Outdoor Internet of Things card sender with intelligent transceiving and positioning functions
By designing an outdoor IoT card issuer with intelligent transceiver and receiving and positioning functions, the problem of the lack of tracking and positioning functions in personnel management of the existing system is solved, and automatic verification permissions and unmanned duty are realized, reducing operation and maintenance costs and improving traffic efficiency.
Patent Information
- Application Number
- CN202510083480.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-05-13
AI Technical Summary
The existing unattended smart doorman system lacks tracking and positioning functions in personnel management, resulting in insufficient comprehensive management and control.
An outdoor IoT card issuer with intelligent transceiver and receiving and positioning functions is designed. It adopts a combination of lifting mechanism and mobile components to adapt to people and vehicles of different heights, and is equipped with identification units, dustproof components and card issuing components to realize automatic verification permissions and unmanned duty.
It realizes the authority of automatic verification of personnel and vehicles, reduces the workload of access control personnel, reduces the operation and maintenance costs of enterprises, and improves the passage efficiency and stability of the use of positioning cards.
Smart Images

Figure CN119992698A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of security guarding, and in particular to an outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning functions. Background Art
[0002] As the scale of enterprises continues to expand and personnel positioning technology continues to improve, it is particularly important to use Internet of Things technology to help enterprises achieve internal personnel management, contractor personnel control, external visitor control, vehicle traffic control, and realize integrated unmanned personnel and vehicle control.
[0003] For example, a Chinese patent (publication number: CN112509194B) discloses an unmanned smart gatekeeper system, which includes: a background service module, a human-computer interaction module, an information verification module, an execution module, an agent module, a public information service module and a self-protection module; the human-computer interaction module, the information verification module, the execution module, the agent module, the public information service module and the self-protection module are respectively connected to the background service module. The invention can realize unmanned gatekeeping around the clock, and also solves some tasks that cannot be completed well by traditional manned guards, greatly reducing the investment in employee wages and personnel management costs.
[0004] However, the personnel management of this system is not comprehensive enough. The system does not have tracking and positioning functions. In actual use, it is impossible to confirm the real-time location of other people, which may further lead to incomplete management and control. Therefore, an outdoor Internet of Things card issuing machine with intelligent receiving and sending positioning functions is proposed. Summary of the invention
[0005] In view of the shortcomings of the prior art, the present invention provides an outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning functions, which has the advantages of comprehensive management and control, and solves the problem of insufficient comprehensive management and control within the enterprise.
[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning functions, comprising a box body, a base is fixed at the bottom of the box body, the inner bottom wall of the base is provided with a lifting mechanism that penetrates the top wall of the base and extends into the box body to adapt to people and cars of different heights, the outer surface of the lifting mechanism and is located in the box body and is provided with a moving component that extends to the outside of the box body and can reduce the difficulty of taking a card, the moving component is provided with a card issuing component that penetrates the right side wall of the moving component and extends to the outside of the box body and can realize automatic card output, a T-block is fixed on the left side of the moving component and extends to the left wall of the box body and is movably connected to the left wall of the box body, a main controller is fixed on the top of the moving component, a connecting hole is opened on the right side wall of the box body, the inner top wall and the inner bottom wall of the connecting hole are provided with a dustproof component to improve dustproofness, and an identification unit for effectively identifying a user is provided on the top of the card issuing component and is located outside the box body.
[0007] Furthermore, the lifting mechanism includes a servo motor fixed to the inner bottom wall of the base, an active rod is fixed to the output shaft of the servo motor, and the active rod is rotatably connected to the inner top wall of the base through a bearing, the inner bottom wall of the base and the left and right sides of the servo motor are rotatably connected to driven rods that penetrate the base top wall and the bottom wall of the box body in sequence through bearings, the two driven rods are rotatably connected to the inner top wall of the box body through bearings, a driving gear is fixed to the outer surface of the active rod, and driven gears meshing with the driving gear are fixed to the outer surfaces of the two driven rods and located in the base.
[0008] Furthermore, the moving component includes a stabilizing shell threadedly connected to the outer surfaces of the two driven rods, a driving motor is fixed to the inner front wall of the stabilizing shell and located between the two driven rods, a worm is fixed to the output shaft of the driving motor, and the end of the worm away from the driving motor is rotatably connected to the inner rear wall of the stabilizing shell through a bearing, two worm wheels are meshed below the worm, and the two worm wheels are respectively located on the front and rear sides of the driven rods, and threaded rods are fixed to the inner sides of the two worm wheels, and a transmission part is provided on the outer surface of each of the threaded rods, and the two transmission parts are fixed to the hairpin assembly, and the transmission part is fixed to the inner top wall of the stabilizing shell.
