CN110021233B - Intelligent windmill advertisement system and method - Google Patents

Intelligent windmill advertisement system and method Download PDF

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Publication number
CN110021233B
CN110021233B CN201910209543.7A CN201910209543A CN110021233B CN 110021233 B CN110021233 B CN 110021233B CN 201910209543 A CN201910209543 A CN 201910209543A CN 110021233 B CN110021233 B CN 110021233B
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servo motor
plate
fixedly connected
module
telescopic
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CN110021233A (en
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吴克峰
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Shanghai Haoxie Electromechanical Technology Co ltd
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Shanghai Haoxie Electromechanical Technology Co ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • F16M11/06Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand allowing pivoting
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02PCONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
    • H02P5/00Arrangements specially adapted for regulating or controlling the speed or torque of two or more electric motors

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Power Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Toys (AREA)
  • Controls And Circuits For Display Device (AREA)
  • Displays For Variable Information Using Movable Means (AREA)

Abstract

The invention relates to the technical field of advertising equipment, and discloses an intelligent windmill advertising system which comprises a video production module, a display module, a driving module and an execution module, wherein the display module, the driving module and the execution module are respectively connected with the video production module in a data mode, the video production module is used for generating a video signal and an action signal matched with the content in the video signal, the display module comprises an animation processing center and a display assembly, the driving module comprises an action processing center and an action driving module, the action processing center is used for receiving the action signal and generating a corresponding driving action instruction by the action driving module, the execution module drives the display module to move according to the driving action instruction, the execution module drives the display module to move according to the corresponding driving action instruction while the display assembly displays the content of the video data, so that larger visual impact can be generated for consumers, and when a video advertisement is played, attract the attention and attention of consumers and have good advertising effect.

Description

Intelligent windmill advertisement system and method
Technical Field
The invention relates to the technical field of advertising equipment, in particular to an intelligent windmill advertising system and method.
Background
Advertisement, as the name implies, is an advertisement that informs the general public of the society of something. Is a way to persuade a viewer to purchase and consume through introduction of a product and rendering of an effect.
There are many existing advertisement forms, such as publicity advertisement in television, wall advertisement attached to subway tunnel wall, signboard advertisement in street neon lamp form, and large screen advertisement in public facilities such as railway station and airport. No matter what type of advertisement is adopted, the ultimate purpose is to guide the viewer through gorgeous colors, variable light and shadow and interesting and attractive advertisement words, and the more sufficient and novel creativity is, the more easily the attraction effect is generated to the consumer.
However, when the existing advertisement device carries out advertisement, the methods of large screen display, planar design display, flow popularization and the like are limited, and the methods of advertisement display cannot generate visual impact on consumers to a greater extent and are to be solved.
Disclosure of Invention
In view of the above problems, an object of the present invention is to provide an intelligent windmill advertisement system, which has the advantages of good advertisement effect and strong attraction.
The above object of the present invention is achieved by the following technical solutions:
an intelligent windmill advertisement system comprises a video production module, a display module and a driving module which are respectively in data connection with the video production module, and an execution module which is in data connection with the driving module, wherein the video production module is used for generating a video signal and an action signal matched with the content in the video signal;
the display module comprises an animation processing center in data connection with the video production module and a display component in data connection with the animation processing center, the animation processing center is used for receiving the video signal and processing the video signal to generate video data, and the display component is used for receiving and displaying the video data;
the driving module comprises an action processing center in data connection with the video production module and an action driving module in data connection with the action processing center;
the action processing center is used for receiving the action signal and generating a corresponding driving action instruction by the action driving module;
and the execution module drives the display module to move according to the driving action instruction.
Through the technical scheme, the display module drives the display module to move according to the corresponding driving action instruction while displaying the content of the video data, so that great visual impact can be generated for consumers, the attention and attention of the consumers can be attracted while video advertisements are played, and the advertising effect is good.
The invention is further configured to: the execution module comprises a support plate, a main servo motor fixedly connected to the support plate and a rotating assembly rotatably arranged on the support plate, and the rotating assembly is in transmission connection with the main servo motor;
the main servo motor is electrically connected with the action driving module and receives the driving action instruction to drive the rotating assembly to rotate forwards and backwards;
the rotating assembly is in transmission connection with the display module.
