagement rod 631, and the other end of the drive extension component 634 and the positioning control component 635 is connected to the second engagement rod 632.

[0043] Specifically, in its initial state, the protective cover 6 is located on the upper side of the fine-tuning antenna 3. The protective cover 6 is vertical and parallel to the installation of the fine-tuning antenna 3, thus maintaining a suitable distance between the protective cover 6 and the fine-tuning antenna 3, which will not affect the signal transmission of the fine-tuning antenna 3 under normal conditions. In severe weather, the drive shaft 515 is activated, and the base plate 511 and the active traction plate 513 rotate accordingly. Under the traction of the guide traction belt 55, the splicing rotating ring 541 rotates along the antenna rod 1, and the outer traction plate 53 rotates along the connecting sleeve rod 52, forming a series of linked traction components. The annular tooth surface 5132 meshes with the gear plate 641, causing the adjusting gear plate 64 to rotate. The edge of the positioning ring 514 is engaged with the inner side of the limiting annular groove 643, so that the gear plate 641 can be perpendicular to the mating ring 5131 during rotation. The adjusting gear plate 64 drives the entire protective cover 6 to rotate. The protective cover 6 is moved to a horizontal position, and the protective cover 6 is perpendicular to the installation of the fine-tuning antenna 3. By shortening the overall length of the drive extension 634, the second docking rod 632 is folded relative to the first docking rod 631 via the movable rotating part 633. The cover plate 61 swings to the top of the fine-tuning antenna 3 via the movable rotating part 633, forming a shielding cover and presenting an inclined state. At this time, the fan 62 faces the top of the fine-tuning antenna 3 and applies wind force to the fine-tuning antenna 3 from top to bottom. By using the inclined form of the cover plate 61, the application range of wind force is expanded. Thus, this shielding cover protects the fine-tuning antenna 3 in severe weather, preventing rain, snow or hail from accumulating on the surface of the fine-tuning antenna 3, and intercepting the impact of foreign objects such as gravel from a certain direction. Therefore, when the weather forecast module senses that severe weather is about to arrive, it controls a series of operations of the entire protective cover 6 to provide pre-protection for the fine-tuning antenna 3, thereby extending the service life of the fine-tuning antenna 3.

[0044] In order to better solve the technical problem of inconvenient control of the operation of the protective cover, as shown in Figures 6-9 , the following preferred technical solutions are provided:

[0045] The movable rotating part 633 comprises a first connecting block 6331 connected with the first connecting rod 631 and a second connecting block 6332 connected with the second connecting rod 632, a movable connecting part 6333 is arranged between the first connecting block 6331 and the second connecting block 6332, the driving elongated part 634 and the positioning control part 635 are located on both sides of the movable connecting part 6333, the driving elongated part 634 comprises a mounting connecting block 6341 arranged on the side surface of the first connecting rod 631 and the second connecting rod 632 and a movable recess 6342 opened on the surface of the mounting connecting block 6341, the mounting connecting block 6341 is provided with two groups, a sleeving rotating shaft 6343 is arranged in the movable recess 6342, a connecting semicircular block 6344 is arranged in the movable recess 6342, the mounting connecting block 6341 is connected with the connecting semicircular block 6344 through the sleeving rotating shaft 6343, the connecting semicircular block 6344 is provided with two groups, a driving telescopic rod 6345 is arranged between the two groups of connecting semicircular blocks 6344, the positioning control part 635 comprises a fixed connecting block 6351 arranged on the side surface of the first connecting rod 631 and the second connecting rod 632 and a first folding rod 6352 arranged on the inner side of the fixed connecting block 6351, a second folding rod 6353 is arranged on the inner side of the first folding rod 6352, one end of the first folding rod 6352 is connected with one group of fixed connecting blocks 6351, and one end of the second folding rod 6353 is connected with the other group of fixed connecting blocks 6351.

[0046] Specifically, when the comprehensive length of the driving elongated part 634 is shortened, the driving telescopic rod 6345 is started, the distance between the two groups of mounting connecting blocks 6341 is continuously close, the distance between the two groups of fixed connecting blocks 6351 is continuously far away, the transverse inner rod 63531 slides relative to the sliding open groove 63522, and the transverse inner rod 63531 and the transverse outer rod 63521 are still kept from being limited to move when being folded relative to each other by the connecting rod 63533, not only providing a support point for the folding of the spliced long rod 63, but also enhancing the stability of the first connecting rod 631 and the second connecting rod 632 in the folding process, the two groups of limiting sleeve rings 433 position the spliced long rod 63, the spliced long rod 63 rotates relative to the limiting sleeve ring 433, and the L-shaped connecting rod 431 and the extension rod 42 are fixedly connected to support the whole protective cover 6, share the force applied by the driving disc 513 to the gear disc part 641, and improve the control effect of the operation strength of the protective cover 6.

