Disclosure of Invention
The main object of the present invention is to overcome the above-mentioned drawbacks of the related art, and to provide a sterilizing cabinet, a control method, a control device, a storage medium and a computer program product thereof, so as to solve the problem that the sterilizing cabinet in the related art is opened by manual operation.
The invention provides a control method of a disinfection cabinet, which comprises the steps of detecting whether the weight of an article in the disinfection cabinet is increased when detecting that the cabinet door of the disinfection cabinet is opened and then closed, judging whether the disinfection function of the disinfection cabinet is started or not if the weight of the article in the disinfection cabinet is detected to be increased, and determining whether the disinfection function is started or not according to a preset starting plan and the total weight of the article in the disinfection cabinet if the disinfection function of the disinfection cabinet is not started.
Optionally, the method further comprises the steps of starting the disinfection function of the disinfection cabinet if the disinfection function of the disinfection cabinet is started, recording the date and time when the disinfection function is started, summarizing the starting record of the disinfection function of the disinfection cabinet, and generating a starting plan of the disinfection function of the disinfection cabinet.
Optionally, summarizing the opening records of the disinfection function of the disinfection cabinet to generate a startup plan of the disinfection function of the disinfection cabinet, wherein the summarizing the opening records of the disinfection function of the disinfection cabinet by taking a preset time length as a unit to obtain the opening rule of the disinfection function of the disinfection cabinet, and generating a corresponding startup plan of the disinfection function of the disinfection cabinet according to the obtained opening rule of the disinfection function of the disinfection cabinet.
Optionally, determining whether to start the disinfection function according to a preset starting plan and the total weight of the articles in the disinfection cabinet comprises judging whether to start the disinfection function in the preset starting plan, judging whether the total weight of the articles in the disinfection cabinet meets a first preset condition if the disinfection function is not started in the preset starting plan, and starting the disinfection function according to the preset starting plan if the total weight of the articles in the disinfection cabinet does not meet the first preset condition, wherein the first preset condition comprises that the ratio of the difference value of the rated weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is larger than or equal to a preset ratio.
Optionally, the method further comprises the steps of detecting whether the temperature and the humidity in the disinfection cabinet meet a second preset condition when the cabinet door is in a closed state and the disinfection function of the disinfection cabinet is not opened, and starting a corresponding disinfection program according to the total weight of the objects in the disinfection cabinet and the temperature and the humidity in the disinfection cabinet if the temperature and the humidity in the disinfection cabinet meet the second preset condition.
Optionally, according to the total weight of the articles in the disinfection cabinet and the temperature and humidity in the disinfection cabinet, a corresponding disinfection program is started, wherein the corresponding disinfection program is started if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is smaller than or equal to a first preset threshold value, the first disinfection program is started if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is larger than the first preset threshold value and smaller than or equal to a second preset threshold value, the indoor environment temperature is smaller than or equal to the preset temperature threshold value, the indoor environment humidity is larger than or equal to the preset humidity threshold value, the second disinfection program is started, and the third disinfection program is started if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is larger than the second preset threshold value, or the indoor environment temperature is larger than the preset temperature threshold value, or the indoor environment humidity is smaller than the preset humidity threshold value.
Optionally, the first disinfection program comprises turning on the ultraviolet sterilization device to generate ozone according to a first preset percentage of rated power of the ultraviolet sterilization device; judging whether the generated ozone concentration is smaller than a second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet sterilization device when the generated ozone concentration is larger than or equal to a first preset concentration threshold, operating according to the second preset percentage of the rated sterilization time period when the generated ozone concentration is smaller than the second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet sterilization device, and starting the heating device to degrade ozone at high temperature according to the power of the first preset percentage multiple of the rated power of the heating device, and/or, the second sterilization program comprises starting the ultraviolet sterilization device to generate ozone according to the third preset percentage of the rated power of the ultraviolet sterilization device, judging whether the generated ozone concentration is smaller than the fourth preset percentage of the ozone generation time period corresponding to the rated power of the preset ultraviolet sterilization device when the generated ozone concentration is larger than or equal to the second preset concentration threshold, starting the heating device according to the third preset percentage multiple of the rated power of the heating device when the generated ozone concentration is smaller than the fourth preset percentage of the rated power of the preset rated power of the ultraviolet sterilization device, or starting the heating device to degrade ozone according to the fourth preset percentage of the rated power of the ultraviolet sterilization device, and/or starting the heating device to the high temperature when the temperature reaches the rated power of the high temperature of the sterilizing device or the high temperature is not rated power of the sterilizing device, and operating the high-temperature sterilization according to the rated operation time.
The invention further provides a control device of the disinfection cabinet, which comprises a first detection unit, a judging unit and a determining unit, wherein the first detection unit is used for detecting whether the weight of an article in the disinfection cabinet is increased when detecting that the cabinet door of the disinfection cabinet is opened and then closed, the judging unit is used for judging whether the disinfection function of the disinfection cabinet is opened or not if the first detection unit detects that the weight of the article in the disinfection cabinet is increased, and the determining unit is used for determining whether the disinfection function is started or not according to a preset starting plan and the total weight of the article in the disinfection cabinet if the judging unit judges that the disinfection function of the disinfection cabinet is not opened.
Optionally, the system further comprises a first control unit, a recording unit and a recording unit, wherein the first control unit is used for starting the disinfection function of the disinfection cabinet if the first judging unit judges that the disinfection function of the disinfection cabinet is started, and the recording unit is used for recording the date and time of starting the disinfection function and summarizing the starting record of the disinfection function of the disinfection cabinet to generate a starting plan of the disinfection function of the disinfection cabinet.
