Water purification device and water replenishment control method and device thereof, and computer device

By analyzing the water intake data of the water purification equipment, the water replenishment volume is dynamically adjusted to meet user needs, solving the problem of inaccurate water replenishment control in traditional water purification equipment and achieving a better user experience.

CN115509268BActive Publication Date: 2026-03-20GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-24
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Traditional water purification equipment cannot accurately control water replenishment, resulting in a poor user experience, especially with issues of insufficient or excessive water replenishment in different water usage scenarios.

Method used

By acquiring water intake data for a preset period, analyzing the water intake volume in different time periods, comparing the water intake volume with preset thresholds, determining the target water intake volume, and controlling water intake based on the target water intake volume in different time periods, including adopting proactive or conservative strategies, and dynamically adjusting the water intake volume to meet user needs.

Benefits of technology

It achieves accurate water replenishment control under different water consumption scenarios, improves user experience, avoids problems of insufficient or excessive water replenishment, and meets users' water needs at different times.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to a water purification device and a water replenishment control method and device thereof, computer equipment, a storage medium and a computer program product, wherein the method comprises the following steps: obtaining water taking data of a preset period; extracting water taking amounts corresponding to different time periods according to the water taking data; comparing the water taking amounts corresponding to the different time periods and preset water taking amount thresholds to determine water replenishment target amounts of the different time periods in the preset period; and performing water replenishment control according to the water replenishment target amounts of the different time periods. In the whole process, the water taking data of a historical preset period is compared with preset water taking amount thresholds to determine water replenishment target amounts, different water replenishment strategies are adopted for water replenishment control, and accurate water replenishment control can be realized.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent control, in particular to a water purification equipment and a water replenishment control method and device thereof, computer equipment, a storage medium and a computer program product. BACKGROUND

[0002] The water purification equipment refers to an equipment for purifying conventional water into pure water, which generally purifies municipal tap water into pure water for users to drink.

[0003] At present, the water purification equipment containing a pure water tank or a water storage device on the market replenishes water according to a fixed liquid level. Since the water pump works when the whole machine replenishes water, a certain degree of noise is generated. The disadvantage of this method is that if the water replenishment is performed according to a high liquid level, the user will take water frequently, which will affect the user experience due to the noise of the whole machine. Moreover, if the user uses less water, the water in the pure water tank will be updated slowly in the high liquid level replenishment mode, and the user cannot drink fresh water. If the water replenishment is performed according to a low liquid level (lower than the high liquid level), it is not suitable for a multi-person scene or a scene with a large amount of water use, because the water taking speed will be greater than the water making speed, and the user will need to wait for the whole machine to store water, which is not good for the user experience.

[0004] It can be seen that the traditional water replenishment scheme cannot realize accurate water replenishment control, which causes inconvenience to users. SUMMARY

[0005] Therefore, it is necessary to provide a water purification equipment with accurate water replenishment control and a water replenishment control method, device, computer equipment, storage medium and computer program product thereof to bring convenience to users in view of the technical problem that the traditional water replenishment scheme cannot realize accurate water replenishment control.

[0006] In a first aspect, the present application provides a water replenishment control method of a water purification equipment. The method comprises:

[0007] obtaining water taking data of a preset period;

[0008] extracting water taking amounts corresponding to different time periods according to the water taking data;

[0009] comparing the water taking amounts corresponding to the different time periods with a preset water taking amount threshold to determine water replenishment target amounts of the different time periods in the preset period;

[0010] performing water replenishment control according to the water replenishment target amounts of the different time periods.

[0011] In one of the embodiments, the comparison of the water taking amounts corresponding to the different time periods with the preset water taking amount threshold to determine the water replenishment target amounts of the different time periods comprises:

[0012] If the water taking amount corresponding to the current time period is greater than the preset water taking amount threshold, the water replenishment target amount of the current time period is determined as full tank;

[0013] If the water taking amount corresponding to the current time period is less than the preset water taking amount threshold and greater than 0, the water replenishment target amount of the current time period is determined as the preset water amount threshold.

[0014] In one of the embodiments, the water replenishment control method of the water purification device further comprises:

[0015] If the water taking amount corresponding to the current time period is equal to 0, the water replenishment target amount of the current time period is determined as the preset water amount minimum value.

[0016] In one of the embodiments, the water replenishment control according to the water replenishment target amounts of different time periods comprises:

[0017] According to the water replenishment target amounts of different time periods, water replenishment control data of a preset period is obtained;

[0018] A new preset period is selected, and the step of obtaining water taking data of a preset period is returned until water replenishment control data of N continuous different preset periods is obtained;

[0019] According to the water replenishment control data of N continuous different preset periods, water replenishment control is performed.

[0020] In one of the embodiments, the water replenishment control method of the water purification device further comprises:

[0021] The average water taking value of the same time period in each day in the preset period is obtained;

[0022] When the difference between the water taking amount corresponding to a certain time period and the average water taking value is greater than the preset water taking amount fluctuation threshold, the full tank mode is adopted for water replenishment control.

