Face recognition terminal information collection device

By designing a three-dimensional image acquisition device with a central inspection frame and side cameras, combined with a mobile inspection frame and an adjustment linkage frame, the problem of the difficulty in three-dimensional acquisition of facial information in existing technologies has been solved, achieving efficient three-dimensional facial information acquisition and a flexible user experience.

CN115188047BActive Publication Date: 2025-11-07HUAIBEI SHENGSHI HAOMING TECH CO LTD
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Patent Information

Application Number
CN202210806986.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-09
Publication Date
2025-11-07
Estimated Expiration
2042-07-09

AI Technical Summary

Technical Problem

Existing facial recognition devices are equipped with only a single camera with a fixed or adjustable angle, making it difficult to perform stereoscopic capture. This results in people needing to turn their heads to obtain facial images from different angles during the capture and recognition process, leading to low capture and recognition efficiency.

Method used

A facial recognition terminal information acquisition device was designed, including a central detection frame and side cameras. Three-dimensional facial information acquisition is achieved through an arc-shaped connecting frame. The height of the mobile detection frame can be adjusted by sliding along the vertical support frame to accommodate users of different heights. The camera can be flexibly adjusted and wirelessly charged through the adjustment linkage frame.

Benefits of technology

It enables stereoscopic acquisition of facial information in three-dimensional images, allowing users to obtain facial images from different angles without having to turn their heads, thus improving acquisition and recognition efficiency and enhancing the applicability and flexibility of the device.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115188047B_ABST
Patent Text Reader

Abstract

The present application relates to the technical field of information collection, in particular to a face recognition terminal information collection device, which comprises a detection support seat, and a support bottom plate is arranged on the front side of the detection support seat, characterized in that it further comprises a vertical support frame vertically arranged above the detection support seat. The face information is collected by the center camera on the center detection frame and the side cameras symmetrically arranged on both sides of the center detection frame. The center camera in the middle can collect the face information of the front face, and the side cameras are arranged at the outer ends of the arc-shaped connecting frames. The arc-shaped connecting frames can slide along the arc-shaped fixing frames to the two sides, so that the side cameras move along the arcs to the two sides to collect the face information of the two sides. Therefore, when collecting the three-dimensional image face information, the stereoscopic collection can be directly performed, and people do not need to turn their heads to obtain face pictures of different angles during the collection and recognition, which is beneficial to improve the collection and recognition efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of information collection, and in particular to a face recognition terminal information collection device. BACKGROUND

[0002] Face recognition is a biometric technology based on face feature information for identity recognition. A camera or a camera head is used to collect images or video streams containing faces, and the face is automatically detected and tracked in the image, and then the detected face is recognized. The face image collection and detection are the primary process of face recognition technology, but the current face information collection equipment has a relatively simple and fixed overall structure, and the collected information can only rely on a single camera at a fixed angle, which is difficult to adapt to information collection work in different environments and needs, and the collection efficiency is low.

[0003] The patent with the application number CN202020037329.6 discloses a human body information collection device based on face recognition, which relates to the field of human body information collection. The human body information collection device based on face recognition is connected between the motor and the power supply mechanism through the cooperation between the motor, the transmission shaft, the fixed cylinder and the threaded rod, so that the motor can drive the power supply mechanism and the information collection mechanism to rotate 360 degrees when the motor is working, greatly increasing the effect of multi-angle information collection. It solves the problem that the current human body information collection device based on face recognition has a fixed angle during use and cannot perform real-time collection at various angles, thereby affecting the use efficiency of the information collection device.

[0004] However, the current ordinary two-dimensional image face recognition device has low security and is easily deceived by video pictures, while the three-dimensional image face recognition device has high security, but the face information collection device only has a single camera with fixed angle and cannot be adjusted or adjusted, which is difficult to perform stereoscopic collection. When collecting and identifying, people need to turn their heads to obtain face pictures at different angles, and the collection and identification efficiency is low. SUMMARY

[0005] Therefore, the present application aims to provide a face recognition terminal information collection device to solve the problem that the face information collection device only has a single camera with fixed angle and cannot be adjusted or adjusted, which is difficult to perform stereoscopic collection, and people need to turn their heads to obtain face pictures at different angles when collecting and identifying, and the collection and identification efficiency is low.

[0006] In order to achieve the above purpose, the present application provides a face recognition terminal information collection device, which comprises a detection support seat, and a support bottom plate is arranged on the front side of the detection support seat, characterized in that it further comprises:

[0007] A vertical support frame is vertically arranged above the detection support base, and a vertical guide slot is arranged in the middle of the vertical support frame;

[0008] A closed partition plate is vertically arranged in the middle of the vertical guide slot, and a positioning wheel groove is symmetrically and parallel arranged on the front side of the left and right sides of the closed partition plate, a plurality of ultrasonic sensors are arranged at the center of the front side of the closed partition plate, the ultrasonic sensors are uniformly arranged along the vertical center line direction of the closed partition plate, a spacing sealing bin is arranged on the back side of the closed partition plate, a lifting screw is vertically arranged in the middle of the spacing sealing bin, a lifting motor is arranged at the shaft end of the lifting screw, and lifting guide rods are symmetrically and parallel arranged on the left and right sides of the lifting screw.

[0009] An adjustment linkage frame is arranged on the inner side of the spacing sealing bin, lifting screw sleeves are symmetrically arranged on the left and right sides of the adjustment linkage frame, a lifting sliding sleeve is arranged at the center of the adjustment linkage frame, and a linkage electromagnet is arranged in the middle of the adjustment linkage frame.

[0010] A mobile detection frame is embedded and slidably arranged in the middle of the vertical guide slot, a display touch screen is arranged on the upper side of the mobile detection frame, a driven magnet is arranged in the middle of the mobile detection frame, and spacing rollers are symmetrically arranged on the left and right sides of the back of the mobile detection frame.