Optionally, the system further comprises a generating unit, wherein the generating unit is used for summarizing the opening records of the disinfection functions of the disinfection cabinet, generating a starting plan of the disinfection functions of the disinfection cabinet, and the starting plan of the disinfection functions of the disinfection cabinet is generated according to the obtained opening rules of the disinfection functions of the disinfection cabinet.
The determining unit is used for determining whether to start the disinfection function according to a preset starting plan and the total weight of the articles in the disinfection cabinet or not, and comprises the steps of judging whether the disinfection function is started in the preset starting plan or not, judging whether the total weight of the articles in the disinfection cabinet meets a first preset condition or not if the disinfection function is not started in the preset starting plan, starting the disinfection function according to the preset starting plan if the total weight of the articles in the disinfection cabinet does not meet the first preset condition, and the first preset condition comprises that the ratio of the difference value of the rated weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is larger than or equal to a preset ratio.
Optionally, the sterilizing cabinet further comprises a second detecting unit, a second control unit and a corresponding sterilizing program, wherein the second detecting unit is used for detecting whether the temperature and the humidity in the sterilizing cabinet meet a second preset condition when the first detecting unit detects that the sterilizing cabinet is in a closed state and the sterilizing function of the sterilizing cabinet is not started, and the second control unit is used for starting the corresponding sterilizing program according to the total weight of the articles in the sterilizing cabinet and the temperature and the humidity in the sterilizing cabinet if the second detecting unit detects that the second preset condition is met.
Optionally, the second control unit starts a corresponding disinfection program according to the total weight of the articles in the disinfection cabinet and the temperature and humidity in the disinfection cabinet, wherein the second control unit starts the first disinfection program if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is smaller than or equal to a first preset threshold value, starts the second disinfection program if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is larger than the first preset threshold value and smaller than or equal to a second preset threshold value, and starts the second disinfection program if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is larger than a second preset threshold value, or the indoor environment temperature is larger than the preset temperature threshold value, or the indoor environment humidity is smaller than the preset humidity threshold value.
Optionally, the first disinfection program comprises turning on the ultraviolet sterilization device to generate ozone according to a first preset percentage of rated power of the ultraviolet sterilization device; judging whether the generated ozone concentration is smaller than a second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet sterilization device when the generated ozone concentration is larger than or equal to a first preset concentration threshold, operating according to the second preset percentage of the rated sterilization time period when the generated ozone concentration is smaller than the second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet sterilization device, and starting the heating device to degrade ozone at high temperature according to the power of the first preset percentage multiple of the rated power of the heating device, and/or, the second sterilization program comprises starting the ultraviolet sterilization device to generate ozone according to the third preset percentage of the rated power of the ultraviolet sterilization device, judging whether the generated ozone concentration is smaller than the fourth preset percentage of the ozone generation time period corresponding to the rated power of the preset ultraviolet sterilization device when the generated ozone concentration is larger than or equal to the second preset concentration threshold, starting the heating device according to the third preset percentage multiple of the rated power of the heating device when the generated ozone concentration is smaller than the fourth preset percentage of the rated power of the preset rated power of the ultraviolet sterilization device, or starting the heating device to degrade ozone according to the fourth preset percentage of the rated power of the ultraviolet sterilization device, and/or starting the heating device to the high temperature when the temperature reaches the rated power of the high temperature of the sterilizing device or the high temperature is not rated power of the sterilizing device, and operating the high-temperature sterilization according to the rated operation time.
In a further aspect the invention provides a storage medium having stored thereon a computer program which when executed by a processor performs the steps of any of the methods described above.
In a further aspect the invention provides a disinfection cabinet comprising a processor, a memory and a computer program stored on the memory and executable on the processor, said processor implementing the steps of any of the methods described hereinbefore when said program is executed.
In a further aspect the invention provides a disinfection cabinet comprising a control device as described in any one of the preceding.
In a further aspect the invention provides a computer program product comprising a computer program which, when executed by a processor, implements the steps of any of the methods described above.
According to the technical scheme, the disinfection function can be automatically started, the user experience is improved, the use habit of the user can be learned, the disinfection cabinet can automatically start the disinfection function according to the use habit of the user, the user experience is improved, the disinfection power is adaptively adjusted according to the number of tableware, the energy consumption is reduced, and the service life of a product is prolonged. In addition, when environmental condition changes, the sterilizer automatically recognizes whether to start the sterilization function, reduces the operation of users, and improves the intelligent level of products.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the technical solutions of the present invention will be clearly and completely described below with reference to specific embodiments of the present invention and corresponding drawings. It will be apparent that the described embodiments are only some, but not all, embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
It should be noted that the terms "first," "second," and the like in the description and the claims of the present invention and the above figures are used for distinguishing between similar objects and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used may be interchanged where appropriate such that the embodiments of the invention described herein may be implemented in sequences other than those illustrated or otherwise described herein. Furthermore, the terms "comprises," "comprising," and "having," and any variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
The disinfection cabinet in the related art is opened by manual operation, however, users forget to open the disinfection function in many cases, the disinfection cabinet is often used as a storage tool, the intellectualization is lacking, particularly when the weather is wet, bacteria are more easily bred on tableware, the users do not open the disinfection function in time, mold is bred on the tableware at the moment, in addition, the disinfection function of the disinfection cabinet is only to disinfect with constant power, and the disinfection function of the disinfection cabinet is not adjusted according to the condition of the tableware and the environment of the user at the moment. The long-term high-power operation of the product can influence the service life of the product, and the intelligent level is low.
