Old people abnormal behavior protection equipment based on machine vision

By using machine vision monitoring equipment to monitor abnormal behavior of the elderly in real time and trigger protective measures, the problem of the lack of timely protection in existing technologies is solved, and the safety and survival rate of the elderly are improved.

CN120678419AInactive Publication Date: 2025-09-23ANHUI SANLIAN UNIV +2
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510800588.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-09-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing technologies are unable to effectively monitor abnormal behavior among the elderly, resulting in a lack of timely protection, which may cause casualties, and manual monitoring may lead to the problem of missing data.

Method used

Machine vision-based protection equipment for the elderly against abnormal behavior is used, including protective clothing, safety helmets, joint covers, etc. The elderly's movement data is monitored through sensors, and medicine boxes and expansion sleeves are triggered for protection when abnormal behavior occurs.

Benefits of technology

It achieves accurate monitoring and timely protection of the elderly's behavior, reduces the risk of injury, improves survival rate, and adapts to the monitoring needs of different elderly people.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120678419A_ABST
    Figure CN120678419A_ABST
Patent Text Reader

Abstract

The invention relates to the field of old people behavior monitoring, and discloses machine vision old people abnormal behavior protection equipment which comprises a protection garment for joint protection, a safety helmet, a fourth joint sleeve, a shoulder pad, a fifth joint sleeve, a third joint sleeve, a ring sleeve, a first joint sleeve and a second joint sleeve. The safety helmet, the fourth joint sleeve, the fifth joint sleeve, the third joint sleeve, the ring sleeve, the first joint sleeve, the second joint sleeve, the first monitoring mechanism and the safety mechanism are in signal communication through the Bluetooth module, and the third joint sleeve, the ring sleeve, the fourth joint sleeve, the first joint sleeve, the second joint sleeve and the safety helmet are each provided with a camera. Motion data are measured through a plurality of sensors, then accurate data of behaviors of the elderly are obtained, when the elderly suffers from diseases, the outer expansion sleeve can be instantly triggered, important joint parts are protected, damage to the elderly is reduced, and the overall survival rate is increased.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of elderly behavior monitoring, and in particular to equipment for protecting elderly people from abnormal behavior based on machine vision. Background Art

[0002] According to international regulations, people over the age of 60 are defined as elderly. The elderly are accompanied by the deterioration of their physical functions and the increase in the incidence of diseases, especially high-risk diseases such as Parkinson's disease and stroke, which often cause casualties to the elderly when they are unprepared, thereby causing unnecessary trouble.

[0003] And on the eve of the occurrence of these diseases, there are generally certain signs and abnormal behaviors. That is, through early monitoring, it is possible to predict the occurrence of diseases in advance, protect the elderly, and improve the survival rate of the elderly.

[0004] However, the existing methods generally use manual monitoring or accompanied monitoring by medical staff, which may lead to the omission of a lot of data. At the same time, it is not good enough to provide timely protection for the elderly when the disease occurs, and still has certain shortcomings. Summary of the Invention

[0005] In order to solve the technical problem of not being able to monitor the activities and behaviors of the elderly well, the present invention provides an abnormal behavior protection device for the elderly based on machine vision.

[0006] The present invention is implemented by the following technical solutions: a machine vision-based protection device for abnormal behavior of the elderly, comprising protective clothing for joint protection, a safety helmet, a joint cover four, a shoulder pad, a joint cover five, a joint cover three, a finger ring cover, a joint cover one and a joint cover two, the protective clothing is equipped with a monitoring mechanism one and a safety mechanism, the safety helmet, the joint cover four, the joint cover five, the joint cover three, the finger ring cover, the joint cover one, the joint cover two, the monitoring mechanism one and the safety mechanism are connected by a Bluetooth module for signal communication, the joint cover three, the finger ring cover, the joint cover four, the joint cover one, the joint cover two and the safety helmet are all provided with cameras, wherein the joint cover three, Joint sleeve five, shoulder pad, joint sleeve one and joint sleeve two all include multiple functional boxes, an elastic sleeve is connected between the two functional boxes, a medicine box one is fixedly connected inside the functional box, one side of the medicine box one is connected to a reaction box one located inside the functional box, one side of the reaction box one is connected to an external expansion sleeve, one side of the external expansion sleeve is connected to an internal expansion sleeve located inside the functional box, Bluetooth, processor three, sensor group one and battery one are fixedly connected to medicine box one, one side of one of the functional boxes is threadedly sleeved with a connecting column, one side of the connecting column is connected to an extension sleeve, a sensing mechanism is provided in the extension sleeve, and one side of the connecting column is fixedly connected to a wire sleeve.