Through the technical scheme, the main servo motor can rotate forward and backward on the supporting plate under the control and drive of the drive action instruction, so that the whole display module is driven to move, and the strong attraction is achieved in cooperation with the video playing.
The invention is further configured to: the rotating assembly comprises a positioning circular ring, a fixing plate fixedly connected with the positioning circular ring and a central shaft coaxially and fixedly connected to the fixing plate, and one end, far away from the fixing plate, of the central shaft is rotatably arranged on the supporting plate;
an inner ring gear is fixedly connected to an inner ring of the positioning circular ring, and a driving gear meshed with the inner ring gear is coaxially and fixedly connected to an output shaft of the main servo motor.
Through above-mentioned technical scheme, main servo motor passes through the meshing cooperation accurate drive fixed plate rotation between drive gear and the interior ring gear.
The invention is further configured to: the display assembly comprises a plurality of peripheral screens connected with the animation processing center data;
a first telescopic sleeve is fixedly connected to one side face, far away from the supporting plate, of the fixing plate, a first telescopic plate matched with the first telescopic sleeve is arranged in the first telescopic sleeve in a sliding mode, and a first servo motor in transmission connection with the first telescopic plate is fixedly connected to the end portion of the first telescopic sleeve;
one surface, far away from the fixed plate, of the first telescopic sleeve is fixedly connected with a second telescopic sleeve which is centrosymmetric to the first telescopic sleeve, a second telescopic plate matched with the second telescopic sleeve is arranged in the second telescopic sleeve in a sliding mode, and the end part of the second telescopic sleeve is fixedly connected with a second servo motor in transmission connection with the second telescopic plate;
a first positioning plate and a second positioning plate are fixedly connected to one side face, far away from the supporting plate, of the fixing plate;
a first partition table and a third telescopic sleeve fixedly connected with the first partition table are arranged on the first positioning plate in a sliding mode, a third telescopic plate matched with the third telescopic sleeve is arranged in the third telescopic sleeve in a sliding mode, a third servo motor in transmission connection with the third telescopic plate is fixedly connected to the end portion of the third telescopic sleeve, and a fifth servo motor in transmission connection with the first partition table is fixedly connected to the end portion of the first positioning plate;
a second partition table and a fourth telescopic sleeve fixedly connected with the second partition table are arranged on the second positioning plate in a sliding manner, a fourth telescopic plate matched with the fourth telescopic sleeve is arranged in the fourth telescopic sleeve in a sliding manner, the end part of the fourth telescopic sleeve is fixedly connected with a fourth servo motor in transmission connection with the fourth telescopic plate, and the end part of the second positioning plate is fixedly connected with a sixth servo motor in transmission connection with the second partition table;
one end of the first telescopic plate, which is far away from the first servo motor, one end of the second telescopic plate, which is far away from the second servo motor, one end of the third telescopic plate, which is far away from the third servo motor, and one end of the fourth telescopic plate, which is far away from the fourth servo motor, are respectively and fixedly connected with a seventh servo motor, an eighth servo motor, a ninth servo motor and a tenth servo motor, and the seventh servo motor, the eighth servo motor, the ninth servo motor and the tenth servo motor are respectively in transmission connection with the peripheral screen;
the first servo motor, the second servo motor, the third servo motor, the fourth servo motor, the fifth servo motor, the sixth servo motor, the seventh servo motor, the eighth servo motor, the ninth servo motor and the tenth servo motor are all electrically connected with the action driving module.
Through the technical scheme, the first servo motor, the second servo motor, the third servo motor and the fourth servo motor can respectively drive the peripheral screens to expand outwards or contract inwards through positive and negative rotation, the fifth servo motor and the sixth servo motor can respectively drive two peripheral screens to translate, different splicing forms between the peripheral screens can be achieved, the seventh servo motor, the eighth servo motor, the ninth servo motor and the tenth servo motor can respectively drive the peripheral screens to rotate, and the high ornamental performance and the attractive force are achieved.
