CN111721343A - Data acquisition equipment based on big data processing - Google Patents

Data acquisition equipment based on big data processing Download PDF

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Publication number
CN111721343A
CN111721343A CN202010476638.8A CN202010476638A CN111721343A CN 111721343 A CN111721343 A CN 111721343A CN 202010476638 A CN202010476638 A CN 202010476638A CN 111721343 A CN111721343 A CN 111721343A
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CN
China
Prior art keywords
fixed
data acquisition
side wall
glass cover
base
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Granted
Application number
CN202010476638.8A
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Chinese (zh)
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CN111721343B (en
Inventor
吴福盛
黄春
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Xi'an Hesai Electronic Technology Co.,Ltd.
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Hangzhou Shengtong Technology Co ltd
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Priority to CN202010476638.8A priority Critical patent/CN111721343B/en
Publication of CN111721343A publication Critical patent/CN111721343A/en
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Publication of CN111721343B publication Critical patent/CN111721343B/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D11/00Component parts of measuring arrangements not specially adapted for a specific variable
    • G01D11/30Supports specially adapted for an instrument; Supports specially adapted for a set of instruments
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D11/00Component parts of measuring arrangements not specially adapted for a specific variable
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D11/00Component parts of measuring arrangements not specially adapted for a specific variable
    • G01D11/24Housings ; Casings for instruments

Abstract

The invention relates to the field of data acquisition, in particular to data acquisition equipment based on big data processing, which comprises a base, a glass cover, an adjusting structure, a protective structure, a shell, a supporting structure and a mounting seat, wherein the glass cover is arranged on the base; through the cooperation of adjusting structure and bearing structure, make stable the installing of data processing equipment between regulation structure and bearing structure, the transparency that makes data processing equipment pass through the glass cover carries out the collection of data on every side, the supporting seat rotates the back and drives data acquisition equipment and rotate along the glass cover and carry out different positions all around, the data of different times are gathered, the large quantization that improves data acquisition, the variety, for big data processing provides the basis, improve data processing's accuracy, data acquisition equipment rotates the in-process and drives and adjust the structure rotation back, make and adjust the structure and rotate in protective structure's inside, make the adjustable indirect air intake of inside of glass cover, exhaust, dispel the heat to glass cover inside, do benefit to the work heat dissipation of data acquisition equipment.

Description

Data acquisition equipment based on big data processing
Technical Field
The invention relates to the field of data acquisition, in particular to data acquisition equipment based on big data processing.
Background
Data is a form of expression for facts, concepts, or instructions that may be processed by human or automated means. The data is interpreted and given a certain meaning to become information, the data processing is to collect, store, retrieve, process, transform and transmit the data, the basic purpose of the data processing is to extract and deduce the data which is valuable and meaningful for some specific people from a large amount of disordered and difficult to understand data, the camera is a part of the inside of the data collecting device, and the fixed-point and directional data collection through the camera imaging is a common data collecting device (data collector).
However, the traditional data acquisition equipment is exposed in the air and is easily corroded by the air to cause equipment damage, and the data acquisition equipment is usually fixed in place, so that the data acquisition equipment acquires data more singly, and cannot acquire data at different positions and different times well according to the environment, so that the data processing result has certain influence, and the accuracy of the data is reduced.
Disclosure of Invention
Aiming at the problems in the prior art, the invention provides data acquisition equipment based on big data processing.
The technical scheme adopted by the invention for solving the technical problems is as follows: a data acquisition device based on big data processing comprises a base, a glass cover, an adjusting structure, a protecting structure, a shell, a supporting structure and a mounting seat; the utility model provides a glass cover, glass cover top is fixed with the protection that is used for the collection equipment to survey the collection data for support the top of base is fixed with and is used for the collection equipment the casing, the base is connected with and is used for supporting spacing, drive collection equipment pivoted bearing structure, the casing is connected with and is used for the collection equipment fixed, ventilate adjust the structure, adjust the structural connection the glass cover, it is located to adjust the structure bearing structure's bottom, it is used for to adjust the structural connection the radiating protective structure of taking a breath inside the casing, protective structure connects adjust the structure, the bottom mounting of base is used for the installation fixed the mount pad.
