Intelligent security and protection monitoring device based on intelligent regulation and control base
By intelligently controlling the transparent ball and rotating gear mechanism of the base, combined with a dry gas system, dust and foreign matter on security monitoring equipment are automatically removed, solving the problems of dust accumulation and sticking on the lens, achieving clear monitoring images and long equipment life.
Patent Information
- Application Number
- CN202511254435.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-09-04
AI Technical Summary
Existing security monitoring equipment is prone to dust accumulation and foreign matter sticking to the lens during long-term use, causing the monitoring image to be blurred or blocked, affecting the monitoring effect.
It adopts intelligent control base design, through transparent ball piece and rotating gear mechanism combined with dry gas system, it automatically removes dust and foreign matter to keep the monitoring equipment clean and dry.
It effectively removes dust and foreign matter, ensures the clarity and life of monitoring equipment, and improves the operating status and imaging effect of security monitoring.
Smart Images

Figure CN120751231A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field related to security monitoring, and more specifically, relates to an intelligent security monitoring device based on an intelligent control base. Background Art
[0002] In this information-driven era, security monitoring technology is also evolving. Security monitoring not only protects people's daily lives, but also acts as an invisible safety net, guarding our lives at all times. However, existing security monitoring technologies have the following drawbacks: In the existing technology, when security monitoring is used for a long time, dust will accumulate on the monitoring lampshade. The accumulation of dust will seriously weaken the light transmittance of the lens. The originally clear monitoring picture may become blurred due to this layer of dust, and details will be difficult to distinguish, causing the security monitoring to lose its original value, making it a great obstacle to the investigation work when it is needed later.
[0003] In the existing technology, security monitoring will be artificially stuck with some things when in use. When objects are stuck to the monitoring lens, the direct consequence is that the monitoring image is blocked, part or all of the monitoring area cannot be clearly captured, and important information is lost.
[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and a smart security monitoring device based on an intelligent control base is provided, in order to achieve a more practical and valuable purpose. Summary of the Invention
[0005] The present invention provides a smart security monitoring device based on an intelligent control base, which is used to overcome the above-mentioned defects in the prior art.
[0006] A smart security monitoring device based on an intelligent control base includes a monitoring base and a monitoring ball installed on the upper side of the monitoring base, wherein a second transparent shell in the shape of a hemispherical shell is fixedly provided on the monitoring base, a first transparent shell in the shape of a hemispherical shell is provided in the second transparent shell, an annular groove is provided in the monitoring base, the circular edge of the first transparent shell extends into the annular groove and rotates around a longitudinal axis in the annular groove, the first transparent shell abuts against the inner wall surface of the second transparent shell, two ball piece grooves are symmetrically provided in the monitoring base, transparent ball pieces are slidably provided in the two ball piece grooves, the two transparent ball pieces abut against the outer wall surface of the second transparent shell and slide relative to each other on the outside of the second transparent shell, two horizontally extending rotating rods are symmetrically provided for rotation in the annular groove, and the ends of the two rotating rods The first transparent shell is provided with a plurality of first openings, and the second transparent shell is provided with a plurality of second openings. The first transparent shell rotates inside the second transparent shell so that the first opening and the second opening are connected or disconnected.
[0007] A further technical solution is that the driving mechanism includes an electric telescopic rod and a sliding plate, a first air cavity is provided on the lower side of the ball piece slot, two first partitions are longitudinally symmetrically provided in the first air cavity, a third air cavity is formed between the two first partitions, a second air cavity is formed between the first partition and the inner wall of the first air cavity, a sliding plate is longitudinally slidably provided in the first air cavity, the lower side of the sliding plate is divided into a fourth air cavity, a first slider is slidably provided in the second air cavity, the first slider and the sliding plate are fixedly connected, an air guide tube is provided between the second air cavity and the ball piece slot, the second air cavity and the ball piece slot are connected through the air guide tube, and an electric telescopic rod is fixedly provided on the lower side of the sliding plate.
