Information entry device and method of use thereof
By designing automated information entry equipment, the problem of waste of human resources in information collection is solved, and automatic replacement of entities and improvement of information collection efficiency are achieved.
Patent Information
- Application Number
- CN202410787875.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2044-06-18
AI Technical Summary
In the information collection process of the existing technology, the staff needs to constantly change the entity of the information to be collected, resulting in a waste of human resources.
An information entry device was designed, including a supporting platform, a flattening component, an information collection component and a moving component. It can automatically flatten the wrinkles on the target entity and collect information, and automatically replace the entity to reduce manual operations.
It realizes the automatic replacement of the entity of information to be collected, reduces the waste of human resources, and improves the efficiency and automation level of information collection.
Smart Images

Figure CN119544878B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of information entry, and in particular to an information entry device and a method for using the same. Background Art
[0002] In some information processing scenarios, such as the construction of knowledge graphs, which includes information extraction, knowledge fusion, and knowledge processing, the information extraction process starts from the original data and uses a series of semi-automatic technical means to extract knowledge elements (i.e., information) from the original data and store them in the data layer and model layer of the knowledge base.
[0003] In related technologies, information extraction is usually done by staff placing each entity to be collected on a knowledge graph collection table. After collecting the information, the staff takes away the collected entity and places a new entity to be collected that has not yet been collected. However, due to the excessive amount of information to be collected, staff need to constantly replace the entity to be collected, which is labor-intensive and wastes human resources.
[0004] To address the above-mentioned problems, no effective solutions have been proposed so far. Summary of the Invention
[0005] The embodiment of the present invention provides an information entry device and a method for using the same, so as to at least solve the technical problem in the related art of wasting human resources due to the need for staff to constantly change the entity of the information to be collected when too much information is collected.
[0006] According to one aspect of an embodiment of the present invention, there is provided an information entry device, comprising: a carrying platform, the carrying platform having a carrying surface for placing a target entity; a flattening component, the flattening component being adjustably arranged above the carrying surface in a vertical direction, at least a portion of the flattening component being movably arranged to flatten wrinkles existing on the target entity; an information collection component, the information collection component being arranged above the carrying surface, and the position of the information collection component being higher than the position of the flattening component, the information collection component being used to collect information to be collected recorded on the target entity; a moving component, the moving component being mounted on a first side surface perpendicular to the carrying surface, the moving component being movably arranged to move the target entity into or out of the carrying surface.
[0007] Optionally, the moving component includes: an insert plate, which is installed on the first side; a first roller, which is installed on the insert plate and contacts the target entity located on the bearing surface; and a first driver, which is connected to the first roller and is used to drive the rotation of the first roller, so that the first roller drives the target entity on the bearing surface to move under the drive of the first driver.
[0008] Optionally, the movable component further includes: an insertion frame, which is installed on the first side; wherein, the insertion frame is also provided with a socket, and the opening direction of the socket is perpendicular to the bearing surface; the plug-in board is installed in the socket and is movably arranged along the opening direction of the socket.
[0009] Optionally, the moving component further includes: a second roller, which is mounted on the bearing surface and located below the first roller; wherein the target entity is located between the first roller and the second roller.
[0010] Optionally, the flattening assembly includes: a vertical plate, which is mounted on a second side surface perpendicular to the bearing surface; a pressure plate, which is mounted on the vertical plate, movably connected to the vertical plate, and placed above the target entity; a first electric push rod, which is mounted on the vertical plate, and includes a fixed cylinder and a rod body; the fixed cylinder is fixedly mounted on the vertical plate; the rod body is connected to the pressure plate, and the rod body is movably connected relative to the fixed cylinder to push the pressure plate to move parallel to the vertical plate.
[0011] Optionally, the flattening assembly also includes: a vertical block, which is mounted on the vertical plate and connected to the rod body, and the rod body is used to push the vertical block to move parallel to the vertical plate; a first groove is also provided on the vertical block, and one end of the pressure plate is clamped in the first groove and movably connected to the vertical block; a first spring, which is mounted in the first groove, one end of the first spring is arranged above the pressure plate, and the other end of the first spring is arranged below the top surface of the first groove.
[0012] Optionally, the flattening assembly also includes: the upper top surface of the vertical plate is higher than the end close to the first electric push rod at one end away from the first electric push rod; a second groove is also provided on the vertical plate; the vertical block is connected to a first slider, the first slider is fixedly connected to the vertical block, the first slider is slidably connected to the second groove, and the vertical block is slidably connected to the vertical plate through the first slider and the second groove.
[0013] Optionally, the flattening assembly further includes: a convex plate, which is arranged at a predetermined position of the pressing plate.
[0014] Optionally, the moving component also includes: a spring clip, which is installed on a third side surface perpendicular to the bearing surface; the target entity is located on the bearing surface and contacts the spring clip so as to be clamped by the spring clip; and a second electric push rod, which is installed on the third side surface and connected to the spring clip to push the spring clip to move.
[0015] Optionally, the information collection component includes: a support plate, which is mounted on a fourth side surface perpendicular to the bearing surface; a first movable member, which is mounted on the support plate and moves on the support plate along a first direction parallel to the bearing surface; a second movable member, which is mounted on the first movable member and moves relative to the first movable member along a second direction perpendicular to the first direction; and a collection camera, which is mounted on the second movable member and is located above the bearing surface.
[0016] Optionally, the first moving member includes: a first screw, which is mounted on the support plate; a second slider, which is threadably connected to the first screw, and the second slider is movably arranged on the first screw, and the second moving member is mounted on the second slider, and the second slider is used to drive the second moving member to reciprocate; a second driver, which is mounted on the support plate and connected to the first screw to drive the first screw to rotate and push the second slider to move along the axial direction of the first screw; a first limiting groove, which is arranged on the support plate and parallel to the first screw; and a first limiting block, which is mounted on the second slider and is engaged with the first limiting groove.