[0011] A center detection frame is arranged on the front side of the mobile detection frame, a center camera is arranged at the center of the center detection frame, an arc-shaped fixing frame is arranged in the middle of the center detection frame, and an arc-shaped guide slot is arranged on the inner side of the arc-shaped fixing frame.

[0012] An arc-shaped connecting frame is symmetrically embedded and slidably arranged on the inner side of the arc-shaped guide slot, a plurality of light supplement lamps are uniformly arranged on the inner side arc surface of the arc-shaped connecting frame, an arc-shaped synchronous gear rack is arranged on one side of the arc-shaped connecting frame close to the horizontal center line of the arc-shaped guide slot, a synchronous gear is arranged in the middle of the arc-shaped guide slot, a driving motor is arranged at the shaft end of the synchronous gear, the synchronous gear and the arc-shaped synchronous gear rack are meshed with each other to form a transmission structure, and a side edge detection frame is connected and arranged at the outer end of the arc-shaped connecting frame.

[0013] In some optional embodiments, a connecting cable is connected and arranged at the bottom of the adjustment linkage frame, a storage winding roller is rotatably arranged at the bottom of the spacing sealing bin, the bottom of the connecting cable is wound and arranged on the outer side of the storage winding roller, and a retraction winding spring is arranged at the shaft end of the storage winding roller.

[0014] In some optional embodiments, a vertical sliding sleeve is arranged in the middle of the support base plate, a vertical support column is arranged in the inner side of the vertical sliding sleeve, a detection pedal is arranged at the top of the vertical support column, a reset spring is arranged at the bottom of the vertical support column, and a pressure detection meter is arranged between the support base plate and the detection pedal.

[0015] In some optional embodiments, the spacing rollers and the positioning wheel grooves are sized to match each other, the movement detection frame is slidably connected with the closed spacing plate through the spacing rollers and the positioning wheel grooves, a fitting receiving groove is arranged at the top of the vertical guide slot, a protective cover plate is arranged at the front side of the fitting receiving groove, the display touch screen and the fitting receiving groove are sized to match each other, and when the movement detection frame slides to the top of the vertical guide slot, the display touch screen is embedded in the inner side of the fitting receiving groove, and the protective cover plate is placed on the front side of the display touch screen to protect it.

[0016] In some optional embodiments, a guide fitting groove is arranged at each of the left and right sides of the vertical guide slot, a guide sliding block is arranged at each of the left and right sides of the movement detection frame, the guide fitting grooves and the guide sliding blocks are sized to match each other, and the movement detection frame is slidably connected with the vertical guide slot through the guide sliding blocks and the guide fitting grooves.

[0017] In some optional embodiments, a sliding block receiving groove is arranged at the side of the movement detection frame close to the guide sliding block, a folding pivot is arranged at the side of the guide sliding block close to the movement detection frame, the guide sliding block is rotatably connected with the movement detection frame through the folding pivot, the guide sliding block and the sliding block receiving groove are sized to match each other, a locking insertion sleeve is horizontally arranged in the middle of the guide sliding block, a locking sliding sleeve is horizontally arranged in the middle of the sliding block receiving groove, a locking support rod is nested and slidably arranged in the inner side of the locking sliding sleeve, the locking support rod and the locking insertion sleeve are sized to match each other, and an electromagnetic coil is arranged in the middle of the locking sliding sleeve.

[0018] In some optional embodiments, a wireless transmission module is arranged in the interior of the movement detection frame, an energy storage battery is arranged at the back side of the wireless transmission module, a wireless charging coil is arranged at the back surface of the movement detection frame, a wireless transmitting coil is arranged at the front surface of the adjustment linkage frame, and the wireless charging coil and the wireless transmitting coil are arranged to be symmetrical to each other.

[0019] In some optional embodiments, the rear side of the detection support base is provided with a closed machine box, the inner side of the closed machine box is provided with a data processing module, the upper side of the data storage module is provided with a wireless receiving module, the data processing module and the wireless receiving module are electrically connected with each other, and the wireless transmission module and the wireless receiving module are correspondingly arranged.

[0020] The device collects face information by adjusting the camera arranged on the linkage frame, the inside of the mobile detection frame is provided with a wireless transmission module, the collected data can be wirelessly transmitted to the data processing module for storage and processing, and the mobile detection frame is provided with an energy storage battery, which is convenient for directly supplying power to the internal electronic equipment, the linkage frame can drive the mobile detection frame to move up and down to adapt to users of different heights and body shapes, the wireless charging coil and the wireless transmitting coil arranged on the linkage frame and the mobile detection frame respectively can charge the energy storage battery in the linkage frame, so that the mobile detection frame is wirelessly structured, which is convenient for moving or disassembling and using, and is more flexible and convenient to use.

[0021] In some optional embodiments, a turnover shaft is further arranged between the center detection frame and the mobile detection frame, the turnover shaft is fixedly arranged at the front side of the mobile detection frame, a rotating connection sleeve is arranged at the rear center of the center detection frame, the rotating connection sleeve is rotatably arranged on the outer side of the turnover shaft, and the center detection frame and the mobile detection frame are rotatably connected through the rotating connection sleeve and the turnover shaft.

[0022] In some optional embodiments, ball head positioning grooves are arranged at the rear center and the upper and lower centers of the rotating connection sleeve, a positioning sleeve is arranged at the middle of the turnover shaft, a positioning convex rod is slidably arranged in the inner side of the positioning sleeve, a positioning ball head is arranged at the outer end of the positioning convex rod, a positioning spring is arranged at the rear side of the positioning convex rod, and the positioning ball head and the ball head positioning groove are matched in size.