Fig. 1 is a schematic diagram of a control method of a disinfection cabinet according to an embodiment of the present invention.
As shown in fig. 1, the control method of the disinfection cabinet at least comprises step S110, step S120 and step S130 according to one embodiment of the present invention.
And step S110, detecting whether the weight of the articles in the disinfection cabinet is increased or not when detecting that the cabinet door of the disinfection cabinet is opened and then closed.
The cabinet door of the disinfection cabinet is provided with a door opening and closing sensor, the bottom of the cabinet door is provided with a weight sensor, and when the cabinet door of the disinfection cabinet is detected to be opened and then closed, the weight sensor starts to detect weight, and whether the weight of the articles in the disinfection cabinet is increased is detected.
And step S120, judging whether the disinfection function of the disinfection cabinet is started or not if the weight increase of the articles in the disinfection cabinet is detected.
Specifically, if the weight of the articles in the disinfection cabinet is detected to be unchanged or reduced, no operation is executed, and if the weight of the articles in the disinfection cabinet is detected to be increased, whether the disinfection function of the disinfection cabinet is started or not is judged. That is, it is determined whether the user has turned on the sterilizing function of the sterilizer. Preferably, if an increase in weight of the items within the disinfection cabinet is detected, the total weight of the items within the disinfection cabinet at that time is recorded. Optionally, the disinfection cabinet is provided with a chip with a memory function, and the total weight T Total (S) can be recorded through the memory chip.
And step S130, if the disinfection function of the disinfection cabinet is not started, determining whether to start the disinfection function according to a preset starting plan and the total weight of the articles in the disinfection cabinet.
If the disinfection function of the disinfection cabinet is not started, for example, the user does not start the disinfection function, a preset starting plan is obtained, and whether the disinfection function is started or not is determined according to whether the disinfection function is started in the preset starting plan and the total weight of the articles in the disinfection cabinet. The method comprises the steps of judging whether a disinfection function is started in a preset starting plan or not, judging whether the total weight of articles in a disinfection cabinet meets a first preset condition or not if the disinfection function is not started in the preset starting plan, and starting the disinfection function according to the preset starting plan if the total weight of the articles in the disinfection cabinet does not meet the first preset condition. Wherein, whether the disinfection function is started or not can be determined according to the change of the voltage or the current, or whether the disinfection function is started or not can be determined according to whether the disinfection function key is pressed or not.
The preset starting plan may specifically be a starting plan of the disinfection function of the disinfection cabinet generated according to the opening record of the disinfection function of the disinfection cabinet, that is, a starting plan of the disinfection function of the disinfection cabinet generated according to the opening record of the disinfection function of the disinfection cabinet by a user.
The first preset condition may specifically include that a ratio of a difference value between the rated weight T Rated for of the article in the disinfection cabinet and the total weight T Total (S) of the article in the disinfection cabinet to the rated weight of the article in the disinfection cabinet is greater than or equal to a preset ratio. For example, if the preset ratio is 4/5, the first preset condition is: . If the first preset condition is judged to be met, the fact that the total weight of the articles in the disinfection cabinet is smaller is indicated, and the disinfection function does not need to be started. If the fact that the first preset condition is not met is judged to indicate that the total weight of the articles in the disinfection cabinet is large, the disinfection function needs to be started, and then the disinfection program is started according to the preset starting plan.
Specifically, the sterilization function may be activated at a preset time according to the preset activation schedule. For example, according to the opening record of the user to the disinfection function of the disinfection cabinet, the opening rule of the user is obtained, the disinfection function is opened once a day, the user opens the disinfection cabinet, puts tableware with a certain weight and closes the cabinet door, at the moment, the weight change in the disinfection cabinet is detected, the total weight is recorded, and if the user opens the disinfection function, the starting time is recorded and the disinfection function is started (according to the self-starting flow chart). If the user does not start the disinfection function, the starting plan is read, the user is the starting plan for once a day, if the user does not start the disinfection function, the user judges whether the total weight of the user meets the first preset condition or not according to the first preset condition, if the user meets the first preset condition, the total weight is smaller, the disinfection function does not need to be started, the process is ended, if the user does not meet the first preset condition, the total weight is larger, the disinfection function needs to be started, and the disinfection function is automatically started in the early morning.
Further, if the disinfection function of the disinfection cabinet is started, starting the disinfection function of the disinfection cabinet, and recording the date and time when the disinfection function is started, so as to be used for summarizing the starting record of the disinfection function of the disinfection cabinet and generating a starting plan of the disinfection function of the disinfection cabinet.
In a specific embodiment, summarizing the opening records of the disinfection functions of the disinfection cabinet to generate a startup plan of the disinfection functions of the disinfection cabinet, wherein the summarizing the opening records of the disinfection functions of the disinfection cabinet in units of preset time length to obtain the opening rules of the disinfection functions of the disinfection cabinet, and generating a corresponding startup plan of the disinfection functions of the disinfection cabinet according to the obtained opening rules of the disinfection functions of the disinfection cabinet.