Specifically, bearing structure includes supporting seat, collector backup pad, fixed column, reset spring and pivot, the inside wall of base rotates and is connected with the cross-section and is the shape structure the supporting seat, the inside wall sliding connection of supporting seat has the collector backup pad, the top of collector backup pad is a plurality of spill structures, the collector backup pad with be fixed with between the inside wall of supporting seat reset spring, the inside wall symmetry of supporting seat is fixed with the fixed column, two the fixed column all with sliding connection between the collector backup pad, the base rotates and is connected with the pivot, the pivot with fixed connection between the supporting seat.
The supporting structure further comprises a motor, an apron, a limiting block and an extension spring, the inner side wall of the base is installed on the motor, the motor is connected with the rotating shaft, the base is installed on the apron, the apron is abutted to the motor, the inner side wall of the collector supporting plate is slidably connected with the limiting block, the limiting block extends to the outer portion of the collector supporting plate, the top end of the fixing column is abutted to the side wall of the limiting block, the limiting block is fixed with the extension spring between the inner side wall of the collector supporting plate, the limiting block is symmetrically distributed on the collector supporting plate, the bottom end of the base is fixed with two mounting seats, the two cross sections of the mounting seats are of L-shaped structures, and the inner side wall of the mounting seats is of a hollow structure.
Specifically, the adjusting structure comprises a top cover, scraping plates, nuts, a fixing seat, air guide holes, a fixing shaft, a fixing disc and guide wheels, the top end of the shell is fixed with the top cover through four nuts, the top cover is rotationally connected with the fixing shaft, the bottom end of the fixing shaft is fixedly provided with the fixing seat with a section in a shape structure, the fixing seat is rotationally connected with the shell, the air guide holes are formed in the inner side wall of the fixing seat, the inner side wall of the shell is rotationally connected with two guide wheels, the two guide wheels are both abutted against the outer side wall of the fixing seat, the inner side wall of the shell is rotationally connected with the fixing disc, the fixing disc is meshed with the outer side wall of the fixing seat, the shell is rotationally connected with a plurality of the scraping plates, and the scraping plates are all fixedly connected, it is a plurality of the lateral wall of fixed disk all with the lateral wall of glass cover is contradicted, the fixed disk orientation the cross-section of the lateral wall of glass cover is the serration structure, the bottom of scraper blade with the lateral wall of base is contradicted, six the scraper blade is about casing symmetric distribution.
Specifically, the protective structure comprises a sleeve, a fixed rod, a pressure spring, an air inlet, a brush, an air exhaust groove and a top block, the sleeve is fixed at the top end of the top cover, the fixed shaft is rotatably connected with the sleeve, the air exhaust groove with a T-shaped cross section is formed in the inner side wall of the fixed shaft, the air exhaust groove is communicated with the air guide hole, the sleeve is symmetrically and slidably connected with the fixed rod, the two fixed rods extend to the outer side wall of the sleeve, the pressure spring is fixed between the fixed rod and the inner side wall of the sleeve, the air inlet with a downward opening and a shape structure is formed in the inner side wall of the fixed rod, one end of the air inlet is communicated with the inside of the sleeve, the other end of the air inlet is abutted against the inner side wall of the sleeve, and the two brushes are fixed, the brush with contradict in one side of dead lever, the lateral wall of fixed axle is fixed with two sections and is fan-shaped structure the kicking block, two the kicking block and two be the cruciform structure between the brush, the dead lever orientation the section of fixed axle direction is the V-arrangement structure, the radius of kicking block is greater than the dead lever with minimum horizontal distance between the fixed axle.
