A sterilizing cabinet and a control method, control device and control system thereof

By receiving automatic operation commands and recording operating data, the system automatically controls the operation of the disinfection chamber, solving the problem of cumbersome operation of disinfection cabinets, realizing intelligent control of disinfection cabinets, and reducing user operating costs.

CN117045840BActive Publication Date: 2026-05-01HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HANGZHOU ROBAM APPLIANCES CO LTD
Filing Date
2023-09-26
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing disinfection cabinet control system requires users to manually select the disinfection mode, especially multi-chamber disinfection cabinets. This operation is cumbersome and prone to problems such as being untimely or too frequent, failing to meet the development trend of intelligentization.

Method used

By receiving the user's automatic operation command, acquiring and recording the operating data of the disinfection chamber, determining whether the preset threshold has been reached, and automatically controlling the disinfection chamber to operate with the target operating parameters, intelligent control of each disinfection chamber is achieved.

Benefits of technology

No manual operation is required from the user; the disinfection cabinet can operate automatically when conditions are met, reducing operating costs and increasing the level of intelligence, especially the advantages of multi-layer disinfection cabinets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a disinfection cabinet and a control method, a control device and a control system thereof. The disinfection cabinet comprises at least one disinfection chamber, each disinfection chamber can be independently operated, the control method comprises receiving an automatic operation instruction of a user, starting an automatic operation mode based on the automatic operation instruction, acquiring and recording working condition data of the disinfection chamber, judging whether the working condition data of the disinfection chamber reaches a preset threshold value, and controlling the disinfection chamber to automatically operate with target operation parameters if yes. The technical scheme of the embodiment of the application can realize intelligent control of the disinfection cabinet.
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Description

Technical Field

[0001] This invention relates to the field of disinfection equipment technology, and in particular to a disinfection cabinet and its control method, control device, and control system. Background Technology

[0002] A disinfection cabinet is a tool that uses ultraviolet rays, far-infrared rays, high temperatures, ozone, or other methods to dry, sterilize, disinfect, and dehumidify the items inside. As living standards continue to improve, people are paying more attention to their health and hygiene, leading to the widespread use of disinfection cabinets.

[0003] Currently, most disinfection cabinets operate by allowing users to select the desired disinfection mode. The control system of the disinfection cabinet can then control the cabinet to operate in the corresponding disinfection mode based on the user's selection. This increases the user's operating costs (such as time), especially for disinfection cabinets with multiple chambers that can operate independently. Users need to select the disinfection mode for each chamber separately, which is not only cumbersome but may also lead to problems such as untimely or excessive operation, which is not in line with the trend of intelligent development. Summary of the Invention

[0004] This invention provides a disinfection cabinet and its control method, control device, and control system to achieve intelligent control of the disinfection cabinet.

[0005] In a first aspect, the present invention provides a control method for a disinfection cabinet, the disinfection cabinet comprising at least one disinfection chamber, each disinfection chamber being capable of independent operation; the control method includes:

[0006] Receive the user's auto-run command and start the auto-run mode based on the command;

[0007] Acquire and record the operating data of the disinfection chamber;

[0008] Determine whether the operating data of the disinfection chamber has reached the preset threshold; if so, control the disinfection chamber to operate automatically with the target operating parameters.

[0009] Optionally, the operating data includes downtime data and chamber usage data, and the preset thresholds include preset downtime thresholds and preset usage thresholds; the control methods include:

[0010] If the downtime data reaches the preset downtime threshold, and / or if the chamber usage data reaches the preset usage threshold, the disinfection chamber will be controlled to operate automatically with the target operating parameters.

[0011] Optionally, the chamber usage data includes at least one of the chamber opening duration and the number of times the chamber is opened.

[0012] Optionally, the chamber usage data includes the duration of chamber door opening, and the preset usage threshold includes a preset duration threshold;

[0013] Acquire and record the operating data of the disinfection chamber, including: acquire and record the duration of the chamber door being open;

[0014] Acquire and record the duration of the sterilization chamber door being open, including:

[0015] Obtain the initial opening duration of the disinfection chamber;

[0016] Determine whether the initial opening time has reached the preset time threshold; if not, continue to obtain the subsequent opening time of the disinfection chamber, and add each subsequent opening time to the initial opening time, until the cumulative opening time value corresponding to any subsequent opening time reaches the preset time threshold.

[0017] Optionally, while recording downtime data, the control method also includes:

[0018] Determine if the door of the disinfection chamber is open; if so, clear the current downtime data and re-record the downtime data after the door is closed.

[0019] Optionally, before determining whether the operating data of the disinfection chamber has reached a preset threshold, the control method further includes:

[0020] Determine whether a user's self-disinfection instruction has been received;

[0021] If so, based on the autonomous disinfection command, control the disinfection chamber to operate in autonomous disinfection mode and clear the current operating data;

[0022] If not, then the system will determine whether the operating data of the disinfection chamber has reached the preset threshold.

[0023] Optionally, the disinfection cabinet's operating mode also includes an autonomous disinfection mode. While controlling the disinfection chamber to operate in autonomous disinfection mode, the control method also includes:

[0024] Record and update the operating parameters of the disinfection chamber in autonomous disinfection mode;

[0025] In automatic operation mode, the disinfection chamber is controlled to operate automatically with target operating parameters, including:

[0026] Obtain the updated operating parameters of the disinfection chamber in autonomous disinfection mode;

[0027] The updated operating parameters are set as the target operating parameters, and the disinfection chamber is controlled to operate automatically at the target operating parameters.

[0028] Optionally, after controlling the disinfection chamber to operate automatically at the target operating parameters, the control method further includes:

[0029] The current operating data is cleared, and the acquisition and recording of operating data for the disinfection chamber is restarted.

[0030] Optionally, after determining that the operating data of the disinfection chamber reaches a preset threshold, the control method further includes:

[0031] Get the current time;

[0032] Determine if the current time is within the preset target time interval; if so, execute the control to automatically run the disinfection chamber with the target operating parameters.

[0033] Optionally, the target time interval is between 22:00 and 6:00.

[0034] In a second aspect, the present invention provides a control device for a disinfection cabinet, the disinfection cabinet comprising at least one disinfection chamber, each disinfection chamber being capable of independent operation; the control device includes:

[0035] The automatic run startup module is used to receive the user's automatic run command and start the automatic run mode based on the automatic run command;

[0036] The data recording module is used to acquire and record the operating data of the disinfection chamber;

[0037] The control module is used to determine whether the operating data of the disinfection chamber has reached the preset threshold. If so, it controls the disinfection chamber to run automatically with the target operating parameters.