[0023] From the above, it can be seen that the face recognition terminal information collection device provided by the application collects face information through the center camera on the center detection frame and the side cameras symmetrically arranged on both sides of the center camera. The center camera in the middle can collect face information from the front, and the side cameras are arranged at the outer ends of the arc-shaped connecting frames. The arc-shaped connecting frames can slide along the arc-shaped fixing frames to the two sides, so that the side cameras move along the arcs to the two sides to collect face information from the two sides. Therefore, when collecting three-dimensional image face information, it can be directly collected in three dimensions, and people do not need to turn their heads to obtain face pictures at different angles during collection and recognition, which is beneficial to improve the efficiency of collection and recognition. Moreover, the cameras required for detection are arranged on the movable detection frame, which can slide up and down along the vertical guide grooves in the vertical support frame to adjust the height, so as to adapt to the collection of information by users of different heights, and the applicability and use flexibility are higher. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the technical solutions in the application or the prior art, the following will briefly introduce the drawings required to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only a part of the application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0025] Figure 1 It is a front structure schematic view of the embodiment of the application.

[0026] Figure 2 It is a partial structure schematic view of the support bottom plate of the embodiment of the application.

[0027] Figure 3 It is a structure schematic view of the vertical support frame of the embodiment of the application.

[0028] Figure 4 It is a structure schematic view of the interval sealing bin of the embodiment of the application.

[0029] Figure 5 It is an internal structure schematic view of the adjustment linkage frame of the embodiment of the application.

[0030] Figure 6 It is a structure schematic view of the arc-shaped connecting frame in the unfolded state of the embodiment of the application.

[0031] Figure 7 It is a structure schematic view of the arc-shaped connecting frame in the folded state of the embodiment of the application.

[0032] Figure 8 It is an internal structure schematic view of the movable detection of the embodiment of the application.

[0033] Figure 9Structure diagram of the overturning rotating shaft of the embodiment of the present application;

[0034] Figure 10 Structure diagram of the arc-shaped connecting frame of the embodiment of the present application.

[0035] Marked as:

[0036] 1, detection support seat; 101, closed cabinet; 102, data processing module; 103, wireless receiving module; 104, support bottom plate; 105, vertical sliding sleeve; 106, detection pedal; 107, vertical support column; 108, reset spring; 109, pressure detection meter; 2, vertical support frame; 201, vertical guide groove; 202, guide fitting groove; 203, fitting storage groove; 204, protective cover plate; 3, closed partition plate; 301, positioning wheel groove; 302, ultrasonic sensor; 303, interval sealed bin; 304, lifting screw; 305, lifting motor; 306, lifting guide rod; 4, adjustment linkage frame; 401, lifting screw sleeve; 402, lifting sliding sleeve; 403, linkage electromagnet; 404, wireless transmitting coil; 405, connecting cable; 406, storage winding roller; 407, retraction coil spring; 5, mobile detection frame; 501, display touch screen; 502, driven magnet; 503, interval roller; 504, wireless transmission module; 505, energy storage battery; 506, wireless charging coil; 6, guide sliding block; 601, folding rotating shaft; 602, sliding block storage groove; 603, locking bushing; 604, locking sliding sleeve; 605, electromagnet coil; 606, locking support rod; 7, center detection frame; 701, center camera; 702, arc-shaped fixing frame; 703, arc-shaped guide groove; 704, synchronous gear; 705, driving motor; 8, overturning rotating shaft; 801, rotating connecting sleeve; 802, ball head positioning groove; 803, positioning sleeve; 804, positioning convex rod; 805, positioning ball head; 806, positioning spring; 9, arc-shaped connecting frame; 901, light supplementing lamp; 902, arc-shaped synchronous rack; 903, side detection frame; 904, side camera. DETAILED DESCRIPTION

[0037] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below in combination with specific embodiments.

[0038] It should be noted that the technical terms or scientific terms used in the present application should be understood as the general meaning understood by those skilled in the art to which the present application belongs, unless otherwise defined. The "first", "second" and similar words used in the present application do not represent any order, quantity or importance, but are only used to distinguish different components. "Include" or "contain" and similar words mean that the elements or objects before the word cover the elements or objects listed after the word and their equivalents, without excluding other elements or objects. "Connected" or "connected" and similar words are not limited to physical or mechanical connection, but can include electrical connection, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to represent the relative positional relationship, when the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0039] As Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 And Figure 10 A face recognition terminal information collection device is shown, which comprises a detection support seat 1, the front side of the detection support seat 1 is provided with a support bottom plate 104, and further comprises:

[0040] A vertical support frame 2 is vertically arranged above the detection support seat 1, and a vertical guide groove 201 is arranged in the middle of the vertical support frame 2;

[0041] A closed partition plate 3 is vertically arranged in the middle of the vertical guide groove 201, and a positioning wheel groove 301 is symmetrically and parallelly arranged on the front side of the closed partition plate 3; a plurality of ultrasonic sensors 302 are arranged at the center of the front side of the closed partition plate 3, and the ultrasonic sensors 302 are uniformly arranged along the vertical center line direction of the closed partition plate 3; a spacing sealing bin 303 is arranged at the back side of the closed partition plate 3, a lifting screw 304 is vertically arranged in the middle of the spacing sealing bin 303, a lifting motor 305 is arranged at the shaft end of the lifting screw 304, and lifting guide rods 306 are symmetrically and parallelly arranged at the left and right sides of the lifting screw 304;

[0042] An adjusting linkage frame 4 is arranged inside the spacing sealing bin 303, lifting screw sleeves 401 are symmetrically arranged at the left and right sides of the adjusting linkage frame 4, a lifting sliding sleeve 402 is arranged at the center of the adjusting linkage frame 4, and a linkage electromagnet 403 is arranged in the middle of the adjusting linkage frame 4;

[0043] The mobile detection frame 5 is symmetrically embedded and slid in the middle of the vertical guide slot 201. The upper side of the mobile detection frame 5 is provided with a display touch screen 501. The middle of the mobile detection frame 5 is provided with a driven magnet 502. The back of the mobile detection frame 5 is symmetrically provided with interval rollers 503 on the left and right sides.