The invention has the beneficial effects that:
(1) according to the data acquisition equipment based on big data processing, the data processing equipment is stably arranged between the adjusting structure and the supporting structure through the matching use of the adjusting structure and the supporting structure, the data processing equipment acquires data on the periphery through the transparency of the glass cover, the supporting seat rotates to drive the data acquisition equipment to rotate along the glass cover to acquire data at different positions and different time on the periphery, the large quantity and diversity of data acquisition are improved, a foundation is provided for big data processing, and the accuracy of data processing is improved, namely: the four nuts are disassembled, the top cover is taken down from the shell, the data acquisition equipment is placed at the top end of the collector supporting plate, the top cover is placed at the top end of the data acquisition equipment, the cover plate is fixed on the shell through the nuts after the data acquisition equipment is pressed downwards, the collector supporting plate slides downwards to extrude the reset spring, the collector supporting plate slides up and down into the inner side wall of the supporting seat on the fixed column, the fixed column extrudes to push the limit blocks to slide towards the data acquisition equipment while the collector supporting plate slides, the two limit blocks extrude and fix the data acquisition equipment, so that the data acquisition equipment is fixed between the collector supporting plate and the fixed seat, the stability of the data acquisition equipment during operation is improved, the top end of the collector supporting plate is in a concave structure, the heat dissipation of the data acquisition equipment is facilitated, the motor operates, the data acquisition equipment on the data acquisition equipment is driven to rotate in the glass cover after the supporting seat rotates on the inner side wall of the base, the fixing seat rotates on the inner side wall of the shell, the camera on the data acquisition equipment is rotated to acquire surrounding data through the transparency of the glass cover, so that the data acquisition equipment can be adjusted to acquire data at different time and different positions, the accuracy of data processing can be improved, the data acquisition equipment is adjusted to acquire a large amount of data by controlling the starting and stopping of the motor, diversity is provided for data processing, the fixing seat rotates while the fixing seat rotates, a plurality of scraping plates rotate along the outer side wall of the glass cover, dust is scraped on the outer side wall of the glass cover, data shooting and collection of the data acquisition equipment are facilitated, the fixing seat rotates while the fixing plate rotates, and the scraping plates rotate along the outer side wall of the glass cover, carry out scraping of dust to the glass cover lateral wall, do benefit to data acquisition equipment and carry out data shooting and collect to can accomplish the collection of a large amount of data, carry out the processing of a large amount of data.
(2) According to the data acquisition equipment based on big data processing, after the data acquisition equipment drives the adjusting structure to rotate in the rotating process, the adjusting structure rotates in the protective structure, so that indirect air inlet and exhaust can be adjusted in the glass cover, the inside of the glass cover is cooled, the work and heat dissipation of the data acquisition equipment are facilitated, the work stability of the data acquisition equipment is improved, and the data acquisition is facilitated better, namely: when the fixed seat rotates on the shell, the fixed shaft is driven to rotate in the sleeve, the fixed shaft drives the two ejector blocks to rotate after rotating, the ejector blocks are pushed to slide towards the direction far away from the fixed shaft after rotating to be abutted against the fixed rod, the pressure spring is contracted to generate elasticity, the air inlet hole is moved to be contacted with air, at the moment, the air enters the sleeve from the air inlet hole, the air enters the air exhaust groove and then enters the glass cover from the air guide hole, the data acquisition equipment in the glass cover is cooled when working, meanwhile, the air inlet hole in the other fixed rod is contacted with the air, the hot air in the glass cover is discharged from the air inlet hole, the heat is further dissipated in the glass cover, after the ejector blocks rotate to be far away from the fixed rod, the fixed rod is pushed to reset through the elasticity of the pressure spring, the air inlet hole is blocked, the moisture in the rainy weather, thereby can carry out data acquisition equipment's in good time heat dissipation treatment according to different environment, do benefit to data acquisition equipment normal work and carry out data acquisition, improve data acquisition's pluralism, drive the cleaning brush when the fixed axle rotates and rotate and clear up the lateral wall of dead lever, prevent that the dust of inlet port from blockking up, do benefit to the inside heat transfer of glass cover, make the better work data acquisition of data acquisition equipment.
Drawings
The invention is further illustrated with reference to the following figures and examples.
Fig. 1 is a schematic overall structure diagram of a data acquisition device based on big data processing according to a preferred embodiment of the present invention;
FIG. 2 is a schematic view of the connection of the base, the cover glass and the adjustment structure shown in FIG. 1;
FIG. 3 is an enlarged view of portion A of FIG. 2;
FIG. 4 is a schematic view of the connection structure of the adjustment structure and the shielding structure shown in FIG. 1;
FIG. 5 is an enlarged view of the portion B shown in FIG. 2;
fig. 6 is a schematic view of a coupling structure of the glass cover and the adjusting structure shown in fig. 1.