[0007] As a further improvement of the above solution, the sensing mechanism includes a processor group fixedly connected to the connecting column, a plurality of cameras three electrically connected to the processor group are connected to the connecting column, and a battery two is fixedly connected inside the connecting column.

[0008] As a further improvement of the above scheme, one side of the medicine box 1 is fixedly connected to a catheter 1, the other end of the catheter 1 is connected to a control tube, one side of the control tube is connected to a catheter 2 connected to the reaction box 1, and a guide box fixedly connected to the function box is provided on the outside of the outer expansion sleeve, and one side of the outer expansion sleeve is connected to a connecting tube connected to the inner expansion sleeve.

[0009] As a further improvement of the above solution, the safety helmet includes a head cover worn on the head, a clamping block is clamped on one side of the head cover, a processor is set in the clamping block, and a camera is fixedly connected to one side of the clamping block.

[0010] As a further improvement of the above solution, the ring sleeve includes an embedded sleeve worn on the thumb, one side of the embedded sleeve is fixedly connected to a connecting block, a processor 2 is provided in the connecting block, and a plurality of cameras 2 are connected to the connecting block.

[0011] As a further improvement of the above scheme, the protective clothing includes symmetrically arranged undergarments, with Velcro connected between the two undergarments, monitoring mechanism 1 and safety mechanism connected to the undergarments, electrodes connected to the tops of the undergarments, reaction box 2 connected inside the undergarments, one side of reaction box 2 connected to connecting pipe 1 connected to monitoring mechanism 1, and one side of the undergarment connected to connecting pipe 2 connected to the safety mechanism.

[0012] As a further improvement of the above scheme, the monitoring mechanism 1 includes a protective cover connected to the underwear, and a medicine box 2 connected to the connecting pipe 1 is fixedly connected inside the protective cover, and an electromagnetic valve is connected to the connecting pipe 1. One side of the medicine box 2 is connected in sequence to a processor 4, a battery 3 and a sensor group 3.

[0013] As a further improvement of the above scheme, the safety mechanism includes an auxiliary sleeve adhered to the undergarment, a central sleeve fixedly connected to the auxiliary sleeve, a sleeve pipe connected to the second connecting pipe on one side of the central sleeve, a symmetrically arranged main pipe on one side of the central sleeve, the main pipe is connected to a fixed cylinder fixedly connected to the auxiliary sleeve, a rotating frame rotatably sleeved in the fixed cylinder, a limiting cone is inserted on the fixed cylinder, one end of the rotating frame is fixedly connected to a rotating cylinder, a rotating column is slidably sleeved in the rotating cylinder, the other end of the rotating column is fixedly connected to a support head, and the main pipe is connected to a diversion pipe connected to the rotating cylinder.

[0014] As a further improvement of the above solution, a wire is sleeved inside the wire sleeve, and the wire is connected in series to joint sleeve three, ring sleeve, joint sleeve four, joint sleeve five, monitoring mechanism one, joint sleeve one and joint sleeve two.

[0015] As a further improvement of the above scheme, the wire includes multiple sections of main conduits, a three-section conduit is connected between two main conduits, and one side of the three-section conduit is connected to a branch conduit connected to joint sleeve three, ring sleeve, joint sleeve four, joint sleeve five, monitoring mechanism one, joint sleeve one and joint sleeve two.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. Through the mutual cooperation between multiple devices, the motion data of the elderly can be measured by multiple sensors during their activities, thereby obtaining accurate data on the elderly's behavior. In addition, when the elderly become ill, the external expansion sleeve can be triggered instantly to protect important joints, reduce damage to the elderly, and improve the overall survival rate.

