Intelligent ring multi-pathogen closed-loop disinfection control method, device and system
The intelligent ring-shaped disinfection and control system solves the problem of non-closed-loop traditional disinfection processes, achieves unified disinfection standards and prevents cross-infection, improves management efficiency and safety, and adapts to the disinfection needs of different pathogens.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-03-10
AI Technical Summary
Traditional smart ring disinfection and control processes are not closed-loop, which can easily lead to cross-infection, lack of traceability in management, confusion of responsibilities, low security, and difficulty in meeting differentiated disinfection needs.
The system is designed to be an intelligent ring-shaped disinfection and control system, including a disinfection chamber, an identity verification device, and a disinfection execution module. It initiates disinfection tasks through identity recognition, monitors the disinfection process in real time, and records disinfection information to form a closed-loop management system.
It has achieved unified disinfection standards, prevented cross-infection, improved management efficiency and safety, and adapted to the disinfection needs of different pathogens.
Smart Images

Figure CN121622948A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical equipment, in particular to a method, device and system for closed-loop disinfection and management of intelligent rings for multiple pathogens. BACKGROUND
[0002] With the development of technology, intelligent rings are gradually applied to medical scenarios, can be used to monitor patient vital signs and assist medical staff, and can improve medical efficiency and patient safety in a portable and non-invasive manner. At this time, as a non-consumable medical device, the intelligent ring needs to be strictly disinfected and managed to facilitate its recycling.
[0003] However, in the traditional technology, the intelligent ring is usually disinfected by manual operation, without special centralized disinfection and management, the disinfection standards are not uniform, and the closed-loop disinfection and management process cannot be formed, which is prone to cross-infection risk due to incomplete disinfection or contact transmission. Moreover, since the intelligent ring is usually shared / flowed, the disinfection status, operation personnel / taking time cannot be recorded in the traditional technology, and the responsibility is difficult to trace for equipment problems, resulting in low management efficiency. Moreover, the daily storage and management of the intelligent ring is relatively loose, anyone can take it at will, and there is no disinfection process monitoring, it is difficult to find abnormalities, and it is difficult to ensure that the intelligent ring is used after disinfection. In addition, the traditional disinfection mode is fixed, which is prone to transition or deficiency, lacks targeted disinfection methods, and is difficult to adapt to different scenarios such as bacteria, viruses, and drug-resistant bacteria. SUMMARY
[0004] The present application provides a method, device and system for closed-loop disinfection and management of intelligent rings for multiple pathogens, which can solve the technical problems of non-closed-loop disinfection and management process of intelligent rings in the traditional technology, which is prone to cross-infection, management without traceability leading to confusion of rights and responsibilities, poor management safety leading to low safety, and low efficiency of disinfection, which is difficult to meet the differentiated needs.
[0005] In order to solve the above technical problems, the present application provides a method for closed-loop disinfection and management of intelligent rings for multiple pathogens, which is applied to an intelligent ring disinfection and management system; the intelligent ring disinfection and management system includes a disinfection warehouse mechanism with a plurality of disinfection unit warehouses;
[0006] The method comprises:
[0007] Obtaining first identity information of a current user, and starting a disinfection warehouse mechanism to start a disinfection task according to the first identity information of the current user;
[0008] In response to a ring disinfection instruction input by the current user, the disinfection warehouse mechanism is controlled to obtain target disinfection information; the target disinfection information includes a target disinfection mode, a target disinfection time, and a target disinfection unit warehouse;
[0009] Based on the obtained target disinfection information, the disinfection chamber mechanism is controlled to disinfect the target smart ring, and the disinfection process is monitored in real time.
[0010] After the disinfection of the target smart ring is completed, the second identity information of the current user is obtained. Based on the second identity information of the current user, the disinfection chamber mechanism is activated, and the process information of disinfection of the target smart ring is recorded and stored.
[0011] In addition, the present invention also proposes a smart ring multi-pathogen closed-loop disinfection and control device, which is applied to a smart ring disinfection and control system; the smart ring disinfection and control system includes a disinfection chamber mechanism with multiple disinfection unit chambers;
[0012] The device includes:
[0013] The disinfection start control module is used to obtain the current user's primary identification information and start the disinfection chamber mechanism based on the current user's primary identification information;
[0014] The disinfection information acquisition module is used to respond to the ring disinfection command input by the current user and control the disinfection chamber mechanism to acquire the target disinfection information; the target disinfection information includes the target disinfection mode, the target disinfection time, and the target disinfection unit chamber;
[0015] The disinfection execution and monitoring module is used to control the disinfection chamber mechanism to disinfect the target smart ring based on the obtained target disinfection information, and to monitor the disinfection process in real time.
[0016] The disinfection completion control module is used to obtain the current user's second identity information after the disinfection of the target smart ring is completed, activate the disinfection chamber mechanism based on the current user's second identity information, and record and store the process information of disinfection of the target smart ring.
[0017] Furthermore, this invention also proposes an intelligent ring disinfection and control system, comprising:
[0018] A disinfection unit structure with multiple disinfection unit compartments;
[0019] An identity verification device connected to the disinfection chamber mechanism;
[0020] A disinfection command input device is connected to the disinfection chamber mechanism;
[0021] The disinfection execution mechanism includes a UV-C ultraviolet lamp assembly and a circulating fan located in the disinfection unit compartment, as well as a disinfectant atomizing mechanism connected to the disinfection unit compartment;
[0022] The controller is connected to the disinfection chamber mechanism, the identity verification device, the disinfection command input device, and the disinfection execution mechanism.
[0023] The controller is used to implement the smart ring multi-pathogen closed-loop disinfection and control method as described above.
[0024] Furthermore, the present invention also proposes a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, are used to implement all or part of the method steps of the smart ring multi-pathogen closed-loop disinfection and control method as described above.
[0025] The beneficial effects of the technical solution provided by this invention include:
[0026] By acquiring the current user's primary identification information to activate the disinfection chamber mechanism, the target smart ring to be disinfected can be placed in the disinfection unit compartment of the mechanism to initiate the disinfection task. Then, based on the current user's instructions, the corresponding target disinfection mode can be selected to disinfect the target smart ring in the target disinfection unit compartment, allowing for customized disinfection to meet diverse needs and improve effectiveness. Furthermore, during the disinfection process, various disinfection parameters can be monitored in real time to determine if the process is normal and satisfactory. After disinfection is complete, the target disinfection unit compartment can be opened by acquiring the current user's secondary identification information, allowing the user to retrieve the disinfected smart ring. Moreover, after disinfection is completed and the target smart ring is retrieved, disinfection information throughout the entire process can be recorded and stored for future traceability.