In the figure: 1. the base, 2, glass cover, 3, regulation structure, 31, top cap, 32, scraper blade, 33, nut, 34, fixing base, 35, air guide hole, 36, fixed axle, 37, fixed disk, 38, leading wheel, 4, protective structure, 41, sleeve pipe, 42, dead lever, 43, compression spring, 44, inlet port, 45, brush, 46, exhaust duct, 47, kicking block, 5, casing, 6, bearing structure, 61, supporting seat, 62, collector backup pad, 63, fixed column, 64, reset spring, 65, pivot, 66, motor, 67, apron, 68, stopper, 69, extension spring, 7, mount pad.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
As shown in fig. 1 to 6, the data acquisition device based on big data processing according to the present invention includes a base 1, a glass cover 2, an adjusting structure 3, a protecting structure 4, a housing 5, a supporting structure 6, and a mounting base 7; used for supporting the top of base 1 is fixed with and is used for the collection equipment to survey collection data glass cover 2, 2 tops of glass cover are fixed with and are used for the protection of collection equipment casing 5, base 1 is connected with and is used for supporting spacing, drive collection equipment pivoted bearing structure 6, casing 5 is connected with and is used for collection equipment fixed, ventilate adjust structure 3, adjust structure 3 and connect glass cover 2, adjust structure 3 and be located bearing structure 6's bottom, adjust structure 3 and be connected with and be used for 5 inside radiating of taking a breath of casing protective structure 4, protective structure 4 connects adjust structure 3, the bottom mounting of base 1 is used for the installation fixed mount pad 7.
Specifically, the supporting structure 6 includes a supporting seat 61, a collector supporting plate 62, fixing columns 63, a return spring 64 and a rotating shaft 65, the supporting seat 61 with a cross-section in a shape structure is rotatably connected to the inner side wall of the base 1, the collector supporting plate 62 is slidably connected to the inner side wall of the supporting seat 61, the top end of the collector supporting plate 62 is in a plurality of concave structures, the return spring 64 is fixed between the collector supporting plate 62 and the inner side wall of the supporting seat 61, the fixing columns 63 are symmetrically fixed to the inner side wall of the supporting seat 61, both the fixing columns 63 are slidably connected with the collector supporting plate 62, the rotating shaft 65 is rotatably connected to the base 1, and the rotating shaft 65 is fixedly connected to the supporting seat 61; the base 1 is fixed at a position needing data acquisition through the connecting screw of the mounting seat 7, the whole device is fixed, the data processing equipment is placed on the collector supporting plate 62, a camera on the data acquisition equipment faces the glass cover 2, the data acquisition equipment is pressed down through the fixing seat 34, the collector supporting plate 62 slides down to press the reset spring 64, the collector supporting plate 62 slides up and down in the fixing column 63 to enter the inner side wall of the supporting seat 61, the fixing column 63 pushes the limiting block 68 to slide towards the data acquisition equipment while the collector supporting plate 62 slides, the two limiting blocks 68 push and fix the data acquisition equipment, so that the data acquisition equipment is fixed between the collector supporting plate 62 and the fixing seat 34, and the stability of the data acquisition equipment during working is improved, through collector backup pad 62 top is the concave structure, does benefit to the heat dissipation of data acquisition equipment.