[0018] 2. Through the assembly of multiple devices, it is possible to adaptively monitor different elderly people, and to specifically monitor the movements of certain positions, which facilitates the work and can provide targeted protection to ensure the safety of the elderly. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is the overall structural diagram of the present invention;

[0020] Figure 2 This is a partial structural diagram of the protective clothing;

[0021] Figure 3 This is a partial structural diagram of the auxiliary sleeve;

[0022] Figure 4 This is a partial main cross-sectional structural diagram of the auxiliary sleeve;

[0023] Figure 5 This is the front view structure diagram of the joint sleeve;

[0024] Figure 6 It is a partial side view of the joint sleeve;

[0025] Figure 7 for Figure 5 A magnified view of the local structure;

[0026] Figure 8 It is the three main sectional views of the joint sleeve;

[0027] Figure 9 This is the front view structure diagram of the helmet;

[0028] Figure 10 This is a front view structural diagram of the ring set;

[0029] Figure 11 It is a partial front view structural diagram of the conductor;

[0030] Figure 12 This is the main cross-sectional view of the wire.

[0031] Description of main symbols:

[0032] 01. Protective clothing; 02. Velcro; 03. Monitoring mechanism 1; 04. Safety mechanism; 05. Joint cover 1; 06. Joint cover 2; 07. Finger ring cover; 08. Joint cover 3; 09. Safety helmet; 13. Joint cover 4; 14. Shoulder pad; 15. Joint cover 5; 20. Head cover; 21. Snap-on block; 22. Camera 1; 23. Embedded cover; 24. Connecting block; 25. Camera 2; 26. Elastic cover; 28. Function box; 29. ​​Extension cover; 30. Wire cover; 31. Inner expansion cover; 32. Medicine box 1; 33. Reaction box 1; 35. Outer expansion cover; 36. Guide box; 37. Processor group; 39. Connecting column; 40. Processor 3; 41. Camera 3; 42. Battery 2; 43. Sensor group 1 44. Bluetooth; 45. Battery 1; 46. Catheter 1; 47. Control tube; 48. Catheter 2; 50. Processor 4; 51. Battery 3; 52. Sensor group 3; 53. Rotating column; 54. Rotating cylinder; 55. Central sleeve; 56. Motor; 57. Medicine box 2; 58. Support head; 59. Diverter tube; 60. Sleeve tube; 61. Main pipe; 62. Fixed cylinder; 63. Rotating frame; 64. Limiting cone; 65. Underwear; 66. Reaction box 2; 67. Protective cover; 68. Auxiliary cover; 70. Triple branch tube; 71. Main tube; 72. Branch tube; 73. Fiber layer; 74. Rubber layer; 75. Shielding layer 1; 76. Signal line; 77. Air pipe; 78. Support frame; 79. Shielding layer 2; 80. Anti-friction layer. DETAILED DESCRIPTION

[0033] The present invention will be further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0034] Example 1:

[0035] Please combine Figures 1-8The abnormal behavior protection equipment for the elderly based on machine vision includes protective clothing 01 for joint protection, a safety helmet 09, a joint cover 4 13, a shoulder pad 14, a joint cover 5 15, a joint cover 3 08, a finger ring cover 07, a joint cover 1 05 and a joint cover 2 06. The protective clothing 01 is equipped with a monitoring mechanism 1 03 and a safety mechanism 04. The safety helmet 09, the joint cover 4 13, the joint cover 5 15, the joint cover 3 08, the finger ring cover 07, the joint cover 1 05, the joint cover 2 06, the monitoring mechanism 1 03 and the safety mechanism 04 are connected by a Bluetooth module. The joint cover 3 08, the finger ring cover 07 , joint sleeve four 13, joint sleeve one 05, joint sleeve two 06 and safety helmet 09 are all equipped with cameras, joint sleeve five 15 is connected to the arm, joint sleeve three 08 is placed on the wrist, ring sleeve 07 is worn on the finger, joint sleeve four 13 is worn on the neck, protective clothing 01 is connected to the chest, safety helmet 09 is worn on the head, shoulder pad 14 is placed on the shoulder, joint sleeve one 05 is worn on the knee, and joint sleeve two 06 is worn on the ankle, so that multiple key parts of the elderly are protected. At the same time, the movement status of the joints can be recorded through sensors inside each mechanism to perform multi-directional data recording.