[0008] A further technical solution is that a second slider is slidingly provided in the third air cavity, the second slider is fixedly connected to the sliding plate, an arc-shaped connecting plate is formed between the two ball-piece grooves, the arc-shaped connecting plate is provided with a first air inlet pipe, a second cavity is formed inside the first transparent shell, a second air inlet pipe is provided on the lower side of the arc-shaped connecting plate, the second cavity and the third air cavity are connected through the first air inlet pipe and the second air inlet pipe, a one-way air inlet is provided on the second slider, an air inlet is provided on the sliding plate, the one-way air inlet is aligned with the air inlet, the third air cavity and the fourth air cavity are connected through the one-way air inlet, and a drying device is provided in the monitoring base, the drying device is used to dry the gas entering the third air cavity.
[0009] A further technical solution is that the drying device includes a sponge plate, a first drying air cavity and a second drying air cavity, the first air cavity is symmetrically arranged on the side of the first air cavity, the fifth air cavity is arranged on the lower side of the first air cavity, the second partition is fixedly arranged in the fifth air cavity, the second partition divides the fifth air cavity into a third drying air cavity and a sixth air cavity, the second partition is symmetrically arranged with sponge passages, the center of the second partition is provided with a circular cavity, a third motor is fixedly arranged in the circular cavity, a rotating gear is rotatably provided on the third motor, a sponge plate is provided in the sponge passage, a tooth plate is fixedly provided on the side of the sponge plate facing the rotating gear, the tooth plate is engaged with the rotating gear, the sponge plate slides in the third drying air cavity, the sponge plate slides in the sixth air cavity, the third drying air cavity and the first drying air cavity are connected through a pipe, and the first drying air cavity is connected to the fourth air cavity through a pipe.
[0010] According to a further technical solution, the sixth air cavity is connected to the second drying air cavity through a pipe, and the second drying air cavity is connected to the third air cavity through a pipe.
[0011] According to a further technical solution, a mounting base is provided under the monitoring base, an air inlet is provided on the mounting base, and the third drying air cavity is connected to the atmosphere through the air inlet; an air outlet is provided on the mounting base, and the sixth air cavity is connected to the atmosphere through the air outlet.
[0012] A further technical solution is that the monitoring base is provided with a first cavity on one side of the second cavity, a rotating disk is rotatably provided in the first cavity, a second motor is provided on the lower side of the rotating disk, the second motor is fixed on the inner wall of the first cavity, two supporting shells are symmetrically provided on the rotating disk, and the monitoring ball is provided between the two supporting shells.
[0013] According to a further technical solution, an empty slot is provided in the support shell, a first motor is fixedly provided in the empty slot, a rotating shaft is provided on the first motor, and the rotating shaft is fixedly connected to the monitoring ball.
[0014] A further technical solution is that an annular groove is provided in the first cavity, and an annular slider is fixedly provided on the side of the rotating disk close to the annular groove, and the annular slider rotates in the annular groove. An intelligent detection device is also provided on the rotating disk, and the intelligent detection device is used to detect the degree of dust coverage on the security monitoring.
[0015] According to a further technical solution, an annular scraper is provided on the monitoring base, and the annular scraper contacts the transparent ball piece.
[0016] Compared with the prior art, the present invention has the following beneficial effects: The intelligent security monitoring device based on the intelligent control base of the present invention has the advantages that dust will adhere to the second transparent shell when in use, and the gas in the second air cavity will be pushed into the ball piece groove when the sliding plate slides, pushing the transparent ball piece to slide, and the transparent ball piece will scrape off the dust on the second transparent shell to perform a dust cleaning process and scrape the dust. When the transparent ball piece slides, it will drive the rotating rod to rotate, and the rotating rod will drive the rotating gear to rotate, and the rotating gear will drive the first transparent shell to rotate. The first transparent shell is provided with a first opening, and the second transparent shell is provided with a second opening. The original first opening and the second opening are staggered. When rotating, the first opening and the second opening are aligned, and the sliding of the sliding plate will move the third The gas in the air cavity is pushed into the second cavity, and the gas in the second cavity blows away the dust through the first opening and the second opening, further removing the dust on the surface. At the same time, the first transparent shell and the second transparent shell are staggered. When the first transparent shell rotates, the sticky matter originally stuck to the first transparent shell and the second transparent shell will be torn off. At the same time, when the first opening and the second opening are staggered, the large particles of dust attached to the first transparent shell will be cut off and scraped, thereby achieving better cleaning of the security monitoring surface and better ensuring that the security monitoring is not stuck to the shell by foreign objects when in use, ensuring that the security monitoring equipment is always in good operating condition and ensuring the clarity and completeness of the monitoring video.