The invention is further configured to: the display assembly comprises a square screen connected with the animation processing center data;
a supporting vertical frame is fixedly connected to one side face, far away from the supporting plate, of the fixing plate, a fifth telescopic sleeve is fixedly connected to the supporting vertical frame, a fifth telescopic plate matched with the fifth telescopic sleeve is arranged in the fifth telescopic sleeve in a sliding mode, a lifting servo motor in transmission connection with the fifth telescopic plate is fixedly connected to the end portion of the fifth telescopic sleeve, and the lifting servo motor is fixedly connected to the fixing plate;
one end, far away from the lifting servo motor, of the fifth expansion plate is fixedly connected with an extension arm plate parallel to the fixed plate, one end, far away from the fifth expansion plate, of the extension arm plate is fixedly connected with a central servo motor, and the central servo motor and the central shaft are coaxially arranged;
the lifting servo motor and the central servo motor are electrically connected with the action driving module.
Through above-mentioned technical scheme, square screen can be adjusted for the height of fixed plate to lifting servo motor's positive and negative commentaries on classics, and center servo motor can drive square screen rotation.
The invention is further configured to: the supporting plate is fixedly connected with a supporting column, and one end of the supporting column, which is far away from the supporting plate, is fixedly connected with a base.
An intelligent windmill advertisement method is characterized by comprising the following steps:
step S1, generating a video signal and an action signal matched with the video signal through editing of a video production module;
step S2, acquiring the video signal and the action signal from the video production module through an animation processing center and an action processing center respectively, wherein the animation processing center generates video data according to the video signal, and the action processing center generates a corresponding driving action instruction according to the action signal;
and step S3, displaying the content of the video data through a display component, and driving the display module to move by the execution module according to the driving action instruction.
Through the technical scheme, the display assembly can greatly enhance the attraction of the video advertisement by matching the action of the display assembly to the playing of the video advertisement, thereby increasing the success rate of the advertisement.
Compared with the prior art, the invention has the beneficial effects that:
when the content of the video data is displayed through the display component, the execution module drives the display module to move according to the corresponding driving action instruction, so that great visual impact can be generated for consumers, the attention and attention of the consumers can be attracted while the video advertisements are played, and the advertising effect is good.
Drawings
FIG. 1 is a data flow diagram in the present invention;
FIG. 2 is a schematic front view of the overall structure of an embodiment of the present invention;
FIG. 3 is a schematic side view of a portion of an embodiment of the present invention;
FIG. 4 is a schematic backside view of a portion of the structure of an embodiment of the present invention;
FIG. 5 is a side-view, rear-view, schematic illustration of a portion of an embodiment of the present invention;
FIG. 6 is a schematic diagram of a portion of an embodiment of the present invention;
FIG. 7 is an enlarged view of portion A of FIG. 6;
FIG. 8 is a schematic diagram of a square screen portion in an embodiment of the present invention;
FIG. 9 is a diagram illustrating scenario two of the present invention;
fig. 10 is a schematic diagram of scenario three in the present invention.
Reference numerals: 0. a base; 1. a video production module; 2. a display module; 21. an animation processing center; 22. a display component; 221. a peripheral screen; 222. a square screen; 3. a drive module; 31. an action processing center; 32. an action driving module; 4. an execution module; 41. a support plate; 42. a main servo motor; 43. a rotating assembly; 431. positioning the circular ring; 432. a fixing plate; 433. a central shaft; 434. an inner ring gear; 435. a drive gear; 44. a first telescopic sleeve; 441. a first expansion plate; 45. a second telescopic sleeve; 451. a second expansion plate; 46. a first positioning plate; 461. a first separating table; 462. a third telescopic sleeve; 463. a third expansion plate; 47. a second positioning plate; 471. a second partition table; 472. a fourth telescopic sleeve; 473. a fourth expansion plate; 48. a support stand; 481. a fifth telescopic sleeve; 482. a fifth expansion plate; 483. a lifting servo motor; 484. extending the arm plate; 485. a central servo motor; 49. a support pillar; 10. a first servo motor; 20. a second servo motor; 30. a third servo motor; 40. a fourth servo motor; 50. a fifth servo motor; 60. a sixth servo motor; 70. a seventh servo motor; 80. an eighth servo motor; 90. a ninth servo motor; 00. a tenth servo motor.
Detailed Description
The invention is described in detail below with reference to the figures and examples.
An intelligent windmill advertisement system, as shown in fig. 1, comprises a video production module 1, a display module 2 and a driving module 3 respectively connected with the video production module 1 in data, and an execution module 4 connected with the driving module 3 in data.