[0036] Among them, joint sleeve three 08, joint sleeve five 15, shoulder pad 14, joint sleeve one 05, and joint sleeve two 06 all include multiple function boxes 28, and an elastic sleeve 26 is connected between the two function boxes 28. A medicine box one 32 is fixedly connected to the function box 28, and one side of the medicine box one 32 is connected to a reaction box one 33 located in the function box 28. One side of the reaction box one 33 is connected to an external expansion sleeve 35, and one side of the external expansion sleeve 35 is connected to an internal expansion sleeve 31 located inside the function box 28. The medicine box one 32 is fixedly connected with Bluetooth 44, processor three 40, sensor group one 43 and battery one 45. One side of a function box 28 is threaded with a connecting column 39, and one side of the connecting column 39 is connected to an extension sleeve 29. A sensing mechanism is provided in the extension sleeve 29, and one side of the connecting column 39 is fixedly connected to a wire sleeve 30. The function box 28 is made of rubber material to ensure flexible support while being able to The mechanism required for the partial installation is that the elastic sleeve 26 is elastic and can be stretched and expanded to adapt to people of different body shapes. The inner expansion sleeve 31 is in contact with the underwear or skin of the elderly. The medicine box 32 and the reaction box 33 are both filled with powder. The reaction between the powder in the medicine box 32 and the reaction box 33 instantly produces a large amount of gas, which then enters the outer expansion sleeve 35 for filling. The outer expansion sleeve 35 is squeezed out from one side of the functional box 28. At the same time, the excess gas passes through the functional box 28 and enters the inner expansion sleeve 31 for filling and expansion to achieve protection. The connecting column 39 connects the functional box 28 with the extension sleeve 29. Bluetooth 44, processor three 40, sensor group one 43 and battery one 45 respectively perform data transmission, data processing, data sensing and power supply. The sensor group one 43 and the sensing mechanism collect data on the elderly's movements, and then judge the elderly's behavior through processor three 40.

[0037] The sensing mechanism includes a processor group 37 fixedly connected to a connecting column 39, a plurality of cameras three 41 electrically connected to the processor group 37 are connected to the connecting column 39, a battery two 42 is fixedly connected inside the connecting column 39, and the processor group 37 is a combination of existing sensors such as vibration sensors, gyroscopes, displacement sensors, and locators to realize data collection and ensure the accuracy of data processing and judgment of the processor three 40. The battery two 42 ensures the power supply of the device.

[0038] One side of the medicine box 32 is fixedly connected to a conduit 1 46, the other end of the conduit 1 46 is connected to a control tube 47, one side of the control tube 47 is connected to a conduit 2 48 connected to the reaction box 1 33, and the outside of the outer expansion sleeve 35 is provided with a guide box 36 fixedly connected to the function box 28, and one side of the outer expansion sleeve 35 is connected to a connecting tube connected to the inner expansion sleeve 31. Conduit 1 46, control tube 47 and conduit 2 48 are connected to each other, so that the medicine box 1 32 and the reaction box 1 33 can be connected. High-pressure gas is provided in the control tube 47, and solenoid valves are provided on conduit 1 46 and conduit 2 48, which control the on-off of conduit 1 46 and conduit 2 48.

[0039] The implementation principle of the embodiment of the present application is: when it is necessary to monitor the behavior of the elderly, assist the elderly to wear the protective clothing 01, safety helmet 09, joint cover four 13, shoulder pad 14, joint cover five 15, joint cover three 08, ring cover 07, joint cover one 05 and joint cover two 06 according to the corresponding positions on the body, and then turn on the power of each mechanism to perform corresponding monitoring. During the monitoring process, the sensor group one 43 and the sensing mechanism collect data on the elderly's movements, monitor and judge the elderly's behavior, and cooperate with the camera three 41 to input the image of the elderly's surrounding environment, and then enter the background after data processing by the processor three 40 and data transmission by Bluetooth 44, and then pass it to the caregiver to realize the monitoring of the elderly's behavior.

[0040] Camera three 41 receives external image information, processor group 37 and sensor group one 43 collect data on vibration, displacement, position, angle, etc., and then the data is judged by processor three 40. When it is determined that the elderly person's behavior is abnormal or falls, the medicine box one 32 and the reaction box one 33 are connected, the internal powder is mixed, and a chemical reaction occurs, thereby generating a large amount of gas. The gas enters the outer expansion sleeve 35, causing the outer expansion sleeve 35 to expand and squeeze out the functional box 28, providing safety protection for important joints, and the gas enters the inner expansion sleeve 31 to provide additional protection for the elderly.

