Control method, device and equipment of water purifier and storage medium

By setting a quick heating module at the water outlet of the water purifier, multiple water outlet modes can be achieved according to the water outlet demand and water inlet temperature information, which solves the problem of the single water outlet mode of the water purifier and improves the user experience.

CN120802683APending Publication Date: 2025-10-17NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202510871475.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

The existing water purifiers have a single water output mode, which cannot meet the diverse needs of different users for water quality and temperature, affecting the user experience.

Method used

A quick heating module is set at the water outlet of the water purifier. According to the water outlet demand instruction and the water inlet temperature information, the target water outlet temperature and filtration control information are determined, and the outlet water is heated by the quick heating module to meet the purification degree and temperature requirements.

Benefits of technology

The water purifier has realized multiple water outlet modes, meeting the user's personalized needs for purification degree and temperature, and improving the user experience.

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Patent Text Reader

Abstract

The invention discloses a control method, device and equipment of a water purifier and a storage medium, and the method comprises the following steps: arranging a quick heating module at a water outlet end of the water purifier, and obtaining current water inlet temperature information in response to a water outlet demand instruction; target outlet water temperature information is determined based on the current inlet water temperature information; determining a current water outlet mode based on the water outlet demand instruction; determining filtering control information based on the current water outlet mode so as to obtain an initial control result according to the filtering control information; and the initial control result is corrected based on the target outlet water temperature information, so that the outlet water meets a preset outlet water condition. The instant heating module is arranged at the water outlet end of the water purifier, the current water outlet mode is determined according to different water outlet demand instructions, the filtering control information is determined based on the current water outlet mode, the water purifier is controlled according to the filtering control information to obtain the target outlet water, and the target outlet water is heated to the target outlet water temperature, so that the user experience is guaranteed; the problem of how to provide multiple water outlet modes of the water purifier is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical equipment, in particular to a control method and device of a water purifier, equipment and a storage medium. BACKGROUND

[0002] The water purifier can remove impurities, pollutants, microorganisms and harmful substances in water through physical, chemical or biological methods, so as to provide safer and healthier water. However, the water quality requirements are different according to different scenes.

[0003] In the prior art, the water purifier is provided with a heating module, which directly filters and heats in the machine to provide hot water at a set temperature to the user. However, the user does not always need to use purified hot water, and there is a problem of single water outlet mode, which affects the user experience. Therefore, there is an urgent need for a control method of a water purifier capable of providing multiple water outlet modes to solve the above problems. SUMMARY

[0004] The present application provides a control method and device of a water purifier, equipment and a storage medium, which sets a rapid heating module at the water outlet end of the water purifier, determines the current water outlet mode according to different water outlet demand instructions, determines the target water outlet temperature information based on the current water inlet temperature information, determines the filtration control information based on the current water outlet mode, controls the water purifier to obtain the target water outlet according to the filtration control information, and heats the target water outlet based on the target water outlet temperature information, so that the water outlet of the water purifier meets the purification degree requirement and the temperature requirement, ensuring the user experience and solving the problem of how to provide multiple water outlet modes of the water purifier.

[0005] According to an aspect of the present application, a control method of a water purifier is provided, and the water outlet end of the water purifier is provided with a rapid heating module. The method comprises: In response to a water outlet demand instruction, obtaining the current water inlet temperature information of the water purifier; Based on the current water inlet temperature information, determining the target water outlet temperature information; Based on the water outlet demand instruction, determining the current water outlet mode; Based on the current water outlet mode, determining the filtration control information, so that the water purifier obtains the initial control result according to the filtration control information; Based on the target water outlet temperature information, the initial control result is corrected to make the water outlet of the water purifier meet the preset water outlet condition.

[0006] In one possible implementation, the water inlet end of the water purifier is provided with a first temperature detection device, The current water inlet temperature information of the water purifier is obtained, comprising: Detecting temperature of the water inlet of the water purifier based on the first temperature detecting device to obtain the current water inlet temperature information.

[0007] In a possible implementation, the determining of the target water outlet temperature information based on the current water inlet temperature information comprises: In a case where the current water inlet temperature information is less than a first preset temperature, determining the target water outlet temperature information as a first water outlet temperature; In a case where the current water inlet temperature information is greater than or equal to the first preset temperature and less than or equal to a second preset temperature, determining the target water outlet temperature information as a second water outlet temperature; In a case where the current water inlet temperature information is greater than the second preset temperature, determining the target water outlet temperature information as the current water inlet temperature information; Wherein, the first preset temperature is less than the second preset temperature, the first water outlet temperature is greater than the second water outlet temperature, and the second water outlet temperature is greater than the second preset temperature.

