Image processing device and system based on big data
By designing multi-angle adjustment image processing devices and systems, the problem that traditional image processing devices can only acquire single points is solved, multi-angle acquisition and efficient processing are realized, and operation convenience and memory card management are improved.
Patent Information
- Application Number
- CN202511009985.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-22
- Publication Date
- 2025-09-05
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional image processing devices can only collect pictures from a single location, resulting in too large specifications of some pictures that require cumbersome movement and operation.
A big data-based image processing device is designed, including a fixed base, push rack, display component, image processor, storage card storage module and other components, and multi-angle image acquisition and display are realized through stepper motor, cylinder and angle adjustment components, combining the systematized processing of the image acquisition module, transmission module, operation module and display module.
It realizes multi-angle image acquisition and efficient image processing, improves operation convenience and user experience, and optimizes the management and space utilization of memory cards.
Smart Images

Figure CN120602784A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of image processing devices, and in particular to an image processing device and system based on big data. Background Art
[0002] The image processing device can extract features from image blocks in the document image to obtain image features. These features are then combined with virtual text features for attention calculation to generate attention image features. The text features are then concatenated with these features and input into a large model. The large model processing module then analyzes the attention image features based on the text features, ultimately achieving document image analysis. In terms of target recognition, the image processing device can binarize the original image and then use a multi-core processor to scan each pixel row of the binarized image in parallel to extract one-dimensional connected regions. The device then generates the largest connected region by combining adjacent pixel rows and performs two-dimensional scanning on these regions to ultimately identify the target object. An image signal processor (ISP) is hardware or a processing unit specifically designed for processing image signals. It is widely used in the signal conversion process between image sensors and display devices. Its core function is to extract and optimize image information from the raw data output by the sensor, ultimately outputting an image that can be displayed, stored, or further processed.
[0003] However, conventional image processing devices have the following disadvantages: Traditional image processing devices can only capture images from a single location. Some images are too large, requiring the user to move the image to complete the capture operation, which is very cumbersome.
[0004] Based on this, the present invention designs an image processing device and system based on big data to solve the above problems. Summary of the Invention
[0005] In view of the above-mentioned shortcomings of the prior art, the present invention provides an image processing device and system based on big data.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: An image processing device includes a fixed base, a push frame fixedly mounted on one side of the top of the fixed base, a processing housing fixedly mounted on the other side of the top of the fixed base, a display assembly fixedly mounted on the top of the processing housing, an image processor fixedly mounted on the surface of the processing housing, and a storage card storage module mounted inside the processing housing; A motor housing is fixedly installed on the right side of the processing housing, the right end of the motor housing is rotatably connected to the steering table, a stepper motor is fixedly installed inside the motor housing, and the output end of the stepper motor is fixedly connected to the left side of the steering table; A length adjustment component is installed on the right side of the steering table, and a collection component is installed on the right side of the length adjustment component; The upper right end of the steering platform is fixedly connected to a limit plate, the upper end of the limit plate is fixedly connected to the push cylinder, and the output end of the push cylinder is connected to the length adjustment component; Heat dissipation windows are fixedly installed on the front and back sides of the processing housing; The four corners at the bottom of the fixed base are all fixedly mounted with moving wheels.
[0007] Furthermore, the display assembly includes a supporting assembly, an adjusting assembly and a display screen. The lower end of the supporting assembly is connected to the processing housing, the upper end of the supporting assembly is connected to the display screen, and the supporting assembly is connected to the adjusting assembly.
[0008] Furthermore, the support assembly includes a connecting seat, a first angle plate, a second angle plate and a display table. The bottom end of the connecting seat is fixedly connected to the processing housing, the left side of the top end of the connecting seat is rotatably connected to the bottom end of the first angle plate, the top end of the first angle plate is rotatably connected to the lower end of the second angle plate, the top end of the second angle plate is fixedly connected to the display table, and the top end of the display table is fixedly connected to the display screen.
