Water adding control method and device
By calculating the target water acoustic frequency and controlling the opening and closing state of the water purifier, the inconvenience and inefficiency of the water purifier during the water refueling process is solved, intelligent water refueling control is realized, and the user experience of the electric steamer is improved.
Patent Information
- Application Number
- CN202510259564.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-07-11
AI Technical Summary
The water purifier has problems of inconvenience, inefficiency and time waste in the process of adding water to the electric steamer tank. In particular, the slow water flow rate of the water purifier causes the user to increase the waiting time.
By obtaining the preset standard frequency of the target water tank, the frequency change coefficient, the current and standard water outlet flow of the water purifier, calculate the target water acoustic frequency, and control the opening and closing state of the water purifier based on the frequency comparison results to achieve intelligent water recharge control.
It improves the intelligence and efficiency of the water addition process, reduces user waiting time, and improves the convenience and efficiency of water addition.
Smart Images

Figure CN120295379A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of control technologies, and more particularly, to a water addition control method and device. Background Art
[0002] With the continuous development of the intelligence and series of kitchen appliances, users are using electric steamers and water purifiers in the kitchen more and more. Generally, an electric steamer is equipped with an internal water tank for storing water. In order to avoid scale formation during heating, purified water is used for steaming. However, the current water treatment flow rate of water purifiers is relatively slow, and as the usage frequency of the steamer water tank increases, the demand becomes larger. Therefore, each time the water tank is filled with water, it is necessary to wait for a period of time, which also requires users to wait, resulting in a waste of time and increasing the inconvenience of filling the water tank. Therefore, a new water addition control method is needed to reduce the inconvenience of filling the steamer water tank with a water purifier, the problem of time waste caused by users waiting during water addition, and the problem of lack of intelligence in water addition. Summary of the Invention
[0003] In view of this, embodiments of the present invention provide a water addition control method and device to solve technical problems such as inconvenience, inefficiency, time waste, and low water addition intelligence during the process of filling a steamer water tank with a water purifier.
[0004] One aspect of the present invention provides a water addition control method, which includes the following steps:
[0005] In response to a control water addition instruction, control a target water purifier to add water to a target water tank, and obtain a preset standard frequency corresponding to the target water tank, a target frequency change coefficient corresponding to the target water tank, the current water output flow rate of the target water purifier, and the standard water output flow rate of the target water purifier; the control water addition instruction carries water addition indication information; the target frequency change coefficient is determined based on the standard water output flow rate and the identification information of the target water tank;
[0006] Based on the preset standard frequency, the water addition indication information, the current water output flow rate, the standard water output flow rate, and the target frequency change coefficient, determine the target water sound frequency corresponding to the target water tank;
[0007] Obtain the real-time water sound frequency of the target water tank;
[0008] Based on the real-time water sound frequency and the target water sound frequency, determine a frequency comparison result;
[0009] Based on the frequency comparison result, control the opening and closing state of the target water purifier.
[0010] Another aspect of the present invention provides a water addition control device, the device includes:
[0011] A response module, in response to a control water addition instruction, controls a target water purifier to add water to a target water tank, and obtains a preset standard frequency corresponding to the target water tank, a target frequency change coefficient corresponding to the target water tank, a current water output flow rate of the target water purifier, and a standard water output flow rate of the target water purifier; the control water addition instruction carries water addition indication information; the target frequency change coefficient is determined based on the standard water output flow rate and the identification information of the target water tank;
[0012] A determination module determines a target underwater acoustic frequency corresponding to the target water tank based on the preset standard frequency, the water addition indication information, the current water output flow rate, the standard water output flow rate, and the target frequency change coefficient;
[0013] An acquisition module acquires a real-time underwater acoustic frequency of the target water tank;
[0014] A comparison module determines a frequency comparison result based on the real-time underwater acoustic frequency and the target underwater acoustic frequency;
[0015] A control module is configured to control the opening and closing state of the target water purifier based on the frequency comparison result.
[0016] Another aspect of the present invention provides an electronic device, which includes:
[0017] A processor;
[0018] A memory for storing executable instructions of the processor;
[0019] Wherein, the processor is configured to execute the instructions to implement the water addition control method described in any one of the above.
[0020] Another aspect of the present invention provides a computer-readable storage medium. When the instructions in the storage medium are executed by a processor of an electronic device, the electronic device can execute the water addition control method described in any one of the above.