[0027] This system allows for automatic disinfection of smart rings. The disinfection chamber mechanism enables centralized and standardized disinfection control, ensuring a closed-loop process that guarantees thorough disinfection and prevents cross-infection through contact transmission. Furthermore, for shared / circulated smart rings, the disinfection status, operator, and retrieval time can be recorded during disinfection control, facilitating accountability and improving management efficiency. The system also ensures orderly daily storage and management of smart rings, allowing only authorized personnel to access them. Real-time monitoring of the disinfection process enables timely detection of anomalies, ensuring that rings are only used after passing disinfection standards, thus enhancing security. Additionally, different disinfection modes can be adapted to different scenarios involving bacteria, viruses, and drug-resistant bacteria, resulting in highly efficient disinfection and meeting diverse needs. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0029] Figure 1 This is a simplified flowchart illustrating the steps of the smart ring multi-pathogen closed-loop disinfection and control method according to an embodiment of the present invention;
[0030] Figure 2 This is a simplified structural diagram of the intelligent ring disinfection and control system described in an embodiment of the present invention. Figure 1 ;
[0031] Figure 3 This is a simplified structural diagram of the intelligent ring multi-pathogen closed-loop disinfection and control device according to an embodiment of the present invention;
[0032] Figure 4 This is a simplified structural diagram of the intelligent ring disinfection and control system described in an embodiment of the present invention. Figure 2 . Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0034] Traditional technologies for disinfection and control of smart rings suffer from several problems, including non-closed-loop processes, high risk of cross-infection, lack of traceability in management, unclear responsibilities, broken security connections, low security, inefficient disinfection, and difficulty in meeting diverse needs. Therefore, to address these issues, this invention proposes a closed-loop disinfection and control method, device, and system for smart rings against multiple pathogens.
[0035] In some embodiments, such as Figure 1 As shown, this invention proposes a closed-loop disinfection and control method for multiple pathogens using a smart ring, applied to a smart ring disinfection and control system 10. Figure 2 As shown, the smart ring disinfection and control system 10 includes a disinfection chamber mechanism 12 with multiple disinfection unit chambers 122, each of which can individually store and disinfect at least one smart ring.
[0036] Specifically, such as Figure 1 As shown, the smart ring multi-pathogen closed-loop disinfection and control method may include the following steps:
[0037] S100: Obtain the first identification information of the current user, and start the disinfection chamber mechanism 12 to start the disinfection task based on the first identification information of the current user;
[0038] S200, In response to the ring disinfection command input by the current user, control the disinfection chamber mechanism 12 to obtain target disinfection information; the target disinfection information includes target disinfection mode, target disinfection time, and target disinfection unit chamber 122;
[0039] S300: Based on the obtained target disinfection information, control the disinfection chamber mechanism 12 to disinfect the target smart ring and monitor the disinfection process in real time.
[0040] S400: After the disinfection of the target smart ring is completed, the second identity information of the current user is obtained, and the disinfection chamber mechanism 12 is activated according to the second identity information of the current user to record and store the process information of disinfection of the target smart ring.
[0041] By acquiring the current user's primary identification information to activate the disinfection chamber mechanism 12, the target smart ring to be disinfected can be placed in the disinfection unit chamber 122 of the activation disinfection chamber mechanism 12 to initiate the disinfection task. Then, according to the current user's instructions, the corresponding target disinfection mode can be selected to disinfect the target smart ring in the target disinfection unit chamber 122, so that the disinfection can meet differentiated needs and improve the disinfection efficiency. Moreover, during the disinfection process, various disinfection parameters can be monitored in real time to facilitate the judgment that the disinfection process is normal and the disinfection is qualified. After the disinfection is completed, the target disinfection unit chamber 122 of the disinfection chamber mechanism 12 can be opened by acquiring the current user's secondary identification information, so that the current user can take away the disinfected target smart ring. Moreover, after the disinfection is completed and the target smart ring is taken away, the disinfection information of the entire disinfection process can be recorded and stored for subsequent traceability.
[0042] This system automatically disinfects the smart rings, enabling centralized disinfection and control through the disinfection chamber mechanism 12. This standardizes disinfection practices, creating a closed-loop disinfection and control process that ensures thorough disinfection and prevents cross-infection through contact transmission. Furthermore, for shared / circulated smart rings, the system records disinfection status, operator, and retrieval time, facilitating accountability and improving management efficiency. The system also ensures orderly daily storage and management of the smart rings, allowing only authorized personnel to access them. Real-time monitoring of the disinfection process allows for timely detection of anomalies, ensuring that rings are only used after disinfection is deemed satisfactory, thus enhancing security. Additionally, different disinfection modes can be adapted to different scenarios involving bacteria, viruses, and drug-resistant bacteria, resulting in highly efficient disinfection and meeting diverse needs.
[0043] Furthermore, such as Figure 2As shown, the intelligent ring-shaped disinfection and control system 10 may include an identity verification device 16 connected to the disinfection chamber mechanism 12, which can detect and verify the user's identity information. Furthermore, the disinfection chamber mechanism 12 may include a main chamber frame, and multiple disinfection unit chambers 122 may be located within the main chamber frame; moreover, the identity verification device 16 may be located on the main chamber frame or independently outside the disinfection chamber mechanism 12. Moreover, the identity verification device 16 may be a mobile terminal device (such as a smartphone, tablet, laptop, desktop computer, etc.).
[0044] Therefore, in step S100, obtaining the first identification information of the current user and activating the disinfection chamber mechanism 12 based on the first identification information of the current user may further include the following steps:
[0045] S110. Obtain the first identity information of the current user through the identity verification device 16.
[0046] When a user needs to disinfect the smart ring using the disinfection chamber mechanism 12, the user's identity can first be verified through the identity verification device 16 connected to the disinfection chamber mechanism 12. At this time, the user's primary identity information can be obtained through the identity verification device 16.
[0047] In this embodiment, the authentication device 16 can be a fingerprint acquisition device, and the first identification information can be the user's fingerprint information, that is, the fingerprint acquisition device can collect the user's fingerprint information. In addition, the authentication device 16 can also be a password unlocking device, and the corresponding first identification information can be the user's password; in addition, the authentication device 16 can also be a facial recognition device, and the corresponding first identification information can be the user's facial information.
[0048] In addition, the identity verification device 16 may also be configured as at least one of a fingerprint collection device, a password unlocking device, and a facial recognition device, and the corresponding first identity recognition information may be at least one of the user's fingerprint information, the user's password, and the user's facial information.
[0049] S120. When the first identity information is detected to match the preset identity information, the current user is determined to be an authorized user.