[0038] Thirdly, the present invention also provides a disinfection cabinet, which includes at least one disinfection chamber, each of which can operate independently; the disinfection cabinet also includes:

[0039] Processor; and

[0040] The memory that is communicatively connected to the processor; wherein,

[0041] The memory stores a computer program that can be executed by a processor, which enables the processor to perform the control method provided in any embodiment of the present invention.

[0042] Fourthly, the present invention also provides a control system for use in a disinfection cabinet. The control system includes an automatic operation enable switch, which activates the automatic operation mode of the disinfection cabinet when the user triggers the automatic operation enable switch.

[0043] Optionally, the control system also includes an autonomous disinfection enable switch, which activates the autonomous disinfection mode when triggered by the user.

[0044] The technical solution of this invention receives the user's automatic operation command and, based on the command, initiates an automatic operation mode. In this mode, it acquires and records the operating data of the disinfection chamber. When the operating data of the disinfection chamber reaches a preset threshold, it controls the chamber to operate automatically with target parameters. This intelligently controls each disinfection chamber in the disinfection cabinet to operate automatically when the operating conditions are met, performing functions such as disinfection / drying without manual operation by the user. This reduces the user's operating costs, avoids untimely or excessively frequent operation, and improves the product's intelligence. The advantages are more pronounced for disinfection cabinets with more layers.

[0045] It should be understood that the description in this section is not intended to identify key or essential features of the embodiments of the present invention, nor is it intended to limit the scope of the invention. Other features of the invention will become readily apparent from the following description. Attached Figure Description

[0046] 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.

[0047] Figure 1 This is a flowchart illustrating a control method for a disinfection cabinet provided in Embodiment 1 of the present invention;

[0048] Figure 2 This is a flowchart illustrating a control method for a disinfection cabinet provided in Embodiment 2 of the present invention;

[0049] Figure 3 This is a flowchart illustrating a control method for a disinfection cabinet provided in Embodiment 3 of the present invention;

[0050] Figure 4 This is a flowchart illustrating a control method for a disinfection cabinet provided in Embodiment 4 of the present invention;

[0051] Figure 5 This is a flowchart illustrating a control method for a disinfection cabinet provided in Embodiment 5 of the present invention;

[0052] Figure 6 This is a detailed flowchart of a control method for a disinfection cabinet provided in Embodiment Six of the present invention;

[0053] Figure 7 This is a schematic diagram of the structure of a control device for a disinfection cabinet provided in Embodiment 7 of the present invention;

[0054] Figure 8This is a schematic diagram of the structure of a disinfection cabinet provided in Embodiment 8 of the present invention. Detailed Implementation

[0055] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.

[0056] Various modifications and variations can be made to this application without departing from its spirit or scope, which will be apparent to those skilled in the art. Therefore, this application is intended to cover modifications and variations falling within the scope of the corresponding claims (the claimed technical solutions) and their equivalents. It should be noted that the embodiments provided in this application can be combined with each other without contradiction.

[0057] It should be noted that the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or device.

[0058] Example 1

[0059] Figure 1 This is a flowchart illustrating a control method for a disinfection cabinet according to Embodiment 1 of the present invention. The disinfection cabinet may include at least one disinfection chamber. When the disinfection cabinet includes multiple disinfection chambers, each disinfection chamber can operate independently. This embodiment is applicable to situations where the disinfection cabinet automatically performs functions such as disinfection and drying, realizing intelligent control of the disinfection cabinet. This method can be executed by a control device, which can be implemented in hardware and / or software. Figure 1 As shown, the control method may include the following steps:

[0060] S101. Receive the user's automatic operation command and start the automatic operation mode based on the automatic operation command.

[0061] The automatic operation command refers to the control command that controls the automatic operation of the disinfection cabinet. Upon receiving the automatic operation command sent by the user, it indicates that the user needs the disinfection cabinet to operate automatically and can activate the automatic operation mode. It should be noted that activating the automatic operation mode means that the automatic operation mode is enabled, but it does not mean that the disinfection cabinet will immediately start performing disinfection / drying functions. Rather, it will only start operating after the conditions for performing the function are met (see S102-S104 for details).

[0062] Specifically, users can send automatic operation commands through any human-computer interaction method, and this embodiment of the invention is not limited to this. For example, the human-computer interaction module can be a user control panel on the disinfection cabinet. The user control panel can be equipped with an enable switch / icon for automatic operation. Users can send an automatic operation command and activate the automatic operation mode by touching the enable switch. For example, for disinfection cabinets that can be networked or remotely controlled, users can also send automatic operation commands and activate the automatic operation mode through relevant application software on mobile devices (such as mobile phones).

[0063] It should be noted that, to meet diverse user needs, the user control panel of the disinfection cabinet can retain several enable switches / icons corresponding to pre-set disinfection / drying programs, allowing users to independently select the disinfection cabinet to operate in a certain pre-set disinfection mode (i.e., the following self-disinfection mode). For example, the pre-set disinfection mode may include various modes such as strong disinfection, medium disinfection, weak disinfection, disinfection and drying simultaneously, and drying, etc., and this embodiment of the invention does not limit this.

[0064] S102. Acquire and record the operating data of the disinfection chamber.

[0065] The operating condition data of the disinfection chamber can include data on its operation and usage. This data may include at least one type of data, or multiple types; this embodiment of the invention does not limit this. By acquiring and recording the operating condition data of the disinfection chamber, it is possible to determine whether the chamber meets the conditions for performing functions such as disinfection / drying through analysis of the data.

[0066] The method for acquiring operating condition data can be adaptively set according to specific needs, and this embodiment of the invention does not limit this. For example, operating condition data may be the duration for which the disinfection chamber has not performed disinfection / drying functions (i.e., inactive time), which can be obtained through a timer. If the duration is short, the disinfection chamber may not yet need disinfection / drying and does not need to be operated. If the duration is long, the disinfection chamber may need disinfection / drying, thus requiring control of the disinfection chamber's operation. Therefore, the duration can be analyzed to determine whether the disinfection chamber has met the operating conditions.

[0067] It should be noted that when the disinfection cabinet includes multiple disinfection chambers, each chamber can operate independently. Therefore, the operating data for each chamber is independent. It is necessary to acquire and record the operating data for each chamber separately, analyze it separately, and determine whether each chamber meets the operating conditions. Since the control logic of each chamber is the same, the control method for only one chamber will be described below.

[0068] S103. Determine whether the operating data of the disinfection chamber has reached the preset threshold; if yes, proceed to S104; if no, return to S102.