[0008] In a possible implementation, the water outlet demand instruction comprises a first water outlet instruction, a second water outlet instruction and a third water outlet instruction, the first water outlet instruction represents coarse filtered water, the second water outlet instruction represents purified water, and the third water outlet instruction represents bubble water. The determining of the current water outlet mode based on the water outlet demand instruction comprises: In a case where the water outlet demand instruction is the first water outlet instruction, determining the current water outlet mode as a first water outlet mode, the first water outlet mode representing that the water outlet end is in communication with a pipe for coarse filtered water; In a case where the water outlet demand instruction is the second water outlet instruction, determining the current water outlet mode as a second water outlet mode, the second water outlet mode representing that the water outlet end is in communication with a pipe for purified water; In a case where the water outlet demand instruction is the third water outlet instruction, determining the current water outlet mode as a third water outlet mode, the third water outlet mode representing that the water outlet end is in communication with a pipe for bubble water.

[0009] In a possible implementation, the determining of the filtration control information based on the current water outlet mode comprises: In a case where the current water outlet mode is the first water outlet mode, determining the filtration control information as first control information; the first control information representing that a coarse filtered water outlet valve of the pipe for coarse filtered water is opened to enable the water outlet end to be in communication with the pipe for coarse filtered water; In a case where the current water outlet mode is the second water outlet mode, the filtration control information is determined as second control information; the second control information represents that a purified water outlet valve is opened to make the water outlet end communicate with a pipeline for outlet of purified water. In a case where the current water outlet mode is the third water outlet mode, the filtration control information is determined as third control information; the third control information represents that the air pump and the bubble water outlet valve are opened to make the water outlet end communicate with a pipeline for outlet of bubble water.

[0010] In a possible implementation, the water outlet end is provided with a second temperature detection device, The correction processing module is configured to correct the initial control result based on the target water outlet temperature information, so that the water outlet of the water purifier meets a preset water outlet condition. The second temperature detection device is configured to detect a temperature of the water outlet corresponding to the initial control result, to obtain an initial water outlet temperature. The difference information between the initial water outlet temperature and the target water outlet temperature information is used to determine a working parameter of the rapid heating module. The rapid heating module is controlled based on the working parameter of the rapid heating module to heat the water outlet corresponding to the initial control result, so that the water outlet temperature of the water purifier matches the target water outlet temperature information.

[0011] In a possible implementation, the method further includes: The second temperature detection device is configured to detect a temperature of the water outlet corresponding to the initial control result, to obtain an initial water outlet temperature. In a case where the temperature of the water outlet after heating matches the target water outlet temperature information, it is determined that the water outlet of the water purifier meets the preset water outlet condition.

[0012] In another aspect, a control device of a water purifier is provided, a water outlet end of the water purifier is provided with a rapid heating module, and the device includes: The water inlet temperature acquisition module is configured to acquire current water inlet temperature information of the water purifier in response to a water outlet demand instruction. The target water outlet temperature determination module is configured to determine target water outlet temperature information based on the current water inlet temperature information. The water outlet mode determination module is configured to determine a current water outlet mode based on the water outlet demand instruction. The initial control module is configured to determine filtration control information based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtration control information. The correction processing module is configured to correct the initial control result based on the target water outlet temperature information, so that the water outlet of the water purifier meets a preset water outlet condition.

[0013] In a possible implementation, the water inlet end of the water purifier is provided with a first temperature detection device, and the water inlet temperature acquisition module is configured to: detect the temperature of the water inlet of the water purifier based on the first temperature detection device to obtain the current water inlet temperature information.

[0014] In a possible implementation, the target outlet water temperature determination module is configured to: determine the target outlet water temperature information as a first outlet water temperature when the current water inlet temperature information is less than a first preset temperature; determine the target outlet water temperature information as a second outlet water temperature when the current water inlet temperature information is greater than or equal to the first preset temperature and less than or equal to a second preset temperature; determine the target outlet water temperature information as the current water inlet temperature information when the current water inlet temperature information is greater than the second preset temperature; wherein the first preset temperature is less than the second preset temperature, the first outlet water temperature is greater than the second outlet water temperature, and the second outlet water temperature is greater than the second preset temperature.

[0015] In a possible implementation, the outlet water demand instruction includes a first outlet water instruction, a second outlet water instruction, and a third outlet water instruction, the first outlet water instruction represents outlet coarse filtered water, the second outlet water instruction represents outlet purified water, and the third outlet water instruction represents outlet bubble water; and the outlet water mode determination module is configured to: determine that the current outlet water mode is a first outlet water mode when the outlet water demand instruction is the first outlet water instruction, the first outlet water mode representing that the outlet end is in communication with a pipeline for outlet coarse filtered water; determine that the current outlet water mode is a second outlet water mode when the outlet water demand instruction is the second outlet water instruction, the second outlet water mode representing that the outlet end is in communication with a pipeline for outlet purified water; determine that the current outlet water mode is a third outlet water mode when the outlet water demand instruction is the third outlet water instruction, the third outlet water mode representing that the outlet end is in communication with a pipeline for outlet bubble water.