[0021] A water addition control method and device provided by the present invention control a target water purifier to add water to a target water tank in response to a control water addition instruction, and determine a target water sound frequency corresponding to the target water tank based on a preset standard frequency corresponding to the target water tank, a target frequency change coefficient corresponding to the target water tank, the current water output flow rate of the target water purifier, the standard water output flow rate of the target water purifier, and water addition indication information carried in the control water addition instruction; calculating and determining the target water sound frequency through the obtained information improves the accuracy of determining the target water sound frequency; further, comparing the real-time water sound frequency of the obtained target water tank with the target water sound frequency to determine a frequency comparison result; and controlling the opening and closing state of the target water purifier based on the frequency comparison result, thereby improving the accuracy of controlling the opening and closing state of the target water purifier and the intelligence of water addition. Further, by automatically determining the opening and closing state of the water purifier, there is no need for the user to wait and check during the process of the target water purifier adding water to the target water tank, reducing time waste and improving the convenience and efficiency of water addition. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions and advantages in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0023] Figure 1 is a schematic diagram of the method steps of a water addition control provided according to an exemplary embodiment;
[0024] Figure 2 is a schematic diagram of the process of determining a target frequency change coefficient based on adjusting the water output flow rate provided according to an exemplary embodiment;
[0025] Figure 3 is a schematic diagram of the process of determining a target frequency change coefficient based on frequency calculation provided according to an exemplary embodiment;
[0026] Figure 4 is a schematic diagram of the process of determining a target water sound frequency provided according to an exemplary embodiment;
[0027] Figure 5 is a schematic diagram of the process of determining a target standard frequency provided according to an exemplary embodiment;
[0028] Figure 6 is a schematic diagram of the structure of a water addition control device provided according to an exemplary embodiment. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.
[0030] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned accompanying drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application described herein can be implemented in an order different from those illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or server including a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0031] Figure 1 It is a schematic diagram of the steps of a water addition control method provided according to an exemplary embodiment. In an alternative embodiment, the controller of the voice box is used as the execution subject in the present invention to introduce an embodiment of a water addition control method of the present application, as Figure 1 shown, the above method may include:
[0032] S101: In response to a control water addition instruction, control the target water purifier to add water to the target water tank, and obtain the preset standard frequency corresponding to the target water tank, the target frequency change coefficient corresponding to the target water tank, the current water output flow rate of the target water purifier, and the standard water output flow rate of the target water purifier; the control water addition instruction carries water addition indication information.
[0033] In a specific embodiment, the target frequency change coefficient is determined based on the standard water output flow rate and the identification information of the target water tank; the water output flow rate can be a characterization information representing the water output information of the target water purifier. Optionally, it is characterized by the water output radius and the water output flow velocity. Specifically, the current water output flow rate can be the real-time water output flow rate of the target water purifier. Optionally, the current water output flow rate can be characterized by the current water output radius and the current water output flow velocity. The current water output flow velocity can be the real-time water output velocity of the target water purifier; the current water output radius can be the outlet radius of the target water purifier; the standard water output flow rate can be the water output flow rate of the target water purifier under normal conditions such as no blockage. Optionally, the standard water output flow rate can be characterized by the standard water output flow velocity and the standard water output radius. The standard water output flow velocity can be the water output velocity of the target water purifier under normal conditions such as no blockage, and the standard water output radius can be the water output radius of the target water purifier under normal conditions such as no blockage; the preset standard frequency can be the standard water sound frequency collected during the process of the target water purifier adding water to the target water tank based on the standard water output flow rate.
[0034] Specifically, during the process of using the target water purifier to add water to the target water tank, the voice box is electrically connected to the target water purifier and the target water tank respectively. Specifically, the voice box can be a device including control components such as a controller; further, when the user needs to add water to the target water tank, a water addition instruction is sent to the target water purifier. Optionally, the water addition instruction carries water addition indication information. Correspondingly, the target water purifier responds to the water addition instruction and sends a control water addition instruction to the voice box. Optionally, the control water addition instruction also carries water addition indication information. The voice box controls the target water purifier to add water to the target water tank. Further, during the process of the voice box controlling the target water purifier to add water to the target water tank, the current water output flow rate and the standard water output flow rate corresponding to the target water purifier are obtained through the target water purifier, and the preset standard frequency and the target frequency change coefficient corresponding to the target water tank are obtained through the target water tank.
[0035] Figure 2 It is a schematic flowchart of a process for determining a target frequency change coefficient based on adjusting the water output flow rate according to an exemplary embodiment. In an alternative embodiment, as Figure 2 shown, the above method may further include:
[0036] S201: During the process of adding water to the target water tank with the standard water output flow rate as the water output flow rate, collect the standard frequencies corresponding to different water levels of the target water tank;
[0037] S203: Adjust the water output flow rate, and during the process of adding water to the target water tank based on the adjusted water output flow rate, collect multiple adjusted frequencies corresponding to different water levels of the target water tank;
[0038] S205: Determine a target frequency change coefficient based on the standard frequencies corresponding to different water levels of the target water tank and multiple adjustment frequencies corresponding to different water levels of the target water tank.
[0039] In a specific embodiment, during the process of the target water purifier adding water to the target water tank, with the standard water output flow rate as the water output flow rate, correspondingly, control the target water purifier to add water to the target water tank at the standard water output flow rate. Further, during this water addition process, collect the underwater sound frequencies at different water levels of the target water tank, that is, the standard frequencies.
[0040] Further, adjust the water output flow rate of the target water purifier. Correspondingly, adjust the water output radius and water flow velocity of the target water purifier. Optionally, the water output radius can be set to be unchanged and the water flow velocity can be adjusted. Optionally, the water flow velocity can be set to be unchanged and the water output radius can be adjusted. Further, based on the adjusted water output flow rate, control the target water purifier to add water to the target water tank, and then collect multiple adjustment frequencies corresponding to different water levels of the target water tank.