[0047] In order to solve the technical problem that the antenna surface is provided with a plurality of connecting cables, and the directly exposed cables are easy to attract flying birds to stay, as shown in Figures 1-4 , Figure 10 andFigure 11 As shown, the following preferred technical solutions are provided:

[0048] The first folding rod 6352 comprises a transverse outer rod 63521 connected with the fixed engaging block 6351 and a sliding open groove 63522 opened on the surface of the transverse outer rod 63521, and the inside of the sliding open groove 63522 is provided with a positioning sliding groove 63523 on both sides, the second folding rod 6353 comprises a transverse inner rod 63531 connected with the sliding open groove 63522 and a communication sliding groove 63532 opened on the surface of the transverse inner rod 63531, the inside of the communication sliding groove 63532 is provided with a butt joint connecting rod 63533, the two ends of the butt joint connecting rod 63533 are connected with the positioning sliding groove 63523, and the transverse outer rod 63521 is connected with the transverse inner rod 63531 through the butt joint connecting rod 63533, the sleeved traction disc 54 comprises a spliced rotary ring 541 sleeved on the surface of the antenna rod 1 and a traction swing rod 543 provided on the surface of both sides of the spliced rotary ring 541, the traction swing rod 543 is provided with two groups, one end of the two groups of traction swing rods 543 is provided with a butt joint handle block 542, and the positioning sleeve frame 43 comprises an L-shaped connecting rod 431 connected with the side surface of the extension rod 42 and a butt joint handle strip 432 provided on one end of the L-shaped connecting rod 431, both ends of the butt joint handle strip 432 are provided with a limiting sleeve ring 433, and the limiting sleeve ring 433 is connected with the first butt joint rod 631.

[0049] Specifically, when in normal weather, the flying birds are around the periphery of the fine-tuning type antenna 3, the guide traction belt 55 drives the driving assembly 51, the outer traction disc 53 and the spliced rotary ring 541 to rotate, the cover plate 61 rotates around the spliced long rod 63 as the axis, the fan 62 on the surface of the cover plate 61 simultaneously applies wind to the surrounding, the rotating cover plate 61 drives the flying birds around to stay on the connecting cable arranged on the surface of the antenna, with the rotation of the spliced rotary ring 541, the traction swing rod 543 rotates around the antenna rod 1 as the axis, the rotation axes of the traction swing rod 543 and the cover plate 61 are perpendicular to each other, so as to expand the activity range of the cover plate 61 and the traction swing rod 543, and under the mutual auxiliary cooperation, the flying birds are driven away daily, and the functionality of the cover plate 61 is improved.

[0050] In order to further better explain the above-mentioned embodiment, the application also provides an embodiment, that is, a fine-tuning type high-efficiency antenna preventing method for preventing flying objects in bad weather from injuring, comprising the following steps:

[0051] Step one: when in bad weather, start driving the rotating shaft 515, the base disc 511 and the driving traction disc 513 rotate, the spliced rotating ring 541 rotates along the antenna pole 1, the outer traction disc 53 rotates along the connecting sleeve pole 52, the adjusting tooth disc 64 is in a rotating state, and the edge of the positioning clasp ring 514 is clamped on the inner side of the limiting ring groove 643, the adjusting tooth disc 64 drives the protective cover 6 to rotate as a whole;

[0052] Step two: by shortening the comprehensive length of the driving elongated part 634, the second connecting rod 632 is folded relative to the first connecting rod 631 through the movable rotating part 633, the cover plate 61 swings to the upper end of the micro-adjusting antenna 3 through the movable rotating part 633, forms a shielding cover, and presents an inclined state, and at this time, the fan 62 faces the upper end of the micro-adjusting antenna 3, and wind power is applied to the micro-adjusting antenna 3 from top to bottom;

[0053] Step three: when the comprehensive length of the driving elongated part 634 is shortened, the distance between the two groups of mounting connecting blocks 6341 is constantly close, the distance between the two groups of fixed connecting blocks 6351 is constantly far away, the transverse inner rod 63531 slides relative to the sliding connection slot 63522, the two groups of limiting sleeve rings 433 position the spliced long rod 63, the spliced long rod 63 rotates relative to the limiting sleeve ring 433, and the protective cover 6 is supported as a whole through the fixed connection of the L-shaped connecting rod 431 and the extension rod 42;

[0054] Step four: when in normal weather, the birds are around the periphery of the micro-adjusting antenna 3, the guide traction belt 55 drives the driving assembly 51, the outer traction disc 53 and the spliced rotating ring 541 to rotate, the cover plate 61 rotates around the spliced long rod 63, the fan 62 on the surface of the cover plate 61 simultaneously applies wind power to the surrounding, and the rotating cover plate 61 drives the surrounding birds, and is impacted by the wind flow, thus, all implementation steps are completed.