[0017] Optionally, the second moving member includes: a box body, which is connected to the second slider moving member to be driven to reciprocate by the second slider; a second screw, which is installed in the box body; a third slider, which is threadedly connected to the second screw, and the third slider is movably arranged on the second screw, and the second slider is connected to a collection camera, and the third slider is used to drive the collection camera to reciprocate; a third driver, which is installed in the box body and connected to the second screw, and is used to drive the second screw to rotate and push the third slider to move along the axial direction of the second screw; a second limiting groove, which is arranged on the box body and parallel to the second screw; a second limiting block, which is installed on the third slider and is engaged with the second limiting groove.
[0018] Optionally, the information collection component further includes: a microphone, which is installed on a fifth side surface perpendicular to the bearing surface and is used to collect sound information corresponding to the target entity.
[0019] According to another aspect of an embodiment of the present invention, a method for using an information entry device is also provided, which is applied to the information entry device, and the method includes: placing the target entity on the supporting surface of the supporting platform; controlling the start-up of the flattening component to flatten the wrinkles on the target entity; controlling the information collection component to move along a predetermined direction to collect information from the target entity; when the information collection of the target entity is completed, controlling the start-up of the moving component to move the target entity outside the supporting surface, and moving other entities except the target entity onto the supporting surface.
[0020] In an embodiment of the present invention, a carrier platform is provided, the carrier platform having a carrier surface for placing a target entity; a flattening assembly, the flattening assembly being adjustable in vertical position above the carrier surface, at least a portion of the flattening assembly being movably arranged to flatten wrinkles on the target entity; an information collection assembly, the information collection assembly being arranged above the carrier surface and positioned higher than the flattening assembly, the information collection assembly being used to collect information to be collected recorded on the target entity; and a moving assembly, the moving assembly being mounted on a first side surface perpendicular to the carrier surface, the moving assembly being movably arranged to move the target entity into or out of the carrier surface. The purpose of automatically replacing the entity to be collected by the moving assembly is achieved, thereby achieving the technical effect of eliminating the need for staff to replace the entity to be collected, thereby reducing the waste of human resources, and further solving the technical problem of waste of human resources caused by the need for staff to constantly replace the entity to be collected when too much information is collected in the related art. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0022] Figure 1 A schematic diagram of the overall structure of an information entry device according to an embodiment of the present invention;
[0023] Figure 2 Schematic diagram of the positions of a first roller and a second roller in an information entry device according to an embodiment of the present invention;
[0024] Figure 3A schematic diagram of the positions of the plug-in board and the plug-in socket in an information entry device according to an embodiment of the present invention;
[0025] Figure 4 2. It is a structural schematic diagram of a flattening component in an information entry device according to an embodiment of the present invention;
[0026] Figure 5 Schematic diagram of the position of a first spring in an information input device according to an embodiment of the present invention;
[0027] Figure 6 Schematic diagram of the positions of a spring clip and a second electric push rod in an information entry device according to an embodiment of the present invention;
[0028] Figure 7 Schematic diagram of an information collection component in an information entry device according to an embodiment of the present invention;
[0029] Figure 8 is a flow chart of a method for using an information entry device according to an embodiment of the present invention;
[0030] Figure 9 This is a flowchart of a method for using an optional information entry device according to an embodiment of the present invention.
[0031] The above drawings include the following reference numerals:
[0032] 1. Carrying platform; 101. Box;
[0033] 2. Flattening assembly; 201. Vertical plate; 202. Pressing plate; 203. First electric push rod; 204. Fixed cylinder; 205. Rod body; 206. Vertical block; 207. First groove; 208. First spring; 209. Second groove; 210. First slider; 211. Protruding plate;
[0034] 3. Information collection assembly; 301. Support plate; 302. First moving member; 303. First screw; 304. Second slider; 305. Second driver; 306. First limiting slot; 307. Second moving member; 308. Box body; 309. Second screw; 310. Third slider; 311. Third driver; 312. Second limiting slot; 313. Collection camera; 314. Sound receiver; 315. Pull-out box;
[0035] 4. Moving assembly; 401. Insertion board; 402. First roller; 403. First driver; 404. Insertion frame; 405. Insertion jack; 406. Second roller; 407. Spring clip; 408. Second electric push rod. DETAILED DESCRIPTION
[0036] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described 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 creative efforts should fall within the scope of protection of the present invention.
[0037] First, to facilitate understanding of the embodiments of the present invention, some of the terms or nouns involved in the present invention are explained below:
[0038] A target entity refers to an entity that carries data in one or more different modalities (such as text, images, videos, etc.). The target entity information is the information in the target entity. For example, the target entity can be a piece of paper, and entity information such as people, places, and organizations can be identified from the paper. The target entity can be a photo, and entity information such as objects and scenes can be identified from the photo.
[0039] like Figures 1 to 7 As shown, an embodiment of the present invention provides an information entry device, which includes: a supporting platform 1, a flattening component 2, an information collection component 3 and a moving component 4. Specifically:
[0040] like Figure 1 As shown, Figure 1 The figure is a schematic diagram of the overall structure of an information entry device according to an embodiment of the present invention. The figure comprises a carrier 1, which has a carrier surface for placing a target entity; a flattening component 2, which is adjustable in vertical position above the carrier surface, and at least a portion of the flattening component 2 is movably arranged to flatten wrinkles on the target entity; an information collection component 3, which is arranged above the carrier surface and is positioned higher than the flattening component 2, and is used to collect information to be collected recorded on the target entity; and a moving component 4, which is mounted on a first side surface perpendicular to the carrier surface and is movably arranged to move the target entity into or out of the carrier surface.
[0041] The present embodiment provides an information entry device, which includes a carrying surface for placing a target entity, wherein the target entity is an entity corresponding to a picture or text of information to be collected, and based on a flattening component 2 above the carrying surface, wrinkles on the target entity placed on the carrying surface are flattened; based on an information collection component 3 set above the target entity, information on the flattened target entity is collected and stored in a database; based on a moving component 4 set on the front and back sides of the carrying platform 1, the collected target entity is moved out of the carrying surface and replaced with a new target entity to be collected, wherein the new target entity to be collected is a target entity other than the collected target entity, that is, a target entity that has not been collected. Based on the above-mentioned positional relationship and the information collection and entry process, the purpose of automatically replacing the entity to be collected by the moving component 4 is achieved, thereby achieving the technical effect of not requiring staff to replace the entity to be collected, reducing the waste of human resources, and further solving the technical problem of waste of human resources caused by the need for staff to constantly replace the entity to be collected when too much information is collected in the related technology.
