Intelligent networked anti-theft door and processing equipment thereof
By using randomly positioned camera components for face recognition and no keyhole design in the intelligent networked anti-theft door, the restart problem caused by high-frequency electromagnetic interference is solved, effective entrant recording and signal transmission is achieved, and the security performance of the anti-theft door is improved.
Patent Information
- Application Number
- CN202411180511.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2044-08-27
Smart Images

Figure CN118997642B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of anti-theft door production, in particular to an intelligent networked anti-theft door and processing equipment thereof. Background Art
[0002] Smart networked security door is connected to the Internet, which can send out an alarm in real time when the security door is opened unconventionally or record the people entering and transmit it to the mobile phone in real time;
[0003] Existing smart networked anti-theft doors are all protected by networked smart locks. The identification, alarm and recording modules are all integrated into the smart lock. When someone uses high-frequency electromagnetic interference, the smart lock will restart and then automatically unlock. At the same time, due to the interference of high-frequency electromagnetic, the recording device cannot effectively record the entrants, and cannot transmit signals to the outside world, which makes it impossible to effectively prevent theft. Summary of the Invention
[0004] In view of the deficiencies in the prior art, the present invention provides an intelligent networked anti-theft door and processing equipment thereof.
[0005] In order to solve the above technical problems, the present invention is solved through the following technical solutions: an intelligent networked anti-theft door, including a door body, an anti-interference lock body is arranged on the door body, and a plurality of decorative blocks are arranged on the door body, and the decorative blocks are made of one-way light-transmitting material. An identification device is also provided in the door body, and the identification device includes a camera component. The camera component can randomly stay at the position of the decorative block and perform facial recognition on people outside the door through the decorative block. The identification device is connected to the anti-interference lock body to control the anti-interference lock body to open or close. The camera component collects facial image data and compares it with the stored information. If the comparison is correct, the anti-interference lock body is controlled to open. If the comparison is wrong, the camera component transmits the information to the cloud and stores it. If a person wanders outside the door for many times, the cloud controller will make a remote call.
[0006] Its beneficial effect is that the position of the identification device can automatically change each time the door is opened, so that the person attempting to enter cannot know the location of the identification device in advance, thereby preventing the person attempting to enter from electromagnetically interfering with the identification device through high-frequency electromagnetic interference, and then recording every entrant and attempter to enter, thereby improving the safety performance of the anti-theft door.
[0007] In the above scheme, preferably, a circular track is provided in the door body, the identification device includes a guide body, the camera assembly is provided on the guide body, the guide body is provided with a first guide wheel and a second guide wheel for guiding the circular track, and the first guide wheel is connected to a drive motor to drive the guide body to move on the circular track.
[0008] In the above scheme, preferably, the decorative blocks are evenly arranged, and the outer ring decorative blocks are evenly distributed on the inner side of the annular track. A positioning device is provided on the annular track corresponding to the decorative blocks. The positioning device includes a telescopic block, a first electromagnet and a first elastic member. A first guide hole is provided on the annular track, and the telescopic block guide sliding is set in the first guide hole. The electromagnet is provided on the inner wall of the door body and is located below the telescopic block. The two ends of the first elastic member respectively touch the first electromagnet and the telescopic block. When the first electromagnet is activated, the telescopic block can be adsorbed downward. A locking hole is provided on the guide body, and the telescopic block can slide into the locking hole, so that the guide body is locked on the annular track, and at this time, the camera assembly on the guide body is located above the decorative block.
[0009] In the above scheme, preferably, a first inclined surface is provided on the side of the guide body, and a second inclined surface is provided on the telescopic block. During the movement of the guide body on the annular guide rail, the first inclined surface contacts the second inclined surface provided on the telescopic block, thereby causing the telescopic block to slide downward elastically, and the guide body continues to move, and the telescopic block then reaches the locking hole.
[0010] In the above scheme, preferably, a second guide hole is provided on the guide body, the camera assembly includes a sliding body and a camera, the sliding body limit guide sliding is set on the second guide hole, the camera is set below the sliding body, a pit is provided on the decorative block, the sliding body slides downward, and the camera at the lower end can enter the pit, and then the camera can capture the scene outside the door body, and a second electromagnet is provided on the guide body. When the second electromagnet is energized, the sliding body can be adsorbed upward, and the camera leaves the pit.