[0009] Furthermore, the adjustment assembly includes a first angle cylinder and a second angle cylinder, the connecting seat is rotatably connected to the fixed end of the first angle cylinder, the movable end of the first angle cylinder is rotatably connected to the first angle plate, the middle part of the first angle plate is rotatably connected to the second angle cylinder, and the movable end of the second angle cylinder is rotatably connected to the middle part of the second angle plate.
[0010] Furthermore, the length adjustment component includes a connecting plate, a sliding shell, a sliding block, an arc-shaped slide and a movable frame; the upper and lower ends of the left side of the sliding shell are respectively fixedly connected to one end of the two connecting plates, the other ends of the two connecting plates are fixedly connected to the right side of the steering platform, the interior of the sliding shell is slidably connected to the sliding block, a movable opening is opened on the right side of the sliding shell, the right side of the sliding block is fixedly connected to the arc-shaped slide, the left side of the arc-shaped slide is slidably connected to the movable opening, the surface of the sliding shell is fixedly connected to the movable frame, the collection component is connected to the arc-shaped slide and the movable frame, and the output end of the push cylinder is fixedly connected to the upper end of the sliding block.
[0011] Furthermore, the collection component includes a collection rod, a movable seat, a vertical plate, a collection table, a collection probe, a displacement block and a micro cylinder. The right end of the collection rod is fixedly connected to the lower end of the movable seat, the interior of the movable seat is rotatably connected to the lower end of the vertical plate, the upper end of the vertical plate is fixedly connected to the collection table, the upper end of the collection table is fixedly connected to the collection probe, the left side of the lower end of the collection table is slidingly connected to the displacement block, the bottom end of the displacement block is fixedly connected to the output end of the micro cylinder, the fixed end of the micro cylinder is fixedly installed on the upper end of the collection rod, the left end of the collection rod is limitedly slidably connected to the arc surface end of the arc slide, and the side wall of the collection rod is slidingly connected to the right side of the movable frame.
[0012] Furthermore, the storage card storage module includes a rotating rod, a mounting plate and a fixing component. A accommodating cavity is provided inside the processing housing. The left and right sides of the accommodating cavity are respectively rotatably connected to the left and right sides of the rotating rod. Damping is provided between the left and right sides of the accommodating cavity and the left and right sides of the rotating rod. Multiple mounting plates are provided at equal intervals and are fixedly mounted on the rotating rod in a circular array. Multiple fixing components are provided at equal intervals on each mounting plate.
[0013] Furthermore, the fixing assembly includes a fixing frame, a rotating piece and a sponge pad. The fixing frame is fixedly installed on the upper end of the mounting plate. Two sponge pads are provided and fixedly installed inside the fixing frame respectively. The left and right ends of the rotating piece are hinged to the sponge pad through a tension spring.
[0014] In order to better achieve the purpose of the present invention, the present invention also provides an image processing system based on big data, including an image acquisition module, an image transmission module, an image operation module, an image display module and a control module, wherein the image acquisition module, the image transmission module, the image operation module and the image display module are all connected to the control module, the image acquisition module is connected to the image transmission module, the image transmission module is connected to the image operation module, and the image operation module is connected to the image display module; The control module control device controls image acquisition, transmission, operation and display. The image acquisition module acquires the image to be processed, and then operates and processes the acquired image through the image operation module. Finally, the processed image result is displayed through the image display module, and the acquired image is transmitted to the network through the image transmission module.
[0015] The image transmission module includes an image uploading unit and an image downloading unit, the image operation module includes an image screening unit, an image compiling unit, an image correction unit and an abnormal data processing unit, and the image display module includes an image hiding unit and an image display unit; The acquisition probe is connected to the input end of the image upload unit, and the output end of the image upload unit is connected to the input end of the image download unit; The output end of the image download unit is connected to the image screening unit, and the output end of the image screening unit is connected to the qualified image buffer area and the abnormal image temporary storage area respectively. The images are screened through the multi-dimensional quality assessment model, and the qualified images are transmitted to the image compilation unit, and the abnormal images are transmitted to the abnormal data processing unit; The output end of the image coding unit is connected to the input end of the image correction unit, and the output end of the image correction unit is connected to the input ends of the abnormal data processing unit and the image display unit; The abnormal data processing unit receives abnormal images and marks the images, and the image display unit receives normal images and displays them; The input end of the image display unit is connected to the image hiding unit. The image hiding unit receives a user's hiding or displaying instruction and controls the display content of the image display unit by generating a control signal.