[0009] Furthermore, the top of the stable shell is fixed to the main controller, a T-shaped slot is provided on the left inner wall of the box body, the left wall of the stable shell is fixed to a T-shaped block, and the T-shaped block extends into the left wall of the box body through the T-shaped slot.
[0010] Further, each of the transmission parts includes a primary threaded cylinder threadedly connected to the outer surface of the threaded rod, a supporting cylinder located on the outer side of the primary threaded cylinder and movably connected to the primary threaded cylinder is fixed on the top wall of the stabilizing shell, four movable grooves are opened on the inner side of the primary threaded cylinder, a movable block is movably connected in each of the movable grooves, a secondary threaded cylinder is fixed on the opposite side of the four movable blocks, the inner side of the secondary threaded cylinder is threadedly connected to a transmission cylinder, the outer surface of the threaded rod and four limiting grooves are opened in the primary threaded cylinder, four limiting blocks are fixed on the inner side of the transmission cylinder, which extend respectively into the four limiting grooves and are movably connected to the four limiting grooves, four stabilizing grooves are opened in the inner side of the supporting cylinder, four stabilizing blocks are fixed on the outer surface of the primary threaded cylinder, which extend respectively into the four stabilizing grooves and are movably connected to the four stabilizing grooves, a connecting groove is opened on the left side of the primary threaded cylinder, and a connecting ring is opened on the left side of the transmission cylinder, which extends to the connecting groove and is movably connected to the connecting groove.
[0011] Furthermore, each of the dustproof components includes a dustproof shell fixed to the inner wall of the connecting hole, a dustproof rod is fixed between the front and rear walls of the inner cavity of the dustproof shell, a primary torsion spring is fixed to the outer surface of the dustproof rod, a rotating roller is fixed to the outer side of the primary torsion spring, a dustproof cloth is wrapped around the outer surface of the rotating roller, and the dustproof cloth passes through the inner wall of the dustproof shell and is fixed to the stabilizing shell, and the other side of the dustproof cloth is fixed to the rotating roller.
[0012] Further, the hairpin assembly includes two extension blocks respectively fixed to the right side walls of the two secondary threaded barrels, the two extension blocks extend to the outside of the primary threaded barrel, the two extension blocks are located outside the primary threaded barrel and are fixed with a connecting shell, an electric push rod is fixed to the inner left wall of the connecting shell, an L-shaped rod is fixed to the output end of the electric push rod, a feed hole and a discharge hole are opened on the right side of the connecting shell, an input pipe and an output pipe respectively connected to the feed hole and the discharge hole are fixedly connected to the inner right wall of the connecting shell, and a pipe located on the left side of the input pipe and the output pipe and fixedly connected to the two is fixedly connected to the inner right wall of the connecting shell A connecting warehouse, the L-shaped rod passes through the right side wall of the connecting warehouse and is located at the same horizontal plane as the output pipe, an anti-flying portion is provided on the right side of the connecting shell and is located on the right side of the output hole, the anti-flying portion includes a connecting block fixed to the right side of the connecting shell, two spring holes are provided on the right side of the connecting block, connecting springs are fixed to the right arms of the two spring holes, extension rods extending to the outside of the spring holes are fixed on the side of the two connecting springs away from the spring holes, secondary torsion springs are fixed to the inner sides of the two extension rods, a hinge shaft is fixed to the inner side of each of the secondary torsion springs, and blocking plates are fixed to the front and rear sides of the hinge shaft.
[0013] Furthermore, the identification unit includes a memory fixed to the top of the connection shell, and a face recognizer and an ID card recognizer are fixed to the right side of the memory in sequence from top to bottom.
[0014] Furthermore, the main controller is connected to the data server through a bidirectional network signal of a local area network, the output end of the main controller is electrically connected to the input end of the access control device, the output end of the main controller is electrically connected to the input end of the vehicle barrier, the output end of the identification unit is electrically connected to the input end of the main controller, the output end of the main controller is electrically connected to the input end of the drive motor, the output end of the main controller is electrically connected to the input end of the servo motor, the output end of the main controller is electrically connected to the input end of the electric push rod, the output end of the main controller is connected to the input end of the positioning card through network signal connection, and the output end of the positioning card is connected to the input end of the enterprise identification module through network signal connection.
[0015] Furthermore, the data server includes a pedestrian module and a vehicle module, the pedestrian module includes the person's name, photo and ID number, the vehicle module includes the driver's name and license plate number, the vehicle barrier includes the license plate number and barrier pole, and the identification unit includes a face recognizer and an ID card recognizer.