[0044] The center detection frame 7 is arranged on the front side of the mobile detection frame 5. The center of the center detection frame 7 is provided with a center camera 701. The middle of the center detection frame 7 is provided with an arc-shaped fixing frame 702. The inner side of the arc-shaped fixing frame 702 is provided with an arc-shaped guide slot 703.

[0045] The arc-shaped connecting frame 9 is symmetrically embedded and slid in the inner side of the arc-shaped guide slot 703. The inner side of the arc-shaped connecting frame 9 is uniformly provided with a plurality of light supplement lamps 901. The side of the arc-shaped connecting frame 9 close to the horizontal center line of the arc-shaped guide slot 703 is provided with an arc-shaped synchronous rack 902. The middle of the arc-shaped guide slot 703 is provided with a synchronous gear 704. The shaft end of the synchronous gear 704 is provided with a driving motor 705. The synchronous gear 704 and the arc-shaped synchronous rack 902 are mutually engaged to form a transmission structure. The outer end of the arc-shaped connecting frame 9 is connected with a side edge detection frame 903. The middle of the side edge detection frame 903 is provided with a side edge camera 904.

[0046] As shown in Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 10As shown, as one embodiment of the present application, a face recognition terminal information collection device, comprising a detection support seat 1, the front side of the detection support seat 1 is provided with a support bottom plate 104, further comprising: a vertical support frame 2 vertically arranged above the detection support seat 1, a vertical guide groove 201 is arranged in the middle of the vertical support frame 2; a closed partition plate 3 is vertically arranged in the middle of the vertical guide groove 201, a plurality of positioning wheel grooves 301 are symmetrically and parallelly arranged on the front side of the closed partition plate 3, a plurality of ultrasonic sensors 302 are arranged in the center of the front side of the closed partition plate 3, the ultrasonic sensors 302 are uniformly arranged along the vertical center line direction of the closed partition plate 3, a spacing sealing bin 303 is arranged on the back side of the closed partition plate 3, a lifting screw 304 is vertically arranged in the middle of the spacing sealing bin 303, a lifting motor 305 is arranged at the shaft end of the lifting screw 304, lifting guide rods 306 are symmetrically and parallelly arranged on the left and right sides of the lifting screw 304; an adjusting linkage frame 4 is arranged inside the spacing sealing bin 303, lifting screw sleeves 401 are symmetrically arranged on the left and right sides of the adjusting linkage frame 4, a lifting sliding sleeve 402 is arranged in the center of the adjusting linkage frame 4, a linkage electromagnet 403 is arranged in the middle of the adjusting linkage frame 4; a mobile detection frame 5 is embedded and slidingly arranged in the middle of the vertical guide groove 201, a display touch screen 501 is arranged on the upper side of the mobile detection frame 5, a driven magnet 502 is arranged in the middle of the mobile detection frame 5, spacing rollers 503 are symmetrically arranged on the left and right sides of the back of the mobile detection frame 5; a center detection frame 7 is arranged in front of the mobile detection frame 5, a center camera 701 is arranged in the center of the center detection frame 7, an arc-shaped fixing frame 702 is arranged in the middle of the center detection frame 7, an arc-shaped guide groove 703 is arranged inside the arc-shaped fixing frame 702;The arc-shaped connecting frame 9 is symmetrically embedded and slidably arranged on the inner side of the arc-shaped guide groove 703, the inner side of the arc-shaped connecting frame 9 is uniformly arranged with a plurality of light supplement lamps 901, the arc-shaped connecting frame 9 is arranged with an arc-shaped synchronous rack 902 on the side close to the horizontal center line of the arc-shaped guide groove 703, the middle of the arc-shaped guide groove 703 is arranged with a synchronous gear 704, the shaft end of the synchronous gear 704 is arranged with a driving motor 705, the synchronous gear 704 and the arc-shaped synchronous rack 902 are meshed to form a transmission structure, the outer end of the arc-shaped connecting frame 9 is connected and arranged with a side edge detection frame 903, the middle of the side edge detection frame 903 is arranged with a side edge camera 904, the device carries the required camera assembly through the movement of the detection frame 5, the detection frame 5 is arranged with three cameras, which are a central camera 701 arranged in the middle and two side edge cameras 904 arranged symmetrically on both sides, when collecting information, the central camera 701 in the middle can collect the front face information, the side edge camera 904 is arranged on the arc-shaped connecting frame 9, the arc-shaped connecting frame 9 can slide along the arc-shaped guide groove 703, the driving motor 705 can drive the synchronous gear 704 to rotate, so as to drive the arc-shaped connecting frame 9 on both sides to slide along the arc-shaped guide groove 703 synchronously through the arc-shaped synchronous rack 902, so that the side edge camera 904 can move to both sides along the arc line to collect the face information on both sides, so as to directly collect the three-dimensional image face information, and people do not need to turn their heads to obtain face pictures at different angles when collecting and identifying, which is helpful to improve the efficiency of collection and identification, the detection frame 5 is arranged in the vertical guide groove 201 of the vertical support frame 2, the adjustment linkage frame 4 is correspondingly arranged in the interval sealed bin 303 behind the interval partition plate 3 in the vertical guide groove 201, the lifting screw rod 304 is driven to rotate the lifting screw sleeve 401 through the driving of the lifting motor 305, so as to drive the adjustment linkage frame 4 to move up and down along the lifting guide rod 306, the driven electromagnet 502 in the detection frame 5 can be attracted by the magnetic force of the linkage electromagnet 403 arranged in the adjustment linkage frame 4 after being electrified, so that the detection frame 5 can be kept in the vertical guide groove 201 and move up and down synchronously with the adjustment linkage frame 4 through the magnetic force, so as to adjust according to the height of the user, which is higher in applicability and use flexibility, a plurality of ultrasonic sensors 302 are longitudinally and uniformly arranged on the interval partition plate 3, the height of the user in front of the device can be detected through the ultrasonic sensor 302, the detection data is collected to the processor arranged in the device, and the lifting motor 305 is controlled to rotate, so as to automatically adjust the height of the detection frame 5, adapt to the height of the user, and be more convenient to use, since the adjustment linkage frame 4 is installed in the vertical guide groove 201 through the magnetic force, the linkage electromagnet 403 is controlled to be on or off, so as to generate or lose the magnetic force, the adjustment linkage frame 4 can be installed and removed, so as to move the adjustment linkage frame 4 to other positions required for face recognition and collection, which is more flexible and convenient to use.