[0016] Compared with the prior art, the present invention has the following advantages: 1. By providing an acquisition component, a micro-cylinder pushes the displacement block to slide along the acquisition platform, and the acquisition platform deflects the angle relative to the movable seat through the vertical plate, thereby indirectly adjusting the image acquisition position of the acquisition probe, facilitating the acquisition and processing of images of different specifications, and improving the processing efficiency of the image processing device; 2. By setting a stepper motor and a push cylinder, the push cylinder pushes the sliding block from one side, the sliding block slides relative to the sliding shell, and the sliding block drives the arc-shaped slide to move synchronously, so that the acquisition rod slides along the arc of the arc-shaped slide, and the acquisition angle of the acquisition component is adjusted, which facilitates the acquisition device to acquire images from multiple directions, and has high practicality; 3. By setting up a display assembly, the first angle cylinder pushes the first angle plate from one side to deflect along the connecting seat, and the second angle cylinder pushes the second angle plate from one side to adjust the angle of the second angle plate relative to the first angle plate. The first angle plate and the second angle plate cooperate with each other to adjust the display position of the display screen, making it easier for users to observe image processing results from multiple angles; 4. A storage card storage module is provided to store and arrange the storage cards of the image processor. The storage card storage module of the present invention achieves multiple performance optimizations in terms of storage card fixation, replacement, space utilization, etc., which not only meets the device's demand for efficient storage card management, but also improves operational reliability and user experience through detailed design. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] To more clearly illustrate the embodiments of the present 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 present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.
[0018] Figure 1 is a schematic diagram of an image processing device of the present invention; Figure 2 is a schematic diagram of a display assembly of the present invention; Figure 3 Schematic diagram of the collection component and length adjustment component of the present invention; Figure 4 A perspective view of the collecting assembly and the length adjusting assembly of the present invention; Figure 5 Schematic diagram of the acquisition component of the present invention Figure 1 ; Figure 6 Schematic diagram of the acquisition component of the present invention Figure 2 ; Figure 7 A schematic diagram of the structure of a processing housing of the present invention is shown with a portion removed; Figure 8 is a schematic diagram of a memory card receiving module of the present invention; Figure 9 is a schematic diagram of the fixing frame, rotating plate and sponge pad of the present invention; Figure 10 Schematic diagram of the architecture of the image processing system of the present invention; Figure 11 Schematic diagram of the architecture of the image transmission module of the present invention; Figure 12 Schematic diagram of the architecture of the image operation module of the present invention; Figure 13 Schematic diagram of the architecture of the image display module of the present invention; Figure 14 Schematic diagram of the connection of the image processing system of the present invention.
[0019] The numbers in the figure represent: 1. Fixed base; 2. Moving wheel; 3. Push frame; 4. Processing housing; 5. Display assembly; 51. Connecting seat; 52. First angle cylinder; 53. First angle plate; 54. Second angle cylinder; 55. Second angle plate; 56. Display table; 57. Display screen; 6. Image processor; 7. Heat dissipation window; 8. Motor housing; 9. Steering table; 10. Limit plate; 11. Push cylinder; 12. Collection assembly; 121. Collection rod; 122. Movable seat; 123. Vertical plate; 124, acquisition table; 125, acquisition probe; 126, displacement block; 127, micro cylinder; 13, stepping motor; 14, length adjustment assembly; 141, connecting plate; 142, sliding shell; 143, sliding block; 144, movable opening; 145, arc-shaped slide; 146, movable frame; 15, storage card storage module; 151, accommodating cavity; 152, rotating rod; 153, mounting plate; 154, fixing frame; 155, rotating sheet; 156, sponge pad. DETAILED DESCRIPTION
[0020] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.