[0023] In one of the embodiments, after obtaining the average water taking value of the same time period in each day in the preset period, the method further comprises:

[0024] The number of times that the difference between the water taking amount corresponding to a certain time period and the average water taking value is greater than the preset water taking amount fluctuation threshold is counted;

[0025] When the number of times counted in the preset period is greater than the preset number threshold, a second average value of the abnormal water taking amount and the average water taking value is obtained, and the abnormal water taking amount is the water taking amount corresponding to the event that the difference between the water taking amount and the average water taking value is greater than the preset water taking amount fluctuation threshold for the last time;

[0026] According to the second average value, water replenishment control is performed.

[0027] In a second aspect, the application further provides a water purification device water replenishment control device. The device comprises:

[0028] a data acquisition module configured to acquire water taking data of a preset period;

[0029] a water taking amount extraction module configured to extract water taking amounts corresponding to different time periods according to the water taking data;

[0030] a comparison module configured to compare the water taking amounts corresponding to the different time periods and a preset water taking amount threshold to determine water replenishment target amounts of the different time periods in the preset period;

[0031] a control module configured to perform water replenishment control according to the water replenishment target amounts of the different time periods.

[0032] In a third aspect, the present application further provides a water purification device, which comprises a water purification device body and a controller. The controller is arranged in the water purification device body, and the controller performs water replenishment control on the water purification device body by using the water replenishment control method for the water purification device as described above.

[0033] In a fourth aspect, the present application further provides a computer device. The computer device comprises a memory and a processor. The memory stores a computer program, and the processor implements the following steps when executing the computer program:

[0034] acquiring water taking data of a preset period;

[0035] extracting water taking amounts corresponding to different time periods according to the water taking data;

[0036] comparing the water taking amounts corresponding to the different time periods and a preset water taking amount threshold to determine water replenishment target amounts of the different time periods in the preset period;

[0037] performing water replenishment control according to the water replenishment target amounts of the different time periods.

[0038] In a fifth aspect, the present application further provides a computer readable storage medium. The computer readable storage medium stores a computer program. The computer program is executed by a processor to implement the following steps:

[0039] acquiring water taking data of a preset period;

[0040] extracting water taking amounts corresponding to different time periods according to the water taking data;

[0041] comparing the water taking amounts corresponding to the different time periods and a preset water taking amount threshold to determine water replenishment target amounts of the different time periods in the preset period;

[0042] performing water replenishment control according to the water replenishment target amounts of the different time periods.

[0043] In a sixth aspect, the present application further provides a computer program product. The computer program product comprises a computer program. The computer program is executed by a processor to implement the following steps:

[0044] acquire water taking data of a preset period;

[0045] extract water taking amounts corresponding to different time periods according to the water taking data;

[0046] compare the water taking amounts corresponding to different time periods with preset water taking amount thresholds to determine water supplement target amounts of different time periods within the preset period;

[0047] perform water supplement control according to the water supplement target amounts of different time periods.

[0048] The water purification device and the water supplement control method, device, computer equipment, storage medium and computer program product thereof acquire water taking data of a preset period, extract water taking amounts corresponding to different time periods according to the water taking data, compare the water taking amounts corresponding to different time periods with preset water taking amount thresholds to determine water supplement target amounts of different time periods within the preset period, and perform water supplement control according to the water supplement target amounts of different time periods. In the whole process, the water supplement target amounts are determined by comparing the water taking data of historical preset periods with preset water taking amount thresholds, different water supplement strategies are adopted for water supplement control, and accurate water supplement control can be achieved. BRIEF DESCRIPTION OF DRAWINGS

[0049] Figure 1 An application environment diagram of the water purification device water supplement control method in an embodiment;

[0050] Figure 2 A flowchart of the water purification device water supplement control method in an embodiment;

[0051] Figure 3 A flowchart of the water purification device water supplement control method in another embodiment;

[0052] Figure 4 A flowchart of the water purification device water supplement control method in yet another embodiment;

[0053] Figure 5 A flowchart of the water purification device water supplement control method in a specific application example;

[0054] Figure 6 A structural block diagram of the water purification device water supplement control device in an embodiment;

[0055] Figure 7 A structure diagram of a pure water tank in a water purification device;

[0056] Figure 8 An internal structure diagram of computer equipment in an embodiment. DETAILED DESCRIPTION

[0057] In order to make the purposes, technical solutions and advantages of the present application clearer, further detailed description will be made to the present application in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.

[0058] The water replenishment control method provided by the embodiments of the present application can be applied to the application environment as shown in Figure 1 The controller 102 is built in the water purification equipment 104, the water purification equipment 104 is provided with a pure water tank, the water purification equipment 104 processes tap water into pure water, and stores the processed pure water in the pure water tank, the user directly takes the pure water from the water purification equipment 104 when the water outlet switch is opened, and the water purification equipment 104 needs to perform water production / replenishment operation to replenish the pure water in the pure water tank after the user takes a certain amount of pure water, and the controller 102 controls the water purification equipment 104 to perform the water replenishment operation. Specifically, the controller 102 acquires water taking data of a preset period; according to the water taking data, water taking amounts corresponding to different time periods are extracted; the water taking amounts corresponding to different time periods and a preset water taking amount threshold are compared to determine water replenishment target amounts of different time periods in the preset period; and the water replenishment control is performed according to the water replenishment target amounts of different time periods. In the whole process, the water taking data of the historical preset period is compared with the preset water taking amount threshold to determine the water replenishment target amount, different water replenishment strategies are adopted for water replenishment control, and accurate water replenishment control can be realized to meet the user's demand and bring convenience to the user.