[0050] Furthermore, the control mechanism (such as the controller) of the intelligent ring disinfection and control system 10 can pre-store the current user's preset identity information (i.e., the user's preset fingerprint information, the user's preset password, and the user's preset facial information). After obtaining the current user's first identity information through the identity verification device 16, the current user's first identity information can be compared and matched with the preset identity information in the system. When the two match successfully, it can be proven that the current user's identity information has been pre-stored in the system, and the user belongs to the user who has the right to use the disinfection chamber mechanism 12 (i.e., the authorized user).
[0051] S130. When the current user is detected to be an authorized user, control the disinfection chamber mechanism 12 to open the disinfection unit chamber 122.
[0052] When the system detects that the current user has permission to use the disinfection unit 12, one or more disinfection unit compartments 122 can be opened. This allows the authorized user to place at least one smart ring to be disinfected into the disinfection unit compartment 122 in preparation for disinfection. Furthermore, when the user is determined to be authorized, not only can the disinfection unit compartment 122 be opened, but a voice prompt can also be given, such as a voice message saying "Disinfection unit compartment 122 No. X has been opened." The multiple disinfection unit compartments 122 of the disinfection unit 12 can be numbered, starting from 1, such as Disinfection Unit Compartment 122 No. 1, Disinfection Unit Compartment 122 No. 2, Disinfection Unit Compartment 122 No. 3, and so on.
[0053] Furthermore, authorized users can be tiered, with different levels of users able to open different numbers of disinfection unit compartments 122 and / or use different disinfection functions (such as different disinfection modes), etc. Additionally, the activation of a disinfection unit compartment 122 indicates the start of a disinfection task. Moreover, when a disinfection unit compartment 122 is activated, operation logs can be recorded and stored simultaneously (e.g., recording and storing operation logs in the controller).
[0054] Furthermore, in step S100, obtaining the first identification information of the current user and activating the disinfection chamber mechanism 12 based on the first identification information of the current user may further include the following steps:
[0055] S140. When the first identity information does not match the preset identity information multiple times in a row, the current user is determined to be an unauthorized user.
[0056] When comparing and matching the current user's primary identification information with the preset identification information in the system, the two may fail to match. This may be because the current user is an unauthorized user, or because the primary identification information entered by the current user is incorrect (such as the user's password being incorrect), or because the primary identification information collected by the authentication device 16 is incorrect (such as the collected user's fingerprint information being incorrect).
[0057] At this point, the current user can eliminate the aforementioned error by entering their primary identification information multiple times (e.g., three times, five times, etc.). If the primary identification information of the current user cannot be matched successfully after multiple attempts, the current user can be determined to be an unauthorized user, and no disinfection unit 122 will be activated.
[0058] S150. When the current user is detected to be an unauthorized user, the authentication device 16 is locked, and the disinfection chamber mechanism 12 is controlled to issue a reminder message.
[0059] When the current user is determined to be unauthorized, the authentication device 16 can be locked for a preset time (e.g., 5 minutes, 10 minutes, etc.). Furthermore, the current user can be alerted via voice prompts, such as "The current user is unauthorized and cannot open the disinfection unit compartment 122." Additionally, operation logs can be recorded and stored simultaneously (e.g., recorded and stored in the controller).
[0060] In addition, such as Figure 2 As shown, the intelligent ring-shaped disinfection and control system 10 may include a disinfection command input device 14 connected to the disinfection chamber mechanism 12. In this embodiment, the disinfection command input device 14 may include a touch screen connected to the disinfection chamber mechanism 12. Similarly, the touch screen may be located on the main chamber frame of the disinfection chamber mechanism 12, or it may be located independently outside the disinfection chamber mechanism 12. Moreover, the disinfection command input device 14 may also be a mobile terminal device (such as a smartphone, tablet, laptop, desktop computer, etc.).
[0061] Therefore, in step S200, responding to the user's input ring disinfection command, controlling the disinfection chamber mechanism 12 to obtain target disinfection information may further include the following steps:
[0062] S210. Obtain the ring disinfection command input by the user through the disinfection command input device 14; the ring disinfection command includes the target compartment selection command, the disinfection time setting command, and the disinfection mode selection command.
[0063] After the current user activates a disinfection unit 122 (i.e., the target disinfection unit 122), the smart ring to be disinfected (which can be considered the target smart ring and may include at least one smart ring) can be placed in the target disinfection unit 122. Then, the target disinfection unit 122 is closed to prepare for disinfection of the target smart ring. Before disinfecting the target smart ring in the target disinfection unit 122, the disinfection unit mechanism 12 needs to obtain the corresponding target disinfection information (i.e., the target disinfection unit 122, the target disinfection time, and the target disinfection mode). To obtain the corresponding target disinfection information, the current user needs to input the corresponding ring disinfection command through the disinfection command input device 14, that is, the current user sets the ring disinfection parameters through the disinfection command input device 14.
[0064] Specifically, the user needs to determine the required disinfection mode (target disinfection mode) and the required disinfection duration (target disinfection duration) based on the bacteria, viruses, and drug-resistant bacteria present (or potentially present) on the smart ring to be disinfected (i.e., the target smart ring). Furthermore, the user can determine the target disinfection unit compartment 122 where the disinfection function needs to be activated based on the disinfection unit compartment 122 where the smart ring to be disinfected is placed. The target disinfection mode, target disinfection duration, and target disinfection unit compartment 122 can all be selected and set via the disinfection command input device 14. Selecting the target disinfection mode on the disinfection command input device 14 generates a disinfection mode selection command; selecting the target disinfection unit compartment 122 generates a target compartment selection command; and selecting the target disinfection duration generates a disinfection time setting command.
[0065] S220. Based on the obtained target compartment selection instruction, disinfection time setting instruction, and disinfection mode selection instruction, control the disinfection compartment mechanism 12 to obtain the corresponding target disinfection unit compartment 122, target disinfection time, and target disinfection mode in order to prepare for disinfection of the target smart ring in the target disinfection unit compartment 122.
[0066] That is, the control mechanism (such as the controller) can obtain the corresponding target disinfection information (i.e., target disinfection unit compartment 122, target disinfection time, target disinfection mode) according to these ring disinfection instructions. Moreover, after obtaining the target disinfection information, the control mechanism can prompt the current user to start the disinfection operation, and the current user can start the disinfection operation through the disinfection instruction input device 14.
[0067] Furthermore, the disinfection modes can include basic disinfection modes and drug-resistant bacteria disinfection modes. Basic disinfection modes are for the elimination of common bacteria and viruses, while drug-resistant bacteria disinfection modes are for the elimination of drug-resistant bacteria. The target disinfection mode can be either the basic disinfection mode or the drug-resistant bacteria disinfection mode.
