CN110798753A - Big data artificial intelligence signal tower for communication based on 5G communication network - Google Patents

Big data artificial intelligence signal tower for communication based on 5G communication network Download PDF

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Publication number
CN110798753A
CN110798753A CN201911084814.7A CN201911084814A CN110798753A CN 110798753 A CN110798753 A CN 110798753A CN 201911084814 A CN201911084814 A CN 201911084814A CN 110798753 A CN110798753 A CN 110798753A
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China
Prior art keywords
signal tower
big data
wind
data artificial
communication signal
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CN201911084814.7A
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Chinese (zh)
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周健昌
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Individual
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Individual
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q1/00Details of selecting apparatus or arrangements
    • H04Q1/02Constructional details
    • H04Q1/11Protection against environment
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H12/00Towers; Masts or poles; Chimney stacks; Water-towers; Methods of erecting such structures

Abstract

The invention provides a large data artificial intelligent communication signal tower based on a 5G communication network, which structurally comprises an intelligent communication signal tower base, a communication network guide plate, a wind level contraction and control device, a large data artificial intelligent communication signal tower frame and a side pressure guard plate, wherein the top end of the intelligent communication signal tower base is fixedly connected to the bottom end of the large data artificial intelligent communication signal tower frame in an electric welding mode.

Description

Big data artificial intelligence signal tower for communication based on 5G communication network
Technical Field
The invention belongs to the field of 5G communication signals, and particularly relates to a signal tower for big data artificial intelligent communication based on a 5G communication network.
Background
In the 5G network, the communication signal tower can transmit at a speed more than one hundred times that of the 4G network, and mainly receives, switches and transmits signal waves through an information exchanger which is arranged at the top of the signal tower and is open, the construction and maintenance cost of the 5G communication signal tower is relatively high, and particularly an isolated signal tower which is arranged in a island in the southern coastal region is generally relatively low compared with the signal tower in the inland region.
Based on the above description, the inventor finds that the existing signal tower for big data artificial intelligent communication based on the 5G communication network mainly has the following defects, for example:
in southern coastal areas, typhoons often appear under the influence of wind ocean currents in summer, strong wind can roll up more articles for signal towers on small islands, and the signal towers in isolated states are easily impacted by rolled-up objects in typhoon periods, so that the top information exchanger is damaged, and further the signal towers are in a paralyzed state.
Disclosure of Invention
In order to solve the technical problems, the invention provides a large data artificial intelligent communication signal tower based on a 5G communication network, which aims to solve the problems that typhoons often occur in southern coastal areas under the influence of ocean currents in summer seasons, strong wind can roll up more articles for the signal tower on a small island, and a top information exchanger is damaged and is in a paralyzed state due to the fact that the signal tower in an isolated state is easily impacted by rolled-up objects in a typhoon period.
Aiming at the defects of the prior art, the invention discloses a purpose and an effect of a big data artificial intelligent communication signal tower based on a 5G communication network, which are achieved by the following specific technical means: the utility model provides a big data artificial intelligence signal tower for communication based on 5G communication network, its structure includes intelligent communication signal tower seat, communication network guide plate, wind level contract and protect regulation and control device, big data artificial intelligence signal tower for communication, side pressure backplate, intelligent communication signal tower seat top adopts electric welding's mode fixed connection in big data artificial intelligence signal tower bottom for communication, side pressure backplate fixed mounting is at big data artificial intelligence signal tower intermediate position for communication, wind level contract and protect regulation and control device and install inside the communication network guide plate through the mode of embedding, communication network guide plate is equipped with three and fixed mounting on big data artificial intelligence signal tower top for communication altogether.