[0059] In one embodiment, as shown in Figure 2 A water replenishment control method for water purification equipment is provided, and the controller 102 in Figure 1 is taken as an example to illustrate the method, which includes the following steps:

[0060] S200: Acquire water taking data of a preset period.

[0061] The preset period is a preset period of time, which can be set according to actual needs, for example, one week, one month, one quarter, etc. The water taking data refers to the record data corresponding to the user's water taking behavior, which can be understood as the log data of the water taking behavior, and specifically can include whether the water taking behavior occurs, the time point when the water taking behavior occurs, and the corresponding water taking amount when the water taking behavior occurs.

[0062] S400: According to the water taking data, extract water taking amounts corresponding to different time periods.

[0063] Different time periods refer to different time periods in a preset period. The water taking data in the preset period is statistically analyzed according to the time dimension, and the water taking amount corresponding to different time periods in the entire preset period is extracted. Specifically, a single preset period can include multiple days, and different time periods are set for each day. Specifically, each hour can be a time period, or multiple hours can be a time period. For example, 0:00-11:00 can be defined as morning and morning, 11:00-14:00 can be defined as noon, and 14:00-24:00 can be defined as afternoon and evening. The water taking amount corresponding to different time periods is extracted for each day. In actual application, the preset period can be a week, that is, the water taking amount corresponding to different time periods in a week is extracted, for example, the water taking amount in the morning and morning, noon, afternoon and evening in a week can be extracted.

[0064] S600: Compare the water taking amount corresponding to different time periods and the preset water taking amount threshold to determine the water replenishment target amount of different time periods in the preset period.

[0065] The preset water taking amount threshold is a threshold set in advance, which is used to distinguish the size of the user's water taking amount. Further, the preset water taking amount threshold can be 1 / 2T; T is the water amount corresponding to the full water state of the pure water tank in the water purification equipment, that is, the preset water taking amount threshold is the water amount corresponding to half tank. The water replenishment target amount refers to the water amount required after water replenishment, that is, the water amount corresponding to the stop of water replenishment.

[0066] If the water taking amount is greater than the preset water taking amount threshold, it indicates that the user's water taking amount is large, and a more aggressive strategy is needed to replenish water to meet the user's demand. If the water taking amount is less than the preset water taking amount threshold, it indicates that the user's water taking amount is small, and a more conservative strategy can be used to replenish water. Further, the aggressive water replenishment strategy and the conservative water replenishment strategy are relative, and the water replenishment target amount corresponding to the aggressive water replenishment strategy is greater than the water replenishment target amount corresponding to the conservative water replenishment strategy. Under the aggressive water replenishment strategy, the water replenishment target amount of the water purification equipment is a large value, that is, when the water storage amount in the pure water tank is less than the large value, the water purification equipment starts to produce water, so a large amount of pure water will be stored in the pure water tank to meet the user's large water taking demand. Under the conservative water replenishment strategy, the water replenishment target amount of the water purification equipment is a general value, that is, when the water storage amount in the pure water tank is less than the general value (which can be equal to the preset water taking amount threshold), the water purification equipment starts to produce water, so a certain amount of pure water will be stored in the pure water tank to meet the user's normal water taking demand.

[0067] S800: Control water replenishment according to the water replenishment target amount of different time periods.

[0068] After the target water replenishment quantity is determined, targeted water replenishment control is performed for different time periods to keep the pure water storage quantity in the water purification device at a reasonable value, accurate water replenishment control is achieved, the water taking demand of users in different time periods is met, and convenience is brought to the users. Specifically, after the target water replenishment quantity is determined, the pure water is kept at the target water replenishment quantity in this time period. When the user takes water and the water level is lower than the target water replenishment quantity, water production is started immediately to restore the pure water level to the target water replenishment quantity. Assuming that the target water replenishment quantity is full water T, when the user takes water and the pure water storage quantity is lower than T, the water purification device starts to produce water until it is full T. For example, the target water replenishment quantity is 1 / 2 T, when the pure water tank storage quantity is 3 / 4 T at time t, even if the user has a water taking action, no water replenishment is performed. When the pure water tank storage quantity is 2 / 5 T at time t+m, which is less than the target water replenishment quantity 1 / 2 T, water replenishment is started immediately until 1 / 2 T (half full).

[0069] The water replenishment control method of the water purification device determines the target water replenishment quantity in different time periods according to the water taking data of the preset period, compares the water taking quantity corresponding to different time periods with the preset water taking quantity threshold, and performs water replenishment control according to the target water replenishment quantity of different time periods. In the whole process, the water taking data of the historical preset period is compared with the preset water taking quantity threshold to determine the target water replenishment quantity, different water replenishment strategies are adopted for water replenishment control, and accurate water replenishment control can be achieved.