[0021] In the following description, “left”, “right”, “front”, “back”, “up” and “down” are used to refer to Figure 1 The viewing direction is oriented.
[0022] Example 1: In some embodiments, please refer to the accompanying drawings of the specification. Figures 1-9 An image processing device includes a fixed base 1, a push frame 3 is fixedly mounted on one side of the top of the fixed base 1, a processing housing 4 is fixedly mounted on the other side of the top of the fixed base 1, a display component 5 is fixedly mounted on the top of the processing housing 4, an image processor 6 is fixedly mounted on the surface of the processing housing 4, and a storage card storage module 15 is installed inside the processing housing 4; A motor housing 8 is fixedly installed on the right side of the processing housing 4. The right end of the motor housing 8 is rotatably connected to a steering table 9. A stepper motor 13 is fixedly installed inside the motor housing 8. The output end of the stepper motor 13 is fixedly connected to the left side of the steering table 9. Effect: The stepping motor 13 starts after being energized, and the stepping motor 13 drives the direction platform 9 to rotate, thereby adjusting the collection direction of the collection component 12.
[0023] A length adjustment component 14 is installed on the right side of the direction table 9, and a collection component 12 is installed on the right side of the length adjustment component 14; The upper right end of the steering platform 9 is fixedly connected to a limit plate 10, the upper end of the limit plate 10 is fixedly connected to a push cylinder 11, and the output end of the push cylinder 11 is connected to a length adjustment component 14; Heat dissipation windows 7 are fixedly mounted on both the front and rear sides of the processing housing 4 ; during operation, the heat generated by the processing housing 4 is exchanged with the low-temperature air in the external environment through the heat dissipation windows 7 .
[0024] The four corners at the bottom of the fixed base 1 are fixedly mounted with moving wheels 2; when the user moves the push frame 3, the moving wheels 2 generate friction after contacting the ground, making it easier for the user to move and transport the image processing device.
[0025] like Figure 2 As shown, the display assembly 5 includes a supporting assembly, an adjusting assembly and a display screen 57. The lower end of the supporting assembly is connected to the processing housing 4, and the upper end of the supporting assembly is connected to the display screen 57. The supporting assembly is connected to the adjusting assembly.
[0026] The supporting assembly includes a connecting seat 51, a first angle plate 53, a second angle plate 55 and a display table 56. The bottom end of the connecting seat 51 is fixedly connected to the processing housing 4, the left side of the top end of the connecting seat 51 is rotatably connected to the bottom end of the first angle plate 53, the top end of the first angle plate 53 is rotatably connected to the lower end of the second angle plate 55, the top end of the second angle plate 55 is fixedly connected to the display table 56, the top end of the display table 56 is fixedly connected to the display screen 57, and the display screen 57 displays the processed image results.
[0027] The adjustment assembly includes a first angle cylinder 52 and a second angle cylinder 54, the connecting seat 51 is rotatably connected to the fixed end of the first angle cylinder 52, the movable end of the first angle cylinder 52 is rotatably connected to the first angle plate 53, the middle part of the first angle plate 53 is rotatably connected to the second angle cylinder 54, and the movable end of the second angle cylinder 54 is rotatably connected to the middle part of the second angle plate 55.
[0028] Effect: The first angle cylinder 52 performs telescopic and deflection movements, and the first angle cylinder 52 pushes the first angle plate 53 from one side to deflect the angle along the connecting seat 51. The second angle cylinder 54 performs telescopic and deflection movements, and the second angle cylinder 54 pushes the second angle plate 55 from one side to adjust the angle of the second angle plate 55 relative to the first angle plate 53. The first angle plate 53 and the second angle plate 55 cooperate with each other to adjust the display position of the display screen 57.