[0011] In the above scheme, preferably, the camera assembly also includes an elastic pull rope with both ends respectively connected to the upper end of the sliding body and the guide body, so that when the second electromagnet is not energized, the limit block on the upper end of the sliding body presses against the guide body.
[0012] In the above scheme, preferably, a female groove is provided on the limit block, and a male plug is provided on the guide body. When the limit block at the upper end of the sliding body presses on the guide body, the female groove is sleeved on the male plug. A controller is provided on the guide body, and the controller is connected to the anti-interference lock body through a transmission line. After the male plug is combined with the female groove, the data transmission between the camera and the controller is connected.
[0013] The equipment used for processing intelligent networked anti-theft doors is characterized by: including a workbench, on which a positioning clamp is provided, the positioning clamp has a hydraulic device to control the forward and backward extension, and a hollow groove is also provided on the bottom surface of the workbench. When the door body is locked on the workbench by the positioning clamp, the position for installing the decorative block is located on the hollow groove.
[0014] The beneficial effects of the present invention are: the present invention provides an intelligent networked anti-theft door and its processing equipment, which can automatically change the camera position each time the door is opened, so that the person trying to enter cannot predict the camera position, thereby avoiding electromagnetic interference of the camera by the person trying to enter through high-frequency electromagnetic, and then can record each entrant and person trying to enter, thereby improving the safety performance of the anti-theft door. At the same time, it adopts a design without keyholes and handles, so that the person trying to enter cannot know how to unlock the door in the first time, further improving the safety performance of the anti-theft door. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 Schematic diagram of the present invention.
[0016] Figure 2 It is an internal schematic diagram of the present invention.
[0017] Figure 3 It is a cross-sectional view of the present invention.
[0018] Figure 4 This is a partially enlarged view of the identification device of the present invention.
[0019] Figure 5 This is a partial enlarged view of the annular track and positioning device of the present invention.
[0020] Figure 6 This is a partial enlarged view of the camera assembly of the present invention.
[0021] Figure 7 This is a partial enlarged view of the combination of the telescopic block and the guide body of the present invention.
[0022] Figure 8 Schematic diagram of the workbench of the present invention. DETAILED DESCRIPTION
[0023] The present invention is further described in detail below with reference to the accompanying drawings and specific embodiments: Figures 1-8 , an intelligent networked anti-theft door, including a door body 1, an anti-interference lock body 2, a decorative block 3 and an identification device 4. The door body 1 is evenly provided with a plurality of decorative blocks 3. The decorative blocks 3 are thin-walled bodies in the shape of cylindrical spherical heads, with pits 31 opened on the inner side, and the decorative blocks 3 have the characteristic of one-way light transmission, such as attaching a one-way light transmission coating on a transparent material, so that the inside can see the outside objects, but the outside cannot see the inside objects. The anti-interference lock body 2 is set on the door body 1. The anti-interference lock body 2 is not provided with a conventional keyhole. The identification device 4 is used to control the extension or retraction of the lock tongue, thereby preventing others from unlocking through the keyhole.
[0024] The equipment used to process the intelligent networked anti-theft door includes a workbench 5, on which a positioning clamp 51 is provided. The positioning clamp 51 has a hydraulic device to control the forward and backward extension. At the same time, a hollow groove 52 is provided on the bottom surface of the workbench 5. When the door body 1 is locked on the workbench 5 by the positioning clamp 51, the position for installing the decorative block 3 is located on the hollow groove 52, thereby avoiding scratching the decorative block 3 when assembling or welding internal parts.
[0025] A circular track 11 and a positioning device 12 are provided in the door body 1, and a plurality of first guide holes 111 are opened on the circular track 11. The decorative blocks 3 are arranged in a uniform array, and the decorative blocks 3 of the outer ring are located on the inner side of the circular track 11. The number of the first guide holes 111 is consistent with the decorative blocks 3 of the outer ring, and the distance between each first guide hole 111 and the corresponding decorative block 3 is the same. A positioning device 12 is provided in each first guide hole 111. The positioning device 12 includes a telescopic block 121, a first electromagnet 122 and a first elastic member 123. The telescopic block 121 is limited and guided to slide in the first guide hole 111. The first electromagnet 122 is provided on the inner surface of the door body 1 and is located below the telescopic block 121. An accommodating cavity is opened on the bottom surface of the telescopic block 121. One end of the first elastic member 123 touches the bottom surface of the accommodating cavity, and the other end touches the first electromagnet 122.