[0016] Compared with the prior art, the technical solution of this application has the following beneficial effects:
[0017] 1. This outdoor IoT card issuing machine with intelligent sending and receiving positioning function can automatically check the different permissions of personnel and vehicles, realize unmanned on-duty management and control, reduce the workload of access control personnel, reduce the operation and maintenance costs of enterprises, and is easy to return and simple to operate.
[0018] 2. This outdoor IoT card issuing machine with intelligent receiving and sending positioning functions can adapt to people and vehicles of different heights through the coordination of lifting mechanisms and mobile components. After the vehicle stops, users can realize the identification and card issuing functions without getting off the vehicle, further improving the traffic efficiency.
[0019] 3. The outdoor Internet of Things card issuing machine with intelligent receiving and sending positioning functions has a dust-proof component that can play a good dust-proof effect, effectively improving the service life of the intelligent card issuing machine. The anti-flying part can block the positioning card, thereby improving the stability when taking the positioning card. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the structure of the present invention;
[0021] Figure 2 It is a schematic diagram of the structure of the dustproof component of the present invention;
[0022] Figure 3 It is a structural schematic diagram of the transmission part of the present invention;
[0023] Figure 4 For the present invention Figure 3 Enlarged view of point A in the middle;
[0024] Figure 5 It is a three-dimensional cross-sectional view of the transmission part of the present invention;
[0025] Figure 6 is a system diagram of the present invention;
[0026] Figure 7 This is a flow chart of pedestrian control in the present invention;
[0027] Figure 8 This is a vehicle control flow chart of the present invention;
[0028] In the figure: 1 box, 2 base, 3 lifting mechanism, 301 servo motor, 302 active rod, 303 driven rod, 304 active gear, 305 driven gear, 4 moving assembly, 401 stabilizing shell, 402 worm, 403 worm wheel, 404 threaded rod, 405 transmission part, 4051 support cylinder, 4052 primary thread cylinder, 4053 secondary thread cylinder, 4054 transmission cylinder, 4055 limiting groove, 4056 limiting block, 4057 moving block, 4058 moving groove, 4059 stabilizing block, 5 T-block, 6 Main controller, 7 dustproof assembly, 701 dustproof rod, 702 dustproof shell, 703 primary torsion spring, 704 rotating roller, 705 dustproof cloth, 8 hairpin assembly, 801 connecting shell, 802 electric push rod, 803 L-shaped rod, 804 connecting warehouse, 805 input pipe, 806 output pipe, 807 anti-flying part, 8071 connecting block, 8072 connecting spring, 8073 extension rod, 8074 secondary torsion spring, 8075 hinge shaft, 8076 blocking plate, 9 recognition unit, 901 face recognition device, 902 ID card recognition device. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0030] See also Figure 1 In this embodiment, an outdoor Internet of Things card issuing machine with intelligent receiving and sending positioning functions includes a box body 1, a base 2 is fixed at the bottom of the box body 1, the base 2 can provide good and stable support for the box body 1, and the base 2 can provide a stable environment for the lifting mechanism 3, the inner bottom wall of the base 2 is provided with a lifting mechanism 3 that penetrates the top wall of the base 2 and extends into the box body 1 for adapting to people and cars of different heights, the outer surface of the lifting mechanism 3 and is located in the box body 1. A moving component 4 extending to the outside of the box body 1 and reducing the difficulty of taking a card is provided, and a moving component 4 is provided in the moving component 4. A lifting mechanism 3 that penetrates the right side wall of the moving component 4 and extends A card issuing component 8 is provided outside the box body 1 and can realize automatic card issuing. A T-block 5 is fixed on the left side of the moving component 4, which extends into the left wall of the box body 1 and is movably connected to the left wall inside the box body 1. The T-block 5 plays a limiting role. At the same time, the T-block 5 can also effectively balance the weight to ensure that the two sides of the moving component 4 remain relatively balanced. A main controller 6 is fixed on the top of the moving component 4. A connecting hole is provided on the right side wall of the box body 1. The inner top wall and the inner bottom wall of the connecting hole are provided with a dustproof component 7 to improve the dustproof property. An identification unit 9 for effectively identifying the user is provided on the top of the card issuing component 8 and located outside the box body 1.
[0031] In addition, the lifting mechanism 3 includes a servo motor 301 fixed to the inner bottom wall of the base 2. The servo motor 301 can provide a reliable and stable support force for the lifting mechanism 3. The output shaft of the servo motor 301 is fixed with an active rod 302. The active rod 302 is rotatably connected to the inner top wall of the base 2 through a bearing. The bearing can effectively improve the stability of the active rod 302. The inner bottom wall of the base 2 and the left and right sides of the servo motor 301 are rotatably connected with driven rods 303 that pass through the top wall of the base 2 and the bottom wall of the box 1 in sequence through bearings. The two driven rods 303 are connected to the box 1 through bearings. The inner top wall is rotatably connected, and the two driven rods 303 can provide lifting power at the same time to ensure that the moving component 4 can be lifted and lowered stably, and can also limit each other. A driving gear 304 is fixed to the outer surface of the active rod 302, and a driven gear 305 meshing with the driving gear 304 is fixed to the outer surface of the two driven rods 303 and located in the base 2. Through the driving gear 304 and the two driven gears 305, power can be transmitted to the two driven rods 303 at the same time, prompting the two driven rods 303 to rotate synchronously at the same time, thereby ensuring that the moving component 4 can smoothly lift and lower.