For example, FIG. 2 illustrates a flow chart of an activation schedule for a summary disinfection function activation record generation disinfection function, according to an embodiment of the present invention. Referring to FIG. 2, the start-up records of the sterilizing function are collected on a daily basis until a certain start-up rule is obtained, such as 1 time per day, 3 times per day, 1 time per day (for example, once every three days, once a week), etc., and if N (N.gtoreq.3) cycles are satisfied, the start-up schedule of 1 time per day is formed, for example, if 3 times of the sterilizing function start-up record of 1 time per day are continuously obtained, and is set to start up at a preset time (for example, a certain time in the early morning), 3 times of the sterilizing function start-up record of 3 times per day are continuously obtained, and is set to start up at a preset time (for example, a certain time in the early morning) of the next day, and 3 times of the sterilizing function start-up schedule of 1 time per day is continuously obtained, and is set to start up at a preset time (for example, a certain time in the early morning), so that an automatic start-up schedule of the sterilizing function is formed.
Fig. 3 is a schematic diagram of a method of another embodiment of a control method of a disinfection cabinet according to the present invention.
As shown in fig. 3, according to another embodiment of the present invention, based on the above embodiment, the control method of the sterilizing cabinet further includes step S140 and step S150.
And step S140, detecting whether the temperature and the humidity in the disinfection cabinet meet a second preset condition or not when the cabinet door is in a closed state and the disinfection function of the disinfection cabinet is not opened.
Specifically, except for judging when the user opens the cabinet door, when the user does not use the disinfection cabinet, the temperature and the humidity in the disinfection cabinet are monitored, and whether the disinfection program needs to be started or not is judged according to the temperature and the humidity in the disinfection cabinet. A temperature sensor and a humidity sensor are arranged in the disinfection cabinet to detect the temperature and the humidity in the disinfection cabinet. For example, a temperature sensor is arranged on the left side of the inner cavity of the disinfection cabinet, and a humidity sensor is arranged on the right side of the inner cavity of the disinfection cabinet. In one specific embodiment, the second preset condition is that the temperature change value in the disinfection cabinet is greater than or equal to a preset temperature change threshold value within a preset time, and the humidity change value is greater than or equal to a preset humidity change threshold value. For example, the preset time is 4 hours, the preset temperature change threshold is 5 ℃, the preset humidity change threshold is 20%, that is, whether the detected temperature change is greater than or equal to 5 ℃ and/or whether the humidity change value is greater than or equal to 20% in 4 hours.
And step S150, if the detection meets the second preset condition, starting a corresponding disinfection program according to the total weight of the articles in the disinfection cabinet and the temperature and humidity in the disinfection cabinet.
For example, fig. 4 shows a schematic flow chart for determining whether a disinfection program needs to be started according to temperature and humidity. Referring to FIG. 4, when the sterilizing function is not turned on, the detected temperature is denoted as T1, the detected humidity is denoted as H1, the detected temperature after 4 hours is denoted as T2, the detected humidity is denoted as H2, and whether T2-T1I is not less than 5 ℃ and H2-H1 is not less than 20% is judged. I.e. within 4 hours, a temperature change of greater than or equal to 5 ℃ is detected and a humidity change value of greater than or equal to 20% is detected, the disinfection program is automatically started.
Specifically, according to the ratio of the total weight of the articles in the disinfection cabinet to the rated load weight of the disinfection cabinet and the temperature and humidity in the disinfection cabinet, a corresponding disinfection program is started. In one embodiment, the sterilizer is controlled to initiate different sterilization procedures according to the following different conditions:
(1) And if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is smaller than or equal to a first preset threshold value, starting a first disinfection program.
For example, the first preset threshold is 0.5, i.e. ifWhen this occurs, a first disinfection program is started.
The first disinfection program comprises the steps of starting an ultraviolet disinfection device to generate ozone according to a first preset percentage of rated power of the ultraviolet disinfection device, judging whether the ozone generation time period is smaller than a second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet disinfection device when the generated ozone concentration is larger than or equal to a first preset concentration threshold value, and starting a heating device to degrade ozone at high temperature according to power which is multiple of the first preset percentage of the rated power of the heating device when the ozone generation time period is smaller than the second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet disinfection device. The ultraviolet sterilizing device utilizes ultraviolet light to generate ozone for sterilization, for example, an ultraviolet lamp is started to generate ozone for sterilization. The heating means comprise, for example, a heating tube.
For example, fig. 5 shows a schematic flow chart of a different disinfection procedure according to an embodiment of the invention. As shown in fig. 5, if the first disinfection program (a disinfection program) is started according to the total weight of the articles in the disinfection cabinet and the temperature and humidity in the disinfection cabinet, the ultraviolet disinfection device is started to generate ozone according to 25% of the rated power of the ultraviolet disinfection device (a first preset percentage), the timing T1 is started, the ozone concentration C1 is detected, when the generated ozone concentration C1 is greater than or equal to a first preset concentration threshold (the first preset concentration threshold is 60ppm, that is, C1 is more than or equal to 60 ppm), the timing T2 is ended, whether the ozone generation time period T Stink smell (T Stink smell = T2-T1 is less than 25% of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device (a second preset percentage) is judged, and when the ozone generation time period is less than 25% of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device is judged, the heating device is started to degrade ozone according to 25% of the rated power of the heating device at high temperature.
(2) And if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is greater than a first preset threshold value and less than or equal to a second preset threshold value, and the indoor environment temperature is less than or equal to a preset temperature threshold value and the indoor environment humidity is greater than or equal to a preset humidity threshold value, starting a second disinfection program.
For example, the first preset threshold is 0.5, the second preset threshold is 0.8, the preset temperature threshold is 30 ℃, the preset humidity threshold is 50%, T Warm temperature represents the indoor ambient temperature, H Wet state represents the indoor ambient humidity, i.e., if 0.5<When the temperature is less than or equal to 0.8, the temperature T Warm temperature is less than or equal to 30 ℃ and the temperature H Wet state is more than or equal to 50%, a second disinfection program is started.