[0070] In one of the embodiments, the comparison of the water taking quantity corresponding to different time periods with the preset water taking quantity threshold to determine the target water replenishment quantity of different time periods includes: if the water taking quantity corresponding to the current time period is greater than the preset water taking quantity threshold, the target water replenishment quantity of the current time period is determined as full tank; if the water taking quantity corresponding to the current time period is less than the preset water taking quantity threshold and greater than 0, the target water replenishment quantity of the current time period is determined as the preset water quantity threshold.

[0071] If the water taking quantity corresponding to the current time period is greater than the preset water taking quantity threshold, it indicates that the current user has a higher water taking demand. In order to meet the higher water taking demand of the user, the target water replenishment quantity of the current time period is determined as full tank, that is, at this time, the water purification device will continuously perform water replenishment control in the full water mode, and when the user takes water, water production is performed immediately to ensure that the pure water tank is in the full water state at all times. If the water taking quantity corresponding to the current time period is less than the preset water taking quantity threshold and greater than 0, it indicates that the current user has a water taking demand, but the water taking demand is relatively small. In this case, water replenishment is performed according to the conventional mode, and the preset water quantity threshold is used as the target water replenishment quantity. When the pure water tank storage quantity is less than the preset water quantity threshold after the user takes water, water production and replenishment are started until the pure water tank storage quantity is restored to the preset water quantity threshold.

[0072] In the embodiment, the water taking amount corresponding to different time periods and the preset water taking amount threshold are compared, and the water supplement target amount is reasonably determined for different cases, which supports subsequent accurate water supplement control and brings convenience to users.

[0073] Further, if the water taking amount corresponding to the current time period is equal to 0, it is determined that the water supplement target amount of the current time period is the preset water amount minimum value.

[0074] When the water taking amount corresponding to the current time period is 0, it indicates that the user does not take water in the current time period, that is, the user's water taking demand in the current time period is almost 0, at this time, only a very small amount of pure water needs to be ensured in the pure water tank, and for this case, the water supplement target amount of the current time period is determined as the preset water amount minimum value. The preset water amount minimum value is a value set in advance, which specifically represents the lowest water level that the pure water tank in the water purification equipment needs to maintain, and specifically is 1 / 10, 1 / 15, 1 / 20, etc. of the full water, and the specific setting can be selected according to the actual needs, and preferably, it can be 1 / 10 of the full water. That is, if the water taking amount corresponding to the current time period is 0, water supplement control is performed according to 1 / 10 of the full water, when the pure water tank storage amount is greater than 1 / 10T, no water supplement is performed; when the pure water tank storage amount is less than 1 / 10T, water supplement is performed, and the water supplement is stopped when the pure water tank storage amount is 1 / 10T.

[0075] As shown in FIG. 8, Figure 3 In one of the embodiments, S800 includes:

[0076] S820: generating water supplement control data in a preset period according to the comparison result;

[0077] S840: reselecting a new preset period, returning to S200, until water supplement control data in N continuous different preset periods is obtained;

[0078] S860: performing water supplement control according to the water supplement control data in the N continuous different preset periods.

[0079] In actual application, the water supplement control data in a single preset period may not be accurate, so more period water supplement control data needs to be collected for water supplement control. Here, N is a positive integer, which can be selected according to actual needs, for example, it can be 3, 4, 5, etc.; preferably, when the preset period is one week, N is 4, that is, 4 weeks are taken as a month, and the water supplement control data of a month is generated for water supplement control. In the embodiment, the user's water taking habit is measured by larger data, and more accurate water supplement control can be realized.

[0080] The preset period is one week, N=4, and the water replenishment control data of one month is taken as an example for expansion description. The comparison result of the first week is obtained according to S200-S600, and the water replenishment control data in the first week is generated; the comparison result of the second week is obtained according to S200-S600, and the water replenishment control data in the second week is generated; the comparison result of the third week is obtained according to S200-S600, and the water replenishment control data in the third week is generated; the comparison result of the fourth week is obtained according to S200-S600, and the water replenishment control data in the fourth week is generated; the water replenishment control data in the first week, the water replenishment control data in the second week, the water replenishment control data in the third week and the water replenishment control data in the fourth week are collected and arranged to generate the final target water replenishment control data, and the water replenishment control is performed according to the target water replenishment control data.

[0081] As shown in Figure 4 In one embodiment, the water replenishment control method of the water purification device further comprises:

[0082] S920: obtaining the average water taking value of the same time period in each day in the preset period;

[0083] S940: when the difference between the water taking amount of a certain time period and the average water taking value is greater than the preset water taking amount fluctuation threshold, the full water mode is adopted for water replenishment control.

[0084] The average water taking value refers to the average water taking amount of the same time period in each day in the preset period. Taking the preset period as one week and the time period as morning and morning as an example, the water taking amount of each morning and morning from Monday to Sunday is obtained first, and then the average water taking amount of morning and morning is calculated, that is, the average water taking amount of the morning and morning time period in a week is obtained. The same method can be used to obtain the corresponding average water taking amount of noon, afternoon and evening. The preset water taking amount fluctuation threshold is a value set in advance, which is used to represent the allowed value of the fluctuation of the water taking amount of the same time period, for example, it can be 2L; if the water taking amount of a certain time period is significantly greater than the corresponding average water taking amount, it indicates that the user's water taking demand increases sharply at this time, and the water replenishment strategy needs to be adjusted, and the full water mode is directly adopted for water replenishment control to meet the user's sudden increase in water taking demand and bring convenience to the user.