[0055] The above is only the preferred specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A fine-tuning high-efficiency antenna that can prevent injury from falling debris in severe weather, comprising an antenna mast (1) and an assembly (2) mounted on the surface of the antenna mast (1), wherein a fine-tuning antenna element (3) is provided on the surface of the assembly (2), characterized in that: A positioning beam (4) is installed at the top of the antenna mast (1). A steering adjustment component (5) is provided at the lower end of the positioning beam (4). A protective cover (6) is installed on one side of the steering adjustment component (5). The positioning beam (4) includes a mounting handle (41) installed at the top of the antenna mast (1) and an extension rod (42) installed on the side surface of the mounting handle (41). A positioning sleeve (43) is installed on one side of the extension rod (42). The steering adjustment component (5) includes a drive assembly (51) installed at one end of the extension rod (42) and an outer traction disc (53) provided on one side of the drive assembly (51). (42) has a connecting sleeve rod (52) installed on its side surface. An outer traction disc (53) is sleeved on one end of the connecting sleeve rod (52). A sleeve traction disc (54) is installed on one side of the outer traction disc (53). The sleeve traction disc (54) is sleeved on the surface of the antenna mast (1). A guide traction belt (55) is sleeved on the surface of the drive assembly (51), the outer traction disc (53), and the sleeve traction disc (54). The protective cover (6) includes a cover plate (61) set on the upper end of the fine-tuning antenna component (3) and a fan (62) set on the surface of the cover plate (61). A splicing device is installed on one end of the cover plate (61). A long rod (63) is connected to a spliced ​​long rod (63), one end of which is equipped with an adjusting gear plate (64). The drive assembly (51) includes a base plate (511) disposed on the surface of the extension rod (42) and a splicing connecting rod (512) mounted on one side of the base plate (511). One end of the splicing connecting rod (512) is provided with an active traction plate (513). The middle ends of the base plate (511), the splicing connecting rod (512) and the active traction plate (513) are all provided with drive shafts (515). The side surface of the base plate (511) is provided with a positioning ring (514), and the positioning ring (514) is set at... Inside the splicing link (512), the adjusting gear disc (64) includes a gear disc component (641) and a limiting convex block (642) disposed on the side surface of the gear disc component (641). The gear disc component (641) is disposed between the base disc (511) and the active traction disc (513). The other side of the gear disc component (641) is connected to the splicing long rod (63). A limiting annular groove (643) is opened on the side surface of the limiting convex block (642). The size of the limiting annular groove (643) is larger than that of the positioning ring (514), and the limiting annular groove (643) is connected to the positioning ring (514).A mating ring (5131) is installed on the inner surface of the active traction disc (513). The mating ring (5131) is located on the outer side of the splicing connecting rod (512). The outer surface of the mating ring (5131) is provided with an annular tooth surface (5132). The annular tooth surface (5132) meshes with the gear disc component (641). The splicing long rod (63) includes a first mating rod (631) connected to the center of the gear disc component (641) and a second mating rod (632) connected to one end of the cover plate (61). A movable rotating part (633) is installed between the first docking rod (631) and the second docking rod (632). A driving extension part (634) is provided on one side of the movable rotating part (633), and a positioning control part (635) is installed on the other side of the movable rotating part (633). One end of the driving extension part (634) and the positioning control part (635) are connected to the first docking rod (631), and the other end of the driving extension part (634) and the positioning control part (635) are connected to the second docking rod (632).

2. The fine-tuning high-efficiency antenna as described in claim 1, which can prevent injury from falling objects in severe weather, is characterized in that: The movable connector (633) includes a first connecting block (6331) connected to the first docking rod (631) and a second connecting block (6332) connected to the second docking rod (632). A movable connector (6333) is installed between the first connecting block (6331) and the second connecting block (6332). A drive extension member (634) and a positioning control member (635) are located on both sides of the movable connector (6333).

3. The fine-tuning high-efficiency antenna for preventing injury from falling debris in severe weather as described in claim 2, characterized in that: The drive extension member (634) includes a mounting docking block (6341) disposed on the side surface of the first docking rod (631) and the second docking rod (632) and a movable groove (6342) formed on the surface of the mounting docking block (6341), and two sets of mounting docking blocks (6341) are provided.