[0032] In this embodiment, the lifting mechanism 3 can ensure that the height of the mobile component 4 can be adjusted smoothly, and that the mobile component 4 can be smoothly aligned with vehicles of different heights. The base 2 is used to ensure overall stability. When the mobile component 4 is aligned with the vehicle, the mobile component 4 prompts the card issuing component 8 to approach the personnel, ensuring that the personnel can smoothly and quickly take the card and record the face.
[0033] Please refer again Figure 1 and Figures 2 to 5 In order to improve the passage efficiency, the moving assembly 4 in this embodiment includes a stabilizing shell 401 threadedly connected to the outer surfaces of the two driven rods 303, and the stabilizing shell 401 plays a protective role. A driving motor is fixed on the inner front wall of the stabilizing shell 401 and located between the two driven rods 303. The driving motor can provide stable power for the extension and retraction of the moving assembly 4. A worm 402 is fixed to the output shaft of the driving motor. The end of the worm 402 away from the driving motor is rotatably connected to the inner rear wall of the stabilizing shell 401 through a bearing. Two worm wheels 403 are meshed below the worm 402. A single worm 402 drives the two worm wheels 403 at the same time. 3 rotate synchronously, further promoting the two transmission parts 405 to stably displace, improving the moving stability of the hairpin assembly 8, the two worm gears 403 are respectively located at the front and rear sides of the driven rod 303, the inner sides of the two worm gears 403 are fixed with threaded rods 404, the outer surface of each threaded rod 404 is provided with a transmission part 405, the two transmission parts 405 are fixed to the hairpin assembly 8, the transmission parts 405 are fixed to the inner top wall of the stabilizing shell 401, the outer surfaces of the two threaded rods 404 are rotatably connected with a stabilizing seat through a bearing, and the side of the stabilizing seat away from the two threaded rods 404 is fixed to the inner bottom wall of the stabilizing shell 401.
[0034] It can be known that the top of the stabilizing shell 401 is fixed to the main controller 6, a T-slot is provided on the left inner wall of the box body 1, and the left wall of the stabilizing shell 401 is fixed to the T-block 5. The T-slot can stably limit the T-block 5 to ensure smooth movement of the T-block 5. At the same time, the T-block 5 acts as a counterweight to ensure that when the transmission part 405 is fully retracted, the left and right sides of the moving component 4 remain relatively balanced, and the T-block 5 extends to the left wall of the box body 1 through the T-slot.
[0035] It should be further explained that each transmission part 405 includes a primary threaded cylinder 4052 threadedly connected to the outer surface of the threaded rod 404, a support cylinder 4051 located on the outer side of the primary threaded cylinder 4052 and movably connected to the primary threaded cylinder 4052 is fixed on the inner top wall of the stabilizing shell 401, four movable grooves 4058 are provided on the inner side of the primary threaded cylinder 4052, and a movable block 4057 is movably connected in each movable groove 4058. The movable grooves 4058 and the movable blocks 4057 cooperate to ensure the stable movement of the movable blocks 4057. Since the support cylinder 4051 limits the primary threaded cylinder 4052, the secondary threaded cylinder 4053 can be limited by the movable blocks 4057 and the movable grooves 4058. A secondary threaded cylinder 4053 is fixed on the opposite side of the four movable blocks 4057, and the inner side of the secondary threaded cylinder 4053 is threadedly connected to the transmission cylinder 4054. The outer surface of the threaded rod 404 and located at Four limiting grooves 4055 are provided in the first-level threaded cylinder 4052, and four limiting blocks 4056 are fixed on the inner side of the transmission cylinder 4054, which extend into the four limiting grooves 4055 respectively and are movably connected to the four limiting grooves 4055. The limiting blocks 4056 and the limiting grooves 4055 are used to stably transmit power, thereby ensuring that the transmission cylinder 4054 and the threaded rod 404 rotate synchronously. Four stabilizing grooves are provided on the inner side of the support cylinder 4051, and four stabilizing blocks 4059 are fixed on the outer surface of the first-level threaded cylinder 4052, which extend into the four stabilizing grooves respectively and are movably connected to the four stabilizing grooves. A connecting groove is provided on the left side of the first-level threaded cylinder 4052, and a connecting ring is provided on the left side of the transmission cylinder 4054, which extends into the connecting groove and is movably connected to the connecting groove. The connecting ring and the connecting groove cooperate to ensure that the normal rotation of the transmission cylinder 4054 is not affected, while playing a connecting role to ensure that the transmission cylinder 4054 moves smoothly.