[0085] In one embodiment, after obtaining the average water taking value of the same time period in each day in the preset period, the method further comprises:

[0086] counting the number of times that the difference between the water taking amount corresponding to a certain time period and the water taking average value is greater than the preset water taking amount fluctuation threshold value; when the number of times counted in the preset period is greater than the preset number threshold value, obtaining a second average value of the abnormal water taking amount and the water taking average value, the abnormal water taking amount being the water taking amount corresponding to the event that the difference between the water taking amount and the water taking average value is greater than the preset water taking amount fluctuation threshold value for the last time; and performing water replenishment control according to the second average value.

[0087] The preset number threshold value is a value set in advance, which can be set according to the actual needs, and can be 3, 5, 7, etc. The number greater than the preset number threshold value indicates that the user has a larger water taking demand for multiple times in a short time, and the required water taking amount is obviously greater than the previous water taking average value. At this time, the water taking average value needs to be corrected. When correcting, first obtain the water taking amount corresponding to the event that the difference between the water taking amount and the water taking average value is greater than the preset water taking amount fluctuation threshold value for the last time, and then average the water taking amount and the water taking average value again to obtain a second average value. Subsequently, water replenishment control is performed according to the second average value.

[0088] In actual application, taking one week as an example, the average value of 7 days of data is taken as the water taking average value after one week of data, and the average is updated once every day thereafter, but if the difference between the water taking amount and the average value is too large (for example, more than 2L), the data is discarded, but the water is replenished for 3 days in the full water mode and then restored; if there are more than 5 such cases in a week, the last data and the average value are averaged to obtain a second average value, and water replenishment control is performed according to the second average value.

[0089] To describe the technical scheme of the water replenishment control method of the water purification equipment in the present application in detail, specific examples will be used in the following description, as shown in the accompanying drawings, the water replenishment control method of the water purification equipment in the present application comprises the following steps: Figure 5

[0090] 1. The main control records water taking;

[0091] 2. Determine whether the current is in the morning (0:00≤water taking time≤11:00) time period, if yes, go to 3, if no, go to 5;

[0092] 3. Take water XL, determine whether X / full water amount is greater than 50%, if yes, go to 10, if no, go to 4;

[0093] 4. Make water (water replenishment) to half full;

[0094] 5. Determine whether the current is in the noon (11:00

[0095] ​6. Take water YL, determine whether Y / full water volume is greater than 50%, if yes, go to 10, if no, go to 7;

[0096] 7. Make water (top up) to half full;

[0097] 8. Take water ZL, determine whether Z / full water volume is greater than 50%, if yes, go to 10, if no, go to 9;

[0098] 9. Make water (top up) to half full;

[0099] 10. Make water (top up) to full.

[0100] It should be understood that, although each step in the flowchart involved in each of the above embodiments is shown in sequence according to the arrow, these steps are not necessarily executed in the order indicated by the arrow. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and these steps can be executed in other orders. Moreover, at least part of the steps in the flowchart involved in each of the above embodiments can include multiple steps or multiple stages, which are not necessarily executed at the same time, but can be executed at different times, and the execution order of these steps or stages is not necessarily sequential, but can be alternately executed with at least part of other steps or steps or stages in other steps.

[0101] Based on the same inventive concept, the embodiments of the present application also provide a water purification equipment water replenishment control device for implementing the above-mentioned water purification equipment water replenishment control method. The implementation scheme for solving the problem provided by the device is similar to the implementation scheme described in the above method, so the specific limitations in one or more water purification equipment water replenishment control device embodiments provided below can refer to the limitations of the water purification equipment water replenishment control method in the above text, and will not be repeated here.

[0102] In one embodiment, as shown in Figure 6 a water purification equipment water replenishment control device is provided, comprising:

[0103] The data acquisition module 200 is configured to acquire water taking data of a preset period.

[0104] The water taking amount extraction module 400 is configured to extract water taking amounts corresponding to different time periods according to the water taking data.

[0105] The comparison module 600 is configured to compare the water taking amounts corresponding to different time periods and a preset water taking amount threshold to determine water replenishment target amounts of different time periods in the preset period.

[0106] The control module 800 is configured to perform water replenishment control according to the water replenishment target amounts of different time periods.

[0107] The water replenishment control device for the water purification equipment obtains water taking data of a preset period; extracts water taking amounts corresponding to different time periods according to the water taking data; compares the water taking amounts corresponding to the different time periods with a preset water taking amount threshold value to determine water replenishment target amounts of the different time periods in the preset period; and controls water replenishment according to the water replenishment target amounts of the different time periods. In the whole process, the water replenishment target amounts are determined by comparing the water taking data of the historical preset period with the preset water taking amount threshold value, and different water replenishment strategies are adopted for water replenishment control, so that accurate water replenishment control can be achieved.