[0068] Specifically, the basic disinfection mode refers to disinfecting the smart ring using a UV-C ultraviolet lamp group for a first preset disinfection time, that is, disinfecting the smart ring with ultraviolet light emitted by the UV-C ultraviolet lamp group for a first preset disinfection time (e.g., 5 minutes); the drug-resistant bacteria disinfection mode refers to disinfecting the smart ring using a UV-C ultraviolet lamp group and a disinfectant atomization mechanism 186 for a second preset disinfection time (e.g., 10 minutes), that is, disinfecting the smart ring with ultraviolet light emitted by the UV-C ultraviolet lamp group and disinfectant mist generated by the disinfectant atomization mechanism 186 for a second preset disinfection time.
[0069] Furthermore, the target disinfection time can include a first preset disinfection duration, a second preset disinfection duration, or a custom disinfection duration. That is, when selecting and setting the target disinfection time, the target disinfection time can be selected by default according to the default disinfection duration of the target disinfection mode (such as the first preset disinfection duration or the second preset disinfection duration), or the disinfection duration can be set by the current user according to their needs (i.e., a custom disinfection duration can be entered in the custom settings interface of the disinfection command input device 14, with a range of 1-30 minutes).
[0070] In this embodiment, the disinfection chamber mechanism 12 may include a UV-C ultraviolet lamp group and a circulating fan 184 disposed within the disinfection unit chamber 122, as well as a disinfectant atomizing mechanism 186 connected to the disinfection unit chamber 122. The UV-C ultraviolet lamp group and the circulating fan 184 can achieve a basic disinfection mode for the smart ring; while the UV-C ultraviolet lamp group, the circulating fan 184, and the disinfectant atomizing mechanism 186 can achieve a disinfection mode for drug-resistant bacteria on the smart ring.
[0071] Furthermore, such as Figure 2 As shown, the disinfection chamber mechanism 12 can adopt a layered or / and column-based storage design, with each layer or column having an independent disinfection unit chamber 122, or each layer having multiple columns of independent disinfection unit chambers 122, or each column having multiple layers of independent disinfection unit chambers 122. Each disinfection unit chamber 122 can hold 10-15 smart rings. Furthermore, the front of the disinfection chamber mechanism 12 can integrate an authentication device 16 (such as a fingerprint scanner), a disinfection command input device 14 (such as a touch screen), a voice broadcast device, etc., while its side can have an emergency door, and its bottom can have a power interface and a data transmission interface, etc. In addition, the inner wall of the main chamber frame of the disinfection chamber mechanism 12, as well as the outer shell of each disinfection unit chamber 122, can be made of 316L stainless steel (with a hydrogen peroxide corrosion resistance level ≥9), and an anti-corrosion tempered glass film can be applied to the surfaces of the authentication device 16 (such as a fingerprint scanner) and the disinfection command input device 14 (such as a touch screen).
[0072] Furthermore, the top of the disinfection unit 122 can be equipped with a UV-C ultraviolet lamp group, using deep ultraviolet LED beads with a wavelength of 253.7nm (power 10W). Each disinfection unit 122 has two sets of UV-C ultraviolet lamp groups symmetrically arranged. The lamp cover focusing design ensures uniform irradiation of the ring surface, with a single disinfection coverage rate of ≥99.9%, which meets the "Technical Specifications for Disinfection in Medical Institutions". In addition, the bottom of the disinfection unit 122 is equipped with a disinfectant atomizing mechanism 186 (such as a low-concentration hydrogen peroxide atomizer), which can be equipped with a 10% concentration hydrogen peroxide solution storage tank (capacity 500mL). It generates disinfection mist through ultrasonic atomization technology (atomized particle diameter 5-10μm), and the atomization volume is adjustable (0-5mL / min), which can be activated for drug-resistant bacteria scenarios.
[0073] Furthermore, each side of the disinfection unit chamber 122 can be equipped with a circulating fan 184, which adopts a silent axial flow fan (wind speed 0.5m / s, noise ≤40dB). Through the design of the airflow channel inside the chamber, the UV-C ultraviolet rays and atomized disinfection mist can be evenly diffused to any position in the disinfection unit chamber 122, avoiding blind spots in local disinfection.
[0074] In addition, UV-C ultraviolet lamps, circulating fans 184, and disinfectant atomizing mechanisms 186 can be installed not only in each disinfection unit 122, but also in the main frame of the disinfection chamber mechanism 12, so that multiple disinfection unit 122 of the disinfection chamber mechanism 12 can share one or more sets of UV-C ultraviolet lamps, circulating fans 184, and disinfectant atomizing mechanisms 186.
[0075] In addition, the disinfection chamber mechanism 12 can also be equipped with an overload protection mechanism, an over-temperature protection mechanism (automatic shutdown when the temperature is ≥40℃) and a disinfection mist leakage detection mechanism (triggers an alarm when the hydrogen peroxide concentration is ≥10ppm) to ensure the safe operation of the equipment.
[0076] Furthermore, in step S300, based on the obtained target disinfection information, the disinfection chamber mechanism 12 is controlled to disinfect the target smart ring, and the disinfection process is monitored in real time. This may further include the following steps:
[0077] S310. Based on the disinfection start command obtained for the target smart ring in the target disinfection unit compartment 122, control the UV-C ultraviolet lamp group, circulating fan 184 and / or disinfectant atomizing mechanism 186 corresponding to the target disinfection unit compartment 122 of the disinfection compartment mechanism 12 to disinfect the target smart ring in the target disinfection unit compartment 122 according to the target disinfection time and target disinfection mode.
[0078] When a user initiates a disinfection operation via the disinfection command input device 14, the control mechanism (such as a controller) receives the disinfection start command and controls the target disinfection unit 122 to begin disinfecting the target smart ring within it. Furthermore, the specific target disinfection mode can be either a basic disinfection mode or a drug-resistant bacteria disinfection mode. Depending on the specific target disinfection mode, the corresponding UV-C ultraviolet lamp group and circulating fan 184 are activated, or the UV-C ultraviolet lamp group, circulating fan 184, and disinfectant atomization mechanism 186 are activated, and disinfection is performed according to the target disinfection time.
[0079] Furthermore, step S310 may specifically include:
[0080] S312. Based on the disinfection start command obtained for the target smart ring in the target disinfection unit compartment 122, control the UV-C ultraviolet lamp group and circulating fan 184 that are corresponding to the target disinfection unit compartment 122 of the disinfection compartment mechanism 12 to disinfect the target smart ring in the target disinfection unit compartment 122 according to the target disinfection time and the basic disinfection mode as the target disinfection mode.
[0081] For example, when using the basic disinfection mode as the target disinfection mode, the UV-C ultraviolet lamp group can be turned on, and the circulating fan 184 can be started at the same time to carry out ultraviolet disinfection on the target smart ring in the target disinfection unit compartment 122, and the time can last for 5 minutes.