Specifically, the supporting structure 6 further includes a motor 66, a cover plate 67, a limiting block 68 and an extension spring 69, the motor 66 is mounted on the inner side wall of the base 1, the motor 66 is connected with the rotating shaft 65, the cover plate 67 is mounted on the base 1, the cover plate 67 is abutted to the motor 66, the inner side wall of the collector supporting plate 62 is slidably connected with the two limiting blocks 68 with triangular cross sections, the limiting blocks 68 extend to the outside of the collector supporting plate 62, the top end of the fixing column 63 is abutted to the side wall of the limiting block 68, the extension spring 69 is fixed between the limiting blocks 68 and the inner side wall of the collector supporting plate 62, the two limiting blocks 68 are symmetrically distributed with respect to the collector supporting plate 62, and the bottom end of the base 1 is fixed with the mounting seat 7 with two L-shaped cross sections, the inner side wall of the mounting seat 7 is of a hollow structure; through opening motor 66's power makes motor 66 work drives pivot 65 rotates, makes supporting seat 61 is in drive after base 1's inside wall rotates the data acquisition equipment on the collector supporting seat 62 is in the inside of glass cover 2 rotates, makes fixing base 34 is in the inside wall of casing 5 rotates, through glass cover 2's transparency makes the camera rotation on the data acquisition equipment carry out data acquisition all around to can adjust data acquisition equipment and carry out the data acquisition of different time, different positions, thereby can improve data processing's accuracy, through control motor 66 opens and stops, adjusts data acquisition equipment and gathers a large amount of data, provides the variety for data processing.
Specifically, the adjusting structure 3 includes a top cover 31, scraper blades 32, nuts 33, a fixing seat 34, air holes 35, a fixing shaft 36, a fixing disc 37 and guide wheels 38, the top end of the casing 5 is fixed with the top cover 31 through four nuts 33, the top cover 31 is rotatably connected with the fixing shaft 36, the bottom end of the fixing shaft 36 is fixed with the fixing seat 34 with a cross-section in a shape structure, the fixing seat 34 is rotatably connected with the casing 5, the air holes 35 are opened on the inner side wall of the fixing seat 34, the inner side wall of the casing 5 is rotatably connected with two guide wheels 38, the two guide wheels 38 are both abutted against the outer side wall of the fixing seat 34, the inner side wall of the casing 5 is rotatably connected with the fixing disc 37, the fixing disc 37 is engaged with the outer side wall of the fixing seat 34, the casing 5 is rotatably connected with a plurality of scraper blades, the plurality of scrapers 32 are fixedly connected with the fixed disc 37, the side walls of the fixed discs 37 are abutted against the outer side wall of the glass cover 2, the cross sections of the fixed discs 37 facing the side wall of the glass cover 2 are of sawtooth structures, the bottom ends of the scrapers 32 are abutted against the side wall of the base 1, and six scrapers 32 are symmetrically distributed about the shell 5; through dismantling four nut 33 will top cap 31 is followed take off on the casing 5, place data acquisition equipment behind the top of collector backup pad 62, will top cap 31 is put on data acquisition equipment's top, pushes down data acquisition equipment after, through nut 33 will apron 31 is fixed on the casing 5, it is fixed to data acquisition equipment installation, make when fixing base 34 rotates fixed disk 37 rotates, makes a plurality of scraper blade 32 is extending the lateral wall of glass cover 2 rotates, and is right glass cover 2 lateral wall carries out scraping of dust, does benefit to data acquisition equipment and carries out data shooting and collect.
Specifically, the protection structure 4 includes a sleeve 41, a fixing rod 42, a pressure spring 43, an air inlet 44, a brush 45, an air discharge groove 46 and a top block 47, the sleeve 41 is fixed on the top end of the top cover 31, the fixing shaft 36 is rotatably connected with the sleeve 41, the air discharge groove 46 with a T-shaped cross section is formed on the inner side wall of the fixing shaft 36, the air discharge groove 46 is communicated with the air guide hole 35, the sleeve 41 is symmetrically and slidably connected with the fixing rod 42, both the fixing rods 42 extend to the outer side wall of the sleeve 41, the pressure spring 43 is fixed between the fixing rod 42 and the inner side wall of the sleeve 41, the air inlet 44 with a downward opening is formed on the inner side wall of the fixing rod 42, one end of the air inlet 44 is communicated with the inside of the sleeve 41, and the other end of the air inlet 44 abuts against the inner side wall of the sleeve 41, the outer side wall of the fixed shaft 36 is fixed with two brushes 45, the brushes 45 are abutted against one side of the fixed rod 42, the outer side wall of the fixed shaft 36 is