[0069] The preset threshold can be adaptively set based on the actual operating data collected, and the specific value is not limited in this embodiment of the invention. When the operating data of a disinfection chamber reaches the preset threshold, it indicates that the disinfection chamber has met the conditions for performing functions such as disinfection / drying, and the disinfection chamber can be controlled to operate automatically. If the operating data of the disinfection chamber does not reach the preset threshold, it indicates that the disinfection chamber has not yet met the operating conditions, and the operating data can continue to be acquired and recorded until the operating data reaches the preset threshold, and then S104 is executed.

[0070] It should be noted that recording operating data before it reaches the preset threshold can be understood as an accumulation process of the acquired operating data. For example, the aforementioned non-running time is essentially the accumulated duration of the non-execution of the disinfection / drying function. Only when the accumulated time reaches the corresponding preset threshold can the automatic operation of the disinfection chamber be selected. If the accumulated time does not reach the preset threshold, the timer will continue indefinitely.

[0071] It should also be noted that when acquiring multiple operating condition data, each type of operating condition data is assigned a preset threshold, and the data is compared with its corresponding preset threshold to determine whether the operating conditions have been met.

[0072] S104. Control the disinfection chamber to operate automatically with the target operating parameters.

[0073] The target operating parameters may include the function to be performed and parameters such as the time and temperature for performing that function. In automatic operation mode, the target operating parameters of each disinfection chamber can be preset or determined according to user habits. This embodiment of the invention does not limit this, and will be illustrated in the following description.

[0074] A disinfection chamber can have only disinfection functions, only drying functions, or both. Taking a disinfection chamber with both disinfection and drying functions as an example, the target operating parameters are used to determine which function the disinfection chamber needs to perform, and parameters such as the time and temperature for performing that function. For example, in a specific embodiment, the target operating parameters of the disinfection chamber may include parameters such as performing the drying function, a time of 20 minutes, and a temperature of 100°C.

[0075] Understandably, the operation of a disinfection chamber specifically refers to the start of operation of the load corresponding to the disinfection chamber. Once the target operating parameters are determined, the electrical parameters (such as current / voltage) of the load corresponding to the disinfection chamber can be determined. When the load of the disinfection chamber operates according to these electrical parameters, the disinfection chamber can automatically execute the corresponding function. For example, a disinfection chamber may have functions such as disinfection and drying. Accordingly, the disinfection chamber is equipped with a disinfection load and a drying load. If the disinfection chamber performs the disinfection function, the disinfection load operates; if the disinfection chamber performs the drying function, the drying load operates.

[0076] It should be noted that since disinfection and drying are common functions of disinfection cabinets, this embodiment of the invention is only used as an example for illustration. Disinfection cabinets may also have other functions, and this embodiment of the invention does not limit them.

[0077] In summary, this embodiment of the invention receives the user's automatic operation command and, based on the command, initiates an automatic operation mode. In this mode, it acquires and records the operating data of the disinfection chambers. When the operating data of the disinfection chambers reaches a preset threshold, it controls the chambers to operate automatically with target parameters. This intelligently controls each disinfection chamber in the disinfection cabinet to operate automatically when the operating conditions are met, performing functions such as disinfection / drying without manual operation by the user. This reduces the user's operating costs, avoids untimely or excessively frequent operations, and improves the product's intelligence. Moreover, the advantages are more pronounced for disinfection cabinets with more layers.

[0078] Based on the above embodiments, such as Figure 1 As shown, optionally, after the disinfection chamber is controlled to run automatically with the target operating parameters, the current operating data can be cleared, and then the operating data of the disinfection chamber can be acquired and recorded again. When the operating data meets the conditions, the disinfection chamber is controlled to run automatically with the target parameters. This cycle continues until the user turns off the automatic operation mode or turns off the disinfection cabinet.

[0079] Example 2

[0080] Figure 2This is a flowchart illustrating a control method for a disinfection cabinet according to Embodiment 2 of the present invention. Based on the above embodiments, feasible solutions for operating condition data and judgment conditions are further described in detail; similarities will not be repeated. In this embodiment, optionally, the operating condition data includes downtime data and chamber usage data, and the preset thresholds include preset downtime thresholds and preset usage thresholds. Correspondingly, as... Figure 2 As shown, the control method for a disinfection cabinet may include the following steps:

[0081] S201. Receive the user's automatic operation command and start the automatic operation mode based on the automatic operation command.

[0082] S202. Obtain and record the downtime data and usage data of the disinfection chamber.

[0083] The downtime data refers to the duration during which the sterilization chamber has not performed any functions since the start of automatic operation. If the sterilization chamber has not performed any functions for an extended period, it may be necessary to control its operation to perform functions such as sterilization / drying. For example, downtime data can be obtained through a timer.

[0084] The chamber usage data refers to data related to user usage of the sterilization chamber. Specifically, a user's action of opening the sterilization chamber to retrieve / place items can be considered as the user using the sterilization chamber. Once a user uses the sterilization chamber, the environment of that chamber is disrupted, and the items inside may require sterilization / drying. Therefore, the chamber usage data can be analyzed to determine whether the operating conditions have been met.

[0085] S203. Determine whether the downtime data has reached the preset downtime threshold, and / or determine whether the chamber usage data has reached the preset usage threshold; if yes, proceed to S204; if no, return to S202.

[0086] Specifically, S203 includes two judgment conditions: first, whether the downtime data has reached the preset downtime threshold; and second, whether the chamber usage data has reached the preset usage threshold. Understandably, when the judgment result of one of the two judgment conditions is "yes", the final judgment result is "yes" and S204 can be executed. When the judgment results of both judgment conditions are "no", that is, when the downtime has not reached the preset downtime threshold and the chamber usage data has not reached the preset usage threshold, the final judgment result is "no" and S202 can be executed.

[0087] Among them, the preset shutdown threshold corresponds to the shutdown duration data, representing the upper limit of the time during which the disinfection chamber does not perform any functions. When the shutdown duration data reaches the upper limit, the disinfection chamber can be controlled to run automatically.

[0088] It should be noted that the specific value of the preset shutdown threshold is not limited in the embodiments of the present invention, and those skilled in the art can set it themselves. For example, the preset shutdown threshold can be between 4h and 8h.

[0089] Among them, the preset usage threshold corresponds to the chamber usage data, representing the upper limit of the user's use of the disinfection chamber. When the chamber usage data reaches the upper limit, the disinfection chamber can be controlled to run automatically.

[0090] S204. Control the disinfection chamber to operate automatically with the target operating parameters.