[0082] Alternatively, S314, based on the disinfection start command received for the target smart ring in the target disinfection unit compartment 122, control the UV-C ultraviolet lamp group, circulating fan 184, and disinfectant atomizing mechanism 186 that correspond to and cooperate with the target disinfection unit compartment 122 of the disinfection compartment mechanism 12 to disinfect the target smart ring in the target disinfection unit compartment 122 according to the target disinfection time and the target disinfection mode of drug-resistant bacteria disinfection mode.
[0083] For example, when carrying out disinfection in the target mode of drug-resistant bacteria, the disinfectant atomization mechanism 186 (such as a hydrogen peroxide atomizer) can be activated first to atomize the disinfectant for 5 minutes and then turned off. Then, the UV-C ultraviolet lamp group and the circulating fan 1845 minutes can be activated to carry out ultraviolet disinfection and disinfectant disinfection on the target smart ring in the target disinfection unit compartment 122.
[0084] S320. When disinfecting the target smart ring in the target disinfection unit compartment 122, the current disinfection temperature, current ultraviolet intensity, and / or current disinfectant concentration in the target disinfection unit compartment 122 are obtained in real time.
[0085] That is, when disinfecting the target smart ring in the target disinfection unit compartment 122, the disinfection status inside the compartment can be monitored in real time to determine whether the disinfection process is normal. Specifically, the normality of the disinfection process can be determined by checking whether real-time disinfection data such as the current disinfection temperature, current ultraviolet intensity, and / or current disinfectant concentration inside the compartment is normal.
[0086] S330. When the current disinfection temperature is within the preset disinfection temperature range, the current ultraviolet intensity is within the preset ultraviolet intensity range, and / or the current disinfectant concentration is within the preset disinfectant concentration range, the disinfection process is judged to be in a normal state.
[0087] If the current disinfection temperature, current ultraviolet intensity, and / or current disinfectant concentration in the chamber are all within the preset range, the real-time disinfection data in the chamber can be judged to be normal, and the disinfection process can be judged to be in a normal state; otherwise, the real-time disinfection data in the chamber is judged to be abnormal, and the disinfection process is judged to be in an abnormal state.
[0088] For example, the preset disinfection temperature range can be set to less than or equal to 35℃, and the preset ultraviolet intensity range can be set to greater than or equal to 70μW / cm². 2 The preset disinfectant concentration range is set to less than or equal to 8 ppm.
[0089] S340. When the current disinfection time is detected to have reached the target disinfection time, it is determined that the disinfection of the target smart ring in the target disinfection unit compartment 122 is completed.
[0090] When the real-time disinfection data and process within the disinfection chamber are both normal, disinfection can continue until the target disinfection duration is reached. If the real-time disinfection data within the chamber is abnormal, the disinfection process is determined to be in an abnormal state and will be immediately suspended. An abnormality alert can also be issued (for example, an abnormality prompt (such as "UV-C lamp malfunction") can be displayed on the touch screen, and a voice alert can be issued, and a simultaneous warning can be sent to the nurse station).
[0091] Furthermore, the disinfection chamber mechanism 12 may include a temperature detection sensor, an ultraviolet intensity detection sensor, and a disinfectant concentration detection sensor located within the disinfection unit chamber 122. That is, a disinfection status monitoring mechanism can be integrated within the disinfection unit chamber 122. This monitoring mechanism may include a temperature detection sensor for detecting the temperature within the disinfection unit chamber 122, an ultraviolet intensity detection sensor for detecting the ultraviolet intensity within the disinfection unit chamber 122, and a disinfectant concentration detection sensor for detecting the concentration of disinfectant mist within the disinfection unit chamber 122.
[0092] Therefore, in step S320, the real-time acquisition of the current disinfection temperature, current ultraviolet intensity, and / or current disinfectant concentration in the target disinfection unit compartment 122 may further include the following steps:
[0093] S322. When disinfecting the target smart ring in the target disinfection unit compartment 122 in the basic disinfection mode, the current disinfection temperature and current ultraviolet intensity in the target disinfection unit compartment 122 are obtained by the temperature detection sensor and the ultraviolet intensity detection sensor, respectively.
[0094] Furthermore, when disinfection is carried out using the basic disinfection mode as the target disinfection mode, the current disinfection temperature in the chamber can be collected in real time through a temperature detection sensor, and the current ultraviolet intensity in the chamber can be collected in real time through an ultraviolet intensity detection sensor (for example, it can be collected once every 10 seconds).
[0095] S324. When disinfecting the target smart ring in the target disinfection unit compartment 122 using the drug-resistant bacteria disinfection mode, the current disinfection temperature, current ultraviolet intensity, and current disinfectant concentration in the target disinfection unit compartment 122 are obtained by the temperature detection sensor, ultraviolet intensity detection sensor, and disinfectant concentration detection sensor, respectively.
[0096] Furthermore, when conducting disinfection using a drug-resistant bacteria-targeting mode, the current disinfection temperature inside the chamber can be collected in real time via a temperature sensor, the current ultraviolet intensity inside the chamber can be collected in real time via an ultraviolet intensity sensor, and the current concentration of disinfectant (such as hydrogen peroxide concentration) inside the chamber can be collected simultaneously via a disinfectant concentration sensor.
[0097] Correspondingly, step S330 may further include the following steps:
[0098] S332. When the current disinfection temperature is detected to be within the preset disinfection temperature range and the current ultraviolet intensity is within the preset ultraviolet intensity range, it is determined that the disinfection process of implementing the basic disinfection mode is in a normal state.
[0099] S334. When the current disinfection temperature is within the preset disinfection temperature range, the current ultraviolet intensity is within the preset ultraviolet intensity range, and the current disinfectant concentration is within the preset disinfectant concentration range, it is determined that the disinfection process implementing the drug-resistant bacteria disinfection mode is in a normal state.
[0100] Furthermore, the disinfection chamber mechanism 12 includes a circulating fan 184 disposed within the disinfection unit chamber 122. Moreover, after determining in step S340 that the disinfection of the target smart ring in the target disinfection unit chamber 122 is complete, the process may further include:
[0101] S350. When the disinfection of the target smart ring in the target disinfection unit compartment 122 is completed, control the UV-C ultraviolet lamp group and / or the disinfectant atomization mechanism 186 to stop working.
[0102] When the current disinfection time for the target smart ring reaches the target disinfection time, it can be determined that the disinfection performed in the basic disinfection mode or the drug-resistant bacteria disinfection mode is completed. In addition, when the disinfection performed in the basic disinfection mode is completed, the UV-C ultraviolet lamp group can be stopped in time; when the disinfection performed in the drug-resistant bacteria disinfection mode is completed, both the UV-C ultraviolet lamp group and the disinfectant atomization mechanism 186 can be stopped in time.