The second disinfection program comprises the steps of starting the ultraviolet disinfection device to generate ozone according to a third preset percentage of rated power of the ultraviolet disinfection device (the third preset percentage is larger than the first preset percentage), judging whether the ozone generation time period is smaller than a fourth preset percentage of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device when the generated ozone concentration is larger than or equal to a second preset concentration threshold (the second preset concentration threshold is larger than the first preset concentration threshold), and starting the heating device to degrade ozone according to the fourth preset percentage of the rated disinfection time period when the ozone generation time period is smaller than the fourth preset percentage of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device.
For example, as shown in fig. 5, if a second sterilizing process (B sterilizing process) is started according to the total weight of the articles in the sterilizing cabinet and the temperature and humidity in the sterilizing cabinet, the ultraviolet sterilizing device is started to generate ozone according to a third preset percentage of the rated power of the ultraviolet sterilizing device (third preset percentage), the timing T1 is started, the ozone concentration C1 is detected, when the generated ozone concentration C1 is equal to or greater than a second preset concentration threshold (the second preset concentration threshold is 70ppm, that is, C1 is equal to or greater than 70 ppm), the timing T2 is ended, whether the ozone generation period T Stink smell (T Stink smell = T2-T1 is less than 50% of the ozone generation period corresponding to the rated power of the preset ultraviolet sterilizing device (fourth preset percentage) is judged, and when the ozone generation period is judged to be less than 50% of the ozone generation period corresponding to the rated power of the preset ultraviolet sterilizing device, the heating device is started to degrade ozone according to 50% of the rated power of the heating device.
(3) And if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is greater than a second preset threshold value, or the indoor environment temperature is greater than a preset temperature threshold value, or the indoor environment humidity is less than a preset humidity threshold value, starting a third disinfection program.
For example, the second preset threshold is 0.8, the preset temperature threshold is 30 ℃, the preset humidity threshold is 50%, T Warm temperature represents the indoor environment temperature, and H Wet state represents the indoor environment humidity, i.e., ifA third disinfection procedure is initiated when >0.8, or T Warm temperature >30 ℃, or H Wet state < 50%.
The third disinfection program comprises the steps of starting a high-temperature disinfection function according to the rated power of the heating device, generating no ozone, and operating high-temperature disinfection according to the rated operation time (the operation time of the whole disinfection process) when the temperature in the disinfection cabinet reaches the high-temperature disinfection temperature corresponding to the preset rated power of the heating device. The heating device of the sterilizing cabinet can adopt a heating pipe to generate high temperature for drying and sterilizing.
For example, as shown in fig. 5, if the third sterilization process (C sterilization process) is started according to the total weight of the articles in the sterilization cabinet and the temperature and humidity in the sterilization cabinet, the high-temperature sterilization function is started according to the rated power of the heating device, ozone is not started, and when the temperature in the sterilization cabinet reaches the rated high-temperature sterilization temperature, the high-temperature sterilization is performed according to the rated operation time.
In order to clearly illustrate the technical scheme of the invention, the execution flow of the control method of the disinfection cabinet provided by the invention is described in a plurality of specific embodiments.
Fig. 6 is a schematic diagram of a method of controlling a disinfection cabinet according to an embodiment of the present invention. As shown in fig. 6, when the door opening and closing sensor senses that the user opens the sterilizing cabinet and closes the cabinet door again, the weight sensor starts to detect the weight change of the articles in the sterilizing cabinet, and if the weight is not changed or reduced at this time, the sterilizing cabinet does not change at all, and the process is ended. If the weight is increased, the total weight T Total (S) is recorded, whether the user starts the disinfection function is judged, and if the disinfection function is not started, the starting plan of the user is read. If the user starts the disinfection function in the plan, the process is ended, and if the user does not start the disinfection function in the plan, whether the disinfection function is satisfied or not is judgedIf the starting time is not satisfied, the starting disinfection is not needed, the process is ended, and if the starting time is not satisfied, the starting disinfection program is carried out according to the starting plan time. If the user opens the disinfection function at this time, the disinfection function is started, the date and time of the start are recorded, and the opening records are summarized to form an automatic starting plan.
Fig. 7 is a block diagram of an embodiment of a control device for a sterilizer according to the present invention. As shown in fig. 7, the control device 100 includes a first detection unit 110, a judgment unit 120, and a determination unit 130.
The first detecting unit 110 is configured to detect whether the weight of the article in the disinfection cabinet is increased when detecting that the cabinet door of the disinfection cabinet is opened and then closed.
The cabinet door of the disinfection cabinet is provided with a door opening and closing sensor, the bottom of the cabinet door is provided with a weight sensor, and when the cabinet door of the disinfection cabinet is detected to be opened and then closed, the weight sensor starts to detect weight, and whether the weight of the articles in the disinfection cabinet is increased is detected.
And the judging unit 120 is configured to judge whether the sterilizing function of the sterilizing cabinet is started if the first detecting unit detects that the weight of the articles in the sterilizing cabinet increases.
Specifically, if the weight of the articles in the disinfection cabinet is detected to be unchanged or reduced, no operation is executed, and if the weight of the articles in the disinfection cabinet is detected to be increased, whether the disinfection function of the disinfection cabinet is started or not is judged. That is, it is determined whether the user has turned on the sterilizing function of the sterilizer. Preferably, if an increase in weight of the items within the disinfection cabinet is detected, the total weight of the items within the disinfection cabinet at that time is recorded. Optionally, the disinfection cabinet is provided with a chip with a memory function, and the total weight T Total (S) can be recorded through the memory chip.