Wind level contracts and protects regulation and control device and includes top shrouding, top dish, wind level inner chamber, compressibility regulation and control mechanism, big data artificial intelligence communication signal interchanger, the compressibility regulation and control mechanism is installed inside the top shrouding through the mode of embedding, big data artificial intelligence communication signal interchanger top intermediate position is located to the top dish, wind level inner chamber and top shrouding structure as an organic whole, the top shrouding welds with big data artificial intelligence communication signal pylon mutually.
Preferably, the compression regulation and control mechanism comprises a back plate, a fixed sleeve, a wind level group, a reverse traction constant pressure mechanism and a dislocation twisting and pulling mechanism, the back plate is mechanically connected with the dislocation twisting and pulling mechanism, the wind level group is installed inside the fixed sleeve in an embedded mode, the reverse traction constant pressure mechanism is connected with the wind level group through the fixed sleeve, and the compression regulation and control mechanism can perform real-time self-adjustment storage protection on the big data artificial intelligent communication signal exchanger in typhoon, so that the damage to the big data artificial intelligent communication signal exchanger caused by typhoon is reduced.
Preferably, the wind level group comprises a three-level wind lever, a back cover, a secondary wind lever, a primary wind lever and a magnetic head, the three-level wind lever and the secondary wind lever are parallel to each other, the back cover is fixedly arranged at the bottom of the primary wind lever, the magnetic head is fixedly arranged at the top end of the primary wind lever, a gravity block is arranged in the primary wind lever and the other two wind levers, wind which is not subjected to impression is filtered and divided through the gravity block, the number of wind levels subjected to impact is divided through the length of the gravity block, and then the highest value of the signal can be ensured to the maximum degree.
Preferably, the reverse traction constant pressure mechanism comprises an impact traction column, an outer sleeve, a decompression cavity, a pressure bar and a slide way, the decompression cavity is arranged in the impact traction column, the pressure bar is fixedly connected with the outer surface of the outer sleeve, the pressure bar is fixedly connected with the outer surface of the impact traction column, the slide way is arranged on the inner surface of the outer sleeve, when a traction magnetic field is lost, the impact traction column can generate fixed-direction constant-position return impact through the traction of the pressure bar, the pressure after the impact is continuously kept until the impact is continuously carried out by the magnetic field again, the impact force is resumed, and the reset is completed.
Preferably, the dislocation twisting and pulling mechanism comprises a compression connecting plate, a dislocation interposer, an impact plate and a twisting and pulling adjusting button, the compression connecting plate is fixedly connected with the dislocation interposer, the twisting and pulling adjusting button is arranged on the front end face of the dislocation interposer, and the impact plate and the dislocation interposer are of an integrated structure.
Preferably, the twist-pull guiding button comprises four fixing pieces, two elastic clamps, a rear overlapping strip and an external connecting plate, the four fixing pieces are fixedly connected with the external connecting plate in a group, the two external connecting plates are fixedly connected with the external connecting plate through the rear overlapping strip, and the elastic clamps are fixedly arranged on the inner surface of the external connecting plate.
Compared with the prior art, the invention has the following advantagesAdvantageous effects
In the southern coastal area, when typhoon occurs under the influence of monsoon ocean current in summer, the signal tower on the island is subjected to stage evaluation of wind pressure through the wind stage group, and under the stamping regulation and control of the staggered twisting and pulling mechanism by the reverse traction constant pressure mechanism, the information exchanger can perform self-protection according to the wind power transformation of the typhoon, and meanwhile, the normal operation of a communication network is regulated and maintained, so that the fault rate caused by typhoon rolling objects is effectively reduced to the minimum.
Drawings
Fig. 1 is a schematic structural diagram of a signal tower for big data artificial intelligent communication based on a 5G communication network.
Fig. 2 is a schematic top view cross-sectional structure diagram of a wind level shrinkage protection control device of a signal tower for big data artificial intelligent communication based on a 5G communication network.