The video production module 1 may be used to generate a video signal and an action signal that matches the content in the video signal. The display module 2 comprises an animation processing center 21 in data connection with the video production module 1 and a display component 22 in data connection with the animation processing center 21, wherein the animation processing center 21 is used for receiving video signals and processing the video signals to generate video data, and the display component 22 is used for receiving and displaying the video data;
the driving module 3 comprises an action processing center 31 in data connection with the video production module 1 and an action driving module 32 in data connection with the action processing center 31, and the driving module 3;
the action processing center 31 is used for receiving the action signal and generating a corresponding driving action command by the action driving module 32 and the driving module 3;
the execution module 4 drives the display module 2 to move according to the driving action instruction.
When the display component 22 displays the content of the video data, the execution module 4 drives the display module 2 to move according to the corresponding driving action instruction, so that a large visual impact can be generated to the consumer, the attention and attention of the consumer can be attracted while the video advertisement is played, and the advertisement effect is good.
An intelligent windmill advertisement method is characterized by comprising the following steps:
in step S1, the video signal and the motion signal matching the video signal are edited and generated by the video creation module 1.
In step S2, the animation processing center 21 and the motion processing center 31 respectively obtain the video signal and the motion signal from the video production module 1, the animation processing center 21 generates video data according to the video signal, and the motion processing center 31 generates a corresponding driving motion command according to the motion signal.
In step S3, the content of the video data is displayed by the display module 22, and the execution module 4 drives the display module 2 to move according to the driving action command.
Referring to fig. 2 and 3, the execution module 4 includes a support plate 41, a main servo motor 42 fixedly connected to the support plate 41, and a rotation assembly 43, the rotation assembly 43 includes a positioning ring 431, a fixing plate 432 fixedly connected to the positioning ring 431, and a central shaft 433 coaxially and fixedly connected to the fixing plate 432, one end of the central shaft 433 far away from the fixing plate 432 is fixedly connected to the support plate 41 through a bearing, a support column 49 is fixedly connected to the support plate 41, and one end of the support column 49 far away from the support plate 41 is fixedly connected to the base 0.
As shown in fig. 4, an inner ring gear 434 is fixedly connected to an inner ring of the positioning ring 431, and a drive gear 435 that meshes with the inner ring gear 434 is coaxially and fixedly connected to an output shaft of the main servo motor 42. The main servo motor 42 is electrically connected to the driving module 3 of the motion driving module 32, and can receive a driving motion command to drive the fixed plate 432 to rotate.
As shown in fig. 2, the display module 22 includes 4 peripheral screens 221 connected to the animation processing center 21, and 1 square screen 222, where the peripheral screen 221 is formed by combining 8 × 12 small screens with the same size, and the square screen 222 is formed by combining 4 × 4 small screens with the same size.
As shown in fig. 6, a first telescopic sleeve 44 is fixedly connected to a side surface of the fixing plate 432 away from the supporting plate 41, a first telescopic plate 441 matched with the first telescopic sleeve 44 is inserted into the first telescopic sleeve 44, and a first servo motor 10 is fixedly connected to an end of the first telescopic sleeve 44. The output shaft of the first servo motor 10 is coaxially and fixedly connected with a screw rod, the screw rod is in threaded connection with the first telescopic plate 441, and the first telescopic plate 441 cannot rotate in the first telescopic cylinder, so that the first servo motor 10 can drive the first telescopic plate 441 to slide along the telescopic cylinder when rotating.
As shown in fig. 6, a second telescopic sleeve 45 which is centrosymmetric to the first telescopic sleeve 44 is fixedly connected to one surface of the first telescopic sleeve 44 away from the fixed plate 432, a second telescopic plate 451 which is matched with the second telescopic sleeve 45 is slidably arranged in the second telescopic sleeve 45, a second servo motor 20 which is in transmission connection with the second telescopic plate 451 is fixedly connected to an end of the second telescopic sleeve 45, and the transmission connection mode of the first servo motor 10 and the first telescopic plate 441 is the same.
As shown in fig. 6, a first positioning plate 46 and a second positioning plate 47 are symmetrically fixed to one side of the fixing plate 432 away from the supporting plate 41.