[0091] This invention, through setting operating condition data including downtime data and chamber usage data, and preset thresholds including preset downtime thresholds and preset usage thresholds, controls the disinfection chamber to automatically operate with target operating parameters and perform functions such as disinfection / drying when at least one of the downtime data and chamber usage data reaches the preset usage threshold is met. This allows for timely and accurate determination of whether the disinfection chamber meets operating conditions, improving the reliability of the intelligent operation of the disinfection cabinet and ensuring a better user experience.

[0092] It should be noted that the above embodiment is only used as an example of simultaneously acquiring downtime data and chamber usage data, and controlling the automatic operation of the disinfection chamber when at least one of the two reaches its corresponding preset threshold. This control method is not unique.

[0093] For example, in another embodiment, the operating condition data may include only one type of data. For instance, the operating condition data may include downtime data, and correspondingly, the preset threshold may include a preset downtime threshold. Alternatively, the operating condition data may include chamber usage data, and correspondingly, the preset threshold may include a preset usage threshold. This configuration simplifies the judgment logic and improves computational efficiency.

[0094] For example, in another embodiment, when the operating data includes both downtime data and chamber usage data, the sterilization chamber can be automatically controlled to run only when both the downtime data and chamber usage data reach a preset downtime threshold and a preset usage threshold. Otherwise, data acquisition and threshold judgment continue until both conditions are met. This setting ensures that the sterilization chamber only operates automatically when the downtime is long and the user uses the sterilization chamber frequently, thereby improving the level of judgment conditions for automatic operation and controlling the sterilization chamber to perform sterilization / drying functions at more necessary times. For example, if the downtime reaches the preset downtime but the user has never used the sterilization chamber, the internal environment of the sterilization chamber remains unchanged, and automatic operation of the sterilization chamber does not need to be controlled, thus saving power consumption. For example, during cooking and dining hours, users will frequently use the sterilization chamber. When the chamber usage data reaches the preset usage threshold, the downtime may be far less than the preset downtime. In this case, it is not necessary to control the sterilization chamber to run automatically. This can save power consumption and avoid sterilization / drying during the time when users frequently use the sterilization chamber, thus avoiding conflicts.

[0095] It should be noted that in the above embodiment two, assuming that the user used the disinfection chamber during the downtime timing, the downtime data includes both the time the user used the disinfection chamber and the time the user did not use it. In other words, timing begins from the start of automatic operation mode, and the timing will not be interrupted regardless of whether the user uses the disinfection chamber during the timing period, until the disinfection chamber automatically starts operating, at which point the existing downtime data is cleared. This timing method is not unique. In other embodiments, optionally, while recording the downtime data, the control method further includes: determining whether the door of the disinfection chamber is in an open state; if so, the current downtime data is cleared, and the downtime data is re-recorded after the door is in a closed state.

[0096] Specifically, during the downtime timing period, once the user is detected opening the chamber door, the existing downtime timer is reset to zero. In other words, the downtime data in this timing method represents the downtime during which the chamber door remains closed and has not been opened. Understandably, after the automatic operation mode is activated but before the sterilization chamber automatically starts operating, if the user has not used the sterilization chamber, the downtime data in this timing method equals the actual downtime of the sterilization chamber. However, if the user has used the sterilization chamber, this timing method will make the downtime data relatively shorter than the actual downtime of the sterilization chamber. Nevertheless, considering that the sterilizer is frequently used during cooking and mealtimes, while users rarely use it between breakfast, lunch, and dinner, this timing method can, by reasonably setting a preset downtime threshold, ensure that the automatic operation time of the sterilization chamber avoids the times when the user frequently uses the sterilization chamber, thus preventing conflicts. For example, assuming breakfast time is from 6:30 to 8:00 and lunch time is from 11:00 to 13:00, a preset shutdown threshold of 2.5 hours can be set. In this way, the shutdown time data can be recorded starting from the last use of the disinfection chamber after the user's breakfast. After 2.5 hours, the shutdown time data reaches the preset shutdown threshold, and the user has also used the disinfection chamber during the breakfast period. The disinfection chamber can be controlled to run automatically and perform functions such as disinfection / drying. In this way, the disinfection chamber can be operated outside the time when the user frequently uses the disinfection chamber, and it can also ensure that the user can use clean tableware during the lunch period.

[0097] Based on the above embodiments, optionally, the chamber usage data includes at least one of the chamber door opening duration and the number of times the chamber door is opened. If the chamber door of the disinfection chamber is opened for a long time and / or opened multiple times, it indicates that the user is using the disinfection chamber multiple times / for a long period of time, and it may be necessary to control the operation of the disinfection chamber to perform functions such as disinfection / drying.

[0098] For example, each disinfection chamber can be equipped with an independent chamber door status detection device. The chamber door status detection device can acquire the chamber door status in real time to determine the chamber usage data (such as the chamber door opening time / number of times the chamber door is opened). Optionally, the chamber door status detection device includes, but is not limited to, microswitches, Hall switches, infrared switches, and other components.

[0099] As explained above, the cavity door opening time specifically refers to the total duration the cavity door remains open during several openings, while the cavity door opening count is the total number of times the user opens the cavity door. The following details the steps for acquiring and recording the operational data of the disinfection cavity, using cavity usage data including cavity door opening time and cavity door opening count as examples.

[0100] Optionally, when the chamber usage data includes the chamber door opening time, the corresponding preset usage data includes a preset time threshold; if acquiring and recording the operating condition data of the disinfection chamber includes acquiring and recording the chamber door opening time, then acquiring and recording the chamber door opening time of the disinfection chamber may specifically include the following steps:

[0101] 1) Obtain the initial opening duration of the disinfection chamber;

[0102] 2) Determine whether the initial opening time has reached the preset time threshold; if not, continue to obtain the subsequent opening time of the disinfection chamber, and add each subsequent opening time to the initial opening time, until the cumulative opening time value corresponding to any subsequent opening time reaches the preset time threshold.

[0103] The initial opening duration refers to the time elapsed from the moment the cavity door is opened to the moment it closes after the automatic operation mode is activated (i.e., the duration the cavity door is in the open state). Subsequent opening durations refer to the duration the cavity door is in the open state each time it is detected to be open for the second time and thereafter. It can be understood that each subsequent opening of the cavity door corresponds to an accumulated opening duration value, specifically the sum of the opening duration of the current opening and the opening durations of the previous several openings.