fixed with two top blocks 47 with sector-shaped sections, a cross structure is formed between the two top blocks 47 and the two brushes 45, the section of the fixed rod 42 facing the direction of the fixed shaft 36 is in a V-shaped structure, and the radius of the top block 47 is greater than the minimum horizontal distance between the fixed rod 42 and the fixed shaft 36; when the fixed seat 34 rotates on the housing 5, the fixed shaft 36 is driven to rotate inside the casing 41, the fixed shaft 36 drives the two ejector blocks 47 to rotate after rotating, after the ejector blocks 47 rotate and contact with the fixed rod 42, the fixed rod 42 is pushed to slide in a direction away from the fixed shaft 36, the pressure spring 43 is contracted to generate elastic force, the air inlet 44 moves to contact with air, at this time, air enters the casing 41 from the air inlet 44, the air enters the air exhaust groove 46 and then enters the inside of the glass cover 2 from the air guide hole 35, heat dissipation is performed when the data acquisition equipment inside the glass cover 2 works, meanwhile, the air inlet 44 inside the other fixed rod 42 contacts with the air, hot air inside the glass cover 2 is discharged from the air inlet 44, and heat dissipation is further performed inside the glass cover 2, the kicking block 47 rotates and keeps away from behind the dead lever 42, through pressure spring 43's elasticity promotes dead lever 42 resets, makes inlet port 44 blocks up, thereby can prevent that overcast and rainy weather moisture from getting into inside the glass cover 2, avoid data acquisition equipment to damage, thereby can carry out data acquisition equipment's timely heat dissipation treatment according to different environment, do benefit to data acquisition equipment normal work and carry out data acquisition, improve data acquisition's pluralism, drive when fixed axle 36 pivoted cleaning brush 45 rotates right the lateral wall of dead lever 42 clears up, prevents inlet port 44's dust blocks up, does benefit to the heat transfer of glass cover 2 inside makes the better work data acquisition of data acquisition equipment.
When the data acquisition device is used, firstly, the four nuts 33 are disassembled, the top cover 31 is taken down from the shell 5, the data acquisition device is placed at the top end of the collector support plate 62, the top cover 31 is placed at the top end of the data acquisition device, the cover plate 31 is fixed on the shell 5 through the nuts 33 after the data acquisition device is pressed down, the collector support plate 62 slides down to extrude the reset spring 64, the collector support plate 62 slides up and down into the inner side wall of the support seat 61 on the fixed column 63, the fixed column 63 extrudes to push the limiting block 68 to slide towards the data acquisition device while the collector support plate 62 slides, the two limiting blocks 68 extrude and fix the data acquisition device, so that the data acquisition device is fixed between the collector support plate 62 and the fixed seat 34, the stability of the data acquisition device during operation is improved, the top end of the collector support plate 62 is of a, by turning on the power of the motor 66, the motor 66 works to drive the rotating shaft 65 to rotate, the supporting seat 61 drives the data acquisition equipment on the collector supporting seat 62 to rotate in the glass cover 2 after the inner side wall of the base 1 rotates, the fixing seat 34 rotates in the inner side wall of the shell 5, the camera on the data acquisition equipment is rotated to acquire data all around through the transparency of the glass cover 2, so that the data acquisition equipment can be adjusted to acquire data at different time and different positions, the accuracy of data processing can be improved, the data acquisition equipment is adjusted to acquire a large amount of data by controlling the motor 66 to be started and stopped, diversity is provided for data processing, the fixed disk 37 is rotated while the fixing seat 34 rotates, the plurality of scraping plates 32 rotate along the outer side wall of the glass cover 2, dust is scraped from the outer side wall of the glass cover 2, and data shooting and collection of the data acquisition equipment are facilitated, the fixed disc 37 rotates when the fixed base 34 rotates, so that the plurality of scrapers 32 rotate along the outer side wall of the glass cover 2 to scrape off dust on the outer side wall of the glass cover 2, which is beneficial for data acquisition equipment to shoot and collect data, thereby acquiring a large amount of data and processing a large amount of data, when the fixed base 34 rotates on the shell 5, the fixed shaft 36 is driven to rotate in the sleeve 41, the fixed shaft 36 drives the two ejector blocks 47 to rotate after rotating, after the ejector blocks 47 rotate and abut against the fixed rod 42, the fixed rod 42 is pushed to slide in a direction away from the fixed shaft 36, the pressure spring 43 is contracted to generate elasticity, the air inlet 44 moves to be