[0017] The present invention provides an intelligent security monitoring device based on an intelligent control base. When the gas inside the third air cavity is pushed into the second cavity, the gas not only removes dust on the second transparent shell, but also, when the dry gas in the third air cavity passes through the monitoring ball, it dries the interior of the security monitoring device, thereby increasing the service life of the security monitoring device. When the gas flows through the monitoring ball, it drives the heat on the monitoring ball, which has a heat dissipation effect on the monitoring ball, making the monitoring ball operate better and better ensuring the imaging effect of the security monitoring. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0019] The present invention will be further described below with reference to the accompanying drawings and examples.
[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0021] Figure 2 It is a front view structural schematic diagram of the present invention.
[0022] Figure 3 It is a schematic diagram of the top structure of the present invention.
[0023] Figure 4 for Figure 3 Schematic diagram of the cross-sectional structure at BB in the middle.
[0024] Figure 5 for Figure 4 Schematic diagram of the structure of the local enlarged view at point A in the middle.
[0025] Figure 6 for Figure 3 Schematic diagram of the cross-sectional structure at CC in the middle.
[0026] Figure 7 for Figure 6 Schematic diagram of the structure of the local enlarged view at point C in the middle.
[0027] Figure 8 for Figure 6 Schematic diagram of the structure of the local enlarged view at point B in the middle.
[0028] Figure 9 This is a schematic diagram of the three-dimensional structure after the two transparent spherical pieces are combined.
[0029] Figure 10 for Figure 9 Schematic diagram of the side structure.
[0030] Figure 11 This is a schematic diagram of the structure in which the annular rack is installed on two transparent spherical pieces in the present invention.
[0031] Figure 12 This is a schematic diagram of the three-dimensional structure of the first transparent shell at the annular rack.
[0032] Description of reference numerals: Monitoring ball 11, supporting shell 12, monitoring base 13, mounting base 14, first transparent shell 15, second transparent shell 16, rotating disk 17, first cavity 18, annular groove 19, annular slider 20, first motor 21, annular scraper 22, transparent ball piece 23, second motor 24, arc-shaped connecting plate 26, first air inlet pipe 27, second air inlet pipe 28, ball piece groove 29, second cavity 30, first air cavity 31, first partition 32, second air cavity 33, third air cavity 34, fourth air cavity 35, sliding plate 36 6. First slider 37, second slider 38, air guide tube 39, electric telescopic rod 40, first drying air chamber 41, second drying air chamber 42, sponge plate 43, tooth plate 44, fifth air chamber 45, circular chamber 46, rotating gear 47, third motor 48, air inlet 49, air outlet 50, second partition 51, rotating rod 52, rotating gear 53, annular rack 54, circular ring 55, annular slot 56, first opening 57, second opening 58, third drying air chamber 59, sixth air chamber 60, slot 61. Intelligent detection device 62. DETAILED DESCRIPTION
[0033] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention but are not intended to limit the scope of the present invention.
[0034] In the description of the present invention, unless otherwise specified, "plurality" means two or more; terms such as "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," and "tail" indicate positions or relationships based on those shown in the accompanying drawings. These terms are intended solely to facilitate the description of the present invention and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting the present invention. Furthermore, terms such as "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0035] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0036] As attached Figure 1 To the attached Figure 12As shown: a smart security monitoring device based on an intelligent control base, including a monitoring base 13 and a monitoring ball 11 installed on the upper side of the monitoring base 13, a second hemispherical transparent shell 16 is fixedly provided on the monitoring base 13, a first hemispherical transparent shell 15 is provided in the second transparent shell 16, an annular hollow groove 56 is provided on the monitoring base 13, the circular edge of the first transparent shell 15 extends into the annular hollow groove 56 and rotates around the longitudinal axis in the annular hollow groove 56, the first transparent shell 15 abuts against the inner wall of the second transparent shell 16, two ball piece grooves 29 are symmetrically provided in the monitoring base 13, transparent ball pieces 23 are slidably provided in the two ball piece grooves 29, the two transparent ball pieces 23 abut against the outer wall of the second transparent shell 16 and slide relative to each other on the outside of the second transparent shell 16, two horizontally extending rotating rods 52 are symmetrically provided in the annular hollow groove 56, and the two rotating rods 52 are symmetrically provided in the annular hollow groove 56. A rotating gear 53 is fixedly provided at the end of the rotating rod 52, and an annular rack 54 is fixedly provided at one end of the first transparent shell 15 located in the annular groove 56. The direction of the rotation axis of the annular rack 54 is vertical, and the rotation direction of the rotating gear 53 is horizontal. The annular rack 54 is engaged with the rotating gear 53. One end of the transparent ball piece 23 in the horizontal direction is fixedly connected to the rotating rod 52, and the other end of the transparent ball piece 23 in the horizontal direction is rotatably connected to the rotating rod 52. A driving mechanism is provided on the lower side of the ball piece groove 29. The driving mechanism drives the transparent ball piece 23 to slide in the ball piece groove 29 so that the transparent ball piece 23 rubs the outer wall surface of the second transparent shell 16. A plurality of first openings 57 are provided on the first transparent shell 15, and a plurality of second openings 58 are provided on the second transparent shell 16. The first transparent shell 15 rotates inside the second transparent shell 16 to connect or disconnect the first opening 57 and the second opening 58.