[0036] In addition, each dustproof component 7 includes a dustproof shell 702 fixed to the inner wall of the connecting hole, a dustproof rod 701 is fixed between the front and rear walls of the inner cavity of the dustproof shell 702, and a primary torsion spring 703 is fixed to the outer surface of the dustproof rod 701. The primary torsion spring 703 can ensure the smooth rotation of the rotating roller 704, thereby realizing the winding and tensioning of the dustproof cloth 705, ensuring that the dustproof cloth 705 can smoothly block the dust, and can effectively improve the overall aesthetics of the device, a rotating roller 704 is fixed to the outer side of the primary torsion spring 703, and the outer surface of the rotating roller 704 is wrapped with a dustproof cloth 705 that passes through the inner wall of the dustproof shell 702 and is fixed to the stabilizing shell 401, and the other side of the dustproof cloth 705 is fixed to the rotating roller 704. When the stabilizing shell 401 moves up and down, the rotating roller 704 is driven to rotate by the primary torsion spring 703, thereby smoothly winding the dustproof cloth 705.
[0037] It can be understood that the hairpin assembly 8 includes two extension blocks respectively fixed to the right side walls of the two secondary threaded barrels 4053, the extension blocks play a supporting and stabilizing role, the two extension blocks are extended to the outside of the primary threaded barrel 4052, the two extension blocks are located outside the primary threaded barrel 4052 and are fixed with a connecting shell 801, the two transmission parts 405 cause the two extension blocks to move synchronously at the same time, and further cause the connecting shell 801 to move stably, and the inner left wall of the connecting shell 801 is fixed with an electric push rod 802, and the output end of the electric push rod 802 is fixed There is an L-shaped rod 803. After the electric push rod 802 is started, it drives the L-shaped rod 803 to move, and the positioning card can be smoothly pushed out. A feed hole and a discharge hole are opened on the right side of the connecting shell 801. The inner right wall of the connecting shell 801 is fixedly connected with an input pipe 805 and an output pipe 806 respectively connected to the feed hole and the discharge hole. The inner right wall of the connecting shell 801 is fixed with a connecting chamber 804 located on the left side of the input pipe 805 and the output pipe 806 and fixedly connected to the two. The L-shaped rod 803 passes through the right side wall of the connecting chamber 804 and is connected to the output pipe 806. 06 are located in the same horizontal plane, the L-shaped rod 803 and the output tube 806 are located in the same horizontal plane, which can more smoothly push out the positioning card. The right side of the connecting shell 801 is provided with an anti-flying part 807 located on the right side of the output hole. The anti-flying part 807 includes a connecting block 8071 fixed to the right side of the connecting shell 801. Two spring holes are provided on the right side of the connecting block 8071. The right arm of the two spring holes is fixed with a connecting spring 8072. The connecting spring 8072 plays the role of the first buffer, effectively alleviating the impact force of the positioning card rushing out. The two An extension rod 8073 extending out of the spring hole is fixed to the side of the connecting spring 8072 away from the spring hole, and a secondary torsion spring 8074 is fixed to the inner side of the two extension rods 8073. A hinge shaft 8075 is fixed to the inner side of each secondary torsion spring 8074. Blocking plates 8076 are fixed to the front and rear sides of the hinge shaft 8075. The two blocking plates 8076 and the two secondary torsion springs 8074 act as a second buffer. Finally, the L-shaped rod 803 is driven to move by the electric push rod 802, so that the positioning card is pushed out smoothly and stably.
[0038] In addition, the identification unit 9 includes a memory fixed to the top of the connecting shell 801. A face recognizer 901 and an ID card recognizer 902 are fixed on the right side of the memory from top to bottom. When the user takes out the positioning card, the face recognizer 901 can synchronously record the face. When the user takes out the card, the identity can be recognized on the ID card recognizer 902. The ID card recognizer 902 is used to recognize the identity card.
[0039] In this embodiment, the positioning card uses the GT02 positioning card, and movable doors are hinged on the front of the connecting shell 801 and the connecting compartment 804. When all the positioning cards need to be taken out, they can be easily taken out by directly opening the two movable doors.