The first positioning plate 46 is slidably provided with a first separating table 461 and a third telescopic sleeve 462 fixedly connected with the first separating table 461, the third telescopic sleeve 462 is slidably provided with a third telescopic plate 463 matched with the third telescopic sleeve 462, the end of the third telescopic sleeve 462 is fixedly connected with a third servo motor 30 in transmission connection with the third telescopic plate 463, and the end of the first positioning plate 46 is fixedly connected with a fifth servo motor 50 in transmission connection with the first separating table 461.
As shown in fig. 6, a second partition 471 and a fourth telescopic sleeve 472 fixedly connected to the second partition 471 are slidably disposed on the second positioning plate 47, a fourth telescopic plate 473 matched with the fourth telescopic sleeve 472 is slidably disposed in the fourth telescopic sleeve 472, a fourth servo motor 40 in transmission connection with the fourth telescopic plate 473 is fixedly connected to an end of the fourth telescopic sleeve 472, and a sixth servo motor 60 in transmission connection with the second partition 471 is fixedly connected to an end of the second positioning plate 47.
Referring to fig. 5 and 6, one end of the first expansion plate 441, which is far from the first servo motor 10, one end of the second expansion plate 451, which is far from the second servo motor 20, one end of the third expansion plate 463, which is far from the third servo motor 30, and one end of the fourth expansion plate 473, which is far from the fourth servo motor 40, are respectively and fixedly connected with a seventh servo motor 70, an eighth servo motor 80, a ninth servo motor 90 and a tenth servo motor 00, and the seventh servo motor 70, the eighth servo motor 80, the ninth servo motor 90 and the tenth servo motor 00 are respectively and drivingly connected with a peripheral screen 221.
The first servo motor 10, the second servo motor 20, the third servo motor 30, the fourth servo motor 40, the fifth servo motor 50, the sixth servo motor 60, the seventh servo motor 70, the eighth servo motor 80, the ninth servo motor 90 and the tenth servo motor 00 are all electrically connected with the driving module 3 of the motion driving module 32.
The first servo motor 10, the second servo motor 20, the third servo motor 30 and the fourth servo motor 40 can respectively drive the peripheral screen 221 to expand outwards or contract inwards through positive and negative rotation, the fifth servo motor 50 and the sixth servo motor 60 can respectively drive two peripheral screens 221 to translate, so that different splicing forms among the peripheral screens 221 can be realized, and the seventh servo motor 70, the eighth servo motor 80, the ninth servo motor 90 and the tenth servo motor can respectively drive the peripheral screens 221 to rotate, so that the ornamental performance and the attractive force are high.
Referring to fig. 7 and 8, a supporting upright 48 is fixedly connected to a side of the fixing plate 432 far away from the supporting plate 41, a fifth telescopic sleeve 481 is fixedly connected to the supporting upright 48, a fifth telescopic plate 482 matched with the fifth telescopic sleeve 481 is slidably arranged in the fifth telescopic sleeve 481, a lifting servo motor 483 in transmission connection with the fifth telescopic plate 482 is fixedly connected to an end of the fifth telescopic sleeve 481, a lifting servo motor 483 is fixedly connected to the fixing plate 432, an extension arm plate 484 parallel to the fixing plate 432 is fixedly connected to one end of the fifth telescopic plate 482 far away from the lifting servo motor 483, a center servo motor 485 is fixedly connected to one end of the extension arm plate 484 far away from the fifth telescopic plate 482, and the center servo motor 485 are coaxially arranged with a center shaft 433 and are electrically connected to the driving module 3 of the motion driving module 32.
As shown in fig. 7 and 8, the height of the square screen 222 relative to the fixed plate 432 can be adjusted by the forward and backward rotation of the lifting servo motor 483, and the square screen 222 can be driven to rotate by the central servo motor 485.
For example, the complete video generally has a certain time length, and the motion signal may be a series of instructions within the same time length, and specifically may be represented as a command for driving the servo motor to rotate forward or backward at a certain time stamp on the time length of the complete video, so as to achieve the result of completing various motions on the peripheral screen 221 and the square screen.
Scenario one: as shown in fig. 2, if the peripheral screen 221 needs to rotate left and right within a certain time period in the video information, the motion signal may be represented as a forward or reverse signal of the corresponding servo motor during the time period.