[0041] Example 2:

[0042] Combine Figure 1-10Based on Example 1, this embodiment is further improved in that: the safety helmet 09 includes a head cover 20 worn on the head, a clamping block 21 is clamped on one side of the head cover 20, a processor 1 is provided in the clamping block 21, and a camera 1 22 is fixedly connected to one side of the clamping block 21. The head cover 20 adopts a multi-layer structure, including an outermost decorative layer, a metal layer is provided in the decorative layer, and a buffer layer and a wearing layer are provided in the metal layer, so that the head cover 20 can achieve protection while being worn, and the clamping block 21 can be clamped to the head cover 20 according to actual usage needs, and the head cover 20 is used to monitor the elderly's activity environment, head movement and other data, and the data is processed by the processor 1 and then transmitted.

[0043] The ring sleeve 07 includes an embedded sleeve 23 worn on the thumb, and a connecting block 24 is fixedly connected to one side of the embedded sleeve 23. A processor 2 is set in the connecting block 24, and multiple cameras 2 25 are connected to the connecting block 24. The embedded sleeve 23 is made of flexible material and can be worn by elderly people of different body shapes. The connecting block 24 ensures the placement and connection of the camera 2 25. Multiple existing sensors, such as infrared sensors, vibration sensors, etc., are set in the connecting block 24 to measure some parameters of the finger part, and then processed and transmitted by the processor 2.

[0044] Example 3:

[0045] Combine Figure 1-10 Based on Example 1, this embodiment is further improved in that: the protective clothing 01 includes symmetrically arranged undergarments 65, and a Velcro 02 is connected between the two undergarments 65. The monitoring mechanism 03 and the safety mechanism 04 are connected to the undergarments 65. The top of the undergarment 65 is connected to the electrode 56. The inside of the undergarment 65 is connected to the reaction box 2 66. One side of the reaction box 2 66 is connected to the connecting pipe 1 connected to the monitoring mechanism 03, and one side of the undergarment 65 is connected to the connecting pipe 2 connected to the safety mechanism 04. The undergarment 65 is sleeved on the chest and back to block both sides. The Velcro 02 connects the two undergarments 65 to make them relatively fixed. The electrode 56 collects the current signal of the chest and collects various data. The reaction box 2 66 can expand and cushion when inflated to protect the chest and back.

[0046] The monitoring mechanism 03 includes a protective sleeve 67 connected to the undergarment 65, and a medicine box 2 57 connected to the connecting pipe 1 is fixedly connected inside the protective sleeve 67. The connecting pipe 1 is connected to a solenoid valve. One side of the medicine box 2 57 is connected in sequence to a processor 4 50, a battery 3 51 and a sensor group 3 52. The processor 4 50 performs data processing and data transmission, the battery 3 51 provides power, and the sensor group 3 52 is equivalent to the sensor group 1 43, which collects and senses data and then inputs the data into the processor 4 50 for processing to determine whether to open the valve on the connecting pipe 1, so that the powder in the medicine box 2 57 enters the reaction box 2 66, causing other expansion for protection.

[0047] Example 4:

[0048] Combine Figure 1-10 , based on Example 3, this embodiment is further improved in that: the safety mechanism 04 includes an auxiliary sleeve 68 bonded to the undergarment 65, a central sleeve 55 is fixedly connected to the auxiliary sleeve 68, one side of the central sleeve 55 is connected to a sleeve pipe 60 connected to the second connecting pipe, one side of the central sleeve 55 is connected to a symmetrically arranged main flow pipe 61, the main flow pipe 61 is connected to a fixed cylinder 62 fixedly connected to the auxiliary sleeve 68, a rotating frame 63 is rotatably sleeved in the fixed cylinder 62, a limiting cone 64 is inserted on the fixed cylinder 62, one end of the rotating frame 63 is fixedly connected to the rotating cylinder 54, a rotating column 53 is slidably sleeved in the rotating cylinder 54, the other end of the rotating column 53 is fixedly connected to the support head 58, the main flow pipe 61 is connected to a diversion pipe 59 connected to the rotating cylinder 54, through After the processor four 50 makes a judgment, gas is generated in the reaction box two 66, and then the gas enters the central sleeve 55 through the sleeve pipe 60, and further enters the fixed cylinder 62 through the main pipe 61, so that the rotating frame 63 rotates in the fixed cylinder 62, and the rotating column 53 drives the rotating cylinder 54 and the rotating column 53 to move out of the auxiliary sleeve 68. After rotating to a certain angle, the limiting cone 64 limits the rotating frame 63, and at the same time, the gas in the fixed cylinder 62 enters the rotating cylinder 54 through the diversion pipe 59, so that the rotating column 53 moves and extends along the rotating cylinder 54. At the same time, the gas enters the rotating cylinder 54 for buffering support, so that the rod formed by the rotating cylinder 54 and the rotating column 53 provides preliminary support in the early stage of the fall, reduces the impulse, and reduces the impact caused by subsequent falls.

[0049] Example 5:

[0050] Combine Figure 1-12Based on Example 1, this embodiment is further improved in that: a wire is connected inside the wire sleeve 30, and the wire is connected in series with the joint sleeve three 08, the finger ring sleeve 07, the joint sleeve four 13, the joint sleeve five 15, the monitoring mechanism one 03, the joint sleeve one 05 and the joint sleeve two 06. The joint sleeve three 08, the finger ring sleeve 07, the joint sleeve four 13, the joint sleeve five 15, the monitoring mechanism one 03, the joint sleeve one 05 and the joint sleeve two 06 are connected in series through the wire sleeve 30, thereby ensuring the transmission of data and gas and reducing the negative impression caused by the error of a single device.

[0051] The wire includes a multi-section main conduit 71, a three-section conduit 70 is connected between the two main conduits 71, and one side of the three-section conduit 70 is connected to a branch conduit 72 connected to the joint sleeve three 08, the finger ring sleeve 07, the joint sleeve four 13, the joint sleeve five 15, the monitoring mechanism one 03, the joint sleeve one 05 and the joint sleeve two 06. The main conduit 71 is used for main conduction, and the three-section conduit 70 connects and conducts the two main conduits 71. The branch conduit 72 diverts the electricity or gas in the main conduit 71 to the corresponding joint sleeve three 08, the finger ring sleeve 07, the joint sleeve four 13, the joint sleeve five 15, the monitoring mechanism one 03, the joint sleeve one 05 or the joint sleeve two 06.

[0052] The main conduit 71 and the branch conduit 72 both include an outermost fiber layer 73, to which a rubber layer 74 and a shielding layer 75 are connected in sequence, a signal line 76 is bonded into the shielding layer 75, a wear-resistant layer 80 is fixedly connected to the signal line 76, the wear-resistant layer 80 is fixedly connected to the fiber layer 73, a support frame 78 and an air pipe 77 are connected to the fiber layer 73, the fiber layer 73 is made of fiber material to ensure wear resistance, the rubber layer 74 is made of rubber material for flexible support, the shielding layer 75 performs secondary signal shielding, the signal line 76 performs signal transmission, the wear-resistant layer 80 and the shielding layer 79 perform support and signal isolation respectively, and the air pipe 77 performs gas conduction.

[0053] The above embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.

Claims

1. The abnormal behavior protection device for the elderly based on machine vision is characterized by: The invention comprises a protective garment for joint protection, a safety helmet, a joint cover four, a shoulder pad, a joint cover five, a joint cover three, a finger ring cover, a joint cover one and a joint cover two, the protective garment is equipped with a monitoring mechanism one and a safety mechanism, the safety helmet, the joint cover four, the joint cover five, the joint cover three, the finger ring cover, the joint cover one, the joint cover two, the monitoring mechanism one and the safety mechanism are connected by a Bluetooth module, and the joint cover three, the finger ring cover, the joint cover four, the joint cover one, the joint cover two and the safety helmet are all equipped with cameras, wherein the joint cover three, the joint cover five, the shoulder pad, the joint cover one, the joint cover Both include multiple functional boxes, an elastic sleeve is connected between the two functional boxes, a medicine box 1 is fixedly connected inside the functional box, one side of the medicine box 1 is connected to a reaction box 1 located inside the functional box, one side of the reaction box 1 is connected to an external expansion sleeve, one side of the external expansion sleeve is connected to an internal expansion sleeve located inside the functional box, Bluetooth, processor 3, sensor group 1 and battery 1 are fixedly connected to the medicine box 1, one side of the functional box is threadedly sleeved with a connecting column, one side of the connecting column is connected to an extension sleeve, a sensing mechanism is provided in the extension sleeve, and one side of the connecting column is fixedly connected to a wire sleeve.