[0037] In this embodiment, the transparent ball piece 23 of the driving mechanism slides, and the transparent ball piece 23 will scrape off the dust on the second transparent shell 16 to perform a dust cleaning process. While the transparent ball piece 23 slides, it will drive the rotating rod 52 to rotate, and the rotating rod 52 will drive the rotating gear 53 to rotate, and the rotating gear 53 will drive the first transparent shell 15 to rotate. The first transparent shell 15 is provided with a first opening 57, and the second transparent shell 16 is provided with a second opening 58. The original first opening 57 and the second opening 58 are staggered. When rotating, the first opening 57 and the second opening 58 are aligned. The driving mechanism also allows dry gas to enter the second cavity 30. The gas in the second cavity 30 passes through the first opening 57 and the second opening 58 blow away the dust, further clearing the surface dust. At the same time, when the first opening 57 and the second opening 58 perform staggered movement, the large particles of dust attached to 15 will be cut and scraped. At the same time, the first transparent shell 15 and the second transparent shell 16 are staggered. When the first transparent shell 15 rotates, the sticky materials originally stuck to the first transparent shell 15 and the second transparent shell 16 will be torn off, thereby achieving better cleaning of the security monitoring surface. The dry gas will not only remove the dust on the second transparent shell 16, but also take away the moisture in the monitoring ball 11 when passing through the monitoring ball 11, thereby drying the security monitoring and improving the service life of the present invention.
[0038] In other embodiments of the present invention, a ring 55 is fixedly provided at one horizontal end of the transparent ball piece 23, and the ring 55 is sleeved on one of the rotating rods 52 and rotates on the rotating rod 52. The other horizontal end of the transparent ball piece 23 is fixedly connected to the other rotating rod 52. The two transparent ball pieces 23 are arranged opposite to each other, and the ring 55 on one transparent ball piece 23 is sleeved on the rotating rod 52 of the other transparent ball piece 23.
[0039] Preferably, the driving mechanism includes an electric telescopic rod 40 and a sliding plate 36, a first air cavity 31 is provided on the lower side of the ball slot 29, two first partitions 32 are longitudinally symmetrically provided on the inner side of the first air cavity 31, a third air cavity 34 is formed between the two first partitions 32, a second air cavity 33 is formed between the first partition 32 and the inner wall of the first air cavity 31, a sliding plate 36 is longitudinally provided in the first air cavity 31 for sliding, the lower side of the sliding plate 36 is divided into a fourth air cavity 35, a first slider 37 is provided in the second air cavity 33 for sliding, the first slider 37 and the sliding plate 36 are fixedly connected, an air guide tube 39 is provided between the second air cavity 33 and the ball slot 29, the second air cavity 33 and the ball slot 29 are connected through the air guide tube 39, and an electric telescopic rod 40 is fixedly provided on the lower side of the sliding plate 36.