contacted with air, at the moment, the air enters the sleeve 41 from the air inlet 44, enters the inside of the air exhaust groove 46 from the air guide hole 35 to enter the inside of the glass cover 2, and the heat is dissipated when the data acquisition equipment inside, meanwhile, the air inlet 44 in the other fixing rod 42 is in contact with the air, hot air in the glass cover 2 is discharged from the air inlet 44, heat dissipation is further conducted inside the glass cover 2, the ejector block 47 rotates to be away from the fixing rod 42, the fixing rod 42 is pushed to reset through the elasticity of the pressure spring 43, the air inlet 44 is blocked, moisture in rainy weather can be prevented from entering the glass cover 2, damage to data acquisition equipment is avoided, timely heat dissipation processing of the data acquisition equipment can be conducted according to different environments, normal work of the data acquisition equipment is facilitated to conduct data acquisition, data acquisition is greatly improved, the fixed shaft 36 rotates and meanwhile drives the cleaning brush 45 to rotate to clean the side wall of the fixing rod 42, dust blockage of the air inlet 44 is prevented, heat exchange inside the glass cover 2 is facilitated, and data acquisition equipment better works to acquire data.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and the embodiments and descriptions given above are only illustrative of the principles of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which fall within the scope of the claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (5)

1. The utility model provides a data acquisition equipment based on big data processing which characterized in that: comprises a base (1), a glass cover (2), an adjusting structure (3), a protective structure (4), a shell (5), a supporting structure (6) and a mounting seat (7); the top end of the base (1) for supporting is fixed with the glass cover (2) for collecting the observation and collection data of the equipment, the top end of the glass cover (2) is fixed with the shell (5) for protecting the collecting equipment, the base (1) is connected with the supporting structure (6) for supporting, limiting and driving the acquisition equipment to rotate, the shell (5) is connected with the adjusting structure (3) for fixing and ventilating the acquisition equipment, the adjusting structure (3) is connected with the glass cover (2), the adjusting structure (3) is positioned at the bottom end of the supporting structure (6), the adjusting structure (3) is connected with the protective structure (4) used for ventilation and heat dissipation in the shell (5), the protective structure (4) is connected with the adjusting structure (3), and the bottom end of the base (1) is fixed with a mounting seat (7) for mounting and fixing.
2. The big data processing-based data acquisition device according to claim 1, wherein: the supporting structure (6) comprises a supporting seat (61), a collector supporting plate (62), a fixed column (63), a return spring (64) and a rotating shaft (65), the inner side wall of the base (1) is rotationally connected with the supporting seat (61) with a cross section in a shape structure, the inner side wall of the supporting seat (61) is connected with the collector supporting plate (62) in a sliding way, the top end of the collector supporting plate (62) is in a plurality of concave structures, the reset spring (64) is fixed between the collector supporting plate (62) and the inner side wall of the supporting seat (61), the inner side wall of the supporting seat (61) is symmetrically fixed with the fixing columns (63), the two fixing columns (63) are in sliding connection with the collector supporting plate (62), the base (1) is connected with the rotating shaft (65) in a rotating mode, and the rotating shaft (65) is fixedly connected with the supporting seat (61).
3. The big data processing-based data acquisition device according to claim 1, wherein: the supporting structure (6) further comprises a motor (66), a cover plate (67), limit blocks (68) and extension springs (69), the motor (66) is installed on the inner side wall of the base (1), the motor (66) is connected with the rotating shaft (65), the cover plate (67) is installed on the base (1), the cover plate (67) is abutted to the motor (66), the two limit blocks (68) with triangular cross sections are connected to the inner side wall of the collector supporting plate (62) in a sliding mode, the limit blocks (68) extend to the outer portion of the collector supporting plate (62), the top end of the fixed column (63) is abutted to the side wall of the limit blocks (68), the extension springs (69) are fixed between the limit blocks (68) and the inner side wall of the collector supporting plate (62), and the two limit blocks (68) are symmetrically distributed relative to the collector supporting plate (62), the bottom end of the base (1) is fixed with two installation bases (7) with L-shaped sections, and the inner side walls of the installation bases (7) are of hollow structures.