[0104] Specifically, taking the chamber usage data as an example, which only includes the duration of the chamber door opening, the specific process of obtaining the chamber door usage data and determining whether the chamber door usage data is greater than the preset usage threshold is as follows: If the initial opening duration has reached the preset duration threshold, it can be determined that the chamber door usage data has reached the preset usage data; if the initial opening duration has not reached the preset duration threshold, the duration of the second time the chamber door is in the open state is obtained (referred to as the second opening duration, the same applies below), and the second opening duration is added to the initial opening duration, and it is determined whether the accumulated value reaches the preset duration threshold; if yes, it can be determined that the chamber door usage data has reached the preset usage threshold; if no, the third opening duration is obtained, added to the previous accumulated value, and it is determined whether the current accumulated value is greater than the preset duration threshold, and so on, until the accumulated value of the opening duration corresponding to any opening action (i.e., the above-mentioned chamber door opening duration) reaches the preset duration threshold, and it can be determined that the chamber door usage data has reached the preset usage threshold.

[0105] Similarly, optionally, when the chamber usage data includes the number of times the chamber door is opened, the corresponding preset usage data includes a preset threshold number of openings. Specifically, acquiring and recording the number of times the chamber door is opened involves incrementing the recorded number of openings by 1 for each detected opening signal. For example, when the first opening signal is detected, the number of openings is recorded as 1; when the second opening signal is detected, the number of openings is recorded as 2 (1+1=2), until the number of openings reaches the preset threshold number. If the chamber usage data only includes the number of times the chamber door is opened, the chamber usage data can be determined to have reached the preset usage threshold number when the number of openings reaches that threshold.

[0106] When the chamber usage data includes both the duration of the chamber opening and the number of times the chamber is opened, the chamber usage data is determined to have reached the preset usage threshold if either the duration of the chamber opening reaches a preset duration threshold or the number of times the chamber is opened reaches a preset number of times threshold. Alternatively, in other embodiments, the chamber usage data may be determined to have reached the preset usage threshold only when both the duration of the chamber opening reaches the preset duration threshold and the number of times the chamber is opened reaches the preset number of times threshold. Those skilled in the art can set these parameters according to their actual needs.

[0107] Example 3

[0108] Figure 3 This is a flowchart illustrating a control method for a disinfection cabinet according to Embodiment 3 of the present invention. The control method for the disinfection cabinet has been further optimized; similarities will not be repeated here. Figure 3 As shown, in this embodiment, the control method may include the following steps:

[0109] S301: Receive the user's automatic operation command and start the automatic operation mode based on the automatic operation command.

[0110] S302. Acquire and record the operating data of the disinfection chamber.

[0111] S303. Determine whether a user's self-disinfection instruction has been received; if yes, proceed to S304; if no, proceed to S306.

[0112] S304. Based on autonomous disinfection commands, control the disinfection chamber to operate in autonomous disinfection mode.

[0113] S305. Clear the current operating data and return to execute S302.

[0114] The autonomous disinfection command refers to the user's instruction to select the disinfection mode of the disinfection chamber. Specifically, the disinfection cabinet has several pre-set disinfection modes (different disinfection modes correspond to different operating parameters). Different autonomous disinfection commands can correspond to different disinfection modes. Users can send the autonomous disinfection command corresponding to the desired disinfection mode through the human-machine interaction module (such as the user control panel), so that the disinfection cabinet can control the disinfection chamber to operate in the corresponding disinfection mode according to the autonomous disinfection command.

[0115] Because user operations are somewhat proactive, even when the automatic operation mode is enabled, it's inevitable that users may manually activate a disinfection mode. To address this, this embodiment, after the automatic operation mode is activated but before the disinfection chamber's operating data reaches a preset threshold, if it's determined that the user has sent a self-disinfection command, the disinfection chamber will operate in self-disinfection mode, performing disinfection / drying functions according to the user's selected mode. Furthermore, in automatic operation mode, since the user has manually disinfected / dried the items in the disinfection chamber, there's no need to run the disinfection chamber temporarily. The existing operating data can be cleared, thus avoiding frequent operation of the disinfection chamber (e.g., when the time interval between the user's manual operation and the next automatic operation condition is met is very short). After clearing, the operating data can be re-recorded, and the automatic operation mode can continue.

[0116] It should be noted that users can send autonomous disinfection commands through any human-computer interaction method, and this embodiment of the invention does not limit this. For details, please refer to the example of sending automatic operation commands in Embodiment 1 above, which will not be repeated here.

[0117] S306. Determine whether the operating data of the disinfection chamber has reached the preset threshold; if yes, proceed to S307; if no, return to S302.

[0118] S307. Control the disinfection chamber to operate automatically with the target operating parameters.

[0119] In the automatic operation mode, the technical solution of this invention determines whether a user's autonomous disinfection command has been received before judging whether the operating data of the disinfection chamber has reached a preset threshold. If the judgment result is that a user's autonomous disinfection command has been received, the disinfection chamber is controlled to operate in autonomous disinfection mode, and disinfection / drying and other functions are performed according to the disinfection mode selected by the user. The current operating data is cleared and the operating data is re-recorded. This setting can further optimize the control method of the disinfection cabinet according to various possibilities of application scenarios, and can also avoid the frequent operation of the disinfection chamber.

[0120] Example 4

[0121] Figure 4This is a flowchart illustrating a control method for a disinfection cabinet according to Embodiment 4 of the present invention. It further details feasible solutions for determining target operating parameters; similarities are not repeated here. Figure 4 As shown, in this embodiment, the control method may include the following steps:

[0122] S401. Determine whether the user's automatic run command has been received; if yes, execute S402; otherwise, execute S403.

[0123] S402. Based on the automatic operation instruction, start the automatic operation mode and execute S404.

[0124] S403, Automatic operation mode failed, start autonomous disinfection mode.

[0125] Specifically, activating the autonomous disinfection mode can be understood as follows: if the automatic operation mode fails and a user's autonomous disinfection command is received, the disinfection chamber will operate in autonomous disinfection mode, performing functions such as disinfection / drying according to the user's selected disinfection mode. If no user's autonomous disinfection command is received, it will be in standby mode and will not perform any functions. In short, "activating" is not the same as "operating"; the disinfection chamber will only operate in autonomous disinfection mode when a user's autonomous disinfection command is received.

[0126] S404. Acquire and record the operating data of the disinfection chamber.

[0127] S405. Determine whether a user's self-disinfection instruction has been received; if yes, proceed to S406; if no, proceed to S408.

[0128] S406. Based on the autonomous disinfection command, control the disinfection chamber to operate in autonomous disinfection mode, and record and update the operating parameters of the disinfection chamber in autonomous disinfection mode.

[0129] S407. Clear the current operating data; return to execute S404.