2. The machine vision-based elderly abnormal behavior protection device according to claim 1, characterized in that: The sensor mechanism includes a processor group fixedly connected to a connecting column, a plurality of cameras three electrically connected to the processor group are connected to the connecting column, and a battery two is fixedly connected inside the connecting column.

3. The device for protecting the elderly from abnormal behavior based on machine vision according to claim 1, characterized in that: One side of the medicine box is fixedly connected to catheter 1, the other end of catheter 1 is connected to a control tube, one side of the control tube is connected to catheter 2 connected to reaction box 1, and a guide box fixedly connected to the function box is provided on the outside of the outer expansion sleeve, and one side of the outer expansion sleeve is connected to a connecting tube connected to the inner expansion sleeve.

4. The machine vision-based elderly abnormal behavior protection device according to claim 1, characterized in that: The safety helmet comprises a head cover worn on the head, a clamping block is clamped on one side of the head cover, a processor 1 is arranged in the clamping block, and a camera 1 is fixedly connected to one side of the clamping block.

5. The machine vision-based elderly abnormal behavior protection device according to claim 1, characterized in that: The ring sleeve comprises an embedded sleeve worn on the thumb, one side of the embedded sleeve is fixedly connected to a connecting block, a processor 2 is arranged in the connecting block, and a plurality of cameras 2 are connected to the connecting block.

6. The machine vision-based elderly abnormal behavior protection device according to claim 1, characterized in that: The protective clothing includes symmetrically arranged undergarments, with Velcro connected between the two undergarments, monitoring mechanism 1 and safety mechanism connected to the undergarments, electrodes connected to the tops of the undergarments, reaction box 2 connected inside the undergarments, connecting pipe 1 connected to monitoring mechanism 1 on one side of the reaction box 2, and connecting pipe 2 connected to the safety mechanism on one side of the undergarment.

7. The device for protecting the elderly from abnormal behavior based on machine vision according to claim 6, characterized in that: The monitoring mechanism 1 includes a protective cover connected to the underwear, and a medicine box 2 connected to the connecting pipe 1 is fixedly connected inside the protective cover. The connecting pipe 1 is connected to an electromagnetic valve, and one side of the medicine box 2 is connected in sequence to a processor 4, a battery 3 and a sensor group 3.

8. The machine vision-based elderly abnormal behavior protection device according to claim 6 is characterized in that: The safety mechanism includes an auxiliary sleeve adhered to the undergarment, a central sleeve fixedly connected to the auxiliary sleeve, a sleeve pipe connected to the second connecting pipe on one side of the central sleeve, a symmetrically arranged main pipe on one side of the central sleeve, the main pipe is connected to a fixed cylinder fixedly connected to the auxiliary sleeve, a rotating frame rotatably sleeved in the fixed cylinder, a limiting cone is inserted on the fixed cylinder, one end of the rotating frame is fixedly connected to the rotating cylinder, a rotating column is slidably sleeved in the rotating cylinder, the other end of the rotating column is fixedly connected to the support head, and the main pipe is connected to a diversion pipe connected to the rotating cylinder.

9. The machine vision-based elderly abnormal behavior protection device according to claim 1, characterized in that: A wire is sleeved inside the wire sleeve, and the wire is connected in series to joint sleeve three, finger ring sleeve, joint sleeve four, joint sleeve five, monitoring mechanism one, joint sleeve one and joint sleeve two.

10. The machine vision-based elderly abnormal behavior protection device according to claim 1, characterized in that: The guide wire includes multiple main conduits, a three-section conduit is connected between two main conduits, and one side of the three-section conduit is connected to a branch conduit connected to joint sleeve three, ring sleeve, joint sleeve four, joint sleeve five, monitoring mechanism one, joint sleeve one and joint sleeve two.