[0016] In a possible implementation, the initial control module is configured to: determine that the filtration control information is first control information when the current outlet water mode is the first outlet water mode, the first control information representing that a coarse filtered water outlet valve of the pipeline for outlet coarse filtered water is opened to enable the outlet end to be in communication with the pipeline for outlet coarse filtered water; In a case where the current water outlet mode is the second water outlet mode, the filtration control information is determined as second control information; the second control information represents opening a purified water outlet valve to make the water outlet end communicate with a pipeline for outlet of purified water; In a case where the current water outlet mode is the third water outlet mode, the filtration control information is determined as third control information; the third control information represents opening an air pump and a bubble water outlet valve to make the water outlet end communicate with a pipeline for outlet of bubble water.

[0017] In a possible implementation, the water outlet end is provided with a second temperature detection device, and the correction processing module comprises: The second temperature detection device is used to detect the temperature of the water corresponding to the initial control result to obtain an initial water outlet temperature; Based on the difference between the initial water outlet temperature and the target water outlet temperature information, the working parameter of the rapid heating module is determined; The rapid heating module is controlled according to the working parameter of the rapid heating module to heat the water corresponding to the initial control result, so that the water outlet temperature of the water purifier matches the target water outlet temperature information.

[0018] In a possible implementation, the device further comprises a matching module, which is configured to: The second temperature detection device is used to detect the temperature of the heated water to obtain a heated water outlet temperature; In a case where the heated water outlet temperature matches the target water outlet temperature information, it is determined that the water outlet of the water purifier meets the preset water outlet condition.

[0019] In another aspect, an electronic device is provided, which includes a processor and a memory, the memory storing at least one instruction or at least one program, the at least one instruction or the at least one program being loaded and executed by the processor to implement the control method of the water purifier according to any one of the above aspects.

[0020] In another aspect, a computer readable storage medium is provided, which stores at least one instruction or at least one program, the at least one instruction or the at least one program being loaded and executed by a processor to implement the control method of the water purifier according to any one of the above aspects.

[0021] In another aspect, a computer program product or computer program is provided, which includes computer instructions stored in a computer readable storage medium. The processor of an electronic device reads the computer instructions from the computer readable storage medium, and the processor executes the computer instructions to make the electronic device perform the control method of the water purifier according to any one of the above aspects.

[0022] The embodiment of the present application sets a rapid heating module at the water outlet end of the water purifier, responds to the water outlet demand instruction, obtains the current water inlet temperature information of the water purifier, determines the target water outlet temperature information based on the current water inlet temperature information, determines the current water outlet mode based on the water outlet demand instruction, determines the filtration control information based on the current water outlet mode, so that the water purifier obtains the initial control result according to the filtration control information, and corrects the initial control result based on the target water outlet temperature information, so that the water outlet of the water purifier meets the preset water outlet condition. By setting the rapid heating module at the water outlet end of the water purifier, the current water outlet mode is determined according to different water outlet demand instructions, the target water outlet temperature information is determined based on the current water inlet temperature information, the filtration control information is determined based on the current water outlet mode, the water purifier is controlled to obtain the target water outlet according to the filtration control information, and the target water outlet is heated based on the target water outlet temperature information, so that the water outlet of the water purifier meets the purification degree requirement and the temperature requirement, and the user experience is ensured, and the problem of how to provide multiple water outlet modes of the water purifier is solved. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0024] Figure 1 is a flow diagram of a control method of a water purifier provided by the embodiment of the present application; Figure 2 is a structural diagram of a water purifier provided by the embodiment of the present application; Figure 3 is a structural block diagram of a control device of a water purifier provided by the embodiment of the present application; In the figure, the reference signs correspond to: 1-rapid heating module, 2-first temperature detection device, 3-PCF composite filter element, 4-NSP composite filter element, 5-water purifying electromagnetic valve, 6-pressure reducing valve, 7-second temperature detection device, 8-jet device, 9-air pump, 10-pressure increasing pump, 11-gas mixing cavity, 12-bubble water outlet valve, 13-foaming device, 14-flow meter, 15-cold water outlet valve, 16-coarse filtration water outlet valve. DETAILED DESCRIPTION

[0025] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those of ordinary skill in the art without creative effort belong to the scope of the present application.

[0026] The water purifiers on the market do not have a self-heating function. If a user wants to use hot tap water in cold weather, the user needs to additionally install a small kitchen treasure or other tap water heating device, which brings inconvenience to the user. The water purifiers with bubble washing usually use normal temperature water for bubble washing. In winter, the water is relatively cold, and the user's hands will be frozen when washing dishes or fruits and vegetables. Moreover, the low temperature affects the cleaning effect. There is a lack of an integrated multifunctional water purifier that can output purified water, hot tap water and ultra-micro bubble water.

[0027] The control method of the water purifier provided in the embodiments of the present application. By setting a rapid heating module at the water outlet end of the water purifier, the current water outlet mode is determined according to different water outlet demand instructions, the target water outlet temperature information is determined based on the current water inlet temperature information, the filtration control information is determined based on the current water outlet mode, the water purifier is controlled according to the filtration control information to obtain the target water outlet, and the target water outlet is heated based on the target water outlet temperature information, so that the water outlet of the water purifier meets the purification degree requirement and the temperature requirement, and the user experience is ensured. Referring to Figure 1 , the water outlet end of the water purifier is provided with a rapid heating module, and the control method of the water purifier includes steps S101 to S109.