[0040] Preferably, a second slider 38 is slidingly provided in the third air cavity 34, the second slider 38 and the sliding plate 36 are fixedly connected, an arc-shaped connecting plate 26 is formed between the two ball-piece grooves 29, the arc-shaped connecting plate 26 is provided with a first air inlet pipe 27, a second cavity 30 is formed inside the first transparent shell 15, a second air inlet pipe 28 is provided on the lower side of the arc-shaped connecting plate 26, the second cavity 30 and the third air cavity 34 are connected through the first air inlet pipe 27 and the second air inlet pipe 28, a one-way air inlet is provided on the second slider 38, an air inlet is provided on the sliding plate 36, the one-way air inlet and the air inlet are aligned, the third air cavity 34 and the fourth air cavity 35 are connected through the one-way air inlet, and a drying device is provided in the monitoring base 13, which is used to dry the gas entering the third air cavity 34.
[0041] Preferably, the drying device includes a sponge plate 43, a first drying air cavity 41 and a second drying air cavity 42. The first drying air cavity 41 and the second drying air cavity 42 are symmetrically arranged on the side of the first air cavity 31. A fifth air cavity 45 is arranged on the lower side of the first air cavity 31. A second partition 51 is fixedly arranged in the fifth air cavity 45. The second partition 51 divides the fifth air cavity 45 into a third drying air cavity 59 and a sixth air cavity 60. The second partition 51 is symmetrically provided with sponge passages. A circular cavity 46 is arranged in the center of the second partition 51. A third motor 48 is fixedly provided in the cavity 46, and a rotating gear 47 is rotatably provided on the third motor 48. A sponge plate 43 is provided in the sponge passage, and a toothed plate 44 is fixedly provided on the side of the sponge plate 43 facing the rotating gear 47. The toothed plate 44 and the rotating gear 47 are engaged. The sponge plate 43 slides in the third drying air cavity 59, and the sponge plate 43 slides in the sixth air cavity 60. The third drying air cavity 59 and the first drying air cavity 41 are connected through a pipeline, and the first drying air cavity 41 is connected to the fourth air cavity 35 through a pipeline.
[0042] Preferably, the sixth air cavity 60 is in communication with the second drying air cavity 42 through a pipe, and the second drying air cavity 42 is in communication with the third air cavity 34 through a pipe.
[0043] Preferably, a mounting base 14 is provided under the monitoring base 13, an air inlet 49 is provided on the mounting base 14, and the third drying air cavity 59 is connected to the atmosphere through the air inlet 49, and an air outlet 50 is provided on the mounting base 14, and the sixth air cavity 60 is connected to the atmosphere through the air outlet 50.
[0044] Preferably, the monitoring base 13 is provided with a first cavity 18 on one side within the second cavity 30, a rotating disk 17 is rotatably provided within the first cavity 18, a second motor 24 is provided on the lower side of the rotating disk 17, the second motor 24 is fixed on the inner wall of the first cavity 18, two supporting shells 12 are symmetrically provided on the rotating disk 17, and a monitoring ball 11 is provided between the two supporting shells 12.
[0045] Preferably, a slot 61 is provided in the support shell 12 , and the first motor 21 is fixedly provided in the slot 61 . The first motor 21 is provided with a rotating shaft, and the rotating shaft is fixedly connected to the monitoring ball 11 .
[0046] Preferably, an annular groove 19 is provided in the first cavity 18, and an annular slider 20 is fixedly provided on the side of the rotating disk 17 close to the annular groove 19. The annular slider 20 rotates in the annular groove 19. An intelligent detection device 62 is also provided on the rotating disk 17. The intelligent detection device 62 is used to detect the degree of dust coverage on the security monitoring.
[0047] In specific implementation, the intelligent detection device 62 includes a control circuit, a laser emitting component, and a laser receiving component. The laser emitting component is arranged in the first transparent shell 15, and the laser receiving component is arranged outside the second transparent shell 16. The laser emitted by the laser emitting component passes through the first transparent shell 15 and the second transparent shell 16 in sequence and is finally received by the laser receiving component. The control circuit is used to analyze the photoelectric information received by the laser receiving component. The principle is to use the reflection, refraction or scattering characteristics of light to detect the presence and degree of dust on the glass. When light is irradiated on the dusty glass surface, due to the scattering and absorption of light by dust particles, the intensity, direction and spectral characteristics of the reflected light will change. The laser receiving component determines whether there is dust on the glass and how much dust there is by detecting these changes.
[0048] Preferably, an annular scraper 22 is provided on the monitoring base 13 , and the annular scraper 22 is in contact with the transparent ball piece 23 .