Scenario two: as shown in fig. 9, all 4 peripheral screens 221 need to be connected in a certain time period in the video information, and a large display screen of 16 × 24 is formed by splicing, a seventh servo motor 70, an eighth servo motor 80, a ninth servo motor 90, and a tenth servo motor are needed to respectively drive the peripheral screens 221 to rotate to the same angle, a lifting servo motor 483 drives a square screen 222 to slide towards a fixed plate 432, a central servo motor 485 drives the square screen 222 to align with the peripheral screens 221, and a first servo motor 10, a second servo motor 20, a third servo motor 30, and a fourth servo motor 40 respectively drive telescopic rod boxes to retract, so that the splicing is completed.
Scenario three: as shown in fig. 10, all 4 peripheral screens 221 and square screens 222 are required to be connected in a certain period of time in the video information to form a 20 × 20 square large display screen, and then a seventh servo motor 70, an eighth servo motor 80, a ninth servo motor 90 and a tenth servo motor are required to respectively drive the peripheral screens 221, so that the longer sides of the adjacent peripheral screens 221 are perpendicular to each other, and a lifting servo motor 483 drives the square screens 222 to slide away from the fixed plate 432 and be flush with the other peripheral screens 221, and is embedded into the air in the center surrounded by the 4 peripheral screens 221 to complete the connection.
The above description is only a preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments, and all technical solutions belonging to the idea of the present invention belong to the protection scope of the present invention. It should be noted that modifications and embellishments within the scope of the invention may occur to those skilled in the art without departing from the principle of the invention, and are considered to be within the scope of the invention.

Claims (4)

1. An intelligent windmill advertisement system comprises a video production module (1), a display module (2) and a driving module (3) which are respectively in data connection with the video production module (1), and an execution module (4) which is in data connection with the driving module (3), and is characterized in that the video production module (1) is used for generating a video signal and an action signal matched with the content in the video signal;
the display module (2) comprises an animation processing center (21) in data connection with the video production module (1) and a display component (22) in data connection with the animation processing center (21), the animation processing center (21) is used for receiving the video signal and processing the video signal to generate video data, and the display component (22) is used for receiving and displaying the video data;
the driving module (3) comprises an action processing center (31) in data connection with the video production module (1) and an action driving module (32) driving module (3) in data connection with the action processing center (31);
the action processing center (31) is used for receiving the action signal and generating a corresponding driving action instruction by the action driving module (32) and the driving module (3);
the execution module (4) drives the display module (2) to move according to the driving action instruction; the execution module (4) comprises a support plate (41), a main servo motor (42) fixedly connected to the support plate (41) and a rotating assembly (43) rotatably arranged on the support plate (41), and the rotating assembly (43) is in transmission connection with the main servo motor (42);
the main servo motor (42) is electrically connected with the action driving module (32) and the driving module (3) and receives the driving action instruction to drive the rotating assembly (43) to do forward and reverse rotation movement;
the rotating assembly (43) is in transmission connection with the display module (2); the rotating assembly (43) comprises a positioning circular ring (431), a fixed plate (432) fixedly connected with the positioning circular ring (431), and a central shaft (433) coaxially and fixedly connected to the fixed plate (432), wherein one end, far away from the fixed plate (432), of the central shaft (433) is rotatably arranged on the supporting plate (41);
an inner ring gear (434) is fixedly connected to an inner ring of the positioning circular ring (431), and a driving gear (435) meshed with the inner ring gear (434) is coaxially and fixedly connected to an output shaft of the main servo motor (42); the display assembly (22) comprises a plurality of peripheral screens (221) in data connection with the animation processing center (21);
a first telescopic sleeve (44) is fixedly connected to one side face, far away from the supporting plate (41), of the fixing plate (432), a first telescopic plate (441) matched with the first telescopic sleeve (44) is arranged in the first telescopic sleeve (44) in a sliding mode, and a first servo motor (10) in transmission connection with the first telescopic plate (441) is fixedly connected to the end portion of the first telescopic sleeve (44);