[0029] like Figure 3 and Figure 4 As shown, the length adjustment component 14 includes a connecting plate 141, a sliding shell 142, a sliding block 143, an arc-shaped slide 145 and a movable frame 146; the upper and lower ends of the left side of the sliding shell 142 are respectively fixedly connected to one end of the two connecting plates 141, and the other end of the two connecting plates 141 is fixedly connected to the right side of the steering platform 9. The interior of the sliding shell 142 is slidingly connected to the sliding block 143. A movable opening 144 is provided on the right side of the sliding shell 142. The right side of the sliding block 143 is fixedly connected to the arc-shaped slide 145. The left side of the arc-shaped slide 145 is slidingly connected to the movable opening 144. The surface of the sliding shell 142 is fixedly connected to the movable frame 146. The collection component 12 is connected to the arc-shaped slide 145 and the movable frame 146. The output end of the push cylinder 11 is fixedly connected to the upper end of the sliding block 143.
[0030] Effect: The cylinder 11 is pushed to perform telescopic movement, and the cylinder 11 pushes the sliding block 143 from one side. The sliding block 143 slides relative to the sliding shell 142, and the sliding block 143 drives the arc-shaped slide 145 to move synchronously, so that the collection rod 121 slides in an arc along the arc-shaped slide 145 to adjust the collection angle of the collection component 12.
[0031] like Figure 5 and Figure 6As shown, the collection component 12 includes a collection rod 121, a movable seat 122, a vertical plate 123, a collection platform 124, a collection probe 125, a displacement block 126 and a micro cylinder 127. The right end of the collection rod 121 is fixedly connected to the lower end of the movable seat 122, the interior of the movable seat 122 is rotatably connected to the lower end of the vertical plate 123, the upper end of the vertical plate 123 is fixedly connected to the collection platform 124, the upper end of the collection platform 124 is fixedly connected to the collection probe 125, the left side of the lower end of the collection platform 124 is slidingly connected to the displacement block 126, the bottom end of the displacement block 126 is fixedly connected to the output end of the micro cylinder 127, the fixed end of the micro cylinder 127 is fixedly mounted on the upper end of the collection rod 121, the left end of the collection rod 121 is limitedly slidably connected to the arc surface end of the arc-shaped slide 145, and the side wall of the collection rod 121 is slidingly connected to the right side of the movable frame 146.
[0032] Effect: The micro cylinder 127 performs telescopic movement, and the micro cylinder 127 pushes the displacement block 126 to slide along the acquisition platform 124. The acquisition platform 124 deflects the angle relative to the movable seat 122 through the vertical plate 123, indirectly adjusting the image acquisition position of the acquisition probe 125.
[0033] like Figure 7-Figure 9 As shown, the storage card storage module 15 includes a rotating rod 152, a mounting plate 153 and a fixing component. A accommodating chamber 151 is provided inside the processing housing 4. The left and right sides of the accommodating chamber 151 are rotatably connected to the left and right sides of the rotating rod 152 respectively. Damping is provided between the left and right sides of the accommodating chamber 151 and the left and right sides of the rotating rod 152. A plurality of mounting plates 153 are provided at equal intervals and are fixedly mounted on the rotating rod 152 in a circular array. A plurality of fixing components are provided at equal intervals on each mounting plate 153.
[0034] The fixing assembly includes a fixing frame 154, a rotating piece 155 and a sponge pad 156. The fixing frame 154 is fixedly installed on the upper end of the mounting plate 153. Two sponge pads 156 are provided and are fixedly installed inside the fixing frame 154 respectively. The left and right ends of the rotating piece 155 are hinged to the fixing frame 154 through a tension spring.
[0035] The two sponge pads 156 inside the fixing frame 154 can fit tightly against both sides of the memory card, and reduce the impact of device vibration or external shock on the memory card through elastic buffering, thereby reducing the risk of physical damage.
[0036] The rotating piece 155 is hinged to the fixing frame 154 through a tension spring. When the rotating piece 155 is in contact with the fixing frame 154, the tension of the tension spring can firmly clamp the memory card in the fixing frame 154 to prevent the memory card from loosening or falling off during the rotation of the mounting plate 153.