[0049] Specific use of the present invention: When in use, starting the first motor 21 can adjust the pitch angle of the monitoring ball 11, and starting the second motor 24, the second motor 24 drives the rotating disk 17 to rotate. The rotation of the rotating disk 17 can adjust the circumferential angle of the monitoring ball 11, thereby realizing the monitoring angle adjustment of the monitoring ball 11, so that the monitoring ball 11 has a good monitoring range.
[0050] When dust adheres to the second transparent shell 16, the electric telescopic rod 40 is started, and the electric telescopic rod 40 drives the sliding plate 36 to slide in the first air cavity 31. When the sliding plate 36 slides, the first slider 37 slides in the second air cavity 33, and the gas in the second air cavity 33 is pushed into the ball piece groove 29. The gas entering the ball piece groove 29 will push the two transparent ball pieces 23 to slide relative to each other. The transparent ball pieces 23 will scrape off the dust on the second transparent shell 16 and perform a dust cleaning process. When the transparent ball piece 23 slides, it will drive the rotating rod 52 to rotate, and the rotating rod 52 will drive the rotating gear 53 to rotate. The rotating gear 53 drives the annular rack 54 to rotate, and the annular rack 54 will drive the first transparent shell 15 to rotate. A first opening 57 is provided, and a second opening 58 is provided on the second transparent shell 16. The original first opening 57 and the second opening 58 are staggered. When rotating, the first opening 57 and the second opening 58 are aligned, and the sliding plate 36 slides to push the second slider 38 to slide. The second slider 38 pushes the gas in the third air cavity 34 into the second cavity 30. The gas in the second cavity 30 blows away the dust through the first opening 57 and the second opening 58, further removing the dust on the surface. At the same time, the first transparent shell 15 and the second transparent shell 16 are staggered. When the first transparent shell 15 rotates, the sticky matter originally stuck to the first transparent shell 15 and the second transparent shell 16 will be torn off, thereby achieving better cleaning of the security monitoring surface.
[0051] At the same time, the first transparent shell 15 rotates and rubs against the inner wall of the second transparent shell 16 to clean the inner wall of the second transparent shell 16, and then the gas pushed into the second cavity 30 by the third air cavity 34 is brought out of the second cavity 30, ensuring internal cleanliness to a certain extent.
[0052] At the same time, when the gas inside the third air cavity 34 is pushed into the second cavity 30, the gas will not only remove the dust on the second transparent shell 16, but also, when the dry gas in the third air cavity 34 passes through the monitoring ball 11, the dry gas absorbs the water vapor in the monitoring ball 11, which will dry the inside of the monitoring ball 11. At the same time, there is airflow passing through the surface of the monitoring ball 11, which can absorb the heat on the monitoring ball 11, and has a good heat dissipation effect on the monitoring ball 11, so that the monitoring ball 11 has a good operating environment.
[0053] The external air first passes through the sponge plate 43, which adsorbs the external water vapor, so that the gas entering the third drying air chamber 59 is dry gas. The gas enters the first drying air chamber 41 and then enters the fourth air chamber 35. The sliding plate 36 slides to squeeze the gas so that the gas is replenished into the third air chamber 34 through the one-way air inlet. When the sliding plate 36 slides, part of the gas in the third air chamber 34 will be pushed into the second drying air chamber 42 and then replenished into the sixth air chamber 60. The dry gas blows through the sponge plate 43 in the sixth air chamber 60 to dry the sponge plate 43. The two sponge plates 43 are driven alternately by the third motor 48. The sponge plate 43 in the third drying air chamber 59 dries the external air, and the dry gas replenished into the sixth air chamber 60 will dry the sponge plate 43 that has absorbed all the moisture, thereby ensuring the quality of the gas replenished into the third air chamber 34 and improving the efficiency of security monitoring.
[0054] The intelligent detection device 62 constantly detects the degree of dust coverage on the first transparent shell 15 and the second transparent shell 16. When the dust coverage is low, the control circuit controls the electric telescopic rod 40 to extend at a high speed, thereby accelerating the speed at which the two transparent spherical pieces 23 approach each other, and quickly cleaning the outer surface of the second transparent shell 16 with high efficiency.