[0042] The information entry device includes a box body 101. When the box body 101 is opened, it includes a box lid and a box bottom. The box lid and the box bottom are connected by a hinge. The supporting platform 1 is set in the box body 101 and is located on the box bottom. The flattening component 2 and the moving component 4 are both installed in the box body 101 and are located near the supporting platform 1. The flattening component 2 and the moving component 4 are both set in two groups. The two groups of flattening components 2 are set parallel to the two groups of moving components 4 and are distributed on the front and back sides of the supporting platform 1. The information collection component 3 is installed in the box body 101 and is located on the box lid. When the box lid is opened, the information collection component 3 is higher than the supporting platform 1, which is convenient for collecting target entities on the supporting platform 1. When the information entry device is not in use, the box lid is closed, and the supporting platform 1, flattening component 2, moving component 4 and information collection component 3 are all stored in the box body 101, which effectively achieves the effect of convenient storage and dust prevention.
[0043] It should be noted that a storage module, a relationship determination module, and a display module are also installed in the box 101, wherein the storage module is used to store the target entity information collected by the information collection component 3, the relationship determination module is used to classify and organize the collected target entity information, and determine the relationship between all collected target entity information, and the display module is used to form a display page with the information after the above relationship is determined, so that the staff can view it easily.
[0044] like Figure 2As shown, the moving component 4 includes: an insert plate 401, which is installed on the first side; a first roller 402, which is installed on the insert plate 401 and contacts the target entity located on the bearing surface; a first driver 403, which is connected to the first roller 402 and is used to drive the rotation of the first roller 402, so that the first roller 402 drives the target entity on the bearing surface to move under the drive of the first driver 403.
[0045] With the above structure, the inserting plates 401 comprise two groups, each group comprising one or more inserting plates 401. The two groups of inserting plates 401 are mounted on the front and rear sides of the support platform 1, respectively, to support the first rollers 402 and the first driver 403. The first rollers 402 comprise two groups, each group comprising multiple first rollers 402. The two groups of first rollers 402 are evenly mounted on the inserting plates 401, with each inserting plate 401 having multiple first rollers 402. The first rollers 402 are located at the top of the inserting plates 401. A target entity is placed between the first rollers 402 and the support platform 1, and the first rollers 402 rotate, thereby utilizing the friction between the first rollers 402 and the target entity to drive the target entity to move. Specifically, multiple target entities are first connected by gluing or stapling, that is, they are glued together in the order in which they need to be collected. The first target entity is placed above the carrier 1 and below the first roller 402. The first roller 402 is driven to adjust the direction of rotation of the first roller 402. That is, when the first roller 402 rotates clockwise, the target entity moves from right to left, and when the first roller 402 rotates counterclockwise, the target entity moves from left to right. The rotation of the first roller 402 can effectively drive the target entity to move out of the carrier 1 or move into the carrier 1. The first driver 403 is installed on the plugboard 401 and connected to the first roller 402. The first driver 403 is set to a predetermined frequency, that is, the first driver 403 drives the first roller 402 to rotate at a predetermined speed, thereby achieving automatic rotation of the first roller 402, avoiding manual rotation of the first roller 402, and also avoiding manual operation, thereby achieving the effect of automatically replacing the target entity.
[0046] like Figure 3 As shown, the movable component 4 also includes: an insertion frame 404, which is installed on the first side; wherein, a socket 405 is also provided on the insertion frame 404, and the opening direction of the socket 405 is perpendicular to the bearing surface; the plug-in board 401 is installed in the socket 405 and is movably arranged along the opening direction of the socket 405.
[0047] With the above structure, the number of insert frames 404 is the same as the number of insert plates 401, and the insert frames 404 are evenly mounted on both sides of the support platform 1. Specifically, the insert frames 404 are provided with insertion holes 405, the opening of which is perpendicular to the support surface and faces upward. The insertion holes 405 are the same size as the insert plates 401, allowing the insert plates 401 to be inserted into the insertion holes 405. The insert plates 401 can move up and down within the insertion holes 405, thereby achieving the up and down movement of the first roller 402. Specifically, the size of the insertion holes 405 can be slightly smaller than the size of the insert plates 401. That is, the insert plates 401 require a worker to insert them into the insertion holes 405 with force. After insertion, they are tightened and difficult to move, effectively preventing the insert plates 401 from moving up and down during use of the information entry device. Through the cooperation between the insert plates 401 and the insert frames 404, the position of the first roller 402 can be effectively adjusted, making the first roller 402 suitable for target entities of different thicknesses. That is, when the target object is thicker, the insert plate 401 is adjusted upward, and the target object is below the first roller 402 and in contact with the first roller 402, so that the target object can be moved when the first roller 402 rotates. When the target object is thinner, the insert plate 401 is adjusted downward, and the target object is below the first roller 402, and the first roller 402 is adjusted to contact the target object, effectively achieving the effect that the first roller 402 is suitable for target objects of various thicknesses.
[0048] like Figure 2 As shown, the moving assembly 4 further includes: a second roller 406 , which is mounted on the bearing surface and located below the first roller 402 ; wherein the target entity is located between the first roller 402 and the second roller 406 .
[0049] With the above structure, the first roller 402 rotates to drive the target entity to move. Since the contact area between the target entity and the bearing surface is large, the friction between the bearing surface and the target entity is large. The first roller 402 requires a large power to move the target entity, so a second roller 406 is set on the bearing surface, and the target entity is placed on the second roller 406. When the first roller 402 is working, the target entity is driven to move by friction. When the second roller 406 is under the target entity, the second roller 406 rotates accordingly, thereby reducing the friction between the target entity and the bearing surface, making it easier to move the target entity.