[0108] In one of the embodiments, the comparison module 600 is further configured to determine that the water replenishment target amount of the current time period is a full tank when the water taking amount corresponding to the current time period is greater than the preset water taking amount threshold value, and determine that the water replenishment target amount of the current time period is the preset water amount threshold value when the water taking amount corresponding to the current time period is less than the preset water taking amount threshold value and greater than 0.

[0109] In one of the embodiments, the comparison module 600 is further configured to determine that the water replenishment target amount of the current time period is a preset water amount minimum value when the water taking amount corresponding to the current time period is equal to 0.

[0110] In one of the embodiments, the control module 800 is further configured to obtain water replenishment control data of the preset period according to the water replenishment target amounts of the different time periods; reselect a new preset period, return to the step of obtaining the water taking data of the preset period, and obtain water replenishment control data of N continuous different preset periods until the water replenishment control data of the N continuous different preset periods are obtained; and control water replenishment according to the water replenishment control data of the N continuous different preset periods.

[0111] In one of the embodiments, the control module 800 is further configured to obtain an average value of water taking of the same time period every day in the preset period; and adopt a full tank mode for water replenishment control when a difference between the water taking amount corresponding to a certain time period and the average value of water taking is greater than a preset water taking amount fluctuation threshold value.

[0112] In one of the embodiments, the control module 800 is further configured to count a number of times that the difference between the water taking amount corresponding to a certain time period and the average value of water taking is greater than the preset water taking amount fluctuation threshold value; obtain a second average value of an abnormal water taking amount and the average value of water taking when the number of times counted in the preset period is greater than a preset number threshold value, the abnormal water taking amount being a water taking amount corresponding to an event that the difference between the water taking amount and the average value of water taking is greater than the preset water taking amount fluctuation threshold value in the last time; and control water replenishment according to the second average value.

[0113] The modules in the water replenishment control device for the water purification equipment can be realized by software, hardware, or a combination thereof, in whole or in part. The modules can be embedded in or independent of a processor in a computer device in a hardware form, or stored in a memory in a computer device in a software form, so as to be called and executed by a processor to perform operations corresponding to the modules.

[0114] This application also provides a water purification device, including a water purification device body and a controller. The controller is disposed in the water purification device body, and the controller uses the water purification device water replenishment control method described above to control the water replenishment of the water purification device body.

[0115] The water purification equipment is equipped with a pure water tank, the specific structure of which is as follows: Figure 7 As shown, a liquid level detection component is installed in the pure water tank. Specifically, the liquid level detection component uses a float-based scheme to provide feedback on the water volume of the entire system. In addition, the water purification equipment of this application also has a self-cleaning function. This self-cleaning function performs a self-cleaning operation when the machine is idle, using water from the pure water tank for reverse cleaning to clean the water filter element.

[0116] In one embodiment, a computer device is provided, which may be a terminal, and its internal structure diagram may be as follows: Figure 8 As shown, the computer device includes a processor, memory, communication interface, display screen, and input device connected via a system bus. The processor provides computing and control capabilities. The memory includes a non-volatile storage medium and internal memory. The non-volatile storage medium stores the operating system and computer programs. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage medium. The communication interface is used for wired or wireless communication with external terminals; wireless communication can be achieved through Wi-Fi, mobile cellular networks, NFC (Near Field Communication), or other technologies. When the computer program is executed by the processor, it implements a water replenishment control method for a water purification device.

[0117] Those skilled in the art will understand that Figure 8 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0118] In one embodiment, a computer device is provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to perform the following steps:

[0119] Obtain water intake data for a preset period;

[0120] Based on the water intake data, extract the water intake volume corresponding to different time periods;

[0121] By comparing the water intake corresponding to different time periods with the preset water intake threshold, the target water intake for different time periods within the preset cycle is determined.

[0122] According to the water replenishment target water quantity of different time periods, water replenishment control is performed.

[0123] In one embodiment, the processor, when executing the computer program, also implements the following steps:

[0124] If the water taking quantity corresponding to the current time period is greater than the preset water taking quantity threshold, the water replenishment target water quantity of the current time period is determined as full tank; if the water taking quantity corresponding to the current time period is less than the preset water taking quantity threshold and greater than 0, the water replenishment target water quantity of the current time period is determined as the preset water quantity threshold.

[0125] In one embodiment, the processor, when executing the computer program, also implements the following steps:

[0126] If the water taking quantity corresponding to the current time period is equal to 0, the water replenishment target water quantity of the current time period is determined as the preset water quantity minimum value.

[0127] In one embodiment, the processor, when executing the computer program, also implements the following steps:

[0128] According to the water replenishment target water quantity of different time periods, water replenishment control data of a preset period is obtained; a new preset period is selected again, and the step of obtaining water taking data of a preset period is returned until water replenishment control data of N continuous different preset periods is obtained; and water replenishment control is performed according to the water replenishment control data of the N continuous different preset periods.

[0129] In one embodiment, the processor, when executing the computer program, also implements the following steps:

[0130] An average value of water taking of the same time period in a preset period is obtained; when the difference between the water taking quantity corresponding to a certain time period and the average value of water taking is greater than a preset water taking quantity fluctuation threshold, full tank water replenishment control is adopted.