[0047] As shown in Figure 1 and Figure 3 , optionally, the bottom of the adjusting linkage frame 4 is provided with a connecting cable 405, the bottom of the interval sealing bin 303 is rotatably provided with a storage winding roller 406, the bottom of the connecting cable 405 is wound outside the storage winding roller 406, and the shaft end of the storage winding roller 406 is provided with a retracting coil spring 407. The device drives the mobile detection frame 5 to move up and down through the adjusting linkage frame 4, so as to adapt to users of different heights and body shapes. The adjusting linkage frame 4 is electrically connected with other equipment of the device through the connecting cable 405. The connecting cable 405 is wound and stored through the storage winding roller 406. When the adjusting linkage frame 4 moves upward, the connecting cable 405 can be unwound from the storage winding roller 406. When the adjusting linkage frame 4 moves downward, the retracting coil spring 407 drives the storage winding roller 406 to rotate in the opposite direction to wind the connecting cable 405, so as to facilitate the continuous connection and storage of the connecting cable 405, avoid the connecting cable 405 from being randomly stacked and stuck, and improve the reliability of the device as a whole.

[0048] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , optionally, the middle of the supporting bottom plate 104 is provided with a vertical sliding sleeve 105, the inner side of the vertical sliding sleeve 105 is nested and slidably provided with a vertical support column 107, the top of the vertical support column 107 is provided with a detection pedal 106, the bottom of the vertical support column 107 is provided with a reset spring 108, and the supporting bottom plate 104 and the detection pedal 106 are provided with a pressure detection meter 109. The device drives the mobile detection frame 5 to move up and down through the adjusting linkage frame 4, so as to adapt to users of different heights and body shapes. The height of the user located in front of the device can be detected through the plurality of ultrasonic sensors 302 which are longitudinally and uniformly arranged on the closed interval plate 3. The detection data is collected to the processor arranged on the device, and the lifting motor 305 is controlled to rotate, so as to automatically adjust the height of the mobile detection frame 5. The front side of the detection support seat 1 of the device is provided with the supporting bottom plate 104. When collecting, the user stands on the supporting bottom plate 104 for positioning. The supporting bottom plate 104 is also provided with the detection pedal 106. When the user stands on the supporting bottom plate 104, the detection pedal 106 can be moved downward by stepping, and the pressure detection meter 109 is compressed, so as to detect whether there is a user through the pressure detection meter 109, and the device is automatically controlled to perform subsequent detection and collection work, which is more convenient to use.

[0049] As shown in Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 andFigure 7 As shown, optionally, the size of the spacing roller 503 and the positioning wheel groove 301 are matched with each other, the movement detection frame 5 is slidably connected with the closed spacing plate 3 through the spacing roller 503 and the positioning wheel groove 301, the top of the vertical guide groove 201 is provided with the embedded receiving groove 203, the front side of the embedded receiving groove 203 is provided with the protective cover plate 204, the size of the display touch screen 501 and the embedded receiving groove 203 are matched with each other, when the movement detection frame 5 slides along the vertical guide groove 201 to the top of the vertical guide groove 201, the display touch screen 501 is embedded into the inside of the embedded receiving groove 203, the protective cover plate 204 is placed on the front of the display touch screen 501 to protect it, the device drives the movement detection frame 5 to move up and down through the adjustment linkage frame 4, so as to adapt to users with different height and body shape, and when the movement detection frame 5 moves, it moves along the closed spacing plate 3 through the spacing roller 503 and the positioning wheel groove 301, and keeps spacing with the closed spacing plate 3, so as to reduce the contact friction, facilitate the movement detection frame 5 to move synchronously with the adjustment linkage frame 4 to adjust, and the display touch screen 501 is arranged on the movement detection frame 5, so as to operate the device and display the required information, when the device is in standby state and is not used, the movement detection frame 5 can slide along the vertical guide groove 201 to the top of the vertical guide groove 201, at this time, the display touch screen 501 is embedded into the inside of the embedded receiving groove 203 arranged at the top of the vertical guide groove 201, and the protective cover plate 204 is placed on the front of the display touch screen 501 to protect it, so as to avoid the display touch screen 501 from being damaged, and improve the use safety of the device.