[0040] See also Figures 6 to 8 In this embodiment, the main controller 6 is connected to the data server through a bidirectional network signal of the local area network, the output end of the main controller 6 is electrically connected to the input end of the access control device, the output end of the main controller 6 is electrically connected to the input end of the vehicle gate, the output end of the identification unit 9 is electrically connected to the input end of the main controller 6, the output end of the main controller 6 is electrically connected to the input end of the drive motor, the output end of the main controller 6 is electrically connected to the input end of the servo motor 301, the output end of the main controller 6 is electrically connected to the input end of the electric push rod 802, the output end of the main controller 6 is connected to the input end of the positioning card through a network signal, the output end of the positioning card is connected to the input end of the enterprise identification module through a network signal, the data server includes a pedestrian module and a vehicle module, the pedestrian module includes a person's name, photo and ID number, the vehicle module includes a driver's name and license plate number, the vehicle gate includes a license plate number and a gate rod, and the identification unit 9 includes a face recognizer 901 and an ID card recognizer 902.
[0041] In this embodiment, different types of personnel need to be divided before use. If they are outside visitors, they upload a visit application, internal personnel directly add or batch import information, contractors submit admission applications, and upload them to the data server through the unmanned personnel and vehicle guard management system. When personnel need to enter and exit the enterprise, the face recognition device 901 and ID card recognition device 902 on the recognition unit 9 can effectively record the user's identity information and upload the data to the main controller 6. The unmanned personnel and vehicle guard management and control system on the main controller 6 enters the personnel name, photo, and ID number information and saves it in the database of the data server. The data server verifies the personnel information by comparing it with the personnel information. Access authority, and then the unmanned personnel and vehicle guard control system sends the personnel information to the main controller 6 of the card issuing machine through the communication protocol. The main controller 6 controls the servo motor 301 to adjust the height, and then controls the electric push rod 802 to push the positioning card out, and uploads the entry record to the unmanned personnel and vehicle guard control system. The personnel swipe the positioning device at the entrance of the enterprise, and verify the validity of the positioning card through the enterprise identification module. After passing, they enter the enterprise; when the personnel leave the enterprise, they return the positioning device to the card issuing machine at the entrance gate of the enterprise. After the return is successful, the card issuing machine notifies the linkage access control device to open the door and let them leave the enterprise; realizing a complete closed loop for personnel entering the enterprise.
[0042] The same is true for vehicles. It is necessary to add or import vehicle information in advance and save the data to the data server. Then the unmanned vehicle and personnel guard control system sends the vehicle information to the vehicle gate and outdoor card issuing machine through the communication protocol. When the vehicle enters the enterprise, the vehicle gate recognizes the license plate number, and the main controller 6 controls the face recognition device 901 to recognize the face, and enters the identity card information through the ID card recognition device 902, and uploads it to the unmanned vehicle and personnel guard control system. The system verifies the entry authority, notifies the main controller 6 to control the electric push rod 802 to push the positioning card out, and notifies the vehicle gate to lift the bar to let the vehicle enter the enterprise; when the personnel leave the enterprise, at the vehicle gate exit, the positioning device is returned to the outdoor card issuing machine. After the return is successful, the card issuing machine notifies the linked vehicle gate to recognize the license plate number, lift the bar to let the vehicle leave the enterprise, and realize the complete closed loop of vehicle entry into the enterprise.
[0043] It can be understood that the system is easy to use and can grasp the specific location information of personnel in real time, effectively improving the overall management and control effect, and through the cooperation of the lifting mechanism 3 and the moving component 4, it can effectively improve the traffic efficiency of vehicles and personnel entering.
[0044] The electrical components appearing in the text are all electrically connected to the controller and the power supply. The control method of the present invention is controlled by the controller. The control circuit of the controller can be implemented by simple programming by technicians in this field. The provision of power supply is also common knowledge in this field. The present invention is mainly used to protect mechanical devices, so the present invention will no longer explain the control method and circuit connection in detail.
[0045] The working principle of the above embodiment is:
[0046] (1) When a person wants to enter an enterprise, the smart card issuing machine will first authenticate the user, then issue the card to the user, and then open the access control device to ensure that the user passes smoothly. When encountering a vehicle, the vehicle barrier will first scan the vehicle license plate number, and then the servo motor 301 will prompt the active rod 302 to drive the active gear 304 to rotate, and further prompt the two driven gears 305 to drive the driven rods 303 thereon to rotate until the moving component 4 moves to a position facing the window, and then start the drive motor, which drives the worm 402 to rotate, and further prompts the two worm gears 403 to rotate synchronously. At this time, the two threaded rods 404 rotate, prompting the two transmission parts 405 to extend and retract.