Fig. 3 is a schematic view of the top-view internal detailed structure of the compression adjusting mechanism.
Fig. 4 is a front view internal detailed structure schematic diagram of the wind level group.
FIG. 5 is a front view of the back-traction constant-pressure mechanism.
Fig. 6 is a front detailed structure diagram of the dislocation twisting and pulling mechanism.
Fig. 7 is a front view of the twist-pull guiding button with a detailed internal structure.
In the figure: an intelligent communication signal tower base-1, a communication network guide plate-2, a wind level compression protection regulation and control device-3, a big data artificial intelligent communication signal tower-4, a side pressure protection plate-5, a top sealing plate-a 1, a top disc-a 2, a wind level inner cavity-a 3, a compression regulation and control mechanism-a 4, a big data artificial intelligent communication signal exchanger-a 5, a back plate-a 41, a fixing sleeve-a 42, a wind level group-a 43, a reverse traction constant pressure mechanism-a 44, a dislocation twist mechanism-a 45, a three-level wind lever-a 431, a bottom sealing sleeve-a 432, a two-level wind lever-a 433, a first-level wind lever-a 434, a magnetic head-a 435, an impact guide column-a 441, an outer sleeve-a 442, a decompression cavity-a 443, a pressure bar-a 444, a slideway-a 445, a compression connection plate-a 451, a 451-a 443, a pressure bar, The device comprises a dislocation interposer-a 452, an impact plate-a 453, a twisting and pulling adjusting button-a 454, a fixed connection piece-aa 1, an elastic clamp-aa 2, a rear laminated strip-aa 3 and an external connection plate-aa 4.
Detailed Description
The embodiments of the present invention will be described in further detail with reference to the drawings and examples. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Examples
As shown in figures 1 to 7:
the invention provides a large data artificial intelligence communication signal tower based on a 5G communication network, which structurally comprises an intelligent communication signal tower base 1, a communication network guide plate 2, a wind level protection regulating and controlling device 3, a large data artificial intelligence communication signal tower 4 and a side pressure guard plate 5, wherein the top end of the intelligent communication signal tower base 1 is fixedly connected to the bottom end of the large data artificial intelligence communication signal tower 4 in an electric welding mode, the side pressure guard plate 5 is fixedly installed in the middle position of the large data artificial intelligence communication signal tower 4, the wind level protection regulating and controlling device 3 is installed in the communication network guide plate 2 in an embedded mode, and the communication network guide plate 2 is provided with three large data artificial intelligence communication signal towers and is fixedly installed at the top end of the large data artificial intelligence communication signal tower 4.
Wind level contracts and protects regulation and control device 3 and include top shrouding a1, top dish a2, wind level inner chamber a3, compression control mechanism a4, big data artificial intelligence communication signal exchanger a5, compression control mechanism a4 is installed inside top shrouding a1 through the mode of embedding, top dish a2 is located big data artificial intelligence communication signal exchanger a5 top intermediate position, wind level inner chamber a3 and top shrouding a1 structure as an organic whole, top shrouding a1 welds with big data artificial intelligence communication signal tower 4 mutually.
The compression regulation and control mechanism a4 comprises a back plate a41, a fixed sleeve a42, a wind level group a43, a reverse traction constant pressure mechanism a44 and a staggered twisting and pulling mechanism a45, wherein the back plate a41 is mechanically connected with the staggered twisting and pulling mechanism a45, the wind level group a43 is installed inside a fixed sleeve a42 in an embedded mode, the reverse traction constant pressure mechanism a44 is connected with the wind level group a43 through a fixed sleeve a42, and the compression regulation and control mechanism a4 can perform real-time self-adjustment storage protection on the large data artificial intelligent communication signal exchanger a5 in typhoon, so that damage to the large data artificial intelligent communication signal exchanger a5 due to typhoon is reduced.
The wind level group a43 comprises a tertiary wind lever a431, a back cover a432, a secondary wind lever a433, a primary wind lever a434 and a magnetic head a435, wherein the tertiary wind lever a431 is parallel to the secondary wind lever a433, the back cover a432 is fixedly arranged at the bottom of the primary wind lever a434, the magnetic head a435 is fixedly arranged at the top end of the primary wind lever a434, a gravity block is arranged in the primary wind lever a434 and the other two wind levers, wind force which is not impressed is filtered through the gravity block, the impacted wind force series is distinguished through length, and then the highest value of a signal can be guaranteed to the maximum extent.