[0028] In step S101, in response to a water outlet demand instruction, the current water inlet temperature information of the water purifier is obtained.

[0029] In one possible implementation, the water inlet end of the water purifier is provided with a first temperature detection device, The current water inlet temperature information of the water purifier is obtained, including: The water inlet temperature of the water purifier is detected based on the first temperature detection device to obtain the current water inlet temperature information.

[0030] In one possible implementation, as Figure 2 shown, the water outlet end of the water purifier is provided with a rapid heating module, and the rapid heating module is used to heat the water passing through the rapid heating module to a set temperature. The rapid heating module is placed at the water outlet end of the whole machine, which can heat the bubble water and also can heat the rough filtration water, realizes the multiple functions of one component, plays a greater role, meets more user requirements, and also reduces the cost of the whole machine.

[0031] In one possible implementation, as Figure 2As shown, the water inlet end of the water purifier is provided with a first temperature detection device for detecting the temperature of the water inlet of the water purifier. Specifically, the first temperature detection device can be a temperature sensor.

[0032] In this implementation, a first temperature detection device is arranged at the water inlet end of the water purifier, and the temperature of the water inlet of the water purifier is detected based on the first temperature detection device to obtain current water inlet temperature information, which facilitates subsequent prediction of target outlet water temperature information based on the water inlet temperature information and improves the intelligence of control.

[0033] In step S103, target outlet water temperature information is determined based on the current water inlet temperature information.

[0034] In one possible implementation, the determination of the target outlet water temperature information based on the current water inlet temperature information includes: In a case where the current water inlet temperature information is less than a first preset temperature, the target outlet water temperature information is determined to be a first outlet water temperature; In a case where the current water inlet temperature information is greater than or equal to the first preset temperature and less than or equal to a second preset temperature, the target outlet water temperature information is determined to be a second outlet water temperature; In a case where the current water inlet temperature information is greater than the second preset temperature, the target outlet water temperature information is determined to be the current water inlet temperature information; wherein the first preset temperature is less than the second preset temperature, the first outlet water temperature is greater than the second outlet water temperature, and the second outlet water temperature is greater than the second preset temperature.

[0035] In one possible implementation, in a case where the current water inlet temperature information is less than a first preset temperature, the target outlet water temperature information is determined to be a first outlet water temperature. Specifically, the first preset temperature is 15℃ (the number is not unique), and the first outlet water temperature is 35℃. In a case where the current water inlet temperature information is less than 15℃, it is considered to be a cold winter, and people need warm water for cleaning, so the target outlet water temperature information is determined to be 35℃, and the outlet water temperature is adjusted to 35℃.

[0036] In one possible implementation, in a case where the current water inlet temperature information is greater than or equal to the first preset temperature and less than or equal to a second preset temperature, the target outlet water temperature information is determined to be a second outlet water temperature. Specifically, the second preset temperature is 20℃, and the second outlet water temperature is 30℃. When the water inlet temperature is higher than 15℃ and lower than 20℃, it is considered to be a spring or autumn season, and people's demand for warm water is not so urgent, so the outlet water temperature is adjusted to about 30℃.

[0037] In a possible implementation manner, when the current inlet water temperature information is greater than the second preset temperature, the target outlet water temperature information is determined as the current inlet water temperature information. Specifically, when the water temperature is higher than 20℃, it is considered as summer, the user has less demand for washing with warm water, and the outlet water is not subjected to the warming treatment for the demand of the user for energy saving and power saving.

[0038] In a possible implementation manner, the target outlet water temperature information can also be set by the user for the operation of the water purifier.

[0039] In this implementation manner, the target outlet water temperature information required by the user is predicted based on the current inlet water temperature information, the intelligence of the water purifier is improved, and the user experience is improved.

[0040] In step S105, a current outlet water mode is determined based on the outlet water demand instruction.

[0041] In a possible implementation manner, the outlet water demand instruction includes a first outlet water instruction, a second outlet water instruction and a third outlet water instruction, the first outlet water instruction represents outlet coarse filtered water, the second outlet water instruction represents outlet purified water, and the third outlet water instruction represents outlet bubble water. The determination of the current outlet water mode based on the outlet water demand instruction includes: When the outlet water demand instruction is the first outlet water instruction, the current outlet water mode is determined as a first outlet water mode, and the first outlet water mode represents that the outlet water end is in communication with a pipeline for outlet coarse filtered water. When the outlet water demand instruction is the second outlet water instruction, the current outlet water mode is determined as a second outlet water mode, and the second outlet water mode represents that the outlet water end is in communication with a pipeline for outlet purified water. When the outlet water demand instruction is the third outlet water instruction, the current outlet water mode is determined as a third outlet water mode, and the third outlet water mode represents that the outlet water end is in communication with a pipeline for outlet bubble water.