[0131] In one embodiment, the processor, when executing the computer program, also implements the following steps:

[0132] The number of times that the difference between the water taking quantity corresponding to a certain time period and the average value of water taking is greater than a preset water taking quantity fluctuation threshold is counted; when the number of times counted in a preset period is greater than a preset number threshold, a second average value of an abnormal water taking quantity and the average value of water taking is obtained, the abnormal water taking quantity being the water taking quantity corresponding to the event that the difference between the water taking quantity and the average value of water taking is greater than the preset water taking quantity fluctuation threshold for the last time; and water replenishment control is performed according to the second average value.

[0133] In one embodiment, a computer readable storage medium is provided, and the computer readable storage medium stores a computer program, and the computer program, when executed by a processor, implements the following steps:

[0134] Obtain water taking data of a preset period;

[0135] According to the water taking data, the water taking amount corresponding to different time periods is extracted;

[0136] The water taking amount corresponding to different time periods is compared with the preset water taking amount threshold value, and the water supplement target water amount of different time periods in the preset period is determined;

[0137] According to the water supplement target water amount of different time periods, water supplement control is performed.

[0138] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0139] If the water taking amount corresponding to the current time period is greater than the preset water taking amount threshold value, the water supplement target water amount of the current time period is determined as full tank; if the water taking amount corresponding to the current time period is less than the preset water taking amount threshold value and greater than 0, the water supplement target water amount of the current time period is determined as the preset water amount threshold value.

[0140] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0141] If the water taking amount corresponding to the current time period is equal to 0, the water supplement target water amount of the current time period is determined as the preset water amount minimum value.

[0142] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0143] According to the water supplement target water amount of different time periods, the water supplement control data of the preset period is obtained; a new preset period is selected again, and the step of obtaining the water taking data of the preset period is returned until the water supplement control data of N continuous different preset periods is obtained; the water supplement control is performed according to the water supplement control data of N continuous different preset periods.

[0144] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0145] The average water taking value of the same time period in each day in the preset period is obtained; when the difference between the water taking amount corresponding to a certain time period and the average water taking value is greater than the preset water taking amount fluctuation threshold value, the full tank mode is adopted for water supplement control.

[0146] In one embodiment, the computer program is executed by the processor to further implement the following steps:

[0147] The number of times that the difference between the water taking amount corresponding to a certain time period and the average water taking value is greater than the preset water taking amount fluctuation threshold value is counted; when the number of times counted in the preset period is greater than the preset number threshold value, the twice average value of the abnormal water taking amount and the average water taking value is obtained, the abnormal water taking amount is the water taking amount corresponding to the event that the difference between the water taking amount and the average water taking value is greater than the preset water taking amount fluctuation threshold value occurs for the last time; the water supplement control is performed according to the twice average value.

[0148] In one embodiment, a computer program product is provided, comprising a computer program which, when executed by a processor, implements the following steps:

[0149] obtaining water taking data of a preset period;

[0150] extracting water taking amounts corresponding to different time periods according to the water taking data;

[0151] comparing the water taking amounts corresponding to different time periods and a preset water taking amount threshold to determine water replenishment target amounts of different time periods in the preset period;

[0152] performing water replenishment control according to the water replenishment target amounts of different time periods.

[0153] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0154] if the water taking amount corresponding to the current time period is greater than the preset water taking amount threshold, determining the water replenishment target amount of the current time period as full tank; if the water taking amount corresponding to the current time period is less than the preset water taking amount threshold and greater than 0, determining the water replenishment target amount of the current time period as the preset water amount threshold.

[0155] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0156] if the water taking amount corresponding to the current time period is equal to 0, determining the water replenishment target amount of the current time period as a preset water amount minimum value.

[0157] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0158] obtaining water replenishment control data of the preset period according to the water replenishment target amounts of different time periods; reselecting a new preset period and returning to the step of obtaining water taking data of a preset period until water replenishment control data of N continuous different preset periods are obtained; performing water replenishment control according to the water replenishment control data of the N continuous different preset periods.

[0159] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0160] obtaining water taking average values of the same time period every day in the preset period; when the difference between the water taking amount corresponding to a certain time period and the water taking average value is greater than a preset water taking amount fluctuation threshold, performing water replenishment control in a full tank mode.

[0161] In one embodiment, the computer program, when executed by the processor, further implements the following steps:

[0162] counting the number of times that the difference between the water taking amount corresponding to a certain time period and the water taking average value is greater than the preset water taking amount fluctuation threshold value; when the number of times counted in the preset period is greater than the preset number threshold value, obtaining a second average value of the abnormal water taking amount and the water taking average value, the abnormal water taking amount being the water taking amount corresponding to the event that the difference between the water taking amount and the water taking average value is greater than the preset water taking amount fluctuation threshold value for the last time; and performing water replenishment control according to the second average value.

[0163] It should be noted that the user information (including but not limited to user equipment information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in the present application are all information and data authorized by the user or authorized by all parties.