[0055] When the dust coverage is large, the control circuit controls the electric telescopic rod 40 to extend at a low speed, thereby slowing down the speed at which the two transparent ball pieces 23 approach each other, and cleaning the outer surface of the second transparent shell 16 with a gentler force, thereby reducing scratches on the second transparent shell 16.
[0056] Those skilled in the art can design the operating logic of the control circuit according to actual needs so that the extension and retraction speed of the electric telescopic rod 40 is adaptively matched to the dust thickness. Those skilled in the art can also apply a corresponding closed-loop control circuit to the control circuit. The receiving parameters of the closed-loop control circuit are designed to be the dust thickness detection value outside the second transparent shell 16, air humidity, external temperature, and external wind speed. The output parameters of the closed-loop control circuit are designed to be the extension and retraction speed and extension amplitude of the electric telescopic rod 40. The closed-loop control circuit adjusts the compensation amount of the electric telescopic rod 40 based on the feedback result of the dust thickness detection value so that the dust thickness detection value reaches the target set value.
[0057] The embodiments of the present invention are presented for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described in order to better illustrate the principles of the invention and its practical application and to enable those skilled in the art to understand the invention and design various embodiments with various modifications as suited for specific applications.
Claims
1. A smart security monitoring device based on an intelligent control base, characterized by: The invention comprises a monitoring base (13) and a monitoring ball (11) mounted on the upper side of the monitoring base (13); a second hemispherical transparent shell (16) is fixedly arranged on the monitoring base (13); a first hemispherical transparent shell (15) is arranged in the second transparent shell (16); an annular hollow groove (56) is opened on the monitoring base (13); the circular edge of the first transparent shell (15) extends into the annular hollow groove (56) and rotates around the longitudinal axis in the annular hollow groove (56); the first transparent shell (15) abuts against the The inner wall surface of the second transparent shell (16) and the monitoring base (13) are symmetrically provided with two ball slots (29), and transparent balls (23) are slidably provided in the two ball slots (29). The two transparent balls (23) are both in contact with the outer wall surface of the second transparent shell (16) and slide relative to each other outside the second transparent shell (16). Two horizontally extending rotating rods (52) are symmetrically rotated in the annular slot (56), and the ends of the two rotating rods (52) are fixedly provided with rotating gears (5 3), an annular rack (54) is fixedly provided at one end of the annular slot (56) of the first transparent shell (15), the direction of the rotation axis of the annular rack (54) is vertical, the rotation direction of the rotating gear (53) is horizontal, the annular rack (54) and the rotating gear (53) are meshed, one end of the transparent ball piece (23) in the horizontal direction is fixedly connected to the rotating rod (52), the other end of the transparent ball piece (23) in the horizontal direction is rotatably connected to the rotating rod (52), and the ball piece slot (2 9) A driving mechanism is provided on the lower side, and the driving mechanism drives the transparent ball piece (23) to slide in the ball piece groove (29) so that the transparent ball piece (23) rubs the outer wall surface of the second transparent shell (16); the first transparent shell (15) is provided with a plurality of first openings (57), and the second transparent shell (16) is provided with a plurality of second openings (58); the first transparent shell (15) rotates inside the second transparent shell (16) so that the first openings (57) and the second openings (58) are connected or disconnected.
2. The intelligent security monitoring device based on the intelligent control base according to claim 1 is characterized in that: The driving mechanism includes an electric telescopic rod (40) and a sliding plate (36). A first air cavity (31) is provided on the lower side of the ball plate slot (29). Two first partitions (32) are longitudinally symmetrically provided in the first air cavity (31). A third air cavity (34) is formed between the two first partitions (32). A second air cavity (33) is formed between the first partition (32) and the inner wall of the first air cavity (31). A sliding plate (36) is longitudinally slidably provided in the first air cavity (31). The lower side of the sliding plate (36) is divided into a fourth air cavity (35), a first slider (37) is slidably provided in the second air cavity (33), the first slider (37) and the sliding plate (36) are fixedly connected, an air guide tube (39) is provided between the second air cavity (33) and the ball plate groove (29), the second air cavity (33) and the ball plate groove (29) are connected through the air guide tube (39), and an electric telescopic rod (40) is fixedly provided on the lower side of the sliding plate (36).