[0047] (2) The power of the threaded rod 404 is transmitted to the primary threaded cylinder 4052 and the transmission cylinder 4054 at the same time. Since the primary threaded cylinder 4052 is directly engaged with the threaded rod 404, and the secondary threaded cylinder 4053 is engaged with the transmission cylinder 4054, the secondary threaded cylinder 4053 can move outward at a faster speed. At the same time, the primary threaded cylinder 4052 also moves outward and pushes the secondary threaded cylinder 4053 and the transmission cylinder 4054 to move outward together, thereby achieving a longer moving distance. When the vehicle is parked relatively far away, it can also ensure that personnel can identify and take and place the positioning card.
[0048] (3) When taking out a card, the electric push rod 802 can directly push out the card. At the same time, through the cooperation of the card issuing assembly 8, the positioning card can be effectively prevented from flying out, effectively improving the stability of taking out the card. When placing the card, the positioning card can be directly inserted into the feed hole.
[0049] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.
[0050] While the embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that many changes, modifications, substitutions and variations can be made to the embodiments without departing from the principles and spirit of the invention.
Claims
1. An outdoor Internet of Things card issuing machine with intelligent receiving and sending positioning functions, comprising a box (1), characterized in that: A base (2) is fixed at the bottom of the box (1); an inner bottom wall of the base (2) is provided with a lifting mechanism (3) that penetrates the top wall of the base (2) and extends into the box (1) and is used to adapt to people of different heights and cars; an outer surface of the lifting mechanism (3) is provided inside the box (1) with a moving component (4) that extends outside the box (1) and can reduce the difficulty of taking a card; and a sending device (4) is provided inside the moving component (4) that penetrates the right side wall of the moving component (4) and extends outside the box (1) and can realize automatic card output. A card assembly (8), a T-shaped block (5) extending into the left wall of the box body (1) and movably connected to the left wall of the box body (1) is fixed on the left side of the movable assembly (4), a main controller (6) is fixed on the top of the movable assembly (4), a connecting hole is opened on the right side wall of the box body (1), and the inner top wall and the inner bottom wall of the connecting hole are both provided with a dustproof assembly (7) for improving dustproofness, and an identification unit (9) for effectively identifying a user is provided on the top of the card issuing assembly (8) and located outside the box body (1).
2. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 1 is characterized in that: The lifting mechanism (3) comprises a servo motor (301) fixed to the inner bottom wall of the base (2); an active rod (302) is fixed to the output shaft of the servo motor (301); the active rod (302) is rotatably connected to the inner top wall of the base (2) via a bearing; the inner bottom wall of the base (2) and located on the left and right sides of the servo motor (301) are rotatably connected to driven rods (303) that penetrate the top wall of the base (2) and the bottom wall of the box body (1) in sequence via bearings; the two driven rods (303) are rotatably connected to the inner top wall of the box body (1) via bearings; a driving gear (304) is fixed to the outer surface of the active rod (302); and driven gears (305) meshing with the driving gear (304) are fixed to the outer surfaces of the two driven rods (303) and located in the base (2).
3. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 2 is characterized in that: The moving assembly (4) comprises a stabilizing shell (401) threadedly connected to the outer surfaces of the two driven rods (303); a driving motor is fixed to the inner front wall of the stabilizing shell (401) and located between the two driven rods (303); a worm (402) is fixed to the output shaft of the driving motor; one end of the worm (402) away from the driving motor is rotatably connected to the inner rear wall of the stabilizing shell (401) through a bearing; two worm wheels (403) are meshed below the worm (402); the two worm wheels (403) are respectively located at the front and rear sides of the driven rods (303); a threaded rod (404) is fixed to the inner side of the two worm wheels (403); a transmission part (405) is provided on the outer surface of each threaded rod (404); the two transmission parts (405) are fixed to the hairpin assembly (8); and the transmission part (405) is fixed to the inner top wall of the stabilizing shell (401).
4. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 3 is characterized in that: The top of the stabilizing shell (401) is fixed to the main controller (6), a T-shaped slot is provided on the left inner wall of the box body (1), the left inner wall of the stabilizing shell (401) is fixed to the T-shaped block (5), and the T-shaped block (5) extends into the left inner wall of the box body (1) through the T-shaped slot.
5. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 3 is characterized in that: Each of the transmission parts (405) comprises a primary threaded cylinder (4052) threadedly connected to the outer surface of the threaded rod (404); a support cylinder (4051) located outside the primary threaded cylinder (4052) and movably connected to the primary threaded cylinder (4052) is fixed to the inner top wall of the stabilizing shell (401); four movable grooves (4058) are provided on the inner side of the primary threaded cylinder (4052); a movable block (4057) is movably connected in each of the movable grooves (4058); a secondary threaded cylinder (4053) is fixed on the opposite side of the four movable blocks (4057); a transmission cylinder (4054) is threadedly connected to the inner side of the secondary threaded cylinder (4053); and the threaded rod (404) is provided with a plurality of movable blocks (4057) and a plurality of movable blocks (4057) are provided on the inner side of the secondary threaded cylinder (4053). ) is provided on the outer surface of the primary threaded cylinder (4052) and is provided with four limiting grooves (4055); four limiting blocks (4056) are fixed on the inner side of the transmission cylinder (4054) and extend into the four limiting grooves (4055) respectively and are movably connected to the four limiting grooves (4055); four stabilizing grooves are provided on the inner side of the support cylinder (4051); four stabilizing blocks (4059) are fixed on the outer surface of the primary threaded cylinder (4052) and extend into the four stabilizing grooves respectively and are movably connected to the four stabilizing grooves; a connecting groove is provided on the left side of the primary threaded cylinder (4052); and a connecting ring is provided on the left side of the transmission cylinder (4054) and extends to the connecting groove and is movably connected to the connecting groove.
6. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 3 is characterized in that: Each of the dustproof components (7) comprises a dustproof shell (702) fixed to the inner wall of the connecting hole, a dustproof rod (701) is fixed between the front and rear walls of the inner cavity of the dustproof shell (702), a primary torsion spring (703) is fixed to the outer surface of the dustproof rod (701), a rotating roller (704) is fixed to the outer side of the primary torsion spring (703), a dustproof cloth (705) passing through the inner wall of the dustproof shell (702) and fixed to the stabilizing shell (401) is wound around the outer surface of the rotating roller (704), and the other side of the dustproof cloth (705) is fixed to the rotating roller (704).
7. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 5, characterized in that: The hairpin assembly (8) comprises two extension blocks respectively fixed to the right side walls of the two secondary threaded barrels (4053), the two extension blocks both extend to the outside of the primary threaded barrel (4052), a connecting shell (801) is fixed to the two extension blocks and is located outside the primary threaded barrel (4052), an electric push rod (802) is fixed to the inner left wall of the connecting shell (801), an L-shaped rod (803) is fixed to the output end of the electric push rod (802), a feed hole and a discharge hole are opened on the right side of the connecting shell (801), an input pipe (805) and an output pipe (806) respectively connected to the feed hole and the discharge hole are fixedly connected to the inner right wall of the connecting shell (801), a connecting bin (804) located on the left side of the input pipe (805) and the output pipe (806) and fixedly connected to the two is fixed to the inner right wall of the connecting shell (801), the L-shaped The rod (803) passes through the right side wall of the connecting chamber (804) and is located at the same horizontal plane as the output pipe (806). The right side of the connecting shell (801) is provided with an anti-flying part (807) located on the right side of the output hole. The anti-flying part (807) includes a connecting block (8071) fixed to the right side of the connecting shell (801). Two spring holes are provided on the right side of the connecting block (8071). A connecting spring (8072) is fixed to the right arm of the two spring holes. An extension rod (8073) extending outside the spring hole is fixed to the side of the two connecting springs (8072) away from the spring hole. A secondary torsion spring (8074) is fixed to the inner side of the two extension rods (8073). A hinge shaft (8075) is fixed to the inner side of each of the secondary torsion springs (8074). Blocking plates (8076) are fixed to the front and rear sides of the hinge shaft (8075).
8. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 7, characterized in that: The identification unit (9) comprises a memory fixed to the top of the connection shell (801), and a face recognition device (901) and an ID card recognition device (902) are fixed to the right side of the memory in order from top to bottom.
9. An outdoor Internet of Things card issuing machine with intelligent receiving and sending positioning functions according to claims 1, 2, 3, and 7, characterized in that: The main controller (6) is connected to the data server via a bidirectional network signal of a local area network, the output end of the main controller (6) is electrically connected to the input end of the access control device, the output end of the main controller (6) is electrically connected to the input end of the vehicle barrier, the output end of the identification unit (9) is electrically connected to the input end of the main controller (6), the output end of the main controller (6) is electrically connected to the input end of the drive motor, the output end of the main controller (6) is electrically connected to the input end of the servo motor (301), the output end of the main controller (6) is electrically connected to the input end of the electric push rod (802), the output end of the main controller (6) is connected to the input end of the positioning card via a network signal, and the output end of the positioning card is connected to the input end of the enterprise identification module via a network signal.
10. The outdoor Internet of Things card issuing machine with intelligent sending and receiving positioning function according to claim 9, characterized in that: The data server comprises a pedestrian module and a vehicle module, the pedestrian module comprises a person's name, photo and ID number, the vehicle module comprises a driver's name and license plate number, the vehicle barrier comprises a license plate number and a barrier pole, and the identification unit (9) comprises a face recognizer (901) and an ID card recognizer (902).
Citation Information
Patent Citations
Unmanned smart security system
CN112509194B