And the determining unit 130 is configured to determine whether to start the sterilization function according to a preset start-up plan and the total weight of the articles in the sterilization cabinet if the determining unit determines that the sterilization function of the sterilization cabinet is not started.
If the disinfection function of the disinfection cabinet is not started, for example, the user does not start the disinfection function, a preset starting plan is obtained, and whether the disinfection function is started or not is determined according to whether the disinfection function is started in the preset starting plan and the total weight of the articles in the disinfection cabinet. Specifically, the determining unit 130 determines whether to start the sterilization function according to a preset starting plan and the total weight of the articles in the sterilization cabinet, and specifically may include determining whether to start the sterilization function in the preset starting plan, if it is determined that the sterilization function is not started in the preset starting plan, determining whether the total weight of the articles in the sterilization cabinet meets a first preset condition, and if it is determined that the total weight of the articles in the sterilization cabinet does not meet the first preset condition, starting the sterilization function according to the preset starting plan. Wherein, whether the disinfection function is started or not can be determined according to the change of the voltage or the current, or whether the disinfection function is started or not can be determined according to whether the disinfection function key is pressed or not.
The preset starting plan may specifically be a starting plan of the disinfection function of the disinfection cabinet generated according to the opening record of the disinfection function of the disinfection cabinet, that is, a starting plan of the disinfection function of the disinfection cabinet generated according to the opening record of the disinfection function of the disinfection cabinet by a user.
The first preset condition may specifically include that a ratio of a difference value between the rated weight T Rated for of the article in the disinfection cabinet and the total weight T Total (S) of the article in the disinfection cabinet to the rated weight of the article in the disinfection cabinet is greater than or equal to a preset ratio. For example, if the preset ratio is 4/5, the first preset condition is: . If the first preset condition is judged to be met, the fact that the total weight of the articles in the disinfection cabinet is smaller is indicated, and the disinfection function does not need to be started. If the fact that the first preset condition is not met is judged to indicate that the total weight of the articles in the disinfection cabinet is large, the disinfection function needs to be started, and then the disinfection program is started according to the preset starting plan.
Specifically, the sterilization function may be activated at a preset time according to the preset activation schedule. For example, according to the opening record of the user to the disinfection function of the disinfection cabinet, the opening rule of the user is obtained, the disinfection function is opened once a day, the user opens the disinfection cabinet, puts tableware with a certain weight and closes the cabinet door, at the moment, the weight change in the disinfection cabinet is detected, the total weight is recorded, and if the user opens the disinfection function, the starting time is recorded and the disinfection function is started (according to the self-starting flow chart). If the user does not start the disinfection function, the starting plan is read, the user is the starting plan for once a day, if the user does not start the disinfection function, the user judges whether the total weight of the user meets the first preset condition or not according to the first preset condition, if the user meets the first preset condition, the total weight is smaller, the disinfection function does not need to be started, the process is ended, if the user does not meet the first preset condition, the total weight is larger, the disinfection function needs to be started, and the disinfection function is automatically started in the early morning.
Further, the apparatus 100 further includes a first control unit (not shown) configured to activate the disinfection function of the disinfection cabinet if the first judging unit judges that the disinfection function of the disinfection cabinet is already activated.
Further, the device 100 further comprises a recording unit (not shown) for recording the date and time when the disinfection function is started, so as to summarize the start record of the disinfection function of the disinfection cabinet, and generate a start plan of the disinfection function of the disinfection cabinet.
Still further, the apparatus 100 further comprises a generating unit (not shown) for summarizing the start record of the disinfection function of the disinfection cabinet, and generating a start schedule of the disinfection function of the disinfection cabinet.
In a specific embodiment, summarizing the opening records of the disinfection functions of the disinfection cabinet to generate a startup plan of the disinfection functions of the disinfection cabinet, wherein the summarizing the opening records of the disinfection functions of the disinfection cabinet in units of preset time length to obtain the opening rules of the disinfection functions of the disinfection cabinet, and generating a corresponding startup plan of the disinfection functions of the disinfection cabinet according to the obtained opening rules of the disinfection functions of the disinfection cabinet.
For example, FIG. 2 illustrates a flow chart of an activation schedule for a summary disinfection function activation record generation disinfection function, according to an embodiment of the present invention. Referring to FIG. 2, the start-up records of the sterilizing function are collected on a daily basis until a certain start-up rule is obtained, such as 1 time per day, 3 times per day, 1 time per day (for example, once every three days, once a week), etc., and if N (N.gtoreq.3) cycles are satisfied, the start-up schedule of 1 time per day is formed, for example, if 3 times of the sterilizing function start-up record of 1 time per day are continuously obtained, and is set to start up at a preset time (for example, a certain time in the early morning), 3 times of the sterilizing function start-up record of 3 times per day are continuously obtained, and is set to start up at a preset time (for example, a certain time in the early morning) of the next day, and 3 times of the sterilizing function start-up schedule of 1 time per day is continuously obtained, and is set to start up at a preset time (for example, a certain time in the early morning), so that an automatic start-up schedule of the sterilizing function is formed.
Fig. 8 is a block diagram of another embodiment of a control device for a sterilizer provided by the present invention. As shown in fig. 8, the control device 100 further includes a second detection unit 140 and a second control unit 150, based on the above-described embodiments.
And a second detecting unit 140, configured to detect, when the first detecting unit 110 detects that the cabinet door is in a closed state and the disinfection function of the disinfection cabinet is not opened, whether the temperature and the humidity in the disinfection cabinet meet a second preset condition.