The anti-traction constant-pressure mechanism a44 comprises an impact guiding column a441, an outer sleeve a442, a pressure reducing cavity a443, a pressure bar a444 and a slide way a445, wherein the impact guiding column a441 is internally provided with the pressure reducing cavity a443, the pressure bar a444 is fixedly connected with the outer surface of the outer sleeve a442, the pressure bar a444 is fixedly connected with the outer surface of the impact guiding column a441, the slide way a445 is arranged on the inner surface of the outer sleeve a442, and when the traction magnetic field is lost, the impact guiding column a441 can be drawn by the pressure bar a444 to generate fixed-distance return impact and continuously maintain the pressure after the impact until the impact guiding column is drawn by the magnetic field again, the impact force is resumed and the return is completed.
The dislocation twist-pull mechanism a45 comprises a compression connection board a451, a dislocation interposer a452, an impact board a453 and a twist-pull guiding button a454, wherein the compression connection board a451 and the dislocation interposer a452 are fixedly connected together, the twist-pull guiding button a454 is arranged on the front end surface of the dislocation interposer a452, the impact board a453 and the dislocation interposer a452 are in an integrated structure, and the dislocation interposer a452 can exchange the stress direction of the compression connection board a451 when the impact board a453 receives impact, so that the dislocation interposer a452 has kinetic energy for pulling and retracting the big data artificial intelligent communication signal exchanger a5, and can continuously maintain the state until the state is converted again.
The twisting and pulling adjustment button a454 comprises a fixing strip aa1, elastic clamps aa2, a rear folding strip aa3 and an external connection plate aa4, wherein the fixing strip aa1 is provided with four fixing strips, two fixing strips are fixedly connected with the external connection plate aa4 in a group, the external connection plate aa4 is provided with two fixing strips and connected with the rear folding strip aa3, the elastic clamps aa2 are fixedly arranged on the inner surface of an external connection plate aa4, the elastic clamps aa2 are of arc structures, the two ends of each elastic clamp are deeply embedded in the inner surface of an external connection plate aa4, the distance between the two end points can be increased along with the elastic clamps after the external connection plate aa4 is opened, and the external connection plate aa4 is pulled back after the expansion force of the external connection plate aa4 is lost by using.
The specific use mode and function of the embodiment are as follows:
in the invention, the wind level group a43 can judge the level of different typhoons in typhoons through the primary wind lever a434, the secondary wind lever a433 and the tertiary wind lever a431, the typhoons can be blown only after the level reaches the requirements, when the wind pressure braking is applied to the wind level group a43, the bottom swings around the top connecting ring, the top magnetic head a435 will deviate from the receiving area of the impact leading post a441 immediately, when the impact leading post a441 loses the magnetic field control, the pressure applied to the impact leading post a441 by the pressure bar a444 will reverse-control the impact leading post a441 immediately, so that the impact leading post a441 generates fixed-distance return impact and keeps the pressure after the impact continuously, after the impact on the impact plate a453, the superposed compression connecting plate 451 a performs fixed-distance reverse-pulling on the back plate a41 through the twisted-pulling adjusting button a454 on the dislocation interposer a452 to make the superposed compression connecting plate 451 a retract the back plate a to the back plate a 3826 in a fixed distance, so that the large data artificial intelligent communication signal a5 fixed with the back plate a41 retracts towards the inside of the top exchanger 1, with the gradual enhancement of wind power, the secondary wind rod a433 and the tertiary wind rod a431 are passively drawn, the three dislocation twisting and pulling mechanisms a45 in the fixed sleeve a42 are synchronously drawn, and due to the fact that the elastic force values of the pressure bars a444 on each reverse drawing constant pressure mechanism a44 are different, the pressure values of the impact guiding columns a441 on the dislocation twisting and pulling mechanisms a45 can be differentiated, and in the process of gradual impact, the drawing force of the back plate a41 on the big data artificial intelligence communication signal exchangers a5 can be gradually enhanced until the back plate a41 is completely recycled into the communication network receiving plate 2, and the external signal waves are subjected to frequency conversion and transfer transmission through the communication network receiving plate 2.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (6)