[0164] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer readable storage medium. When the computer program is executed, it can include the processes of the above-mentioned embodiments. In the embodiments provided by the present application, any reference to the memory, database or other medium can include at least one of non-volatile and volatile memories. The non-volatile memory can include read-only memory (Read-Only Memory, ROM), magnetic tape, floppy disk, flash memory, optical storage, high-density embedded non-volatile memory, resistive memory (ReRAM), magnetoresistive memory (Magnetoresistive Random Access Memory, MRAM), ferroelectric memory (Ferroelectric Random Access Memory, FRAM), phase change memory (Phase Change Memory, PCM), graphene memory, etc. The volatile memory can include random access memory (Random Access Memory, RAM) or external cache memory, etc. As an illustration but not limitation, the RAM can be in various forms, such as static random access memory (Static Random Access Memory, SRAM) or dynamic random access memory (Dynamic Random Access Memory, DRAM), etc. The database involved in the embodiments provided by the present application can include at least one of a relational database and a non-relational database. The non-relational database can include a distributed database based on a block chain, etc., without being limited thereto. The processor involved in the embodiments provided by the present application can be a general-purpose processor, a central processing unit, a graphics processing unit, a digital signal processor, a programmable logic device, a data processing logic device based on quantum computing, etc., without being limited thereto.

[0165] Any technical features in the above embodiments can be combined, and for the sake of brevity, not all possible combinations are described above, however, as long as the combinations do not conflict with each other, they should be considered to be within the scope of the present disclosure.

[0166] The above embodiments only express several implementation manners of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation on the patent scope of the present application. It should be pointed out that for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present application, and these all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. A method for controlling water replenishment in a water purification device, characterized in that, The method includes: Obtain water intake data for a preset period; Based on the water intake data, extract the water intake volume corresponding to different time periods; By comparing the water intake corresponding to different time periods with the preset water intake threshold, the target water intake for different time periods within the preset cycle is determined; the preset water intake threshold is used to distinguish the magnitude of water intake by users; the target water intake includes a full tank, a preset water intake threshold, and a preset minimum water intake. Water replenishment control is carried out based on the target water volume for different time periods; The step of comparing the water intake corresponding to different time periods with the preset water intake threshold to determine the target water intake for different time periods includes: if the water intake corresponding to the current time period is greater than the preset water intake threshold, then the target water intake for the current time period is determined to be a full tank; if the water intake corresponding to the current time period is less than the preset water intake threshold but greater than 0, then the target water intake for the current time period is determined to be the preset water intake threshold.

2. The method according to claim 1, characterized in that, Also includes: If the water intake for the current time period is 0, then the target water intake for the current time period is determined to be the minimum preset water intake.

3. The method according to claim 1, characterized in that, The water replenishment control based on the target water volume for different time periods includes: Based on the target water volume for different time periods, water replenishment control data for a preset period is obtained; Select a new preset cycle and return to the step of obtaining water intake data for the preset cycle until N consecutive different preset cycles of water replenishment control data are obtained. Water replenishment control is performed based on the water replenishment control data of N consecutive different preset cycles.

4. The method according to claim 1, characterized in that, Also includes: Obtain the average water intake value for the same time period each day within a preset period; When the difference between the water intake volume for a certain period and the average water intake volume exceeds the preset water intake volume fluctuation threshold, water replenishment control is carried out by filling the water.

5. The method according to claim 4, characterized in that, After obtaining the average water intake value for the same time period each day within a preset period, the method further includes: Count the number of times the difference between the water intake and the average water intake during a certain time period exceeds a preset water intake fluctuation threshold; When the number of counts within a preset period exceeds a preset threshold, the second average of the abnormal water intake and the average water intake is obtained. The abnormal water intake is the water intake corresponding to the most recent event where the difference between the water intake and the average water intake exceeds a preset water intake fluctuation threshold. Water replenishment is controlled based on the aforementioned quadratic average value.

6. A water replenishment control device for a water purification equipment, characterized in that, The device includes: The data acquisition module is used to acquire water intake data for a preset period. The water extraction module is used to extract the water extraction volume corresponding to different time periods based on the water extraction data. The comparison module is used to compare the water intake corresponding to different time periods with the preset water intake threshold to determine the target water replenishment volume for different time periods within the preset cycle; the preset water intake threshold is used to distinguish the magnitude of the user's water intake; the target water replenishment volume includes a full tank, a preset water intake threshold, and a preset minimum water intake value; The control module is used to control water replenishment according to the target water volume for different time periods; The comparison module is also used to determine the target water volume for replenishment of the current time period as full tank if the water volume corresponding to the current time period is greater than the preset water volume threshold; and to determine the target water volume for replenishment of the current time period as the preset water volume threshold if the water volume corresponding to the current time period is less than the preset water volume threshold and greater than 0.

7. The apparatus according to claim 6, characterized in that, The comparison module is also used to determine the target water volume for replenishment in the current time period as the preset minimum water volume if the water intake volume corresponding to the current time period is equal to 0.

8. A water purification device, comprising a water purification device body and a controller, wherein the controller is disposed on the water purification device body, and the controller performs water replenishment control on the water purification device body using the method described in any one of claims 1 to 5.

9. A computer device comprising a memory and a processor, wherein the memory stores a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 5.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 5.

Citation Information

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