[0050] As Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7As shown, the left and right sides of the vertical guide groove 201 are provided with guide fitting grooves 202, and the left and right sides of the moving detection frame 5 are provided with guide sliding blocks 6. The guide fitting grooves 202 and the guide sliding blocks 6 are matched in size, and the moving detection frame 5 is connected with the vertical guide groove 201 through the guide sliding blocks 6 and the guide fitting grooves 202. The side of the moving detection frame 5 close to the guide sliding block 6 is provided with a sliding block storage groove 602, the side of the guide sliding block 6 close to the moving detection frame 5 is provided with a folding pivot 601, the guide sliding block 6 is connected with the moving detection frame 5 through the folding pivot 601, the guide sliding block 6 and the sliding block storage groove 602 are matched in size, the middle of the guide sliding block 6 is horizontally provided with a locking insert sleeve 603, the middle of the sliding block storage groove 602 is horizontally provided with a locking sliding sleeve 604, the inner side of the locking sliding sleeve 604 is nested and slidably provided with a locking support rod 606, the locking support rod 606 and the locking insert sleeve 603 are matched in size, the middle of the locking sliding sleeve 604 is provided with an electromagnetic coil 605. The device drives the moving detection frame 5 to move up and down through the adjusting linkage frame 4, so as to adapt to users of different heights and body shapes. When the moving detection frame 5 moves up and down along the vertical guide groove 201 to adjust the height, the two sides thereof are still connected with the vertical guide groove 201 through the guide sliding blocks 6 embedded in the guide fitting grooves 202. The guide sliding block 6 can be locked through the limiting of the locking support rod 606, so that the adjusting linkage frame 4 can be locked through the guide sliding block 6 embedded in the guide fitting groove 202, avoiding the adjusting linkage frame 4 being directly taken out. When it is needed to be taken out, the locking support rod 606 made of ferromagnetic material can be controlled to slide along the locking sliding sleeve 604 through the electromagnetic coil 605. When the locking support rod 606 extends out of the locking sliding sleeve 604, the inner side of the guide sliding block 6 can be pressed to limit and lock the guide sliding block 6. When the locking support rod 606 retracts into the locking sliding sleeve 604, the adjusting linkage frame 4 can be moved outward. When the adjusting linkage frame 4 is moved out, the guide sliding block 6 can be rotated along the folding pivot 601 and stored in the sliding block storage groove 602, so that the adjusting linkage frame 4 can be smoothly taken out. When the guide sliding block 6 is stored in the sliding block storage groove 602, the locking support rod 606 extends out of the locking sliding sleeve 604 to be embedded in the locking insert sleeve 603 to lock the guide sliding block 6, so that the guide sliding block 6 can be continuously stored in the sliding block storage groove 602, facilitating the moving detection frame 5 to be taken down for flexible use. The folding pivot 601 is elastic, and when the locking support rod 606 retracts and separates from the locking insert sleeve 603, the folding pivot 601 drives the guide sliding block 6 to reset. The guide sliding block 6 can form a locking structure of the moving detection frame 5, which is beneficial to improve the safety of the device in use.

[0051] As Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 ,Figure 8 、 Figure 9 and Figure 10 As shown in FIGS. 15, 16, 17, 18, 19, 20, 21, 22 and 23, optionally, the inside of the movement detection frame 5 is provided with a wireless transmission module 504, the back side of the wireless transmission module 504 is provided with an energy storage battery 505, the back center of the movement detection frame 5 is provided with a wireless charging coil 506, the front of the adjustment linkage frame 4 is provided with a wireless transmission coil 404, the wireless charging coil 506 and the wireless transmission coil 404 are symmetrically arranged, the back side of the detection support seat 1 is provided with a closed machine box 101, the inside of the closed machine box 101 is provided with a data processing module 102, the upper side of the data storage module is provided with a wireless receiving module 103, the data processing module 102 and the wireless receiving module 103 are electrically connected, the wireless transmission module 504 and the wireless receiving module 103 are correspondingly arranged, the device collects face information through the camera arranged on the adjustment linkage frame 4, the inside of the movement detection frame 5 is provided with the wireless transmission module 504, so that the collected data can be wirelessly transmitted to the data processing module 102 for storage and processing, and the movement detection frame 5 is provided with the energy storage battery 505, so as to directly supply power to the internal electronic equipment through the energy storage battery 505, at the same time, the adjustment linkage frame 4 can drive the movement detection frame 5 to move up and down, so as to adapt to users with different heights and body shapes, and the wireless charging coil 506 and the wireless transmission coil 404 arranged on the adjustment linkage frame 4 and the movement detection frame 5 respectively can charge the energy storage battery 505 in the adjustment linkage frame 4, so that the movement detection frame 5 is wirelessly structured, which is convenient for moving or disassembling and using, and is more flexible and convenient to use.

[0052] As Figure 1 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 and Figure 10As shown, optionally, the center detection frame 7 and the mobile detection frame 5 are further provided with a turnover shaft 8, which is fixedly arranged at the front side of the mobile detection frame 5, the rear side of the center detection frame 7 is provided with a rotating connection sleeve 801, which is rotatably arranged on the outside of the turnover shaft 8, the center detection frame 7 and the mobile detection frame 5 are rotatably connected through the rotating connection sleeve 801 and the turnover shaft 8, the rear side center and the upper and lower side centers of the rotating connection sleeve 801 are provided with ball head positioning grooves 802, the middle of the turnover shaft 8 is provided with a positioning sleeve 803, the inner side of the positioning sleeve 803 is slidably nested with a positioning convex rod 804, the outer end of the positioning convex rod 804 is provided with a positioning ball head 805, the rear side of the positioning convex rod 804 is provided with a positioning spring 806, the positioning ball head 805 and the ball head positioning groove 802 are matched in size, the device adjusts the face information collected by the camera arranged on the linkage frame 4, the three cameras arranged on the mobile detection frame 5 are connected with the mobile detection frame 5 through the center detection frame 7, the center detection frame 7 and the mobile detection frame 5 are rotatably connected through the rotating connection sleeve 801 and the turnover shaft 8, so as to adjust the angle of the camera carried on the center detection frame 7, and the rotating connection sleeve 801 is positioned by embedding the positioning ball head 805 into the ball head positioning groove 802 when rotating, when the ball head positioning groove 802 at the rear side center of the rotating connection sleeve 801 embeds the positioning ball head 805, the center detection frame 7 can remain in a horizontal state for detection, and when the ball head positioning grooves at the upper and lower side centers of the rotating connection sleeve 801 embed the positioning ball heads 805, the center detection frame 7 can be in an upper and lower parallel state for folding, which is more flexible and convenient to use.