[0042] In a possible implementation manner, as shown in Figure 2 The water purifier further includes a PCF (Particulate Filter Cartridge, particulate filter cartridge) composite filter cartridge, an NSP (New Selected Pureration, selective filtration) composite filter cartridge, a purified water electromagnetic valve, a pressure reducing valve, an outlet water temperature sensor, a jet device, an air pump, a booster pump, a gas mixing cavity, a bubble outlet water valve and a bubble generator.

[0043] In a possible implementation manner, the PCF composite filter element has the functions of filtering out silt and improving taste by a post-activated carbon, and filtering out bacteria, viruses, organic matter and the like through a membrane separation technology, so as to obtain cleaner and healthier water. The NSP composite filter element has the function of fine filtering, and can filter out heavy metals, bacteria and part of minerals in water. The water purification electromagnetic valve is used for controlling whether to generate purified water or bubble water. The pressure reducing valve has the functions of reducing water pressure and stabilizing pressure, so as to create a stable water pressure environment for the jet device, and facilitate the generation of ultra-micro bubbles. The water outlet end is provided with a second temperature detection device, which is used for detecting the water temperature after the heating of the rapid heating module, so as to facilitate the temperature control of the rapid heating module. The jet device, also known as a Venturi tube, can generate micro-nano bubbles. It is a key part of bubble washing. The air pump can control the air intake, and can control the generation of micro-nano bubbles with different concentrations. Other devices such as stepper motors can be used instead, as long as the air intake can be controlled. The booster pump can pump water and increase water pressure, facilitating the filtration of the filter element and the outlet of water. The gas mixing cavity is used for uniform mixing of gas and liquid. The bubble outlet valve is used for controlling the outlet of bubble washing. The frother is designed with a filter screen and a micro-porous structure. The micro-porous structure achieves the collision of water flow by changing the flow cross section, forms a vortex, and cuts the bubbles. At the same time, the micro-pores on the filter screen also cut the bubbles when they pass through, and finally form micro-nano bubbles.

[0044] In a possible implementation manner, in a case where the water outlet demand instruction is the first water outlet instruction, the current water demand is to output coarse filtration water, and it is determined that the current water outlet mode is the first water outlet mode.

[0045] In a possible implementation manner, in a case where the water outlet demand instruction is the second water outlet instruction, the current water demand is to output purified water, and it is determined that the current water outlet mode is the second water outlet mode.

[0046] In a possible implementation manner, in a case where the water outlet demand instruction is the third water outlet instruction, the current water demand is to output bubble water, and it is determined that the current water outlet mode is the third water outlet mode.

[0047] In this implementation manner, different current water outlet modes are determined based on different water outlet demand instructions, so that the water purifier integrates three water outlet modes of cleaning water, coarse filtration water and drinking water, and the functionality of the water purifier is improved.

[0048] In step S107, filtering control information is determined based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtering control information.

[0049] In a possible implementation manner, the determination of the filtering control information based on the current water outlet mode comprises: In a case where the current water outlet mode is the first water outlet mode, the filtration control information is determined as first control information; the first control information indicates that a rough water outlet valve is opened to make the water outlet end communicate with a rough water outlet pipeline. In a case where the current water outlet mode is the second water outlet mode, the filtration control information is determined as second control information; the second control information indicates that a purified water outlet valve is opened to make the water outlet end communicate with a purified water outlet pipeline. In a case where the current water outlet mode is the third water outlet mode, the filtration control information is determined as third control information; the third control information indicates that an air pump and a bubble water outlet valve are opened to make the water outlet end communicate with a bubble water outlet pipeline.

[0050] In a possible implementation, in a case where the current water outlet mode is the first water outlet mode and the current water demand is rough water outlet, the filtration control information is determined as first control information. Specifically, the rough water outlet valve is opened to make the water outlet end communicate with the rough water outlet pipeline.

[0051] In a possible implementation, in a case where the current water outlet mode is the second water outlet mode and the current water demand is purified water outlet, the filtration control information is determined as second control information. Specifically, the purified water outlet valve is opened to make the water outlet end communicate with the purified water outlet pipeline.

[0052] In a possible implementation, in a case where the current water outlet mode is the third water outlet mode and the current water demand is bubble water outlet, the filtration control information is determined as third control information. Specifically, the bubble water outlet valve is opened to make the water outlet end communicate with the bubble water outlet pipeline.

[0053] In a possible implementation, as shown in FIG. 1, Figure 2 The purified water electromagnetic valve is used to control whether purified water or bubble water is outletted, and the purified water outlet valve and the bubble water outlet valve share one valve.

[0054] In this implementation, filtration control information is determined based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtration control information, the purified water outlet degree of the purified water machine meets the user demand, and the cost is reduced and the energy is saved.

[0055] In step S109, the initial control result is corrected based on the target water outlet temperature information, so that the purified water outlet of the purified water machine meets the preset water outlet condition.

[0056] In a possible implementation, the water outlet end is provided with a second temperature detection device, The correction processing of the initial control result based on the target outlet water temperature information comprises: detecting the temperature of the outlet water corresponding to the initial control result based on the second temperature detection device to obtain an initial outlet water temperature; determining the working parameter of the rapid heating module based on the difference information between the initial outlet water temperature and the target outlet water temperature information; controlling the rapid heating module to heat the outlet water corresponding to the initial control result according to the working parameter of the rapid heating module, so that the outlet water temperature of the water purifier matches the target outlet water temperature information.