[0037] Effect: When the internal memory card of the image processor 6 is full and the memory card needs to be replaced, the door at the front end of the processing housing 4 is opened and the rotating piece 155 is manually rotated to disengage the rotating piece 155 from the fixing frame 154, thereby removing the memory card. After releasing the rotating piece 155, the rotating piece 155 is reset to fit into the fixing frame 154 under the action of the tension spring, thereby realizing the function of replacing the memory card. Furthermore, since the fixing assembly of the present invention is mounted on the mounting plate 153 and the mounting plates 153 are arranged in a circular array, each memory card can be easily removed.
[0038] Through mechanical structure innovation, the memory card storage module 15 has achieved multiple performance optimizations in terms of memory card fixation, replacement, space utilization, etc., which not only meets the device's needs for efficient memory card management, but also improves operational reliability and user experience through detailed design.
[0039] In the present invention, the user pushes the frame 3, and the moving wheel 2 generates friction after contacting with the ground, which is convenient for the user to transfer and transport the image processing device. The stepper motor 13 is started after being energized, and the stepper motor 13 drives the direction table 9 to rotate, adjusts the collection direction of the collection component 12, and pushes the cylinder 11 to perform telescopic movement. The cylinder 11 pushes the sliding block 143 from one side, and the sliding block 143 slides relative to the sliding shell 142, and the sliding block 143 drives the arc-shaped slide plate 145 to move synchronously, so that the collection rod 121 slides in an arc along the arc-shaped slide plate 145, adjusts the collection angle of the collection component 12, and the micro cylinder 127 performs telescopic movement, and the micro cylinder 127 drives the displacement block 126 to slide along the collection table 124, and the collection is completed. The platform 124 is deflected at an angle relative to the movable seat 122 through the vertical plate 123, thereby indirectly adjusting the image acquisition position of the acquisition probe 125. The acquisition probe 125 uploads the acquired pictures to the image processing system for processing. The first angle cylinder 52 performs telescopic and deflection movements. The first angle cylinder 52 pushes the first angle plate 53 from one side to perform angular deflection along the connecting seat 51. The second angle cylinder 54 performs telescopic and deflection movements. The second angle cylinder 54 pushes the second angle plate 55 from one side to adjust the angle of the second angle plate 55 relative to the first angle plate 53. The first angle plate 53 and the second angle plate 55 cooperate with each other to adjust the display position of the display screen 57, and the display screen 57 displays the processed image results.
[0040] Embodiment 2: In some embodiments, as Figure 10-14As shown, as a preferred embodiment of the present invention, an image processing system based on big data includes an image acquisition module, an image transmission module, an image operation module, an image display module and a control module, wherein the image acquisition module, the image transmission module, the image operation module and the image display module are all connected to the control module, the image acquisition module is connected to the image transmission module, the image transmission module is connected to the image operation module, and the image operation module is connected to the image display module.
[0041] The control module controls image acquisition, transmission, operation and display. The image acquisition module acquires the images to be processed, and then operates and processes the acquired images through the image operation module. Finally, the processed image results are displayed through the image display module, and the acquired images are transmitted over the network through the image transmission module.
[0042] The image transmission module includes an image uploading unit and an image downloading unit, the image operation module includes an image screening unit, an image compiling unit, an image correction unit and an abnormal data processing unit, and the image display module includes an image hiding unit and an image display unit; The acquisition probe 125 is connected to the input end of the image upload unit, and the output end of the image upload unit is connected to the input end of the image download unit; The output end of the image download unit is connected to the image screening unit, and the output end of the image screening unit is connected to the qualified image buffer area and the abnormal image temporary storage area respectively. The images are screened through the multi-dimensional quality assessment model, and the qualified images are transmitted to the image compilation unit, and the abnormal images are transmitted to the abnormal data processing unit; The output end of the image coding unit is connected to the input end of the image correction unit, and the output end of the image correction unit is connected to the input ends of the abnormal data processing unit and the image display unit; The abnormal data processing unit receives abnormal images and marks the images, and the image display unit receives normal images and displays them; The input end of the image display unit is connected to the image hiding unit. The image hiding unit receives a user's hiding or displaying instruction and controls the display content of the image display unit by generating a control signal.