[0050] Among them, the bearing surface can be set to a smooth material to reduce the friction during the movement of the target entity. In addition, since the bearing surface with a smooth material may reflect the light source, it is not conducive to the subsequent information collection component 3 to collect information in the target entity. A bearing surface with a smooth material and no reflection can be used, and the selection can be made according to the actual situation.
[0051] like Figure 4As shown, the flattening assembly 2 includes: a vertical plate 201, which is installed on the second side surface perpendicular to the bearing surface; a pressure plate 202, which is installed on the vertical plate 201, movably connected to the vertical plate 201, and placed above the target entity; a first electric push rod 203, which is installed on the vertical plate 201, and the first electric push rod 203 includes a fixed cylinder 204 and a rod body 205; the fixed cylinder 204 is fixedly installed on the vertical plate 201; the rod body 205 is connected to the pressure plate 202, and the rod body 205 is movably connected relative to the fixed cylinder 204 to push the pressure plate 202 to move parallel to the vertical plate 201.
[0052] Taking the target entity as a paper as an example, the above structure is adopted. Since the target entity is a paper with information to be collected, there are texts and images on the paper waiting for information to be collected. In the process of collecting information from the target entity based on the information entry device, there may be wrinkles on the paper or the corners of the paper may be folded, resulting in the subsequent collected information being blocked and incomplete. A flattening component 2 can be set, and the flattening component 2 can be used to move the target entity from the middle to both ends to flatten it, so as to achieve comprehensiveness of the collected information during collection.
[0053] Among them, a vertical plate 201 is provided, and the vertical plates 201 include two, which are respectively installed on the front and rear sides of the bearing platform 1 and are placed parallel to the inserting plate 401. The vertical plates 201 are used to support the pressing plate 202 and the first electric push rod 203. The pressing plate 202 is movably installed on the vertical plate 201, and there are two pressing plates 202, both of which are arranged above the bearing surface. The two pressing plates 202 move in opposite directions between the vertical plates 201, that is, the two pressing plates 202 move from the central axis position of the bearing surface to the two boundary positions of the bearing surface, thereby crushing the target entity from the middle to the two sides, flattening the wrinkles on the target entity. At this time, the information collection component 3 performs collection, that is, collects the target entity with unfolded wrinkles, effectively achieving the effect of not blocking the information on the target entity by the wrinkles.
[0054] A first electric push rod 203 is provided, comprising a fixed cylinder 204 and a rod 205. The first electric push rod 203 is a bidirectional electric push rod, i.e., it has two rods 205, one on each side of the fixed cylinder 204. The fixed cylinder 204 extends or retracts the two rods 205 to the left and right sides, respectively. The fixed cylinder 204 is fixedly mounted on the vertical plate 201, and the two rods 205 are respectively connected to the two pressure plates 202. The two rods 205 extend in opposite directions, causing the two pressure plates 202 to move in opposite directions, thereby achieving the effect of automatically moving the pressure plates 202 from the central axis of the load-bearing surface to the ends of the load-bearing surface.
[0055] like Figure 4As shown, the flattening assembly 2 also includes: a vertical block 206, which is installed on the vertical plate 201 and connected to the rod body 205, and the rod body 205 is used to push the vertical block 206 to move parallel to the vertical plate 201; a first groove 207 is also provided on the vertical block 206, and one end of the pressure plate 202 is clamped in the first groove 207 and movably connected to the vertical block 206; a first spring 208, which is installed in the first groove 207, one end of the first spring 208 is arranged above the pressure plate 202, and the other end of the first spring 208 is arranged below the top surface of the first groove 207.
[0056] Using the above structure, the flattening assembly 2 also includes a vertical block 206, the vertical block 206 is installed on the vertical plate 201, the pressure plate 202 is installed on the vertical block 206, and the rod body 205 is connected to the vertical block 206, so that the rod body 205 drives the vertical block 206 to move back and forth on the vertical plate 201, thereby realizing the rod body 205 driving the pressure plate 202 to reciprocate. A first groove 207 is provided on the end of the vertical block 206 facing the supporting platform 1, one end of the pressure plate 202 is placed in the first groove 207, and a first spring 208 is placed in the first groove 207, one end of the first spring 208 is against the bottom of the top surface of the first groove 207, and the other end is against the top surface of the pressure plate 202, that is, the first spring 208 squeezes the pressure plate 202, and when the target entity is placed under the pressure plate 202, the first spring 208 exerts a downward force on the pressure plate 202, so that the pressure plate 202 has a downward squeezing force on the target entity, thereby effectively realizing that the pressure plate 202 flattens the wrinkles of the target entity.
[0057] like Figure 4 As shown, the flattening assembly 2 also includes: the upper top surface of the vertical plate 201 is higher than the end close to the first electric push rod 203 at one end away from the first electric push rod 203; a second groove 209 is also provided on the vertical plate 201; the vertical block 206 is connected to the first slider 210, the first slider 210 is fixedly connected to the vertical block 206, the first slider 210 is slidably connected to the second groove 209, and the vertical block 206 is slidably connected to the vertical plate 201 through the first slider 210 and the second groove 209.
[0058] With the above structure, the top surface of the vertical plate 201 is tilted, i.e., the end away from the first electric push rod 203 is higher, and the end closer to the first electric push rod 203 is lower, forming a shape with higher ends and lower center. Specifically, as the vertical block 206 moves on the vertical plate 201, because the vertical plate 201 gradually rises and tilts from the center toward the ends, the pressure of the first spring 208 gradually increases during the movement of the vertical block 206 from the center toward the ends, causing the first spring 208 to gradually increase the force exerted on the pressure plate 202, thereby gradually increasing the force exerted on the target entity, effectively expanding the wrinkles in the target entity, thereby better capturing information from the target entity and effectively avoiding information obstruction caused by wrinkles.
[0059] like Figure 5 As shown, the flattening assembly 2 further includes: a convex plate 211 , which is arranged at a predetermined position of the pressing plate 202 .