[0130] The difference between this embodiment and the previous embodiment is that, while controlling the disinfection chamber to operate in autonomous disinfection mode, the operating parameters of the disinfection chamber in autonomous disinfection mode are also recorded and updated. Specifically, in one embodiment, after each autonomous disinfection command from the user is received, the operating parameters corresponding to the autonomous disinfection command are recorded, and the operating parameters corresponding to the current autonomous disinfection command are overwritten with the operating parameters corresponding to the previous autonomous disinfection command, that is, only the operating parameters from the most recent autonomous disinfection mode are retained, thereby achieving the updating of operating parameters. In another embodiment, after receiving the current autonomous disinfection command from the user, it can be first determined whether the current autonomous disinfection command is the same as the previous autonomous disinfection command. If they are the same, there is no need to update the operating parameters; if they are different, the operating parameters corresponding to the current autonomous disinfection command are recorded and overwritten with the previously recorded operating parameters, thereby achieving the updating of operating parameters.

[0131] When users choose a disinfection mode, different users have different usage habits. The same user may have a habitually chosen disinfection mode, or may have adjusted the disinfection mode multiple times to determine the most ideal disinfection mode. In any case, the updated operating parameters in the autonomous operation mode can, to a certain extent, represent the disinfection mode that the user wants to use. In this embodiment, while controlling the disinfection chamber to operate in the autonomous disinfection mode, the operating parameters of the disinfection chamber in the autonomous disinfection mode can be recorded and updated to determine the disinfection mode that the user wants the disinfection chamber to operate in. In order to adaptively set the target operating parameters of the disinfection chamber in the automatic operation mode according to the user's needs (see S408-409 for details), so that the setting of the operating parameters of the disinfection chamber in the automatic operation mode and the autonomous disinfection mode is consistent, thereby improving the user experience.

[0132] S408. Determine whether the operating data of the disinfection chamber has reached the preset threshold; if yes, proceed to S409; if no, return to S404.

[0133] S409. Obtain the updated operating parameters of the disinfection chamber in autonomous disinfection mode.

[0134] S410. The updated operating parameters are set as the target operating parameters, and the disinfection chamber is controlled to operate automatically with the target operating parameters.

[0135] Specifically, the updated operating parameters in the autonomous disinfection mode can be stored in the memory. After obtaining the updated operating parameters of the disinfection chamber in the autonomous disinfection mode, the operating parameters can be determined as the target operating parameters of the disinfection chamber in the automatic operation mode, and the disinfection chamber can be controlled to operate automatically with the target operating parameters.

[0136] In summary, the technical solution of this invention records and updates the operating parameters of the disinfection chamber in autonomous disinfection mode while controlling the disinfection chamber to operate in autonomous disinfection mode. In automatic operation mode, when the working condition data reaches a preset threshold and the disinfection chamber meets the operating conditions, the updated operating parameters of the disinfection chamber in autonomous disinfection mode are obtained and determined as the target operating parameters in automatic operation mode. The disinfection chamber is then controlled to operate automatically according to these target operating parameters. This setting ensures that the target operating parameters of each disinfection chamber in automatic operation mode are consistent with user needs, thereby improving the user experience.

[0137] As mentioned above, the disinfection cabinet operates in two modes: automatic and autonomous. Autonomous disinfection may operate when automatic operation is disabled or when automatic operation is activated. Therefore, recording and updating the operating parameters of the disinfection chamber in autonomous disinfection mode can be done at any stage when the disinfection chamber is operating in autonomous disinfection mode. It should be noted that... Figure 4 The example shown is based on recording and updating the operating parameters of the disinfection chamber in autonomous disinfection mode in S406. In other embodiments, if the automatic operation mode in S403 fails, the user can send an autonomous disinfection command to control the disinfection chamber to operate in autonomous disinfection mode, and the operating parameters of the disinfection chamber can also be recorded and updated.

[0138] Example 5

[0139] Figure 5 This is a flowchart illustrating a control method for a disinfection cabinet according to Embodiment 5 of the present invention. The control method for the disinfection cabinet has been further optimized, such as... Figure 5 As shown, in this embodiment, the control method for the disinfection cabinet may include the following steps:

[0140] S501: Receive the user's automatic operation command and start the automatic operation mode based on the automatic operation command.

[0141] S502. Acquire and record the operating data of the disinfection chamber.

[0142] S503. Determine whether the user's self-disinfection instruction has been received; if yes, proceed to S504; if no, proceed to S506.

[0143] S504. Based on autonomous disinfection commands, control the disinfection chamber to operate in autonomous disinfection mode.

[0144] S505: Clear the current operating data.

[0145] S506. Determine whether the operating data of the disinfection chamber has reached the preset threshold; if yes, proceed to S507; if no, return to S502.

[0146] S507, Get the current time.

[0147] S508. Determine whether the current time is within the preset target time interval; if yes, proceed to S509; if no, return to execute S507.

[0148] The current time refers to the exact hour and minute. This time can be Beijing time or a time in other regions; this embodiment of the invention does not limit this. For example, the current time can be obtained through a network module in the disinfection cabinet or other devices capable of determining time.

[0149] The target time interval represents the time range during which the disinfection chamber can operate automatically. The target time interval can be set according to actual needs, and this embodiment of the invention does not limit this. For example, the target time interval can be 10:00-10:30 AM, 3:30-4:30 PM, or after 11:30 PM, thus avoiding times when users frequently use the disinfection cabinet.

[0150] Optionally, the target time range is 22:00 to 6:00. During this period, users are unlikely to use the disinfection cabinet, avoiding conflicts caused by users needing to use it while the system is running automatically. Furthermore, this period falls during off-peak electricity consumption, saving on electricity costs. For example, in one specific embodiment, the target time range could be 2:00 to 4:00.

[0151] S509. Control the disinfection chamber to operate automatically with the target operating parameters.

[0152] In this embodiment of the invention, after determining that the operating data of the disinfection chamber reaches a preset threshold, a judgment is added on whether the current time is within the target time interval. Only when the current time is within the target time interval is the disinfection chamber controlled to run automatically with the target operating parameters. On the one hand, this can avoid the automatic operation of the disinfection chamber from conflicting with the user's use of the disinfection cabinet, and on the other hand, it can cleverly make use of off-peak electricity to save on electricity costs.

[0153] Example 6

[0154] Figure 6 This is a flowchart illustrating a control method for a disinfection cabinet according to Embodiment Six of the present invention. Taking operating data including downtime Ts, door opening time Tx, and door opening count Nx as examples, a specific control flow for a disinfection cabinet is provided, such as... Figure 6 As shown, the control flow includes the following steps:

[0155] S601. Determine whether the automatic operation switch is enabled; if yes, proceed to S602; if no, proceed to S603.

[0156] S602. For each disinfection chamber, collect Ts, Tx and Nx in real time; execute S604.

[0157] S603, Automatic program execution failed; execution should now be performed manually by the user.

