CN-122026173-A - Dynamic and static automatic identification device for human body behaviors
Abstract
The invention provides a dynamic and static automatic identification device for human behavior, which structurally comprises an electrifying structure, a signal processing module, a radiating end, a conductive block and an identification component, wherein the surface layer of the electrifying structure is fixedly connected with the back of the signal processing module, and the upper layer and the lower layer of the signal processing module are integrated with the radiating end; after the power-on structure is further improved, the stability of embedding the penetrating block into the factory equipment can be improved through the matching of the adsorption plate and the traction block, then the connection firmness of the data circuit board and the identification component can be improved according to the rubber block in the insulating frame, so that the connection stability effect of the whole device and the factory equipment can be improved, the identification precision and the origin power-on effect of the device are reduced due to the influence of operation shake of the factory equipment, the falling off and power-off condition caused by continuous stress are prevented, the connection stability of the device and the factory equipment is improved, and the identification precision of the identification component to the human body shape is indirectly improved.
Inventors
- FU HAIYAN
- YU QIAN
Assignees
- 海南师范大学
Dates
- Publication Date
- 20260512
- Application Date
- 20240228
Claims (7)
- 1. The dynamic and static automatic human behavior recognition device structurally comprises an electrifying structure (1), a signal processing module (2), a heat dissipation end (3), a conducting block (4) and a recognition component (5), and is characterized in that the surface layer of the electrifying structure (1) is fixedly connected with the back of the signal processing module (2), the upper layer and the lower layer of the signal processing module (2) are integrated with the heat dissipation end (3), the conducting block (4) is embedded in the surface layer area of the signal processing module (2), and the recognition component (5) is electrically connected with the signal processing module (2) through the conducting block (4).
- 2. The dynamic and static automatic human behavior recognition device according to claim 1, wherein the electrifying structure (1) is provided with an inserting block (11), a holding block (12), an adsorption plate (13), an insulating frame (14), an assembling groove (15), a rubber block (16) and a data circuit board (17), the upper region and the lower region of the inserting block (11) are communicated with the holding block (12) and are both fixed on the surface layer part of the adsorption plate (13), the insulating frame (14) is overlapped with the adsorption plate (13), the assembling groove (15) and the inside of the insulating frame (14) are of an integrated structure, the rubber block (16) is arranged on the side edge of the inner wall of the insulating frame (14) through the assembling groove (15), the data circuit board (17) is positioned in the center of the inner surface layer of the insulating frame (14) and is electrically connected with the inserting block (11), the holding block (12) is electrically connected with the data circuit board (17) in the inside the insulating frame (14), and the holding block (12) is arranged on the upper region and the lower region of the back of the signal processing module (2) and is not communicated with each other.
- 3. The dynamic and static automatic human behavior recognition device according to claim 2, wherein the restraining block (12) is provided with a positioning module (121), a protruding block (122), a bearing block body (123), a vertical rail (124) and an anti-falling block (125), the positioning module (121) is welded on the surface layer of the protruding block (122), the protruding block (122) is fixedly connected with the center of the surface layer of the bearing block body (123), the vertical rail (124) is arranged in the bearing block body (123) and integrated with the bearing block body, the anti-falling block (125) is embedded into the bearing block body (123) through the vertical rail (124), and the anti-falling block (125) is electrically connected with the data circuit board (17).
- 4. The dynamic and static automatic human behavior recognition device according to claim 3, wherein the anti-falling block (125) is provided with an upper sliding block (a 1), a lower sliding block (a 2), a polishing layer (a 3), a transverse channel (a 4) and a front sliding block (a 5), the upper sliding block (a 1) and the lower sliding block (a 5) are positioned at the middle and lower parts of the polishing layer (a 2), the polishing layer (a 2) and the solid block (a 3) are of an integrated structure, the transverse channel (a 4) penetrates through the middle and upper part of the solid block (a 3), the front sliding block (a 5) and the rear sliding block (a 5) are installed at the middle and upper part of the solid block (a 3) through the transverse channel (a 4) and are in interval fit with the upper sliding block and the lower sliding block (a 1), and the upper sliding block (a 1) is embedded into the vertical rail (124) through the solid block (a 3).
- 5. The dynamic and static automatic human behavior recognition device according to claim 4, wherein the upper sliding block (a 1) and the lower sliding block (a 1) are provided with an electric connection block (a 11), an electric block body (a 12), a covering sleeve (a 13) and a balance block (a 14), the electric connection block (a 11) is perpendicular to the electric block body (a 12), the surface of the electric block body (a 12) is overlapped with the covering sleeve (a 13), the electric connection block body (a 12) penetrates through the left side and the right side of the covering sleeve (a 13) and is connected with the left side and the right side of the electric block body (a 12), and the electric connection block body (a 12) is embedded into the solid block body (a 3) through the electric connection block body (a 11) to complete electric connection with a data circuit board (17).