[0026] In the initial state, the telescopic block 121 extends out of the upper end surface of the annular track 11 under the action of the first elastic member 123. When the first electromagnet 122 is energized, the first electromagnet 122 can absorb the telescopic block 121 downward, so that the upper end surface of the telescopic block 121 is lower than the upper end surface of the annular track 11. At this time, the first elastic member 123 is located in the accommodating cavity and is in a compressed state.
[0027] The identification device 4 includes a camera assembly 41, a guide body 42 and a controller 43. The guide body 42 includes a first guide wheel 421 and a second guide wheel 422. The first guide wheel 421 and the second guide wheel 422 are provided with annular grooves. Annular protrusions are provided on the side of the annular track 11. The annular grooves of the first guide wheel 421 and the second guide wheel 422 touch the annular protrusions, thereby guiding the guide body 42 to slide on the annular track 11. At the same time, a driving motor 423 is connected to the first guide wheel 421. The driving motor 423 rotates to drive the guide body 42 to move on the annular track 11. The controller 43 is provided on the guide body 42. The controller 43 is connected to the anti-interference lock body 2 through a transmission line, thereby controlling the lock tongue of the anti-interference lock body 2 to extend or retract.
[0028] The camera assembly 41 includes a sliding body 411 and a camera 412. The guide body 42 is provided with a second guide hole 428. The sliding body 411 includes a polygonal guide shaft, which is guided and slidably arranged in the second guide hole 428 by the polygonal guide shaft. A limit block is provided at the upper end of the polygonal guide shaft, thereby guiding the sliding body 411 to slide and be limited in the second guide hole 428, and the camera 412 It is arranged at the lower end of the sliding body 411, and a second electromagnet 424 is provided on the guide body 42, and is located around the second guide hole 428. When the second electromagnet 424 is energized, the sliding body 411 can be adsorbed on the second electromagnet 424, and a female groove 4111 is provided on the limit block, and a male plug 425 is provided on the guide body 42. The guide body 42 and the limit block of the sliding body 411 are connected by an elastic pull rope 413, and the female groove 4111 is sleeved on the male plug 425, so that data transmission is realized between the controller 43 and the camera 412. The controller 43 can control the camera 412 to turn on, off or standby, and the camera 412 can transmit the camera content to the controller 43 in real time.
[0029] The guide body 42 is provided with a first inclined surface 429 on the side surface, and a locking hole 426 is provided behind the first inclined surface 429, and the telescopic block 121 is provided with a second inclined surface 1211. The driving motor 423 can only rotate in the forward direction, so that the guide body 42 rotates counterclockwise on the annular track 11. When the guide body 42 moves on the annular track 11, the first inclined surface 429 contacts the second inclined surface 1211 of the telescopic block 121, causing the telescopic block 121 to slide downward and compress the first elastic member 123. At this time, the guide body 42 continues to move, so that the telescopic block 121 is aligned with the locking hole 426, and is inserted into the locking hole 426 under the action of the first elastic member 123. A pressure touch switch 427 is provided in the locking hole 426, which controls the driving motor 423 to stop rotating.
[0030] In the initial state, the first electromagnet 122 and the second electromagnet 424 are both in the power-off state, and the telescopic block 121 is inserted into the locking hole 426. At this time, the image component 41 is aligned with the decorative block 3 corresponding to the telescopic block 121 inserted into the locking hole 426. Since the second electromagnet 424 is in the power-off state, under the action of the elastic pull rope 413, the limit block at the upper end of the sliding body 411 is pressed on the guide body 42. At this time, the female groove 4111 is sleeved on the male plug 425, so that the data transmission line of the camera 412 and the controller 43 is connected. At the same time, the camera 412 is located at the lower end of the sliding body 411. When the limit block at the upper end of the sliding body 411 is pressed on the guide body 42, the lower end of the sliding body 411 extends into the pit 31 of the decorative block 3, and then the camera 412 can capture the scene outside the door body 1, and when someone approaches, the controller 43 controls the camera 412 to perform facial recognition on the approaching person.