4. The fine-tuning high-efficiency antenna as described in claim 3, which can prevent injury from falling objects in severe weather, is characterized in that: The movable groove (6342) is provided with a connecting shaft (6343) inside, and a connecting semicircular block (6344) is provided inside the movable groove (6342). The mounting docking block (6341) is connected to the connecting semicircular block (6344) through the connecting shaft (6343). There are two sets of connecting semicircular blocks (6344), and a drive telescopic rod (6345) is installed between the two sets of connecting semicircular blocks (6344).

5. The fine-tuning high-efficiency antenna as described in claim 4, which can prevent injury from falling objects in severe weather, is characterized in that: The positioning control component (635) includes a fixed connecting block (6351) disposed on the side surface of the first docking rod (631) and the second docking rod (632) and a first folding rod (6352) disposed on the inner side of the fixed connecting block (6351). A second folding rod (6353) is installed on the inner side of the first folding rod (6352). One end of the first folding rod (6352) is connected to a set of fixed connecting blocks (6351), and one end of the second folding rod (6353) is connected to another set of fixed connecting blocks (6351).

6. The fine-tuning high-efficiency antenna as described in claim 5, which can prevent injury from falling debris in severe weather, is characterized in that: The first folding rod (6352) includes a transverse outer rod (63521) connected to the fixed connecting block (6351) and a sliding groove (63522) opened on the surface of the transverse outer rod (63521). Positioning grooves (63523) are opened on both sides inside the sliding groove (63522).

7. The fine-tuning high-efficiency antenna as described in claim 6, which can prevent injury from falling objects in severe weather, is characterized in that: The second folding rod (6353) includes a transverse inner rod (63531) connected to the sliding groove (63522) and a connecting through groove (63532) opened on the surface of the transverse inner rod (63531). A connecting rod (63533) is provided inside the connecting through groove (63532). The two ends of the connecting rod (63533) are connected to the positioning groove (63523), and the transverse outer rod (63521) is connected to the transverse inner rod (63531) through the connecting rod (63533).

8. The fine-tuning high-efficiency antenna for preventing injury from falling debris in severe weather as described in claim 7, characterized in that: The traction disc (54) includes a splicing swivel (541) sleeved on the surface of the antenna mast (1) and traction swing rods (543) set on both sides of the splicing swivel (541). There are two sets of traction swing rods (543), and a docking handle block (542) is installed at one end of each set of traction swing rods (543).

9. The fine-tuning high-efficiency antenna for preventing injury from falling debris in severe weather as described in claim 8, characterized in that: The positioning sleeve (43) includes an L-shaped connecting rod (431) with one end connected to the side surface of the extension rod (42) and a docking handle (432) provided at one end of the L-shaped connecting rod (431). Both ends of the docking handle (432) are provided with limiting collars (433), and the limiting collars (433) are connected to the first docking rod (631).

10. A method for preventing injury from falling debris in severe weather using a fine-tuning high-efficiency antenna as described in claim 1, characterized in that: Includes the following steps: S1: When in severe weather, start the drive shaft (515), the base plate (511) and the active traction plate (513) will rotate accordingly, the splicing ring (541) will rotate along the antenna mast (1), the outer traction plate (53) will rotate along the connecting sleeve rod (52), the adjusting gear plate (64) will be in a rotating state, and the edge of the positioning ring (514) will be locked inside the limiting annular groove (643). The adjusting gear plate (64) will drive the protective cover (6) to rotate as a whole. S2: By shortening the overall length of the drive extension (634), the second docking rod (632) is folded relative to the first docking rod (631) via the movable rotating part (633), and the cover plate (61) is swung to the top of the fine-tuning antenna (3) via the movable rotating part (633) to form a shielding cover and be in an inclined state. At this time, the fan (62) is facing the top of the fine-tuning antenna (3) and applies wind force to the fine-tuning antenna (3) from top to bottom. S3: When the overall length of the drive extension (634) is shortened, the distance between the two sets of mounting docking blocks (6341) continuously approaches, the distance between the two sets of fixed connecting blocks (6351) continuously moves away, the transverse inner rod (63531) slides relative to the sliding groove (63522), the two sets of limiting collars (433) position the splicing long rod (63), the splicing long rod (63) rotates relative to the limiting collar (433), and the protective cover (6) is supported as a whole by the fixed connection of the L-shaped connecting rod (431) and the extension rod (42); S4: When the weather is normal and birds are flying around the fine-tuning antenna (3), the guide traction belt (55) drives the drive assembly (51), the outer traction disc (53) and the splicing swivel (541) to rotate. The cover plate (61) rotates around the splicing rod (63) as the axis. At the same time, the fan (62) on the surface of the cover plate (61) applies wind force to the surrounding area. The rotating cover plate (61) drives away the surrounding birds and is impacted by the applied wind flow. Thus, all implementation steps are completed.

Citation Information

Patent Citations

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