[0043] Embodiment 3: In some embodiments, as Figure 14 As shown, as a preferred embodiment of the present invention, a method for image processing based on big data includes the following steps: Step 1: The acquisition probe 125 acquires an image and transmits it to the image upload unit of the image transmission module, which then uploads it to the storage or PTZ. Step 2: The control module instructs the image download unit to download images from the storage or the PTZ according to the processing requirements and transmits them to the image screening unit of the image operation module; Step 3: The image screening unit screens the images, transmits qualified images to the image compilation unit, and transmits abnormal images to the abnormal data processing unit; Step 4: The image coding unit performs noise filtering on the image and then transmits the image to the image correction unit; Step 5: After the image correction unit completes the image geometry correction, color and lighting optimization, it transmits the processed image to the image display unit for display, and sends the processed image with abnormalities to the abnormal data processing unit; Step 6: The abnormal data processing unit identifies, intercepts, and marks abnormal images.
[0044] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. An image processing device, comprising a fixed base (1), characterized in that: A push frame (3) is fixedly mounted on one side of the top of the fixed base (1), a processing housing (4) is fixedly mounted on the other side of the top of the fixed base (1), a display assembly (5) is fixedly mounted on the top of the processing housing (4), an image processor (6) is fixedly mounted on the surface of the processing housing (4), and a storage card storage module (15) is mounted inside the processing housing (4); A motor housing (8) is fixedly mounted on the right side of the processing housing (4), the right end of the motor housing (8) is rotatably connected to a direction table (9), a stepper motor (13) is fixedly mounted inside the motor housing (8), and an output end of the stepper motor (13) is fixedly connected to the left side of the direction table (9); A length adjustment component (14) is installed on the right side of the direction table (9), and a collection component (12) is installed on the right side of the length adjustment component (14); The upper right end of the direction table (9) is fixedly connected to a limit plate (10), the upper end of the limit plate (10) is fixedly connected to a push cylinder (11), and the output end of the push cylinder (11) is connected to a length adjustment component (14); Heat dissipation windows (7) are fixedly mounted on both the front and rear sides of the processing housing (4); The four corners at the bottom of the fixed base (1) are all fixedly mounted with moving wheels (2).
2. The image processing device according to claim 1, wherein The display assembly (5) includes a support assembly, an adjustment assembly, and a display screen (57). The lower end of the support assembly is connected to the processing housing (4), the upper end of the support assembly is connected to the display screen (57), and the support assembly is connected to the adjustment assembly.
3. The image processing device according to claim 2, wherein The support assembly comprises a connecting seat (51), a first angle plate (53), a second angle plate (55) and a display stand (56), wherein the bottom end of the connecting seat (51) is fixedly connected to the processing housing (4), the left side of the top end of the connecting seat (51) is rotatably connected to the bottom end of the first angle plate (53), the top end of the first angle plate (53) is rotatably connected to the lower end of the second angle plate (55), the top end of the second angle plate (55) is fixedly connected to the display stand (56), and the top end of the display stand (56) is fixedly connected to the display screen (57).
4. The image processing device according to claim 3, wherein The adjustment assembly comprises a first angle cylinder (52) and a second angle cylinder (54), a connecting seat (51) is rotatably connected to a fixed end of the first angle cylinder (52), a movable end of the first angle cylinder (52) is rotatably connected to a first angle plate (53), a middle portion of the first angle plate (53) is rotatably connected to the second angle cylinder (54), and a movable end of the second angle cylinder (54) is rotatably connected to a middle portion of the second angle plate (55).
5. The image processing device according to claim 4, wherein The length adjustment assembly (14) includes a connecting plate (141), a sliding shell (142), a sliding block (143), an arc-shaped slide plate (145) and a movable frame (146); the upper and lower ends of the left side of the sliding shell (142) are fixedly connected to one end of the two connecting plates (141), and the other ends of the two connecting plates (141) are fixedly connected to the right side of the steering platform (9). The interior of the sliding shell (142) is slidably connected to the sliding block (143). The sliding shell (1 42) is provided with a movable opening (144), the right side of the sliding block (143) is fixedly connected to the arc-shaped slide (145), the left side of the arc-shaped slide (145) is slidably connected to the movable opening (144), the surface of the sliding shell (142) is fixedly connected to the movable frame (146), the collection component (12) is connected to the arc-shaped slide (145) and the movable frame (146), and the output end of the push cylinder (11) is fixedly connected to the upper end of the sliding block (143).