[0053] In use, first, the corresponding pipeline of the device is connected, then the user can stand in front of the device, stand on the support bottom plate 104 to position, when the user stands on the support bottom plate 104, the detection pedal 106 is stepped down to move and press the pressure detection meter 109, so that the pressure detection meter 109 detects whether there is a user, and the pressure detection meter 109 transmits the signal to the data processing module 102 after detection, and the data processing module 102 controls the ultrasonic sensor 302 and the lifting motor 305 to work, the height of the user in front of the device is detected by the ultrasonic sensor 302, then the lifting screw rod 304 is controlled to rotate by the lifting motor 305, and the adjusting linkage frame 4 is driven to move up and down along the lifting guide rod 306 by the lifting screw sleeve 401, and the driven magnet 502 in the moving detection frame 5 is attracted by the magnetic force of the linkage electromagnet 403 arranged in the adjusting linkage frame 4 after being powered on, so that the moving detection frame 5 is kept in the vertical guide groove 201 and moves up and down synchronously with the adjusting linkage frame 4 by magnetic force, when the moving detection frame 5 moves to the height of the head of the user, the face information collection work is carried out, when the collection work is carried out, the front face information is collected by the center camera 701 in the middle, and the driving motor 705 drives the synchronous gear 704 to rotate, so that the arc-shaped connecting frame 9 on both sides is driven to slide along the arc-shaped guide groove 703 synchronously by the arc-shaped synchronous rack 902, so that the side camera 904 can move to both sides along the arc line, so that the face information on both sides is collected, so that the three-dimensional image face information collection is carried out, and the stereoscopic collection is directly carried out, without the need for people to rotate the head to obtain face pictures of different angles, and the collection work is completed.

[0054] The face recognition terminal information collection device provided by the application collects face information by the center camera 701 on the center detection frame 7 and the side cameras 904 symmetrically arranged on both sides thereof, the center camera 701 in the middle can collect front face information, and the side cameras 904 are arranged at the outer ends of the arc-shaped connecting frames 9, the arc-shaped connecting frames 9 can slide to both sides along the arc-shaped fixing frame 702, so that the side cameras 904 move to both sides along the arc line to collect face information on both sides, so that the three-dimensional image face information collection is directly carried out, and the stereoscopic collection is directly carried out, without the need for people to rotate the head to obtain face pictures of different angles, which is beneficial to improve the efficiency of collection and recognition, and the required cameras are arranged on the moving detection frame 5, the moving detection frame 5 can slide up and down along the vertical guide groove 201 in the vertical support frame 2 to adjust the height, so as to adapt to the collection of information of users of different heights, and the applicability and use flexibility are higher.

[0055] Those skilled in the art should understand that the above discussion of any embodiment is merely exemplary in nature and is not intended to imply that the present application, including the claims, be limited to these examples; the technical features among the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of the different aspects of the present application as described above, which are not provided in details for the sake of brevity.

[0056] The present application is intended to cover all such alternatives, modifications, and variations as come within the scope of the broadest possible interpretation of the appended claims. Accordingly, any and all such alternations, modifications, equivalents, improvements and the like are intended to be encompassed by the present application.

Claims

1. A face recognition terminal information collection device, comprising a detection support seat (1), the front side of the detection support seat (1) is provided with a support bottom plate (104), characterized in that, Also include: Vertical support frame (2) is vertically arranged above the detection support seat (1), the middle of the vertical support frame (2) is provided with vertical guide slot (201); Closed partition plate (3) is vertically arranged in the middle of the vertical guide slot (201), the front side of the closed partition plate (3) is symmetrically and parallelly provided with positioning wheel groove (301) on both sides, the front center of the closed partition plate (3) is provided with a plurality of ultrasonic sensors (302), the ultrasonic sensors (302) are uniformly arranged along the vertical center line direction of the closed partition plate (3), the rear side of the closed partition plate (3) is provided with interval sealing bin (303), the middle of the interval sealing bin (303) is vertically provided with lifting screw (304), the shaft end of the lifting screw (304) is provided with lifting motor (305), the left and right sides of the lifting screw (304) are symmetrically and parallelly provided with lifting guide rod (306); Adjusting linkage frame (4) is arranged in the inner side of the interval sealing bin (303), the left and right sides of the adjusting linkage frame (4) are symmetrically provided with lifting screw sleeve (401), the center of the adjusting linkage frame (4) is provided with lifting sliding sleeve (402), the middle of the adjusting linkage frame (4) is provided with linkage electromagnet (403); Mobile detection frame (5) is embedded and slidably arranged in the middle of the vertical guide slot (201), the upper side of the mobile detection frame (5) is provided with display touch screen (501), the middle of the mobile detection frame (5) is provided with driven magnet (502), the left and right sides of the back of the mobile detection frame (5) are symmetrically provided with interval roller (503); Center detection frame (7) is arranged in front of the mobile detection frame (5), the center of the center detection frame (7) is provided with center camera (701), the middle of the center detection frame (7) is provided with arc-shaped fixing frame (702), the inner side of the arc-shaped fixing frame (702) is provided with arc-shaped guide slot (703); Arc-shaped connecting frame (9) is symmetrically embedded and slidably arranged in the inner side of the arc-shaped guide slot (703), a plurality of light supplementing lamps (901) are uniformly arranged on the inner side arc surface of the arc-shaped connecting frame (9), the side of the arc-shaped connecting frame (9) close to the horizontal center line of the arc-shaped guide slot (703) is provided with arc-shaped synchronous rack (902), the middle of the arc-shaped guide slot (703) is provided with synchronous gear (704), the shaft end of the synchronous gear (704) is provided with driving motor (705), the synchronous gear (704) and the arc-shaped synchronous rack (902) are intermeshed to form a transmission structure, the outer end of the arc-shaped connecting frame (9) is connected and provided with side edge detection frame (903), the middle of the side edge detection frame (903) is provided with side edge camera (904).