- 6. The device of claim 1, wherein the identification component (5) is provided with a first infrared identification part (51), a second infrared identification part (52), a touch panel (53), a data receiving circuit board (54), a data processing circuit board and an output circuit board (55), the first infrared identification part (51) and the second infrared identification part (52) are positioned on the same plane and are arranged at the middle, upper and lower parts of the touch panel (53), the data receiving circuit board (54) is embedded in the touch panel (53) and is electrically connected, and the data processing circuit board and the output circuit board (55) are overlapped with the data receiving circuit board (54) and are all connected in the signal processing module (2) and are electrically connected.
- 7. The dynamic and static automatic human behavior recognition device according to claim 6, wherein a thread groove (531), a parallel plate (532), a contact layer (533) and a support post (534) are additionally arranged in the upper region and the lower region inside the touch panel (53), the thread groove (531) is arranged in the center of the surface layer of the parallel plate (532), the edge of the parallel plate (532) and the contact layer (533) are of an integrated structure, the support post (534) is arranged at two side parts of the edge of the parallel plate (532) through the contact layer (533), the parallel plate (532) and the support post (534) are both positioned inside the touch panel (53), and the parallel plate (532) is electrically connected with the first infrared recognition part (51) and the second infrared recognition part (52) through the thread groove (531).
Description
Dynamic and static automatic identification device for human body behaviors Technical Field The invention relates to the technical field of human body morphology recognition, in particular to a dynamic and static automatic recognition device for human body behaviors. Background The automatic human body behavior dynamic and static recognition device mostly adopts an infrared trigger structure for use, so that when the human body behavior changes, the automatic recognition device can accurately recognize the motion of the human body according to infrared induction, and the motion effect of the human body can be rapidly distinguished; Therefore, the automatic identification device is usually arranged in intelligent appliances such as factory equipment, unmanned vending supermarkets, household products and the like, so that the intelligent use effect of the appliances can be improved according to the infrared identification calculation effect of the device, each appliance can accord with the intelligent characteristics, and the safety and convenience effects of life and production are improved; In summary, the present inventors found that: The human body behavior dynamic and static automatic identification device with the application number of CN201720974206.3 is applied to solve the problems of acquisition and processing of trigger signals in the current intelligent control industry, and the trigger signals can replace control functions which can be realized by manual operation actions in the current intelligent control. The touch trigger device is touched through the natural behavior action of a human body, a switch, a remote controller, a control panel or a client APP are not required to be operated for controlling illumination and household appliances, and other products can be controlled without intentional human actions; However, the automatic identification device has the following defects that when the current automatic identification device is installed in factory equipment for use, larger shaking conditions are generated when the factory equipment works, so that the infrared identification accuracy of human body forms can be reduced after the automatic identification device is affected by shaking, the automatic identification device is continuously affected by shaking force generated by the equipment to easily gradually loosen the automatic identification device and the area connected with the equipment, and the situation that the automatic identification device falls off, separates and is powered off can be generated when the automatic identification device is serious, so that the automatic identification device is difficult to stably use in the factory equipment. Disclosure of Invention The technical scheme includes that the dynamic and static automatic human behavior recognition device structurally comprises an electrifying structure, a signal processing module, a radiating end, a conductive block and a recognition component, wherein the surface layer of the electrifying structure is fixedly connected with the back of the signal processing module, the upper layer and the lower layer of the signal processing module are of an integrated structure with the radiating end, the conductive block is embedded in the surface layer area of the signal processing module, and the recognition component is electrically connected with the signal processing module through the conductive block. The invention further improves, the electrifying structure is provided with a penetration block, a holding block, an adsorption plate, an insulating frame, an assembling groove, a rubber block and a data circuit board, wherein the upper region and the lower region of the penetration block are communicated with the holding block and are both fixed on the surface layer of the adsorption plate, the insulating frame is overlapped with the adsorption plate, the assembling groove and the inside of the insulating frame are integrated, the rubber block is arranged on the side edge of the inner wall of the insulating frame through the assembling groove, the data circuit board is positioned in the center of the inner surface layer of the insulating frame and is electrically connected with the penetration block, the holding block is electrically connected with the data circuit board in the insulating frame, the holding block is arranged on the upper region and the lower region of the back of the signal processing module and is not communicated with the data circuit board, the penetration block and the holding block are spaced, the holding block is respectively provided with one block and are arranged in symmetrical directions, the adsorption plate is made of magnetic metal material, the insulating frame is a plastic product, the inner wall of the assembling groove in the inside is in a polished form, the rubber block is in a rectangular shape, and the data circuit board is mutually perpendicular to the penetration block through the insul