[0060] With the above structure, in the moving assembly 4, the first roller 402 and the second roller 406 may move the target object. This may cause the pressure plate 202 to be unable to unfold due to a folded corner or excessive wrinkles in the target object. Alternatively, the pressure plate 202 may be stuck by the folded corner of the target object, preventing it from moving. In this case, the pressure plate 202 needs to be lifted to flatten the folded corner of the target object so that the pressure plate 202 can continue to operate. However, since the pressure plate 202 is a single plate and lacks a fulcrum for lifting, a protruding plate 211 can be provided at a predetermined position on the pressure plate 202 to serve as a handle. By grasping the protruding plate 211, the pressure plate 202 can be lifted to flatten the folded corner of the target object. This allows for effective adjustment of the pressure plate 202 in these situations, thereby enabling the information import device to adapt to a variety of different scenarios during use.
[0061] like Figure 6 As shown, the moving component 4 also includes: a spring clip 407, which is installed on a third side surface perpendicular to the bearing surface; the target entity is located on the bearing surface and contacts the spring clip 407 to be clamped by the spring clip 407; and a second electric push rod 408, which is installed on the third side surface and connected to the spring clip 407 to push the spring clip 407 to move.
[0062] With the above structure, when there are many target entities to be collected, the target entities are glued together and then the target entities are continuously moved based on the cooperation between the first roller 402 and the second roller 406. This effectively saves the human resources required for the staff to constantly pick up the entities with collected information and put in the entities without collected information during the manual input process. However, considering that in the process of collecting target entities, there are not only processes of collecting multiple target entities, but also cases of collecting only one target entity. When there is only one target entity, if the target entity is long, the cooperation between the first roller 402 and the second roller 406 is still used to move it on the bearing surface. However, if the target entity is short, the target entity can be clamped and the second electric push rod 408 can be used to push the target entity to move on the bearing platform 1, thereby realizing the collection of information on the target entity.
[0063] Specifically, a spring clamp 407 is mounted on the left side of the support platform 1. The spring clamp 407 contains a second spring and a third spring. The second and third springs are arranged vertically and squeeze each other. When a target object is placed between the second and third springs, the squeeze force of the second and third springs clamps the target object. A second electric push rod 408 is mounted on the left side of the support platform 1. A straight rod extending from the second electric push rod 408 is connected to the spring clamp 407. The second electric push rod 408 pushes the spring clamp 407 from left to right, thereby pushing the target object from left to right.
[0064] In addition, the spring clamp 407 and the second electric push rod 408 can also be installed on the right side of the support platform 1. When installed on the right side of the support platform 1, they are symmetrically distributed with the left side, and the principle is the same. In addition to the above-mentioned method of installing the spring clamp 407 and the second electric push rod 408 on the left and right sides of the support platform 1, the spring clamp 407 and the second electric push rod 408 can also be installed on the front and back sides of the support platform 1, that is, the clamping direction of the opening of the spring clamp 407 is toward the support platform 1, and the second electric push rod 408 is set on the left side of the spring clamp 407. The second electric push rod 408 is connected to the spring clamp 407. The second electric push rod 408 can still push the spring clamp 407 left and right, thereby moving the target entity. It should be noted that if the spring clamp 407 is installed on the front or back side of the support platform 1, the spring clamp 407 and the vertical plate 201 are placed on the same side. In this case, the spring clamp 407 needs to be placed between the vertical plate 201 and the support platform 1.
[0065] like Figure 7As shown, the information acquisition component 3 includes: a support plate 301, the support plate 301 is installed on the fourth side surface perpendicular to the bearing surface; a first movable member 302, the first movable member 302 is installed on the support plate 301, and moves on the support plate 301 along a first direction parallel to the bearing surface; a second movable member 307, the second movable member 307 is installed on the first movable member 302, and moves relative to the first movable member 302 along a second direction perpendicular to the first direction; a collection camera 313, the collection camera 313 is installed on the second movable member 307, and is located above the bearing surface.
[0066] With the above structure, the information acquisition component 3 is used to collect information from the target entity. Among them, a support plate 301 is provided, and the first movable member 302, the second movable member 307 and the acquisition camera 313 are all supported above the carrier 1 based on the support plate 301. The support plate 301 is arranged inside the box body 101 and is located at the box cover. A first receiving groove is provided on the support plate 301, and the first movable member 302 is installed in the first receiving groove. The second movable member 307 is connected to the first movable member 302, and a rotating shaft is provided between the second movable member 307 and the first movable member 302, that is, the second movable member 307 can be folded toward the box cover, effectively making the information acquisition component 3 foldable and retractable, thereby realizing the storage of the information import device.
[0067] Specifically, the first movable member 302 can move left and right on the support plate 301, thereby driving the second movable member 307 to move left and right on the carrier plate. The second movable member 307 can move forward and backward based on the first movable member 302. The acquisition camera 313 is installed on the first movable member 302, thereby realizing the forward, backward, left and right movement of the acquisition camera 313, effectively realizing the adjustment of the position of the acquisition camera 313, and adjusting the acquisition camera 313 to a position directly above the target entity, avoiding the situation where the acquisition camera 313 is too far away from the position above the target entity and only collecting part of the information, and effectively collecting all the information on the target entity.
[0068] like Figure 7As shown, the first moving member 302 includes: a first screw 303, which is mounted on the support plate 301; a second slider 304, which is threadably connected to the first screw 303, and the second slider 304 is movably arranged on the first screw 303, and the second moving member 307 is mounted on the second slider 304, and the second slider 304 is used to drive the second moving member 307 to move back and forth; a second driver 305, which is mounted on the support plate 301 and connected to the first screw 303 to drive the first screw 303 to rotate and push the second slider 304 to move axially along the first screw 303; a first limiting groove 306, which is arranged on the support plate 301 and parallel to the first screw 303; a first limiting block, which is mounted on the second slider 304 and is engaged with the first limiting groove 306.