[0103] S360 controls the circulating fan 184 to ventilate and dissipate heat from the target disinfection unit compartment 122, and detects the real-time heat dissipation temperature and / or real-time disinfectant concentration in the target disinfection unit compartment 122.
[0104] Because the temperature inside the disinfection chamber is relatively high immediately after disinfection (i.e., real-time heat dissipation temperature), and there may still be a certain concentration of disinfectant mist remaining (i.e., real-time disinfectant concentration), it is necessary to test this data to determine whether the disinfection is qualified, so as to determine whether the target disinfection unit chamber 122 can be opened and the target smart ring can be retrieved. Furthermore, to reduce the temperature and disinfectant mist concentration inside the chamber, a circulating fan 184 can be used to dissipate heat and expel the disinfectant mist (the exhaust channel can be opened). For example, the circulating fan 184 can be run continuously for 2 minutes to achieve the purpose of cooling and expelling residual disinfectant mist.
[0105] S370. When the real-time heat dissipation temperature is detected to be within the preset heat dissipation temperature range or / and the real-time disinfectant concentration is within the preset heat dissipation concentration range, the disinfection is deemed to be qualified.
[0106] For example, the preset heat dissipation temperature range can be set to less than or equal to 30℃, and the preset heat dissipation concentration range can be set to less than or equal to 0.5ppm. When the real-time heat dissipation temperature is ≤30℃ or / and the real-time disinfectant concentration is ≤0.5ppm, the environment inside the chamber is judged to meet the standards, and the disinfection task is judged to be qualified; otherwise, the disinfection task is judged to be unqualified.
[0107] Furthermore, in step S400, after the disinfection of the target smart ring is completed, the second identity information of the current user is obtained, and the disinfection chamber mechanism 12 is activated based on the user's second identity information. The process information of disinfecting the target smart ring is recorded and stored, which may further include the following steps:
[0108] S410. After the disinfection of the target smart ring is completed, a command to allow unlocking of the disinfection chamber is sent to the identity verification device 16.
[0109] After the disinfection task is marked as qualified, the control mechanism (such as the controller) can send an authorization command to the identity verification device 16 (fingerprint collection device) to unlock the disinfection chamber. The current user can then prepare to open the disinfected disinfection unit chamber 122 (i.e. the target disinfection unit chamber 122) to take away the smart ring that has been disinfected.
[0110] S420: Based on the instruction to unlock the disinfection chamber, obtain the current user's secondary identity information.
[0111] After receiving permission to unlock the disinfection compartment, the authentication device 16 requires the current user to re-enter their identity information (i.e., second identity information) through the authentication device 16 to confirm whether the current user has permission to open the target disinfection unit compartment 122. At this time, the authentication device 16 can acquire the current user's second identity information. Furthermore, the second identity information can be the same as the first identity information (i.e., the two identity verifications are performed by the same person), or they can be different (i.e., the two identity verifications can be performed by two different people).
[0112] S430. When the second identity information is detected to match the preset identity information, the disinfection chamber mechanism 12 is controlled to open the target disinfection unit chamber 122.
[0113] Similarly, the control mechanism (such as the controller) of the smart ring disinfection and control system 10 can pre-store the current user's preset identity information (i.e., the user's preset fingerprint information, the user's preset password, and the user's preset facial information). After obtaining the current user's second identity information through the identity verification device 16, the current user's second identity information can be compared and matched with the preset identity information in the system. When the two match successfully, it can be proven that the current user's identity information has been pre-stored in the system and that the user is a user with the right to use the disinfection chamber mechanism 12 (i.e., an authorized user). At this time, the disinfection chamber mechanism 12 can be controlled to open the target disinfection unit chamber 122 so that the current user can take away the disinfected smart ring from the target disinfection unit chamber 122.
[0114] S440. When the target smart ring in the target disinfection unit compartment 122 is detected to be removed, it is determined that the disinfection task for the target smart ring is completed, and the process information of disinfection of the target smart ring is recorded and stored.
[0115] Furthermore, the process information for disinfecting the target smart ring includes the disinfection task ID, the current user's identification information, the target disinfection mode, the target disinfection duration, the ring disinfection status, the ring removal and placement time, and the ring placement location number. This allows for the recording and storage of information throughout the entire disinfection process, from initiation to completion, facilitating subsequent traceability.
[0116] In summary, the intelligent ring multi-pathogen closed-loop disinfection and control method proposed in this invention, through the design of a centralized management disinfection chamber (and disinfection chamber mechanism 12), achieves automation of entry-disinfection-qualification-retrieval, unifies standards, blocks cross-infection, realizes a closed-loop disinfection system, and prevents cross-infection. By integrating the identity verification device 16 with the disinfection chamber mechanism 12, only authorized users can open the door, and the fingerprint of opening the chamber, the retrieval time, and the ring number can be recorded to form a traceability ledger, realizing identity traceability and clarifying responsibilities. By linking the disinfection module with the identity verification device 16, unlocking and retrieval are only allowed after disinfection meets the standards, avoiding the misuse of unqualified rings, strengthening security connections, realizing linked disinfection and authorization, and improving security. The outer shell of the disinfection chamber mechanism 12 is made of corrosion-resistant material, which is used to resist the corrosion of disinfectant agents, and is equipped with 253.7nm. The UV-C lamp assembly (coverage ≥99.9%), the disinfectant atomization mechanism 186 (such as a hydrogen peroxide atomizer), and the circulating fan 184 support medical staff to freely set disinfection modes and durations according to pathogen types, achieving precise adaptation to meet differentiated disinfection needs.
[0117] Furthermore, in other embodiments, such as Figure 3 As shown, this invention also proposes a smart ring multi-pathogen closed-loop disinfection and control device 1000, which is applied to the smart ring disinfection and control system 1010. Figure 2 As shown, the smart ring disinfection and control system 1010 includes a disinfection chamber mechanism 12 with multiple disinfection unit chambers 122, each of which can individually store and disinfect at least one smart ring.
[0118] Specifically, such as Figure 3 As shown, the smart ring multi-pathogen closed-loop disinfection and control device 100 may include:
[0119] The disinfection start control module 1100 is used to obtain the first identity information of the current user and start the disinfection chamber mechanism 12 according to the first identity information of the current user.
[0120] The disinfection information acquisition module 1200 is used to respond to the ring disinfection command input by the current user and control the disinfection chamber mechanism 12 to acquire the target disinfection information; the target disinfection information includes the target disinfection mode, the target disinfection time, and the target disinfection unit chamber 122;
[0121] The disinfection execution and monitoring module 1300 is used to control the disinfection chamber mechanism 12 to disinfect the target smart ring based on the obtained target disinfection information, and to monitor the disinfection process in real time.