4. The big data processing-based data acquisition device according to claim 1, wherein: the adjusting structure (3) comprises a top cover (31), a scraper (32), nuts (33), a fixed seat (34), air holes (35), a fixed shaft (36), a fixed disc (37) and guide wheels (38), the top end of the shell (5) is fixed with the top cover (31) through four nuts (33), the top cover (31) is rotatably connected with the fixed shaft (36), the bottom end of the fixed shaft (36) is fixed with the fixed seat (34) with a cross section in a shape structure, the fixed seat (34) is rotatably connected with the shell (5), the inner side wall of the fixed seat (34) is provided with the air holes (35), the inner side wall of the shell (5) is rotatably connected with two guide wheels (38), two guide wheels (38) are all abutted against the outer side wall of the fixed seat (34), the inner side wall of the shell (5) is rotatably connected with the fixed disc (37), fixed disk (37) with the meshing is connected between the lateral wall of fixing base (34), casing (5) are rotated and are connected with a plurality ofly scraper blade (32), and are a plurality of scraper blade (32) all with fixed connection between fixed disk (37), it is a plurality of the lateral wall of fixed disk (37) all with the lateral wall of glass cover (2) is contradicted, fixed disk (37) orientation the cross-section of the lateral wall of glass cover (2) is the serration structure, the bottom of scraper blade (32) with the lateral wall of base (1) is contradicted, six scraper blade (32) about casing (5) symmetric distribution.
5. The big data processing-based data acquisition device according to claim 1, wherein: the protection structure (4) comprises a sleeve (41), fixing rods (42), a pressure spring (43), air inlet holes (44), a brush (45), an air exhaust groove (46) and a top block (47), the sleeve (41) is fixed at the top end of the top cover (31), the fixing shaft (36) is rotatably connected with the sleeve (41), the air exhaust groove (46) with a T-shaped cross section is formed in the inner side wall of the fixing shaft (36), the air exhaust groove (46) is communicated with the air guide hole (35), the fixing rods (42) are symmetrically and slidably connected with the sleeve (41), the two fixing rods (42) extend to the outer side wall of the sleeve (41), the pressure spring (43) is fixed between the fixing rods (42) and the inner side wall of the sleeve (41), the air inlet holes (44) with downward openings and in a shape structure are formed in the inner side walls of the fixing rods (42), the one end of inlet port (44) with the inside intercommunication of sleeve pipe (41), the other end of inlet port (44) with the inside wall of sleeve pipe (41) is contradicted, the lateral wall of fixed axle (36) is fixed with two brush (45), brush (45) with one side of dead lever (42) is contradicted, the lateral wall of fixed axle (36) is fixed with two cross-sections and is fan-shaped structure kicking block (47), two kicking block (47) and two be the cruciform structure between brush (45), dead lever (42) orientation the cross-section of fixed axle (36) direction is V-arrangement structure, the radius of kicking block (47) is greater than dead lever (42) with minimum horizontal distance between fixed axle (36).
CN202010476638.8A 2020-05-29 2020-05-29 Data acquisition equipment based on big data processing Active CN111721343B (en)

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CN209512888U (en) * 2019-01-14 2019-10-18 云南遥测地理信息科技有限公司 A kind of novel geography information wireless data acquisition terminal
CN209542568U (en) * 2019-01-29 2019-10-25 重庆泽伯塔信息技术有限公司 A kind of Environmental security monitoring device
CN210202330U (en) * 2019-06-03 2020-03-27 石润涵 Heat sink for electronic device

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040239523A1 (en) * 2003-06-02 2004-12-02 Paoli Ernie R. Wireless remote monitoring system
CN207817627U (en) * 2018-01-04 2018-09-04 重庆软易科技有限公司 A kind of cooling system of large data sets forming apparatus
CN208833267U (en) * 2018-10-27 2019-05-07 福建钰辰微电子有限公司 A kind of Multifunction Sensor data acquisition equipment with protection structure
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