[0069] Adopt said structure, first mobile member 302 is used for second mobile member 307 is moved left and right, concrete, first screw rod 303 is installed in the first accommodating groove, and first screw rod 303 and first accommodating groove junction are provided with bearing, effectively in the process of rotating first screw rod 303, reduce the friction between first screw rod 303 and the first accommodating groove.First screw rod 303 is threaded with second slide block 304, promptly is provided with forward thread on the first screw rod 303, is provided with reverse thread on the second screw rod 309, with second slide block 304 by the mode of rotation, under the situation that forward thread and reverse thread are to it, make both be screwed together.Second driver 305 is installed on the support plate 301, and is connected with first screw rod 303, second driver 305 rotates first screw rod 303, and when first screw rod 303 rotates, due to the effect of thread, second slide block 304 moves back and forth on first screw rod 303.
[0070] Among them, due to the action of the threads in the first screw 303 and the second slider 304, the second slider 304 will rotate relative to the first screw 303 during the movement of the second slider 304 on the first screw 303, so it is necessary to set a limit assembly on one side of the first screw 303, that is, to set a first limit groove 306 and a first limit block. The first limit groove 306 is a groove opened in the first accommodating groove. The first limit block is clamped in the first limit groove 306 and can slide in the first limit groove 306. The first limit block is fixedly connected to the second slider 304. During the movement of the second slider 304, due to the action of the first limit groove 306 and the first limit block, the second slider 304 cannot rotate and can only move along the axial direction of the first screw 303.
[0071] like Figure 7As shown, the second moving member 307 includes: a box body 308, the box body 308 is connected to the second slider 304 moving member, so as to be driven to reciprocate by the second slider 304; a second screw 309, the second screw 309 is installed in the box body 308; a third slider 310, the third slider 310 is threadedly connected to the second screw 309, the third slider 310 is movably set on the second screw 309, and the third slider 310 is connected to the acquisition camera 313, and the third slider 310 is used to drive the acquisition The camera 313 moves back and forth; the third driver 311, the third driver 311 is installed in the box body 308 and is connected to the second screw 309, used to drive the second screw 309 to rotate, and push the third slider 310 to move along the axial direction of the second screw 309; the second limiting groove 312, the second limiting groove 312 is set on the box body 308 and is parallel to the second screw 309; the second limiting block, the second limiting block is installed on the third slider 310, and is engaged with the second limiting groove 312.
[0072] With the above structure, the first movable member 302 drives the second movable member 307 to move left and right, and the second movable member 307 drives the acquisition camera 313 to move forward and backward, thereby achieving the forward and backward and left and right movement of the acquisition camera 313, and effectively adjusting the position of the acquisition camera 313. Similar to the first movable member 302, the second movable member 307 includes a second screw 309, a third slider 310, and a third driver 311. The second movable member 307 also includes a box body 308, which is mounted on the second slider 304. The second slider 304 drives the box body 308 to move, thereby driving the movement of the second movable member 307.
[0073] Specifically, the housing 308 is provided with a second receiving slot, into which the second screw 309 is disposed. A bearing is disposed between the second screw 309 and the second receiving slot to reduce friction between the second screw 309 and the second receiving slot during rotation. A third slider 310 is mounted on the second screw 309. As the second screw 309 rotates, it drives the third slider 310 to reciprocate along the axial direction of the second screw 309. To prevent the third slider 310 from rotating, a second limiting slot 312 and a second limiting block are provided. The second limiting slot 312 is disposed within the second receiving slot and parallel to the second screw 309. The second limiting block is mounted within the second limiting slot 312 and fixedly connected to the third slider 310. This ensures that the third slider 310 is positioned during movement, effectively preventing rotation. A third driver 311 is mounted on the housing 308 and connected to the second screw 309 to drive the second screw 309 to rotate.
[0074] It should be noted that the first driver 403 , the second driver 305 and the third driver 311 in the present application are all motor drivers, and may also be drive motors, that is, drive components with a driving function.
[0075] like Figure 1 As shown, the information collection component 3 further includes: a microphone 314, which is installed on a fifth side surface perpendicular to the carrying surface and is used to collect sound information corresponding to the target entity.
[0076] With the above structure, during the information entry process, not only the text or pictures of the collected information need to be entered, but also the sound may be entered. The sound can be collected by using a microphone 314, which is installed on the right side of the supporting platform 1. Specifically, a pull-out box 315 is provided on the right side of the bottom of the box body 101. The pull-out box 315 is located below the supporting platform 1. After the pull-out box 315 is pulled out, the microphone 314 is taken out to enter the sound information. A rotatable mounting frame is installed between the microphone 314 and the pull-out box 315, that is, a rotating shaft is provided between the mounting frame and the pull-out box 315, and between the mounting frame and the microphone 314. By rotating the rotating shaft, the microphone 314 is adjusted to a position suitable for the staff to collect sound information.
[0077] Among them, a sponge layer is also provided in the pull-out box 315. When the microphone 314 is stored in the pull-out box 315 by rotating the shaft, the pull-out box 315 is prevented from colliding with the microphone 314 due to being too hard, causing damage to the microphone 314, thereby effectively realizing anti-collision protection for the microphone 314.
[0078] The device provided by the embodiment has the following beneficial effects:
[0079] (1) By setting the mobile component 4 to automatically replace the entity of the information to be collected, the technical effect of reducing the waste of human resources is achieved without the need for staff to replace the entity of the information to be collected, thereby solving the technical problem of waste of human resources caused by the need for staff to constantly replace the entity of the information to be collected when too much information is collected in the related art;
[0080] (2) By providing a flattening component 2 to flatten the entity of the information to be collected, the information is not blocked by wrinkles during the information collection process, thereby ensuring the integrity of the information collection;
[0081] (3) By setting the first movable member 302 and the second movable member 307 to move the acquisition camera 313 to the top of the entity for collecting information, the offset of the acquisition camera 313 resulting in the loss of some information can be avoided, thereby effectively ensuring the integrity of the information collection.