Specifically, except for judging when the user opens the cabinet door, when the user does not use the disinfection cabinet, the temperature and the humidity in the disinfection cabinet are monitored, and whether the disinfection program needs to be started or not is judged according to the temperature and the humidity in the disinfection cabinet. A temperature sensor and a humidity sensor are arranged in the disinfection cabinet to detect the temperature and the humidity in the disinfection cabinet. For example, a temperature sensor is arranged on the left side of the inner cavity of the disinfection cabinet, and a humidity sensor is arranged on the right side of the inner cavity of the disinfection cabinet. In one specific embodiment, the second preset condition is that the temperature change value in the disinfection cabinet is greater than or equal to a preset temperature change threshold value within a preset time, and the humidity change value is greater than or equal to a preset humidity change threshold value. For example, the preset time is 4 hours, the preset temperature change threshold is 5 ℃, the preset humidity change threshold is 20%, that is, whether the detected temperature change is greater than or equal to 5 ℃ and/or whether the humidity change value is greater than or equal to 20% in 4 hours.
And a second control unit 150, configured to start a corresponding disinfection procedure according to the total weight of the articles in the disinfection cabinet and the temperature and humidity in the disinfection cabinet if the second detection unit 140 detects that the second preset condition is satisfied.
For example, fig. 4 shows a schematic flow chart for determining whether a disinfection program needs to be started according to temperature and humidity. Referring to FIG. 4, when the sterilizing function is not turned on, the detected temperature is denoted as T1, the detected humidity is denoted as H1, the detected temperature after 4 hours is denoted as T2, the detected humidity is denoted as H2, and whether T2-T1I is not less than 5 ℃ and H2-H1 is not less than 20% is judged. I.e. within 4 hours, a temperature change of greater than or equal to 5 ℃ is detected and a humidity change value of greater than or equal to 20% is detected, the disinfection program is automatically started.
In one embodiment, the second control unit 150 controls the sterilizing cabinet to start different sterilizing procedures according to the following different conditions:
(1) And if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is smaller than or equal to a first preset threshold value, starting a first disinfection program.
For example, the first preset threshold is 0.5, i.e. ifAnd if the temperature is less than or equal to 0.5, starting a first disinfection program.
The first disinfection program comprises the steps of starting an ultraviolet disinfection device to generate ozone according to a first preset percentage of rated power of the ultraviolet disinfection device, judging whether the ozone generation time period is smaller than a second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet disinfection device when the generated ozone concentration is larger than or equal to a first preset concentration threshold value, and starting a heating device to degrade ozone at high temperature according to power which is multiple of the first preset percentage of the rated power of the heating device when the ozone generation time period is smaller than the second preset percentage of the ozone generation time period corresponding to the preset rated power of the ultraviolet disinfection device. The ultraviolet sterilizing device utilizes ultraviolet light to generate ozone for sterilization and disinfection. The heating means comprise, for example, a heating tube.
For example, fig. 5 shows a schematic flow chart of a different disinfection procedure according to an embodiment of the invention. As shown in fig. 5, if the first disinfection program (a disinfection program) is started according to the total weight of the articles in the disinfection cabinet and the temperature and humidity in the disinfection cabinet, the ultraviolet disinfection device is started to generate ozone according to 25% of the rated power of the ultraviolet disinfection device (a first preset percentage), the timing T1 is started, the ozone concentration C1 is detected, when the generated ozone concentration C1 is greater than or equal to a first preset concentration threshold (the first preset concentration threshold is 60ppm, that is, C1 is more than or equal to 60 ppm), the timing T2 is ended, whether the ozone generation time period T Stink smell (T Stink smell = T2-T1 is less than 25% of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device (a second preset percentage) is judged, and when the ozone generation time period is less than 25% of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device is judged, the heating device is started to degrade ozone according to 25% of the rated power of the heating device at high temperature.
(2) And if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is greater than a first preset threshold value and less than or equal to a second preset threshold value, and the indoor environment temperature is less than or equal to a preset temperature threshold value and the indoor environment humidity is greater than or equal to a preset humidity threshold value, starting a second disinfection program.
For example, the first preset threshold is 0.5, the second preset threshold is 0.8, the preset temperature threshold is 30 ℃, the preset humidity threshold is 50%, T Warm temperature represents the indoor ambient temperature, H Wet state represents the indoor ambient humidity, i.e., if 0.5<When the temperature is less than or equal to 0.8, the temperature T Warm temperature is less than or equal to 30 ℃ and the temperature H Wet state is more than or equal to 50%, a second disinfection program is started.
The second disinfection program comprises the steps of starting the ultraviolet disinfection device to generate ozone according to a third preset percentage of rated power of the ultraviolet disinfection device (the third preset percentage is larger than the first preset percentage), judging whether the ozone generation time period is smaller than a fourth preset percentage of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device when the generated ozone concentration is larger than or equal to a second preset concentration threshold (the second preset concentration threshold is larger than the first preset concentration threshold), and starting the heating device to degrade ozone according to the fourth preset percentage of the rated disinfection time period when the ozone generation time period is smaller than the fourth preset percentage of the ozone generation time period corresponding to the rated power of the preset ultraviolet disinfection device. The ultraviolet sterilizing device utilizes ultraviolet light to generate ozone for sterilization, for example, an ultraviolet lamp is started to generate ozone for sterilization. The heating means comprise, for example, a heating tube.