3. The intelligent security monitoring device based on the intelligent control base according to claim 2 is characterized in that: A second slider (38) is slidably provided in the third air cavity (34), the second slider (38) and the sliding plate (36) are fixedly connected, an arc-shaped connecting plate (26) is formed between the two ball-plate grooves (29), the arc-shaped connecting plate (26) is provided with a first air inlet pipe (27), a second cavity (30) is formed inside the first transparent shell (15), a second air inlet pipe (28) is provided on the lower side of the arc-shaped connecting plate (26), the second cavity (30) and the third The air cavity (34) is connected to the second air inlet pipe (27) and the second air inlet pipe (28); the second slider (38) is provided with a one-way air inlet; the sliding plate (36) is provided with an air inlet; the one-way air inlet is aligned with the air inlet; the third air cavity (34) and the fourth air cavity (35) are connected to each other through the one-way air inlet; a drying device is provided in the monitoring base (13); the drying device is used to dry the gas entering the third air cavity (34).
4. The intelligent security monitoring device based on the intelligent control base according to claim 3 is characterized in that: The drying device comprises a sponge plate (43), a first drying air cavity (41) and a second drying air cavity (42), wherein the first air cavity (31) is symmetrically provided with the first drying air cavity (41) and the second drying air cavity (42), a fifth air cavity (45) is provided on the lower side of the first air cavity (31), a second partition (51) is fixedly provided in the fifth air cavity (45), and the second partition (51) divides the fifth air cavity (45) into a third drying air cavity (59) and a sixth air cavity (60), a sponge passage is symmetrically provided on the second partition (51), a circular cavity (46) is provided in the center of the second partition (51), and a second partition (51) is fixedly provided in the circular cavity (46). A third motor (48) is fixedly provided, a rotating gear (47) is rotatably provided on the third motor (48), a sponge plate (43) is provided in the sponge passage, a tooth plate (44) is fixedly provided on one side of the sponge plate (43) facing the rotating gear (47), the tooth plate (44) and the rotating gear (47) are engaged, the sponge plate (43) slides in the third drying air chamber (59), the sponge plate (43) slides in the sixth air chamber (60), the third drying air chamber (59) and the first drying air chamber (41) are connected through a pipeline, and the first drying air chamber (41) is connected to the fourth air chamber (35) through a pipeline.
5. The intelligent security monitoring device based on the intelligent control base according to claim 4 is characterized in that: The sixth air cavity (60) is in communication with the second drying air cavity (42) through a pipe, and the second drying air cavity (42) is in communication with the third air cavity (34) through a pipe.
6. The intelligent security monitoring device based on the intelligent control base according to claim 5, characterized in that: A mounting base plate (14) is provided under the monitoring base (13); an air inlet (49) is provided on the mounting base plate (14); the third drying air cavity (59) is connected to the atmosphere through the air inlet (49); an air outlet (50) is provided on the mounting base plate (14); the sixth air cavity (60) is connected to the atmosphere through the air outlet (50).
7. The intelligent security monitoring device based on the intelligent control base according to claim 6, characterized in that: The monitoring base (13) is provided with a first cavity (18) on one side of the second cavity (30); a rotating disk (17) is rotatably provided in the first cavity (18); a second motor (24) is provided on the lower side of the rotating disk (17); the second motor (24) is fixed on the inner wall of the first cavity (18); two supporting shells (12) are symmetrically provided on the rotating disk (17); and the monitoring ball (11) is provided between the two supporting shells (12).
8. The intelligent security monitoring device based on the intelligent control base according to claim 7, characterized in that: A slot (61) is provided in the support shell (12), a first motor (21) is fixedly provided in the slot (61), a rotating shaft is provided on the first motor (21), and the rotating shaft is fixedly connected to the monitoring ball (11).
9. The intelligent security monitoring device based on the intelligent control base according to claim 8, characterized in that: An annular groove (19) is provided in the first cavity (18); an annular slider (20) is fixedly provided on one side of the rotating disk (17) close to the annular groove (19); the annular slider (20) rotates in the annular groove (19); an intelligent detection device (62) is also provided on the rotating disk (17); the intelligent detection device (62) is used to detect the degree of dust coverage on the security monitoring device.
10. The intelligent security monitoring device based on the intelligent control base according to claim 9, characterized in that: An annular scraper (22) is provided on the monitoring base (13), and the annular scraper (22) is in conflict with the transparent ball piece (23).
Citation Information
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