[0122] The disinfection completion control module 1400 is used to obtain the second identity information of the current user after the disinfection of the target smart ring is completed, activate the disinfection chamber mechanism 12 according to the second identity information of the current user, and record and store the process information of disinfection of the target smart ring.
[0123] The intelligent ring multi-pathogen closed-loop disinfection and control device 100 described in this embodiment corresponds to the intelligent ring multi-pathogen closed-loop disinfection and control method described above. The functions of each module in the intelligent ring multi-pathogen closed-loop disinfection and control device 100 in this embodiment are described in detail in the corresponding method embodiments, and will not be repeated here.
[0124] In addition, such as Figure 4 As shown, in some other embodiments, the present invention also proposes an intelligent ring-shaped disinfection and control system 10, including a disinfection chamber mechanism 12 having multiple disinfection unit chambers 122, an identity verification device 16 connected to the disinfection chamber mechanism 12, a disinfection command input device 14 connected to the disinfection chamber mechanism 12, a disinfection execution mechanism 18, and a controller connected to the disinfection chamber mechanism 12, the identity verification device 16, the disinfection command input device 14, and the disinfection execution mechanism 18. Furthermore, the disinfection execution mechanism 18 may include a UV-C ultraviolet lamp assembly and a circulating fan 184 disposed within the disinfection unit chamber 122, and a disinfectant atomizing mechanism 186 connected to the disinfection unit chamber 122.
[0125] Specifically, the controller is used to implement the smart ring multi-pathogen closed-loop disinfection and control method described above. The specific implementation method can be found in the details of the aforementioned smart ring multi-pathogen closed-loop disinfection and control method, and will not be repeated here.
[0126] Furthermore, the present invention also proposes a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, are used to implement all or part of the method steps of the smart ring multi-pathogen closed-loop disinfection and control method as described above.
[0127] In addition, the present invention also proposes a computer program product for running on a computer to realize the smart ring multi-pathogen closed-loop disinfection and control method as described above.
[0128] The present invention can implement all or part of the processes in the above methods, or it can be accomplished by a computer program instructing related hardware. The computer program can be stored in a computer-readable storage medium, and when executed by a processor, it can implement the steps of the various method embodiments described above. The computer program includes computer program code, which can be in the form of source code, object code, executable file, or some intermediate form. The computer-readable medium can include: any entity or device capable of carrying computer program code, recording media, USB flash drive, portable hard drive, magnetic disk, optical disk, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signals, telecommunication signals, and software distribution media, etc. It should be noted that the content included in the computer-readable medium can be appropriately added or removed according to the requirements of legislation and patent practice in the jurisdiction. For example, in some jurisdictions, according to legislation and patent practice, the computer-readable medium does not include electrical carrier signals and telecommunication signals.
[0129] The processor can be a Central Processing Unit (CPU), or other general-purpose processors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor can be a microprocessor or any conventional processor. The processor is the control center of the computer device, connecting all parts of the computer device through various interfaces and lines.
[0130] Memory can be used to store computer programs and / or models. The processor performs various functions of the computer device by running or executing the computer programs and / or models stored in the memory, and by accessing data stored in the memory. Memory can primarily include a program storage area and a data storage area. The program storage area can store the operating system and at least one application program required for a function (e.g., sound playback, image playback, etc.); the data storage area can store data created based on the use of the mobile phone (e.g., audio data, video data, etc.). Furthermore, memory can include high-speed random access memory, and can also include non-volatile memory, such as hard disks, RAM, plug-in hard disks, SmartMedia Cards (SMC), Secure Digital (SD) cards, Flash Cards, at least one disk storage device, flash memory device, or other volatile solid-state storage devices.
[0131] Those skilled in the art will understand that embodiments of the present invention can be provided as methods, systems, servers, or computer program products. Therefore, the present invention can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present invention can take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage and optical storage) containing computer-usable program code.
[0132] This invention is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), servers, and computer program products according to embodiments of the invention. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart... Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.
[0133] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.
[0134] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.
[0135] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this invention and their equivalents, this invention also intends to include these modifications and variations.
Claims
1. A method for intelligent ring multi-pathogen closed-loop disinfection management and control, applied to an intelligent ring disinfection management and control system. The intelligent ring disinfection management and control system comprises a disinfection warehouse mechanism with a plurality of disinfection unit warehouses; It is characterized in that, The method comprises: obtaining first identity information of a current user, and starting the disinfection warehouse mechanism according to the first identity information of the current user to start a disinfection task; in response to a ring disinfection instruction input by the current user, controlling the disinfection warehouse mechanism to obtain target disinfection information; the target disinfection information comprises a target disinfection mode, a target disinfection time, and a target disinfection unit warehouse; controlling the disinfection warehouse mechanism to disinfect a target intelligent ring according to the obtained target disinfection information, and monitoring the disinfection process in real time; after completing the disinfection of the target intelligent ring, obtaining second identity information of the current user, and starting the disinfection warehouse mechanism according to the second identity information of the current user to record and store process information of the disinfection of the target intelligent ring.
2. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 1, characterized in that, The intelligent ring disinfection management and control system comprises a disinfection instruction input device connected to the disinfection warehouse mechanism; in response to a ring disinfection instruction input by the user, the disinfection warehouse mechanism obtains target disinfection information, comprising: obtaining a ring disinfection instruction input by the user through the disinfection instruction input device; the ring disinfection instruction comprises a target warehouse selection instruction, a disinfection time setting instruction, and a disinfection mode selection instruction; according to the obtained target warehouse selection instruction, disinfection time setting instruction and disinfection mode selection instruction, the disinfection warehouse mechanism obtains the corresponding target disinfection unit warehouse, target disinfection time and target disinfection mode to prepare for disinfecting the target intelligent ring in the target disinfection unit warehouse.
3. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 2, characterized in that, The disinfection mode comprises a basic disinfection mode and a drug-resistant bacteria disinfection mode; The basic disinfection mode refers to disinfecting the intelligent ring by the UV-C ultraviolet lamp group for a first preset disinfection time; The drug-resistant bacteria disinfection mode refers to disinfecting the intelligent ring by the UV-C ultraviolet lamp group and the disinfectant atomization mechanism for a second preset disinfection time; The target disinfection time comprises a first preset disinfection time, a second preset disinfection time or a custom disinfection time.
4. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 3, characterized in that, The disinfection warehouse mechanism comprises a UV-C ultraviolet lamp group and a circulating fan arranged in the disinfection unit warehouse, and a disinfectant atomization mechanism communicated with the disinfection unit warehouse; according to the obtained target disinfection information, the disinfection warehouse mechanism disinfects the target intelligent ring and monitors the disinfection process in real time, comprising: according to the obtained disinfection start instruction for the target intelligent ring in the target disinfection unit warehouse, controlling the UV-C ultraviolet lamp group, the circulating fan, or / and the disinfectant atomization mechanism corresponding to the target disinfection unit warehouse of the disinfection warehouse mechanism to disinfect the target intelligent ring in the target disinfection unit warehouse according to the target disinfection time and the target disinfection mode; when disinfecting the target intelligent ring in the target disinfection unit warehouse, the current disinfection temperature, the current ultraviolet intensity, or / and the current disinfectant concentration in the target disinfection unit warehouse are obtained in real time; when it is detected that the current disinfection temperature is within a preset disinfection temperature range, the current ultraviolet intensity is within a preset ultraviolet intensity range, or / and the current disinfectant concentration is within a preset disinfectant concentration range, it is judged that the disinfection process is in a normal state; When it is detected that the current sterilization duration reaches the target sterilization duration, it is judged that the sterilization of the target smart ring in the target sterilization unit warehouse is completed.
5. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 4, characterized in that, The sterilization warehouse mechanism includes a temperature detection sensor, an ultraviolet intensity detection sensor, and a disinfectant concentration detection sensor arranged in the sterilization unit warehouse. The real-time acquisition of the current sterilization temperature, the current ultraviolet intensity, or / and the current disinfectant concentration in the target sterilization unit warehouse includes: When the target smart ring in the target sterilization unit warehouse is sterilized in the basic sterilization mode, the current sterilization temperature and the current ultraviolet intensity in the target sterilization unit warehouse are acquired by the temperature detection sensor and the ultraviolet intensity detection sensor respectively; When the target smart ring in the target sterilization unit warehouse is sterilized in the drug-resistant bacteria sterilization mode, the current sterilization temperature, the current ultraviolet intensity, and the current disinfectant concentration in the target sterilization unit warehouse are acquired by the temperature detection sensor, the ultraviolet intensity detection sensor, and the disinfectant concentration detection sensor respectively.
6. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 4, characterized in that, The sterilization warehouse mechanism includes a circulating fan arranged in the sterilization unit warehouse. After judging that the sterilization of the target smart ring in the target sterilization unit warehouse is completed, the method further includes: When it is detected that the sterilization of the target smart ring in the target sterilization unit warehouse is completed, the UV-C ultraviolet lamp group or / and the disinfectant atomization mechanism is controlled to stop working; The circulating fan is controlled to ventilate and dissipate heat for the target sterilization unit warehouse, and the real-time dissipation temperature or / and the real-time disinfectant concentration in the target sterilization unit warehouse are detected; When it is detected that the real-time dissipation temperature is within a preset dissipation temperature range or / and the real-time disinfectant concentration is within a preset dissipation concentration range, it is judged that the sterilization is qualified.
7. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 1, characterized in that, The smart ring sterilization management system includes an identity verification device connected with the sterilization warehouse mechanism. The method for acquiring the first identity recognition information of the current user and starting the sterilization warehouse mechanism according to the first identity recognition information of the current user includes: The first identity recognition information of the current user is acquired by the identity verification device; When it is detected that the first identity recognition information matches the preset identity recognition information, it is judged that the current user is an authorized user; When it is detected that the current user is an authorized user, the sterilization warehouse mechanism is controlled to open the sterilization unit warehouse.
8. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 7, characterized in that, The method for acquiring the first identity recognition information of the current user and starting the sterilization warehouse mechanism according to the first identity recognition information of the current user further includes: When it is detected that the first identity recognition information does not match the preset identity recognition information for a plurality of times in succession, it is judged that the current user is an unauthorized user; When it is detected that the current user is an unauthorized user, the identity verification device is controlled to be locked, and the sterilization warehouse mechanism is controlled to send a reminder information.
9. The intelligent ring multi-pathogen closed-loop disinfection and control method according to claim 7, characterized in that, When the sterilization of the target smart ring is completed, the second identity recognition information of the current user is acquired, the sterilization warehouse mechanism is opened according to the second identity recognition information of the user, and the process information of the sterilization of the target smart ring is recorded and stored, including: When the sterilization of the target smart ring is completed, a sterilization warehouse unlocking permission instruction is sent to the identity verification device; According to the sterilization warehouse unlocking permission instruction, the second identity recognition information of the current user is acquired; When it is detected that the second identity recognition information matches the preset identity recognition information, the control disinfection warehouse mechanism opens the target disinfection unit warehouse; When it is detected that the target smart ring in the target disinfection unit warehouse is taken out, it is judged that the disinfection task for the target smart ring is completed, and the process information of disinfecting the target smart ring is recorded and stored.
10. The intelligent ring multi-pathogen closed-loop disinfection and management method according to claim 9, characterized in that, The process information of disinfecting the target smart ring includes disinfection task ID, current user's identity recognition information, target disinfection mode, target disinfection time, ring disinfection state, ring taking and placing time, and ring placing position number.
11. A smart ring multi-pathogen closed-loop disinfection management and control device applied to a smart ring disinfection management and control system; the smart ring disinfection management and control system comprises a disinfection warehouse mechanism with a plurality of disinfection unit warehouses; characterized in that The device comprises: A disinfection start control module for obtaining first identity recognition information of a current user and starting the disinfection warehouse mechanism according to the first identity recognition information of the current user; A disinfection information acquisition module for controlling the disinfection warehouse mechanism to obtain target disinfection information in response to a ring disinfection instruction input by the current user; the target disinfection information includes target disinfection mode, target disinfection time, and target disinfection unit warehouse; A disinfection execution and monitoring module for controlling the disinfection warehouse mechanism to disinfect a target smart ring according to the obtained target disinfection information and monitoring the disinfection process in real time; A disinfection completion control module for obtaining second identity recognition information of the current user after completing disinfection of the target smart ring, opening the disinfection warehouse mechanism according to the second identity recognition information of the current user, and recording and storing process information of disinfecting the target smart ring.
12. A smart ring disinfection management and control system, characterized in that, It comprises: A disinfection warehouse mechanism with a plurality of disinfection unit warehouses; An identity verification device connected to the disinfection warehouse mechanism; A disinfection instruction input device connected to the disinfection warehouse mechanism; A disinfection execution mechanism comprising a UV-C ultraviolet lamp group and a circulating fan arranged in the disinfection unit warehouse, and a disinfectant misting mechanism in communication with the disinfection unit warehouse; A controller connected to the disinfection warehouse mechanism, the identity verification device, the disinfection instruction input device, and the disinfection execution mechanism; The controller is used to implement the smart ring multi-pathogen closed-loop disinfection management and control method of any one of claims 1-10.
13. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer execution instructions, and the computer execution instructions are executed by the processor to implement all method steps or part of the method steps of the smart ring multi-pathogen closed-loop disinfection management and control method of any one of claims 1-10.