[0031] The decorative block 3 located in the middle of the door body 1 is press-set on the door body 1, and a press switch is connected to the rear end of the decorative block 3. After the camera 412 performs facial recognition on the person approaching, it is compared with the internally stored information. After the facial recognition is passed, the door opener presses the middle decorative block 3, so that the controller 43 controls the lock tongue of the anti-interference lock body 2 to retract, and then open the door. When the facial recognition fails, the decorative block 3 cannot be pressed, further improving the anti-theft level. At the same time, the information that the facial recognition fails is transmitted to the cloud controller through the network. When the person approaching tries to unlock the door many times but fails, the cloud control calls the doorman or the owner to inform them of the dangerous situation outside the door, and the owner or the doorman decides whether to call the police.
[0032] After the door is opened, the controller 43 controls the first electromagnet 122 and the second electromagnet 424 to be energized, thereby retracting the telescopic block 121 into the first guide hole 111, the sliding body 411 is adsorbed on the second electromagnet 424, and the camera 412 leaves the pit 31 of the decorative block 3. At the same time, the controller 43 controls the driving motor 423 to rotate, and the lock tongue of the anti-interference lock body 2 is a bevel lock tongue. When the anti-theft door is closed, the lock tongue presses on the lock groove and elastically retracts, and then pops out after passing, and then automatically inserts the lock tongue into the lock groove again in the process of rotating the door. The lock tongue is pressed into the anti-interference lock body 2 when the door is closed, so that the controller 43 receives a signal, thereby controlling the first The electromagnet 122 is powered off, all the telescopic blocks 121 are elastically extended, and the guide body 42 continues to move, pressing on the closest telescopic block 121, thereby inserting the telescopic block 121 into the locking hole 426 and pressing on the pressure switch 427. The controller 43 controls the second electromagnet 424 and the drive motor 423 to power off, and the guide body 42 stops rotating. The camera 412 extends into the pit 31 of the decorative block 3 at the new position, and this position is randomly generated and not controlled by the controller 43. Outsiders cannot know the position of the camera 412, and thus cannot perform high-frequency electromagnetic interference on the camera 412, so that the camera 412 can record the person who opens the door and the person who tries to open the door.
[0033] Its working principle or usage is as follows:
[0034] In the initial state, the first electromagnet 122 and the second electromagnet 424 are both in the power-off state, and the telescopic block 121 is inserted into the locking hole 426. At this time, the image component 41 is aligned with the decorative block 3 corresponding to the telescopic block 121 inserted into the locking hole 426. Since the second electromagnet 424 is in the power-off state, under the action of the elastic pull rope 413, the limit block at the upper end of the sliding body 411 is pressed on the guide body 42. At this time, the female groove 4111 is sleeved on the male plug 425, so that the camera 412 is connected to the data transmission line of the controller 43. At this time, the lower end of the sliding body 411 extends into the pit 31 of the decorative block 3, and then the camera 412 can capture the scene outside the door body 1.
[0035] When someone approaches the anti-theft door, the controller 43 controls the camera 412 to perform facial recognition on the person approaching. After the facial recognition is passed, the person opening the door presses the middle decorative block 3, causing the controller 43 to control the lock tongue of the anti-interference lock body 2 to retract, thereby opening the door. If the facial recognition fails, the decorative block 3 cannot be pressed, and therefore the door cannot be opened.
[0036] After the door is opened, the controller 43 controls the first electromagnet 122 and the second electromagnet 424 to be energized, thereby retracting the telescopic block 121 into the first guide hole 111, the sliding body 411 is adsorbed on the second electromagnet 424, and the camera 412 leaves the pit 31 of the decorative block 3. At the same time, the controller 43 controls the driving motor 423 to rotate, and the lock tongue of the anti-interference lock body 2 is a bevel lock tongue. When the anti-theft door is closed, the lock tongue presses on the lock groove and elastically retracts, and then pops out after passing, and then automatically inserts the lock tongue into the lock groove again in the process of rotating the door. The lock tongue is pressed into the anti-interference lock body 2 when the door is closed, so that the controller 43 receives a signal, thereby controlling the first The electromagnet 122 is powered off, all the telescopic blocks 121 are elastically extended, and the guide body 42 continues to move, pressing on the closest telescopic block 121, thereby inserting the telescopic block 121 into the locking hole 426 and pressing on the pressure switch 427. The controller 43 controls the second electromagnet 424 and the drive motor 423 to power off, and the guide body 42 stops rotating. The camera 412 extends into the pit 31 of the decorative block 3 at the new position, and this position is randomly generated and not controlled by the controller 43. Outsiders cannot know the position of the camera 412, and thus cannot perform high-frequency electromagnetic interference on the camera 412, so that the camera 412 can record the person who opens the door and the person who tries to open the door.