[0057] In a possible implementation manner, as shown in Figure 2 The outlet water end is provided with a second temperature detection device, which is used to detect the outlet water temperature after heating by the rapid heating module, so as to facilitate temperature control of the rapid heating module.

[0058] In a possible implementation manner, the temperature of the outlet water corresponding to the initial control result is detected based on the second temperature detection device to obtain an initial outlet water temperature that has not been heated; the working parameter of the rapid heating module is determined based on the difference information between the initial outlet water temperature and the target outlet water temperature information; and the rapid heating module is controlled to heat the outlet water corresponding to the initial control result according to the working parameter of the rapid heating module, so that the outlet water temperature of the water purifier matches the target outlet water temperature information.

[0059] In this implementation manner, the water meeting the purification degree is heated based on the target outlet water temperature information, so that the outlet water of the water purifier meets the temperature requirement at the same time, the cleaning effect is improved, and the user experience is improved.

[0060] In a possible implementation manner, the method further comprises: detecting the temperature of the heated outlet water based on the second temperature detection device to obtain a heated outlet water temperature; In a case where the heated outlet water temperature matches the target outlet water temperature information, it is determined that the outlet water of the water purifier meets the preset outlet water condition.

[0061] In a possible implementation manner, the temperature of the heated outlet water is detected based on the second temperature detection device, and in a case where the heated outlet water temperature reaches the target outlet water temperature information, it is determined that the outlet water of the water purifier meets the preset outlet water condition.

[0062] In a possible implementation manner, in a case where it is determined that the outlet water of the water purifier meets the preset outlet water condition, the outlet water end is controlled to supply water to the user.

[0063] In the implementation mode, the water temperature is automatically adjusted to meet the standard, water supply is carried out after the standard is met, users have good water use experience every time, and cost is reduced and energy is saved.

[0064] The above embodiments of the present application have the following beneficial effects: the embodiments of the present application are provided with a rapid heating module at the water outlet end of the water purifier, in response to a water outlet demand instruction, current water inlet temperature information of the water purifier is obtained, target water outlet temperature information is determined based on the current water inlet temperature information, a current water outlet mode is determined based on the water outlet demand instruction, filtration control information is determined based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtration control information, and the initial control result is corrected based on the target water outlet temperature information, so that the water outlet of the water purifier meets a preset water outlet condition. By providing the rapid heating module at the water outlet end of the water purifier, the current water outlet mode is determined according to different water outlet demand instructions, the target water outlet temperature information is determined based on the current water inlet temperature information, the filtration control information is determined based on the current water outlet mode, the water purifier is controlled according to the filtration control information to obtain the target water outlet, and the target water outlet is heated based on the target water outlet temperature information, so that the water outlet of the water purifier meets the purification degree requirement and the temperature requirement, and the user experience is ensured, and the problem of how to provide the water purifier with multiple water outlet modes is solved.

[0065] Figure 3 A structure schematic diagram of a control device 300 of a water purifier provided by the embodiments of the present application is shown, the device has the function of implementing the control method of the water purifier in the above method embodiments, and the function can be implemented by hardware or corresponding software executed by hardware. As shown in Figure 3 The water outlet end of the water purifier is provided with a rapid heating module, and the device can include: A water inlet temperature acquisition module 301 is configured to, in response to a water outlet demand instruction, acquire current water inlet temperature information of the water purifier. A target water outlet temperature determination module 302 is configured to determine target water outlet temperature information based on the current water inlet temperature information. A water outlet mode determination module 303 is configured to determine a current water outlet mode based on the water outlet demand instruction. An initial control module 304 is configured to determine filtration control information based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtration control information. A correction processing module 305 is configured to correct the initial control result based on the target water outlet temperature information, so that the water outlet of the water purifier meets a preset water outlet condition.

[0066] In a possible implementation mode, the water inlet end of the water purifier is provided with a first temperature detection device, and the water inlet temperature acquisition module 301 is configured to: Detecting temperature of the water inlet of the water purifier based on the first temperature detecting device to obtain the current water inlet temperature information.

[0067] In a possible implementation, the target outlet water temperature determining module 302 is configured to: determine the target outlet water temperature information as a first outlet water temperature when the current water inlet temperature information is less than a first preset temperature; determine the target outlet water temperature information as a second outlet water temperature when the current water inlet temperature information is greater than or equal to the first preset temperature and less than or equal to a second preset temperature; determine the target outlet water temperature information as the current water inlet temperature information when the current water inlet temperature information is greater than the second preset temperature; wherein the first preset temperature is less than the second preset temperature, the first outlet water temperature is greater than the second outlet water temperature, and the second outlet water temperature is greater than the second preset temperature.