[0082] Based on the above embodiments, the present invention proposes a method for using an information entry device. Figure 8 is a flow chart of a method for using an information entry device according to an embodiment of the present invention. Figure 8 As shown, the method includes:
[0083] Step S001, placing the target entity on the carrying surface of the carrying platform 1;
[0084] Step S002, controlling and starting the flattening component 2 to flatten the wrinkles on the target entity;
[0085] Step S003, controlling the information collection component 3 to move along a predetermined direction to collect information about the target entity;
[0086] Step S004 , when the information collection of the target entity is completed, control to start the moving component 4 to move the target entity outside the carrying surface, and move other entities except the target entity onto the carrying surface.
[0087] Based on the above embodiments and optional embodiments, the present invention proposes an optional implementation method, taking the establishment of a multimodal knowledge graph as an example, wherein multimodal entity extraction refers to identifying entities from data of multiple different modalities (such as paper, photos, etc.), for example, identifying entities such as people, places, organizations, etc. from paper, and identifying entities such as objects, scenes, etc. from photos. Multimodal entity relationship extraction refers to identifying relationships between entities in multimodal data, such as relationships between people in paper, relationships between objects in photos, etc. After performing multimodal entity extraction and multimodal entity relationship extraction, multimodal attribute completion can be performed on the entity information, that is, more comprehensive entity information can be obtained from data of different modalities as the collected information. For example, for a person entity, its basic information can be obtained from paper, its appearance characteristics and other attributes can be obtained from photos, its behavior characteristics and other attributes can be obtained from videos, and its sound characteristics and other attributes can be obtained from sound data, thereby constructing a more comprehensive entity information. Finally, a multimodal entity relationship graph model can be constructed based on the extracted and completed multimodal entity information, and the knowledge graph model can be displayed to intuitively show the relationships between entities. Such a knowledge graph model can help better understand the entity information in multimodal data, discover the associations between entities, and provide a foundation for subsequent data analysis and application.
[0088] Figure 9 is a flow chart of a method for using an optional information entry device according to an embodiment of the present invention. Figure 9 As shown, the method includes:
[0089] Step S01, entity collection preparation: flip open the box 101, then connect the papers or photos (target entities) to be collected together by gluing or stapling, place the connected papers or photos on the supporting platform 1, and use the flattening component 2 to flatten the papers or photos on the supporting platform 1;
[0090] Step S02, extracting and collecting paper or photo information: moving the first movable member 302 and the second movable member 307, adjusting the position of the collection camera 313, and the collection camera 313 collects and extracts the paper or photo on the supporting platform 1;
[0091] Step S03, replacing the collection entity: the flattening component 2 moves to release the restriction on the paper or photo, and the first driver 403 drives the first roller 402 to rotate, thereby driving the spliced paper or photo to move, and the next group of target entities is extracted and collected, and continuously recorded in the database;
[0092] Step S04, recording audio and video information: The mounting bracket of the microphone 314 is turned outward, and the position of the microphone in the microphone 314 is adjusted to record human voice or audio, and the collected audio information is transferred to the database. The video information can be directly transferred to the database through the external interface via data transmission;
[0093] Step S05, process entity information: extract target entities and target entity relationships, then complete the multimodal attributes of the target entity information, and finally generate and display the knowledge graph model.
[0094] Step S051, target entity extraction and target entity relationship extraction: collect and store multimodal data such as text, audio, and images in a distributed data lake, and use metadata and hierarchical knowledge systems to establish index relationships for the data. Use extraction and transformation tools (ETL) to convert unstructured data lake layer data into data warehouse layer structure data. Use multimodal methods to regulate knowledge entities, relationships, and rule extraction technologies to extract multimodal ontology knowledge, and use the knowledge graph corresponding to low-dimensional vector relationships to represent the multimodal knowledge graph that is lower than the low-dimensional vector relationship regulation operation.
[0095] Step S052, multimodal attribute completion of target entity information: use multimodal data to supplement text attributes, such as using a sequence annotation knowledge graph model, annotating text blocks in the text as candidate attributes, and using an attention mechanism to model image-text interaction to filter out the correct attributes from the candidate attributes.
[0096] Step S053, generate and display the knowledge graph model: Based on the knowledge graph human-computer collaborative enhancement and update technology of multimodal change data of active learning mechanism, build a multimodal control knowledge graph standard pattern set to generate a knowledge graph model.
[0097] Through the above steps S01 to S05, the purpose of automatically replacing the entity of the information to be collected by the mobile component 4 can be achieved, thereby realizing the technical effect of not requiring staff to replace the entity of the information to be collected, reducing the waste of human resources, and further solving the technical problem of waste of human resources caused by the need for staff to constantly replace the entity of the information to be collected when too much information is collected in the related technology.
[0098] In addition, it should be noted that the optional or preferred implementation of this embodiment can be found in the relevant description in the embodiment, and will not be repeated here.
[0099] The serial numbers of the above embodiments of the present invention are for description only and do not represent the advantages or disadvantages of the embodiments.
[0100] In the above embodiments of the present invention, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0101] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. An information entry device, characterized in that: include: A carrying platform (1), the carrying platform (1) having a carrying surface for placing a target entity; A flattening assembly (2), the flattening assembly (2) being arranged above the bearing surface in an adjustable manner in a vertical direction, and at least a portion of the flattening assembly (2) being movably arranged to flatten wrinkles existing on the target entity; An information collection component (3), the information collection component (3) being arranged above the bearing surface, and the position of the information collection component (3) being higher than the position of the flattening component (2), and the information collection component (3) being used to collect the information to be collected recorded on the target entity; a moving assembly (4), the moving assembly (4) being mounted on a first side surface perpendicular to the carrying surface, the moving assembly (4) being movably arranged to move the target entity into or out of the carrying surface; The moving component (4) includes: an inserting plate (401), the inserting plate (401) is installed on the first side surface; a first roller (402), the first roller (402) is installed on the inserting plate (401) and contacts the target entity located on the bearing surface; and a first driver (403), the first driver (403) is connected to the first roller (402) and is used to drive the rotation of the first roller (402), so that the first roller (402) drives the target entity on the bearing surface to move under the drive of the first driver (403).