[0037] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. An intelligent networked anti-theft door, characterized by: The invention comprises a door body (1), an anti-interference lock body (2) is provided on the door body (1), and a plurality of decorative blocks (3) are provided on the door body (1), and the decorative blocks (3) are made of a one-way light-transmitting material; The door body (1) is further provided with an identification device (4), the identification device (4) including a camera assembly (41), the camera assembly (41) being capable of randomly staying at the position of the decorative block (3) and performing facial recognition of a person outside the door body (1) through the decorative block (3); The identification device (4) is connected to the anti-interference lock body (2) to control the anti-interference lock body (2) to be opened or closed; The camera component (41) collects facial image data and compares it with the stored information. If the comparison is correct, the anti-interference lock body (2) is controlled to open. If the comparison is wrong, the camera component (41) transmits the information to the cloud for storage; If a person wanders outside the door (1) for many times, the cloud controller will make a remote call; A circular track (11) is provided in the door body (1), the identification device (4) includes a guide body (42), the camera assembly (41) is provided on the guide body (42), the guide body (42) is provided with a first guide wheel (421) and a second guide wheel (422) for guiding the circular track (11), and the first guide wheel (421) is connected to a drive motor (423) to drive the guide body (42) to move on the circular track (11); The decorative blocks (3) are evenly arranged, and the outer ring decorative blocks (3) are evenly distributed on the inner side of the annular track (11). A positioning device (12) is provided on the annular track (11) corresponding to the decorative blocks (3). The positioning device (12) includes a telescopic block (121), a first electromagnet (122) and a first elastic member (123). A first guide hole (111) is provided on the annular track (11). The telescopic block (121) is guided and slidably arranged in the first guide hole (111). The electromagnet (122) is arranged in the door body (1). The first elastic member (123) is located on the wall and below the telescopic block (121). The two ends of the first elastic member (123) respectively contact the first electromagnet (122) and the telescopic block (121). When the first electromagnet (122) is activated, the telescopic block (121) can be sucked downward. A locking hole (426) is provided on the guide body (42). The telescopic block (121) can slide into the locking hole (426), and then the guide body (42) is locked on the annular track (11). At this time, the camera assembly (41) on the guide body (42) is located above the decorative block (3).
2. The intelligent networked anti-theft door according to claim 1, characterized in that: The guide body (42) is provided with a first inclined surface (429) on the side surface, and the telescopic block (121) is provided with a second inclined surface (1211). When the guide body (42) moves on the annular track (11), the first inclined surface (429) contacts the second inclined surface (1211) provided on the telescopic block (121), thereby causing the telescopic block (121) to slide downward elastically. The guide body (42) continues to move, and the telescopic block (121) enters the locking hole (426).
3. The intelligent networked anti-theft door according to claim 1, characterized in that: The guide body (42) is provided with a second guide hole (428). The camera assembly (41) includes a sliding body (411) and a camera (412). The sliding body (411) is provided with a limit guide sliding arrangement on the second guide hole (428). The camera (412) is provided below the sliding body (411). A recess (31) is provided on the decorative block (3). When the sliding body (411) slides downward, the camera (412) at the lower end can enter the recess (31), and the camera (412) can then capture the scene outside the door body (1). A second electromagnet (424) is provided on the guide body (42). When the second electromagnet (424) is energized, it can adsorb the sliding body (411) upward, and the camera (412) leaves the recess (31).
4. The intelligent networked anti-theft door according to claim 3, characterized in that: The camera assembly (41) further includes an elastic pull rope (413) whose two ends are respectively connected to the upper end of the sliding body (411) and the guide body (42), so that when the second electromagnet (424) is not energized, the limit block at the upper end of the sliding body (411) presses against the guide body (42).
5. The intelligent networked anti-theft door according to claim 4, characterized in that: A female groove (4111) is provided on the limit block, and a male plug (425) is provided on the guide body (42). When the limit block at the upper end of the sliding body (411) presses against the guide body (42), the female groove (4111) is sleeved on the male plug (425). A controller (43) is provided on the guide body (42). The controller (43) is connected to the anti-interference lock body (2) via a transmission line. After the male plug (425) is combined with the female groove (4111), data transmission between the camera (412) and the controller (43) is connected.
Citation Information
Patent Citations
Intelligent anti-theft door
CN110273631A
Intelligent antitheft door
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