6. The image processing device according to claim 5, wherein: The collection assembly (12) includes a collection rod (121), a movable seat (122), a vertical plate (123), a collection platform (124), a collection probe (125), a displacement block (126) and a micro cylinder (127). The right end of the collection rod (121) is fixedly connected to the lower end of the movable seat (122), the interior of the movable seat (122) is rotatably connected to the lower end of the vertical plate (123), the upper end of the vertical plate (123) is fixedly connected to the collection platform (124), and the upper end of the collection platform (124) is fixedly connected to the upper end of the collection platform (124). The end is fixedly connected to the collection probe (125), the left side of the lower end of the collection platform (124) is slidably connected to the displacement block (126), the bottom end of the displacement block (126) is fixedly connected to the output end of the micro cylinder (127), the fixed end of the micro cylinder (127) is fixedly mounted on the upper end of the collection rod (121), the left end of the collection rod (121) is limitedly slidably connected to the arc surface end of the arc slide (145), and the side wall of the collection rod (121) is slidably connected to the right side of the movable frame (146).
7. The image processing device according to claim 6, wherein: The storage card storage module (15) comprises a rotating rod (152), a mounting plate (153) and a fixing assembly. A housing cavity (151) is provided inside the processing housing (4). The left and right sides of the housing cavity (151) are respectively rotatably connected to the left and right sides of the rotating rod (152). Damping is provided between the left and right sides of the housing cavity (151) and the left and right sides of the rotating rod (152). A plurality of mounting plates (153) are provided at equal intervals and are fixedly mounted on the rotating rod (152) and arranged in a circular array. A plurality of fixing assemblies are provided at equal intervals on each mounting plate (153).
8. The image processing device according to claim 7, wherein The fixing assembly comprises a fixing frame (154), a rotating piece (155) and a sponge pad (156), wherein the fixing frame (154) is fixedly mounted on the upper end of the mounting plate (153), two sponge pads (156) are provided and fixedly mounted inside the fixing frame (154), respectively, and the left and right ends of the rotating piece (155) are hinged to the sponge pad (156) via a tension spring.
9. A big data-based image processing system, used in the image processing device according to claim 8, characterized in that: It includes an image acquisition module, an image transmission module, an image operation module, an image display module and a control module. The image acquisition module, image transmission module, image operation module and image display module are all connected to the control module. The image acquisition module is connected to the image transmission module, the image transmission module is connected to the image operation module, and the image operation module is connected to the image display module.
10. The big data-based image processing system according to claim 9, characterized in that: The image transmission module includes an image uploading unit and an image downloading unit, the image operation module includes an image screening unit, an image compiling unit, an image correction unit and an abnormal data processing unit, and the image display module includes an image hiding unit and an image display unit; The acquisition probe (125) is connected to the input end of the image upload unit, and the output end of the image upload unit is connected to the input end of the image download unit; The output end of the image download unit is connected to the image screening unit, and the output end of the image screening unit is connected to the qualified image buffer area and the abnormal image temporary storage area respectively. The images are screened through the multi-dimensional quality assessment model, and the qualified images are transmitted to the image compilation unit, and the abnormal images are transmitted to the abnormal data processing unit; The output end of the image coding unit is connected to the input end of the image correction unit, and the output end of the image correction unit is connected to the input ends of the abnormal data processing unit and the image display unit; The abnormal data processing unit receives abnormal images and marks the images, and the image display unit receives normal images and displays them; The input end of the image display unit is connected to the image hiding unit. The image hiding unit receives a user's hiding or displaying instruction and controls the display content of the image display unit by generating a control signal.