1. The utility model provides a big data artificial intelligence signal tower for communication based on 5G communication network, its structure includes intelligent communication signal tower seat (1), communication network guide plate (2), wind level contract and protect regulation and control device (3), big data artificial intelligence signal tower (4) for communication, side pressure backplate (5), its characterized in that:
the top end of the intelligent communication signal tower base (1) is fixedly connected to the bottom end of the big data artificial intelligent communication signal tower frame (4) in an electric welding mode, the side pressure protection plates (5) are fixedly installed in the middle of the big data artificial intelligent communication signal tower frame (4), the wind level shrinkage protection regulating and controlling device (3) is installed inside the communication network receiving plate (2) in an embedding mode, and three communication network receiving plates (2) are arranged and fixedly installed at the top end of the big data artificial intelligent communication signal tower frame (4);
wind level contracts and protects regulation and control device (3) and include top shrouding (a1), top dish (a2), wind level inner chamber (a3), compression control mechanism (a4), big data artificial intelligence communication signal interchanger (a5), compression control mechanism (a4) is installed inside top shrouding (a1) through the mode of embedding, big data artificial intelligence communication signal interchanger (a5) top intermediate position is located in top dish (a2), wind level inner chamber (a3) and top shrouding (a1) structure as an organic whole, top shrouding (a1) welds with big data artificial intelligence communication signal tower (4) mutually.
2. The signal tower for big data artificial intelligence communication based on the 5G communication network, according to claim 1, wherein: the compression regulation and control mechanism (a4) comprises a back plate (a41), a fixing sleeve (a42), a wind stage group (a43), a reverse traction constant pressure mechanism (a44) and a dislocation twisting and pulling mechanism (a45), wherein the back plate (a41) is mechanically connected with the dislocation twisting and pulling mechanism (a45), the wind stage group (a43) is installed inside the fixing sleeve (a42) in an embedding mode, and the reverse traction constant pressure mechanism (a44) is connected with the wind stage group (a43) through the fixing sleeve (a 42).
3. The big data artificial intelligence communication signal tower based on the 5G communication network according to claim 2, wherein: the wind level group (a43) comprises a tertiary wind lever (a431), a back cover sleeve (a432), a secondary wind lever (a433), a primary wind lever (a434) and a magnetic head (a435), wherein the tertiary wind lever (a431) and the secondary wind lever (a433) are parallel to each other, the back cover sleeve (a432) is fixedly installed at the bottom of the primary wind lever (a434), and the magnetic head (a435) is fixedly installed at the top end of the primary wind lever (a 434).
4. The big data artificial intelligence communication signal tower based on the 5G communication network according to claim 2, wherein: the anti-traction constant pressure mechanism (a44) comprises an impact guiding column (a441), an outer sleeve (a442), a decompression cavity (a443), a pressure bar (a444) and a slide way (a445), wherein the decompression cavity (a443) is arranged inside the impact guiding column (a441), the pressure bar (a444) is fixedly connected with the outer surface of the outer sleeve (a442), the pressure bar (a444) is fixedly connected with the outer surface of the impact guiding column (a441), and the slide way (a445) is arranged on the inner surface of the outer sleeve (a 442).
5. The big data artificial intelligence communication signal tower based on the 5G communication network according to claim 2, wherein: the dislocation twisting and pulling mechanism (a45) comprises a compression connecting plate (a451), a dislocation interposer (a452), an impact plate (a453) and a twisting and pulling adjusting button (a454), wherein the compression connecting plate (a451) is fixedly connected with the dislocation interposer (a452), the twisting and pulling adjusting button (a454) is arranged on the positive end surface of the dislocation interposer (a452), and the impact plate (a453) and the dislocation interposer (a452) are of an integrated structure.
6. The big data artificial intelligence communication signal tower based on the 5G communication network according to the claim 5, characterized in that: the twisting and pulling adjustment button (a454) comprises fixing pieces (aa1), elastic clamps (aa2), rear folding strips (aa3) and an external connection plate (aa4), wherein the fixing pieces (aa1) are provided with four, two and one group of fixing pieces are fixedly connected with the external connection plate (aa4), the external connection plate (aa4) is provided with two fixing pieces and connected with the external connection plate through the rear folding strips (aa3), and the elastic clamps (aa2) are fixedly mounted on the inner surface of the external connection plate (aa 4).
CN201911084814.7A 2019-11-08 2019-11-08 Big data artificial intelligence signal tower for communication based on 5G communication network Withdrawn CN110798753A (en)

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CN201911084814.7A CN110798753A (en) 2019-11-08 2019-11-08 Big data artificial intelligence signal tower for communication based on 5G communication network

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Application Number Priority Date Filing Date Title
CN201911084814.7A CN110798753A (en) 2019-11-08 2019-11-08 Big data artificial intelligence signal tower for communication based on 5G communication network

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111193094A (en) * 2020-02-21 2020-05-22 泉州早稻云信息科技有限公司 Portable 5G communication antenna equipment
CN112350091A (en) * 2020-10-30 2021-02-09 梁俊英 High-speed connector plug capable of transmitting 5G signals

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111193094A (en) * 2020-02-21 2020-05-22 泉州早稻云信息科技有限公司 Portable 5G communication antenna equipment
CN112350091A (en) * 2020-10-30 2021-02-09 梁俊英 High-speed connector plug capable of transmitting 5G signals

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Application publication date: 20200214