2. The face recognition terminal information collection device according to claim 1, characterized in that, The bottom connection of the adjusting linkage frame (4) is provided with a connecting cable (405), the bottom of the interval sealed bin (303) is rotatably provided with a storage winding roller (406), the bottom of the connecting cable (405) is wound outside the storage winding roller (406), and the shaft end of the storage winding roller (406) is provided with a retraction coil spring (407). 3.The face recognition terminal information collection device of claim 1, characterized in that, The middle of the support bottom plate (104) is provided with a vertical sliding sleeve (105), the inner side of the vertical sliding sleeve (105) is slidably nested with a vertical support column (107), the top of the vertical support column (107) is provided with a detection pedal (106), the bottom of the vertical support column (107) is provided with a reset spring (108), and the support bottom plate (104) and the detection pedal (106) are provided with a pressure detection meter (109) therebetween.

4. The face recognition terminal information collection apparatus according to claim 1, characterized by, The interval roller (503) and the positioning wheel groove (301) are matched in size, the movement detection frame (5) is slidably connected with the closed interval plate (3) through the interval roller (503) and the positioning wheel groove (301), the top of the vertical guide groove (201) is provided with a matching storage groove (203), the front side of the matching storage groove (203) is provided with a protective cover plate (204), the display touch screen (501) and the matching storage groove (203) are matched in size, when the movement detection frame (5) slides along the vertical guide groove (201) to the top of the vertical guide groove (201), the display touch screen (501) is embedded in the inner side of the matching storage groove (203), and the protective cover plate (204) is arranged on the front of the display touch screen (501) to protect it.

5. The face recognition terminal information collection apparatus according to claim 1, wherein The left and right sides of the vertical guide groove (201) are provided with guide matching grooves (202), the left and right sides of the movement detection frame (5) are provided with guide sliding blocks (6), the guide matching grooves (202) and the guide sliding blocks (6) are matched in size, and the movement detection frame (5) is slidably connected with the vertical guide groove (201) through the guide sliding blocks (6) and the guide matching grooves (202). 6.The face recognition terminal information collection apparatus according to claim 5, characterized in that, The side of the movement detection frame (5) close to the guide sliding block (6) is provided with a sliding block storage groove (602), the side of the guide sliding block (6) close to the movement detection frame (5) is provided with a folding pivot (601), the guide sliding block (6) is rotatably connected with the movement detection frame (5) through the folding pivot (601), the guide sliding block (6) and the sliding block storage groove (602) are matched in size, the middle of the guide sliding block (6) is horizontally provided with a locking sleeve (603), the middle of the sliding block storage groove (602) is horizontally provided with a locking sliding sleeve (604), the inner side of the locking sliding sleeve (604) is slidably nested with a locking support rod (606), the locking support rod (606) and the locking sleeve (603) are matched in size, and the middle of the locking sliding sleeve (604) is provided with an electromagnetic coil (605). 7.The face recognition terminal information collection apparatus according to claim 1, characterized in that, The inside of the mobile detection frame (5) is provided with a wireless transmission module (504), the rear side of the wireless transmission module (504) is provided with an energy storage battery (505), the back center of the mobile detection frame (5) is provided with a wireless charging coil (506), the front of the adjustment linkage frame (4) is provided with a wireless transmitting coil (404), and the wireless charging coil (506) and the wireless transmitting coil (404) are symmetrically arranged. 8.The face recognition terminal information collection apparatus according to claim 7, characterized in that, The rear side of the detection support seat (1) is provided with a closed machine box (101), the inner side of the closed machine box (101) is provided with a data processing module (102), the upper side of the data processing module (102) is provided with a wireless receiving module (103), the data processing module (102) and the wireless receiving module (103) are electrically connected with each other, and the wireless transmission module (504) and the wireless receiving module (103) are correspondingly arranged. 9.The face recognition terminal information collection apparatus according to claim 1, characterized in that, The center detection frame (7) and the mobile detection frame (5) are further provided with a turnover shaft (8), the turnover shaft (8) is fixedly arranged on the front side of the mobile detection frame (5), the rear center of the center detection frame (7) is provided with a rotating connecting sleeve (801), the rotating connecting sleeve (801) is rotatably arranged on the outer side of the turnover shaft (8), and the center detection frame (7) and the mobile detection frame (5) are rotatably connected through the rotating connecting sleeve (801) and the turnover shaft (8). 10.The face recognition terminal information collection apparatus according to claim 9, characterized in that, The rear center and the upper and lower centers of the rotating connecting sleeve (801) are provided with ball head positioning grooves (802), the middle of the turnover shaft (8) is provided with a positioning sleeve (803), the inner side of the positioning sleeve (803) is slidably nested with a positioning convex rod (804), the outer end of the positioning convex rod (804) is provided with a positioning ball head (805), the rear side of the positioning convex rod (804) is provided with a positioning spring (806), and the positioning ball head (805) and the ball head positioning groove (802) are matched in size.

Citation Information

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