[0068] In a possible implementation, the water outlet demand instruction includes a first water outlet instruction, a second water outlet instruction and a third water outlet instruction, the first water outlet instruction represents outletting rough filtered water, the second water outlet instruction represents outletting purified water, and the third water outlet instruction represents outletting bubble water; the water outlet mode determining module 303 is configured to: determine the current water outlet mode as a first water outlet mode when the water outlet demand instruction is the first water outlet instruction, the first water outlet mode representing that the water outlet end is in communication with a pipeline for outletting rough filtered water; determine the current water outlet mode as a second water outlet mode when the water outlet demand instruction is the second water outlet instruction, the second water outlet mode representing that the water outlet end is in communication with a pipeline for outletting purified water; determine the current water outlet mode as a third water outlet mode when the water outlet demand instruction is the third water outlet instruction, the third water outlet mode representing that the water outlet end is in communication with a pipeline for outletting bubble water.

[0069] In a possible implementation, the initial control module 304 is configured to: determine the filtration control information as first control information when the current water outlet mode is the first water outlet mode, the first control information representing opening a rough filtered water outlet valve of the pipeline for outletting rough filtered water so as to make the water outlet end in communication with the pipeline for outletting rough filtered water; determine the filtration control information as second control information when the current water outlet mode is the second water outlet mode, the second control information representing opening a purified water outlet valve so as to make the water outlet end in communication with the pipeline for outletting purified water; In a case where the current water outlet mode is the third water outlet mode, the filter control information is determined as third control information; the third control information represents that the air pump and the bubble water outlet valve are opened, so that the water outlet end is in communication with a pipeline of bubble water.

[0070] In a possible implementation, the water outlet end is provided with a second temperature detection device, and the correction processing module 305 includes: The second temperature detection device detects the temperature of the water corresponding to the initial control result to obtain an initial water outlet temperature; Based on the difference between the initial water outlet temperature and the target water outlet temperature information, the working parameter of the rapid heating module is determined; The rapid heating module is controlled according to the working parameter of the rapid heating module to heat the water corresponding to the initial control result, so that the water outlet temperature of the water purifier matches the target water outlet temperature information.

[0071] In a possible implementation, the device further includes a matching module 306, which is configured to: The second temperature detection device detects the temperature of the water corresponding to the initial control result to obtain an initial water outlet temperature; In a case where the heated water outlet temperature matches the target water outlet temperature information, it is determined that the water outlet of the water purifier meets the preset water outlet condition.

[0072] It should be noted that the device provided in the above embodiments, in realizing its functions, is only exemplified by the above division of each functional module, and in actual application, the above functions can be completed by different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the above described functions. In addition, the device and method embodiments provided in the above embodiments belong to the same concept, and the specific implementation process is described in detail in the method embodiments, which will not be repeated here.

[0073] The electronic device provided in the embodiments of the present application includes a processor and a memory, and the memory stores at least one instruction or at least one program, which is loaded and executed by the processor to implement any one of the control methods of the water purifier provided in the above method embodiments.

[0074] The memory can be used to store software programs and modules, and the processor executes various function applications and data processing by running the software programs and modules stored in the memory. The memory can mainly include a program storage area and a data storage area, wherein the program storage area can store an operating system, application programs required by functions, etc.; and the data storage area can store data created according to the use of the device, etc. In addition, the memory can include a high-speed random access memory, and can also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state memory device. Accordingly, the memory can also include a memory controller to provide access for the processor to the memory.

[0075] The embodiment of the present application further provides a computer readable storage medium which can be arranged in an electronic device to save at least one instruction or at least one program for implementing a control method of a water purifier, and the at least one instruction or the at least one program is loaded and executed by the processor to implement any one of the control methods of the water purifier provided in the method embodiments.

[0076] Optionally, in the embodiment, the storage medium can include but is not limited to a U disk, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, a magnetic disk or an optical disk, and various media capable of storing program codes.

[0077] It should be noted that the above-mentioned sequence of the embodiments of the present application is only for description, and does not represent the advantages and disadvantages of the embodiments. The above-mentioned embodiments of the present application are described. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recorded in the claims can be executed in an order different from that in the embodiments and still achieve the desired results. In addition, the processes depicted in the drawings do not necessarily require the specific order or continuous order shown to achieve the desired results. In some embodiments, multi-task processing and parallel processing are possible or can be advantageous.

[0078] Each of the embodiments in the specification is described in a progressive manner, and the same or similar parts between each embodiment can be referred to each other, and each embodiment mainly describes the difference from other embodiments. Especially, for the device embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the part of the method embodiments.

[0079] Those skilled in the art can understand that all or part of the steps of the above-mentioned embodiments can be completed by hardware, or can be instructed by a program to complete the related hardware, and the program can be stored in a computer readable storage medium. The storage medium mentioned above can be a read-only memory, a magnetic disk or an optical disk, etc.

[0080] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A method for controlling a water purifier, characterized in that: The water outlet of the water purifier is provided with a quick heating module, and the method comprises: In response to a water output demand instruction, obtaining current water inlet temperature information of the water purifier; Determining target water outlet temperature information based on the current water inlet temperature information; Determining a current water outlet mode based on the water outlet demand instruction; determining filtering control information based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtering control information; The initial control result is corrected based on the target water outlet temperature information so that the water outlet of the water purifier meets the preset water outlet condition.