[0158] S604. Determine whether the user manually runs the disinfection cabinet; if yes, proceed to S605; if no, proceed to S607.

[0159] S605. Control the disinfection chamber to operate according to the disinfection mode manually selected by the user, and record and update the operating parameters corresponding to the disinfection mode.

[0160] S606. Clear Ts, Tx and Nx to zero; return to execute S602.

[0161] S607. For each disinfection chamber, determine whether Ts, Tx and Nx have reached their respective thresholds; if yes, proceed to S608; if no, return to S602.

[0162] S608, Get network time.

[0163] S609. Determine if the network time is within the allowed disinfection time; if yes, proceed to S610; otherwise, return to S608.

[0164] S610. For disinfection chambers that meet the operating conditions, control the disinfection chambers to operate automatically according to the memorized operating parameters. The memorized operating parameters can be the latest operating parameters recorded when the user manually controls the disinfection chamber during operation (see S605).

[0165] It should be noted that S608 and S609 can be selected for execution as needed, and this embodiment of the invention does not limit this. For example, in other embodiments, if the judgment result of S607 is yes, S608 and S609 can be skipped and S610 can be executed directly. For example, taking a disinfection cabinet with two disinfection chambers as an example, if Ts, Tx, and Nx of the first disinfection chamber have all reached their corresponding thresholds, the load corresponding to the first disinfection chamber is controlled to run automatically. If Ts, Tx, and Nx of the second disinfection chamber have all reached their corresponding thresholds, the load corresponding to the second disinfection chamber is controlled to run automatically. In this way, each disinfection chamber can be intelligently controlled independently without interference.

[0166] Example 7

[0167] Based on the same inventive concept, this invention also provides a control device for a disinfection cabinet. As above, the disinfection cabinet includes at least one disinfection chamber, and each disinfection chamber can operate independently. Figure 7This is a schematic diagram of the control device for a disinfection cabinet provided in Embodiment 7 of the present invention, as shown below. Figure 7 As shown, the control device includes an automatic operation start-up module 701, a data recording module 702, and a control module 703. The automatic operation start-up module 701 is used to receive the user's automatic operation command and start the automatic operation mode based on the automatic operation command. The data recording module 702 is used to acquire and record the operating condition data of the disinfection chamber. The control module 703 is used to determine whether the operating condition data of the disinfection chamber has reached a preset threshold. If so, it controls the disinfection chamber to operate automatically with the target operating parameters.

[0168] The control device provided in the embodiments of the present invention can execute the control method provided in any embodiment of the present invention, and has the corresponding functional modules and beneficial effects of the execution method.

[0169] Based on the above embodiments, optionally, the operating condition data includes downtime data and chamber usage data, and the preset thresholds include preset downtime thresholds and preset usage thresholds; the control module 703 is specifically used to control the disinfection chamber to automatically operate with target operating parameters when the downtime data reaches the preset downtime threshold and / or the chamber usage data reaches the preset usage threshold.

[0170] Optionally, the chamber usage data includes at least one of the chamber opening duration and the number of times the chamber is opened.

[0171] Optionally, the chamber usage data includes the chamber door opening time, and the preset usage threshold includes a preset time threshold. The data recording module can be used to acquire and record the chamber door opening time of the disinfection chamber. In this case, the data recording module is specifically used to acquire the initial opening time of the disinfection chamber; determine whether the initial opening time reaches the preset time threshold; if not, continue to acquire the subsequent opening time of the disinfection chamber, and add each subsequent opening time to the initial opening time, until the cumulative opening time value corresponding to any subsequent opening time reaches the preset time threshold.

[0172] Optionally, while recording the downtime data, the control module 703 is also used to determine whether the door of the disinfection chamber is in the open state; if so, the current downtime data is cleared and the downtime data is re-recorded after the door is in the closed state.

[0173] Optionally, before determining whether the operating data of the disinfection chamber has reached the preset threshold, the control module 703 is also used to determine whether a user's autonomous disinfection command has been received; if so, based on the autonomous disinfection command, the disinfection chamber is controlled to operate in autonomous disinfection mode, and the current operating data is cleared; if not, the determination is made as to whether the operating data of the disinfection chamber has reached the preset threshold.

[0174] Optionally, the disinfection cabinet's operating modes also include an autonomous disinfection mode. While controlling the disinfection chamber to operate in autonomous disinfection mode, the data recording module 702 is also used to record and update the operating parameters of the disinfection chamber in autonomous disinfection mode. In automatic operation mode, the control module 703 controls the disinfection chamber to operate automatically with target operating parameters. Specifically, the control module 703 obtains the updated operating parameters of the disinfection chamber in autonomous disinfection mode, determines the updated operating parameters as the target operating parameters, and controls the disinfection chamber to operate automatically with the target operating parameters.

[0175] Optionally, the control module 703 is also used to clear the current operating data after the disinfection chamber is automatically running with the target operating parameters, and to start acquiring and recording the operating data of the disinfection chamber again.

[0176] Optionally, after determining that the operating data of the disinfection chamber reaches a preset threshold, the data recording module 702 is further used to acquire the current time; the control module 703 is further used to determine whether the current time is within a preset target time interval; if so, the disinfection chamber is controlled to operate automatically with the target operating parameters. Optionally, the target time interval is 22:00 to 6:00.

[0177] Example 8

[0178] Based on the same inventive concept, this invention also provides a disinfection cabinet. As above, the disinfection cabinet includes at least one disinfection chamber, each of which can operate independently. The disinfection cabinet also includes a processor and a memory communicatively connected to the processor. The memory stores a computer program that can be executed by the processor, and the computer program is executed by the processor to enable the processor to execute the control method provided in any embodiment of this invention.

[0179] For example, Figure 8 This is a structural schematic diagram of a disinfection cabinet provided in Embodiment 8 of the present invention, as shown below. Figure 8 As shown, the disinfection cabinet includes a user control panel (which can be understood as the button display panel of the disinfection cabinet) 801 and a control circuit board 802. The user control panel 801 and the control circuit board 802 are connected in communication, for example, through IIC or UART to achieve data transmission.

[0180] Taking a disinfection cabinet with N (N>1) disinfection chambers as an example, the control circuit board 802 is electrically connected to the disinfection / drying load corresponding to each disinfection chamber. In this way, the control circuit board can independently control the operating status of each load and perform functions such as disinfection / drying. The aforementioned processor and memory can be integrated into the user control panel 801 to acquire signals generated by user operations and to facilitate sending control commands to the control circuit board 802 to control the operation of the disinfection cabinet.