For example, as shown in fig. 5, if a second sterilizing process (B sterilizing process) is started according to the total weight of the articles in the sterilizing cabinet and the temperature and humidity in the sterilizing cabinet, the ultraviolet sterilizing device is started to generate ozone according to a third preset percentage of the rated power of the ultraviolet sterilizing device (third preset percentage), the timing T1 is started, the ozone concentration C1 is detected, when the generated ozone concentration C1 is equal to or greater than a second preset concentration threshold (the second preset concentration threshold is 70ppm, that is, C1 is equal to or greater than 70 ppm), the timing T2 is ended, whether the ozone generation period T Stink smell (T Stink smell = T2-T1 is less than 50% of the ozone generation period corresponding to the rated power of the preset ultraviolet sterilizing device (fourth preset percentage) is judged, and when the ozone generation period is judged to be less than 50% of the ozone generation period corresponding to the rated power of the preset ultraviolet sterilizing device, the heating device is started to degrade ozone according to 50% of the rated power of the heating device.
(3) And if the ratio of the total weight of the articles in the disinfection cabinet to the rated weight of the articles in the disinfection cabinet is greater than a second preset threshold value, or the indoor environment temperature is greater than a preset temperature threshold value, or the indoor environment humidity is less than a preset humidity threshold value, starting a third disinfection program.
For example, the second preset threshold is 0.8, the preset temperature threshold is 30 ℃, the preset humidity threshold is 50%, T Warm temperature represents the indoor environment temperature, and H Wet state represents the indoor environment humidity, i.e., ifA third disinfection procedure is initiated when >0.8, or T Warm temperature >30 ℃, or H Wet state < 50%.
The third disinfection program comprises the steps of starting a high-temperature disinfection function according to the rated power of the heating device, generating no ozone, and operating high-temperature disinfection according to the rated operation time (the operation time of the whole disinfection process) when the temperature in the disinfection cabinet reaches the high-temperature disinfection temperature corresponding to the preset rated power of the heating device. The heating device of the sterilizing cabinet can adopt a heating pipe to generate high temperature for drying and sterilizing.
For example, as shown in fig. 5, if the third sterilization process (C sterilization process) is started according to the total weight of the articles in the sterilization cabinet and the temperature and humidity in the sterilization cabinet, the high-temperature sterilization function is started according to the rated power of the heating device, ozone is not started, and when the temperature in the sterilization cabinet reaches the rated high-temperature sterilization temperature, the high-temperature sterilization is performed according to the rated operation time.
The invention also provides a storage medium corresponding to the control method of the disinfection cabinet, on which a computer program is stored which, when executed by a processor, carries out the steps of any of the methods described above.
The invention also provides a disinfection cabinet corresponding to the control method of the disinfection cabinet, which comprises a processor, a memory and a computer program stored on the memory and capable of running on the processor, wherein the processor executes the computer program to realize the steps of any one of the methods.
The invention also provides a disinfection cabinet corresponding to the control device of the disinfection cabinet, which comprises the control device of any one of the disinfection cabinets.
The invention also provides a computer program product corresponding to the control method of the disinfection cabinet, comprising a computer program which, when executed by a processor, implements the steps of any of the methods described above.
According to the scheme provided by the invention, the use habit and frequency of a user can be intelligently learned and memorized, a disinfection function starting plan conforming to different user habits is formulated, disinfection can be automatically started for the user when the disinfection cabinet recognizes that tableware exists, the tableware amount in the disinfection cabinet can be automatically recognized, then a proper disinfection program is adaptively selected according to the tableware amount, the current environmental condition can be recognized, when bacteria are easy to generate in the environment and mould is bred, the disinfection cabinet can automatically start the disinfection function, and the proper disinfection program is adaptively selected according to the temperature and humidity.
The functions described herein may be implemented in hardware, software executed by a processor, firmware, or any combination thereof. If implemented in software that is executed by a processor, the functions may be stored on or transmitted over as one or more instructions or code on a computer-readable medium. Other examples and implementations are within the scope and spirit of the invention and the appended claims. For example, due to the nature of software, the functions described above may be implemented using software executed by a processor, hardware, firmware, hardwired, or a combination of any of these. In addition, each functional unit may be integrated in one processing unit, each unit may exist alone physically, or two or more units may be integrated in one unit.
In the several embodiments provided in the present application, it should be understood that the disclosed technology may be implemented in other manners. The above-described embodiments of the apparatus are merely exemplary, and the division of the units, for example, may be a logic function division, and may be implemented in another manner, for example, a plurality of units or components may be combined or may be integrated into another system, or some features may be omitted, or not performed. Alternatively, the coupling or direct coupling or communication connection shown or discussed with each other may be through some interfaces, units or modules, or may be in electrical or other forms.
The units described as separate components may or may not be physically separate, and components as control devices may or may not be physical units, may be located in one place, or may be distributed over a plurality of units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
The integrated units, if implemented in the form of software functional units and sold or used as stand-alone products, may be stored in a computer readable storage medium. Based on such understanding, the technical solution of the present invention may be embodied in essence or a part contributing to the related art or all or part of the technical solution, in the form of a software product stored in a storage medium, including several instructions for causing a computer device (which may be a personal computer, a server or a network device, etc.) to perform all or part of the steps of the method according to the embodiments of the present invention. The storage medium includes various media capable of storing program codes, such as a U disk, a Read-Only Memory (ROM), a random access Memory (RAM, randomAccess Memory), a removable hard disk, a magnetic disk, or an optical disk.
The above description is only an example of the present invention and is not intended to limit the present invention, but various modifications and variations can be made to the present invention by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.