2. The information entry device according to claim 1, characterized in that: The mobile component (4) further comprises: an insert frame (404), the insert frame (404) being mounted on the first side surface; The insert frame (404) is further provided with an insert hole (405), the opening direction of the insert hole (405) is perpendicular to the bearing surface; the insert plate (401) is installed in the insert hole (405) and is movably arranged along the opening direction of the insert hole (405).
3. The information entry device according to claim 1, characterized in that: The mobile component (4) further comprises: a second roller (406), the second roller (406) being mounted on the bearing surface and located below the first roller (402); Wherein, the target entity is located between the first roller (402) and the second roller (406).
4. The information entry device according to claim 1, characterized in that: The flattening assembly (2) comprises: A vertical plate (201), the vertical plate (201) being installed on a second side surface perpendicular to the bearing surface; a pressing plate (202), the pressing plate (202) being mounted on the vertical plate (201), being movably connected to the vertical plate (201), and being placed above the target entity; A first electric push rod (203), the first electric push rod (203) is installed on the vertical plate (201), and the first electric push rod (203) includes a fixed cylinder (204) and a rod body (205); The fixed cylinder (204) is fixedly mounted on the vertical plate (201); The rod body (205) is connected to the pressing plate (202), and the rod body (205) is movably connected relative to the fixed cylinder (204) to push the pressing plate (202) to move parallel to the vertical plate (201).
5. The information entry device according to claim 4, characterized in that: The flattening assembly (2) further comprises: A vertical block (206), the vertical block (206) is installed on the vertical plate (201) and connected to the rod (205), and the rod (205) is used to push the vertical block (206) to move parallel to the vertical plate (201); The vertical block (206) is further provided with a first groove (207), and one end of the pressing plate (202) is clamped in the first groove (207) and movably connected to the vertical block (206); A first spring (208), wherein the first spring (208) is installed in the first groove (207), one end of the first spring (208) is arranged above the pressure plate (202), and the other end of the first spring (208) is arranged below the top surface of the first groove (207).
6. The information entry device according to claim 5, characterized in that: The flattening assembly (2) further comprises: An end of the upper top surface of the vertical plate (201) away from the first electric push rod (203) is higher than an end close to the first electric push rod (203); A second groove (209) is also provided on the vertical plate (201); the vertical block (206) is connected to a first slider (210), the first slider (210) is fixedly connected to the vertical block (206), the first slider (210) is slidably connected to the second groove (209), and the vertical block (206) is slidably connected to the vertical plate (201) via the first slider (210) and the second groove (209).
7. The information entry device according to claim 4, characterized in that: The flattening assembly (2) further comprises: A convex plate (211), wherein the convex plate (211) is arranged at a predetermined position of the pressing plate (202).
8. The information entry device according to claim 1, characterized in that: The mobile component (4) further comprises: a spring clip (407), the spring clip (407) being mounted on a third side surface perpendicular to the bearing surface; The target entity is located on the carrying surface and contacts the spring clamp (407) so as to be clamped by the spring clamp (407); A second electric push rod (408) is installed on the third side surface and is connected to the spring clip (407) to push the spring clip (407) to move.
9. The information entry device according to claim 1, characterized in that: The information collection component (3) includes: a support plate (301), the support plate (301) being mounted on a fourth side surface perpendicular to the bearing surface; a first moving member (302), the first moving member (302) being mounted on the support plate (301) and moving on the support plate (301) along a first direction parallel to the bearing surface; a second moving member (307), the second moving member (307) being mounted on the first moving member (302) and moving relative to the first moving member (302) in a second direction perpendicular to the first direction; A collection camera (313), wherein the collection camera (313) is installed on the second movable member (307) and is located above the bearing surface.
10. The information entry device according to claim 9, characterized in that: The first moving member (302) comprises: a first screw (303), the first screw (303) being mounted on the support plate (301); a second slider (304), the second slider (304) being threadedly connected to the first screw (303), the second slider (304) being movably arranged on the first screw (303), the second moving member (307) being mounted on the second slider (304), and the second slider (304) being used to drive the second moving member (307) to move back and forth; a second driver (305), the second driver (305) being mounted on the support plate (301) and connected to the first screw (303) to drive the first screw (303) to rotate and push the second slider (304) to move along the axial direction of the first screw (303); a first limiting groove (306), the first limiting groove (306) being provided on the support plate (301) and being parallel to the first screw rod (303); A first limiting block is installed on the second sliding block (304) and is engaged with the first limiting groove (306).
11. The information entry device according to claim 10, characterized in that: The second moving member (307) comprises: a box body (308), the box body (308) being connected to the moving member of the second slider (304) so as to be driven by the second slider (304) to move back and forth; a second screw (309), the second screw (309) being installed in the box body (308); a third slider (310), the third slider (310) being threadedly connected to the second screw (309), the third slider (310) being movably arranged on the second screw (309), the third slider (310) being connected to a collection camera (313), and the third slider (310) being used to drive the collection camera (313) to move back and forth; a third driver (311), the third driver (311) being installed in the box body (308) and connected to the second screw (309), and being used for driving the second screw (309) to rotate and push the third slider (310) to move along the axial direction of the second screw (309); A second limiting groove (312), the second limiting groove (312) is provided on the box body (308) and is parallel to the second screw (309); A second limiting block is installed on the third sliding block (310) and is engaged with the second limiting groove (312).
12. The information entry device according to claim 1, characterized in that: The information collection component (3) further includes: A microphone (314) is installed on a fifth side surface perpendicular to the carrying surface and is used to collect sound information corresponding to the target entity.
13. A method for using an information entry device, characterized in that: The method is applied to the information entry device according to any one of claims 1 to 12, and the method includes: Placing the target entity on the carrying surface of the carrying platform (1); Controlling and starting the flattening component (2) to flatten the wrinkles on the target entity; Controlling the information collection component (3) to move along a predetermined direction to collect information about the target entity; When the information collection of the target entity is completed, the moving component (4) is controlled to start, the target entity is moved outside the carrying surface, and other entities except the target entity are moved onto the carrying surface.
Citation Information
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