[0181] In addition, such as Figure 8 As shown, a door status detection switch can be set for each disinfection chamber. The door status detection switch detects the user's use of the disinfection chamber to obtain the chamber usage data. Then, the chamber usage data can be sent to the processor of the user control panel 801 through the control circuit board 802 so as to determine whether the operating conditions are met in the automatic operation mode.

[0182] Example 9

[0183] Based on the same inventive concept, this invention also provides a control system applicable to a disinfection cabinet. The control system includes an automatic operation enable switch; when the user triggers the automatic operation enable switch, the disinfection cabinet starts its automatic operation mode. Specifically, the control system may include a control panel (e.g., a touchscreen), a processor, a memory, a circuit board, and a load. The control panel, memory, and circuit board are all communicatively connected to the processor, and the circuit board is electrically connected to the load. The automatic operation enable switch can be displayed on the control panel as an icon or a button. When the user triggers the automatic operation enable switch, the disinfection cabinet starts its automatic operation mode. The operating logic of the automatic operation mode can be referred to the description in the above embodiments, and will not be repeated here.

[0184] Optionally, the control system also includes an autonomous disinfection enable switch. When the user triggers the autonomous disinfection enable switch, the disinfection cabinet starts the autonomous disinfection mode. Specifically, there can be multiple autonomous disinfection enable switches, each corresponding to a different disinfection mode, such as strong disinfection, medium disinfection, weak disinfection, disinfection and drying simultaneously, drying, and other modes. When the user triggers a particular autonomous disinfection enable switch, the control system can control the disinfection chamber to execute the corresponding disinfection mode.

[0185] The specific embodiments described above do not constitute a limitation on the scope of protection of this invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this invention should be included within the scope of protection of this invention.

Claims

1. A control method for a disinfection cabinet, wherein the disinfection cabinet comprises N disinfection chambers, N≥1; when N>1, each of the disinfection chambers can operate independently; characterized in that, The control method includes: Receive the user's automatic operation command, and start the automatic operation mode based on the automatic operation command; Acquire and record the operating data of the disinfection chamber; Determine whether the operating data of the disinfection chamber has reached a preset threshold; if so, control the disinfection chamber to operate automatically with the target operating parameters. The operating data includes downtime data and chamber usage data; the preset thresholds include preset downtime thresholds and preset usage thresholds; the chamber usage data includes at least one of chamber door opening duration and number of chamber door openings; the control method includes: If the downtime data reaches the preset downtime threshold, and / or if the chamber usage data reaches the preset usage threshold, then the disinfection chamber is controlled to operate automatically with the target operating parameters.

2. The control method according to claim 1, characterized in that, The chamber usage data includes the chamber door opening duration, and the preset usage threshold includes a preset duration threshold. The acquisition and recording of the operating data of the disinfection chamber includes: acquiring and recording the duration of the chamber door being open; The process of acquiring and recording the duration of the door opening of the disinfection chamber includes: Obtain the initial opening duration of the disinfection chamber; Determine whether the initial opening duration reaches the preset duration threshold; if not, continue to obtain the subsequent opening duration of the disinfection chamber, and add each subsequent opening duration to the initial opening duration, until the cumulative opening duration corresponding to any subsequent opening duration reaches the preset duration threshold.

3. The control method according to claim 1, characterized in that, While recording the downtime data, the control method also includes: Determine whether the door of the disinfection chamber is in the open state; if so, clear the current downtime data to zero, and re-record the downtime data after the door is in the closed state.

4. The control method according to claim 1, characterized in that, Before determining whether the operating data of the disinfection chamber reaches a preset threshold, the control method further includes: Determine whether a user's self-disinfection instruction has been received; If so, based on the autonomous disinfection command, control the disinfection chamber to operate in autonomous disinfection mode and clear the current operating condition data; If not, then the determination is made as to whether the operating data of the disinfection chamber has reached a preset threshold.

5. The control method according to claim 1, characterized in that, The disinfection cabinet also includes an autonomous disinfection mode. While controlling the disinfection chamber to operate in the autonomous disinfection mode, the control method further includes: Record and update the operating parameters of the disinfection chamber in the autonomous disinfection mode; In the automatic operation mode, controlling the disinfection chamber to operate automatically with target operating parameters includes: Obtain the updated operating parameters of the disinfection chamber in the autonomous disinfection mode; The updated operating parameters are determined as the target operating parameters, and the disinfection chamber is controlled to operate automatically with the target operating parameters.

6. The control method according to claim 1, characterized in that, After controlling the disinfection chamber to operate automatically at the target operating parameters, the control method further includes: The current operating data is cleared, and the acquisition and recording of the operating data of the disinfection chamber is restarted.

7. The control method according to any one of claims 1-6, characterized in that, After determining that the operating data of the disinfection chamber reaches a preset threshold, the control method further includes: Get the current time; Determine whether the current time is within the preset target time interval; if so, execute the control to automatically operate the disinfection chamber with the target operating parameters.

8. The control method according to claim 7, characterized in that, The target time interval is from 22:00 to 6:

00.

9. A control device for a disinfection cabinet, the disinfection cabinet comprising N disinfection chambers, N≥1; when N>1, each of the disinfection chambers can operate independently; characterized in that, The control device includes: An automatic operation startup module is used to receive the user's automatic operation command and start the automatic operation mode based on the automatic operation command; The data recording module is used to acquire and record the operating data of the disinfection chamber; The control module is used to determine whether the operating condition data of the disinfection chamber reaches a preset threshold. If so, it controls the disinfection chamber to run automatically with the target operating parameters. The operating data includes downtime data and chamber usage data; the preset thresholds include a preset downtime threshold and a preset usage threshold; the chamber usage data includes at least one of chamber door opening duration and chamber door opening count; the control module is specifically used to control the disinfection chamber to automatically operate with the target operating parameters when the downtime data reaches the preset downtime threshold and / or when the chamber usage data reaches the preset usage threshold.

10. A disinfection cabinet, comprising at least one disinfection chamber, each of which can operate independently; characterized in that, The disinfection cabinet also includes: Processor; and The memory is communicatively connected to the processor; wherein, The memory stores a computer program that can be executed by the processor, the computer program being executed by the processor to enable the processor to perform the control method according to any one of claims 1-8.

11. A control system applied to the disinfection cabinet of claim 10, characterized in that, The control system includes an automatic operation enable switch. When the user triggers the automatic operation enable switch, the disinfection cabinet starts the automatic operation mode.

12. The control system according to claim 11, characterized in that, The control system also includes an autonomous disinfection enable switch. When the user triggers the autonomous disinfection enable switch, the disinfection cabinet starts the autonomous disinfection mode.

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