2. The control method of the water purifier according to claim 1, characterized in that: The water inlet end of the water purifier is provided with a first temperature detection device. The obtaining of the current water inlet temperature information of the water purifier includes: The first temperature detection device detects the temperature of the water inlet of the water purifier to obtain the current water inlet temperature information.

3. The control method of the water purifier according to claim 1, characterized in that: The determining target water outlet temperature information based on the current water inlet temperature information includes: When the current water inlet temperature is lower than a first preset temperature, determining the target water outlet temperature to be the first water outlet temperature; When the current water inlet temperature information is greater than or equal to the first preset temperature and the current water inlet temperature information is less than or equal to the second preset temperature, determining the target water outlet temperature information to be the second water outlet temperature; When the current water inlet temperature information is greater than the second preset temperature, determining the target water outlet temperature information to be the current water inlet temperature information; The first preset temperature is lower than the second preset temperature, the first outlet water temperature is higher than the second outlet water temperature, and the second outlet water temperature is higher than the second preset temperature.

4. The control method of the water purifier according to claim 1, characterized in that: The water output demand instruction includes a first water output instruction, a second water output instruction, and a third water output instruction, wherein the first water output instruction represents coarse filtered water, the second water output instruction represents purified water, and the third water output instruction represents bubble water; The determining of the current water outlet mode based on the water outlet demand instruction includes: When the water outlet demand instruction is the first water outlet instruction, determining that the current water outlet mode is the first water outlet mode, the first water outlet mode indicating that the water outlet end is connected to a pipeline for discharging coarse filtered water; When the water outlet demand instruction is the second water outlet instruction, determining that the current water outlet mode is the second water outlet mode, the second water outlet mode indicates that the water outlet end is connected to the pipeline for discharging purified water; When the water outlet demand instruction is the third water outlet instruction, the current water outlet mode is determined to be the third water outlet mode, and the third water outlet mode indicates that the water outlet end is connected to a pipeline for discharging bubbling water.

5. The control method of the water purifier according to claim 4, characterized in that: The determining of filtration control information based on the current water outlet mode includes: When the current water outlet mode is the first water outlet mode, determining that the filtration control information is the first control information; the first control information indicates opening a coarse filtered water outlet valve of a pipe for discharging coarse filtered water, so that the water outlet is connected to the pipe for discharging coarse filtered water; When the current water outlet mode is the second water outlet mode, determining that the filtration control information is the second control information; the second control information indicates opening the purified water outlet valve so that the water outlet end is connected to the purified water outlet pipe; When the current water outlet mode is the third water outlet mode, the filtering control information is determined to be the third control information; the third control information indicates that the air pump and the bubble water outlet valve are turned on to connect the water outlet end with the bubble water outlet pipe.

6. The control method of the water purifier according to claim 1, characterized in that: The water outlet is provided with a second temperature detection device, The correcting the initial control result based on the target outlet water temperature information includes: performing temperature detection on the outlet water corresponding to the initial control result based on the second temperature detection device to obtain an initial outlet water temperature; Determining the operating parameters of the quick heating module based on the difference between the initial water outlet temperature and the target water outlet temperature; According to the working parameters of the quick heating module, the quick heating module is controlled to heat the outlet water corresponding to the initial control result, so that the outlet water temperature of the water purifier matches the target outlet water temperature information.

7. The control method of the water purifier according to claim 6, characterized in that: The method further comprises: detecting the temperature of the heated outlet water based on the second temperature detection device to obtain the outlet water temperature; When the outlet water temperature after heating matches the target outlet water temperature information, it is determined that the outlet water of the water purifier meets the preset water outlet condition.

8. A control device for a water purifier, characterized in that: The water outlet of the water purifier is provided with a quick heating module, and the device comprises: an inlet water temperature acquisition module, configured to obtain current inlet water temperature information of the water purifier in response to a water outlet demand instruction; a target outlet water temperature determination module, configured to determine target outlet water temperature information based on the current inlet water temperature information; A water outlet mode determination module, configured to determine a current water outlet mode based on the water outlet demand instruction; an initial control module, configured to determine filtering control information based on the current water outlet mode, so that the water purifier obtains an initial control result according to the filtering control information; The correction processing module is used to correct the initial control result based on the target water outlet temperature information so that the water outlet of the water purifier meets the preset water outlet condition.

9. An electronic device, characterized in that: It includes a processor and a memory, wherein the memory stores at least one instruction or at least one program, and the at least one instruction or the at least one program is loaded and executed by the processor to implement the control method of the water purifier as described in any one of claims 1 to 7.

10. A computer-readable storage medium, wherein at least one instruction or at least one program is stored in the computer-readable storage medium, wherein the at least one instruction or the at least one program is loaded and executed by a processor to implement the control method of the water purifier according to any one of claims 1 to 7.