one surface, far away from the fixed plate (432), of the first telescopic sleeve (44) is fixedly connected with a second telescopic sleeve (45) which is centrosymmetric to the first telescopic sleeve (44), a second telescopic plate (451) matched with the second telescopic sleeve (45) is arranged in the second telescopic sleeve (45) in a sliding mode, and the end portion of the second telescopic sleeve (45) is fixedly connected with a second servo motor (20) in transmission connection with the second telescopic plate (451);
a first positioning plate (46) and a second positioning plate (47) are fixedly connected to one side surface of the fixing plate (432) far away from the supporting plate (41);
a first separating table (461) and a third telescopic sleeve (462) fixedly connected with the first separating table (461) are arranged on the first positioning plate (46) in a sliding manner, a third telescopic plate (463) matched with the third telescopic sleeve (462) is arranged in the third telescopic sleeve (462) in a sliding manner, a third servo motor (30) in transmission connection with the third telescopic plate (463) is fixedly connected to the end of the third telescopic sleeve (462), and a fifth servo motor (50) in transmission connection with the first separating table (461) is fixedly connected to the end of the first positioning plate (46);
a second partition table (471) and a fourth telescopic sleeve (472) fixedly connected with the second partition table (471) are arranged on the second positioning plate (47) in a sliding manner, a fourth telescopic plate (473) matched with the fourth telescopic sleeve (472) is arranged in the fourth telescopic sleeve (472) in a sliding manner, a fourth servo motor (40) in transmission connection with the fourth telescopic plate (473 is fixedly connected to the end of the fourth telescopic sleeve (472), and a sixth servo motor (60) in transmission connection with the second partition table (471) is fixedly connected to the end of the second positioning plate (47);
one end of the first telescopic plate (441) far away from the first servo motor (10), one end of the second telescopic plate (451) far away from the second servo motor (20), one end of the third telescopic plate (463) far away from the third servo motor (30) and one end of the fourth telescopic plate (473) far away from the fourth servo motor (40) are respectively and fixedly connected with a seventh servo motor (70), an eighth servo motor (80), a ninth servo motor (90) and a tenth servo motor (00), and the seventh servo motor (70), the eighth servo motor (80), the ninth servo motor (90) and the tenth servo motor (00) are respectively in transmission connection with the peripheral screen (221);
the first servo motor (10), the second servo motor (20), the third servo motor (30), the fourth servo motor (40), the fifth servo motor (50), the sixth servo motor (60), the seventh servo motor (70), the eighth servo motor (80), the ninth servo motor (90) and the tenth servo motor (00) are all electrically connected with the driving module (3) of the motion driving module (32).
2. The intelligent windmill advertisement system of claim 1, wherein the display assembly (22) comprises a square screen (222) in data connection with the animation processing center (21);
a supporting vertical frame (48) is fixedly connected to one side face, far away from the supporting plate (41), of the fixing plate (432), a fifth telescopic sleeve (481) is fixedly connected to the supporting vertical frame (48), a fifth telescopic plate (482) matched with the fifth telescopic sleeve (481) is arranged in the fifth telescopic sleeve (481) in a sliding mode, a lifting servo motor (483) in transmission connection with the fifth telescopic plate (482) is fixedly connected to the end portion of the fifth telescopic sleeve (481), and the lifting servo motor (483) is fixedly connected to the fixing plate (432);
one end, far away from the lifting servo motor (483), of the fifth expansion plate (482) is fixedly connected with an extension arm plate (484) parallel to the fixed plate (432), one end, far away from the fifth expansion plate (482), of the extension arm plate (484) is fixedly connected with a central servo motor (485), and the central servo motor (485) and the central shaft (433) are coaxially arranged;
the lifting servo motor (483) and the central servo motor (485) are electrically connected with the action driving module (32) and the driving module (3).
3. An intelligent windmill advertisement system according to claim 2, characterized in that a supporting column (49) is fixedly connected to the supporting plate (41), and a base (0) is fixedly connected to one end of the supporting column (49) far away from the supporting plate (41).
4. An intelligent windmill advertising method using the intelligent windmill advertising system as claimed in any one of claims 1-3, characterized by comprising the following steps:
step S1, generating a video signal and an action signal matched with the video signal through editing of a video production module (1);
step S2, acquiring the video signal and the motion signal from the video production module (1) through an animation processing center (21) and a motion processing center (31), wherein the animation processing center (21) generates video data according to the video signal, and the motion processing center (31) generates a corresponding driving motion instruction according to the motion signal;
and step S3, displaying the content of the video data through the display component (22), and simultaneously driving the display module (2) to move by the execution module (4) according to the driving action instruction.
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