[0041] Further, calculate and determine the target frequency change coefficient based on the collected standard frequencies corresponding to different water levels of the target water tank and multiple adjustment frequencies corresponding to different water levels of the target water tank.
[0042] Figure 3 It is a flow chart showing a process of determining a target frequency change coefficient based on frequency calculation according to an exemplary embodiment. In an alternative embodiment, as Figure 3 shown, determining the target frequency change coefficient based on the standard frequencies corresponding to different water levels of the target water tank and multiple adjustment frequencies corresponding to different water levels of the target water tank may include:
[0043] S301: Determine multiple frequency change values of the target water tank at different water levels based on the standard frequencies corresponding to different water levels of the target water tank and multiple adjustment frequencies corresponding to different water levels of the target water tank.
[0044] S303: Determine the average frequency of the target water tank at different water levels based on multiple frequency change values of the target water tank at different water levels.
[0045] S305: Determine the frequency coefficient of the target water tank at different water levels based on the average frequency of the target water tank at different water levels and the standard frequencies corresponding to different water levels of the target water tank.
[0046] S307: Perform an averaging process based on the frequency coefficients of the target water tank at different water levels to determine the target frequency change coefficient corresponding to the target water tank.
[0047] In a specific embodiment, based on the standard frequency corresponding to different water levels of the target water tank and the multiple adjustment frequencies corresponding to different water levels of the target water tank, a difference calculation is performed. Specifically, a subtraction operation is performed based on the standard frequency at each water level of the target water tank and the multiple adjustment frequencies at each water level. Correspondingly, multiple frequency change values corresponding to each water level of the target water tank are obtained. Further, an average value calculation is performed on the multiple frequency change values at each water level of the target water tank to determine the average frequency at different water levels of the target water tank. Further, a corresponding division operation is performed on the average frequency at different water levels of the target water tank and the standard frequency at different water levels of the target water tank, that is, a division operation is performed on the average frequency at the first water level of the target water tank and the standard frequency at the first water level of the target water tank to determine the frequency coefficient at the first water level of the target water tank. Optionally, the first water level can be any water level corresponding to the target water tank. Correspondingly, the frequency coefficients at different water levels of the target water tank are determined. Further, an average value calculation is performed again on the frequencies at different water levels of the target water tank. Correspondingly, the target frequency change coefficient corresponding to the target water tank is obtained;
[0048] Optionally, multiple target water purifiers can be used to add water to multiple target water tanks, that is, different standard water output flows can be used to add water to different target water tanks. Furthermore, on the premise of controlling the target water purifier to add water to the target water tank with different standard water output flows as the water output flow, the current standard water output flow is obtained relative to the multiple standard frequencies and multiple adjustment frequencies corresponding to the multiple target water tanks. Further, the frequency change coefficient corresponding to the target water tank during the process of adding water to different target water tanks with different standard water output flows is calculated. Furthermore, a corresponding relationship is established between the multiple standard water output flows and the multiple target water tanks. Furthermore, when determining multiple combinations of using the standard water output flow to add water to the target water tank, correspondingly, the frequency change coefficient corresponding to a certain combination can be determined, that is, used as the target frequency change coefficient. Furthermore, the target frequency change coefficient, the standard water output flow, and the identification information of the target water tank corresponding to the multiple combinations are stored in the voice box. When the voice box obtains the standard water output flow and the identification information of the target water tank, the target frequency change coefficient corresponding to the target water tank is called.
[0049] In the above embodiment, by controlling the target water purifier to add water to the target water tank based on the standard water output flow and the adjusted water output flow, and then collecting the standard frequency and multiple adjustment frequencies corresponding to different water levels of the target water tank during the water addition process and calculating and determining the target frequency change coefficient, the accuracy of determining the target frequency change coefficient is improved. Further, the accuracy and intelligence of controlling the opening and closing state of the target water purifier are improved.
[0050] S103: Determine the target underwater acoustic frequency corresponding to the target water tank based on a preset standard frequency, water addition indication information, current water output flow rate, standard water output flow rate, and target frequency change coefficient.
[0051] In a specific embodiment, the water addition indication information may be the indication information indicating that the target water purifier needs to add water to the target water tank. Optionally, the water addition indication information may include water addition amount information and water addition level; specifically, the water addition amount information may be the water addition amount information that the target water purifier needs to add to the target water tank, and the water addition level may be the water level to which the target water purifier needs to add water after adding water to the target water tank; specifically, when the voice box obtains the preset standard frequency, water addition indication information, current water output flow rate, standard water output flow rate, and target frequency change coefficient, it determines the target underwater acoustic frequency corresponding to the target water tank through calculation.
[0052] Figure 4 It is a schematic flowchart of a process for determining the target underwater acoustic frequency provided according to an exemplary embodiment. In an alternative embodiment, as Figure 4 shown, the above-mentioned determining the target underwater acoustic frequency corresponding to the target water tank based on the preset standard frequency, the water addition indication information, the current water output flow rate, the standard water output flow rate, and the target frequency change coefficient includes:
[0053] S401: Determine the target standard frequency based on the water addition indication information and the preset standard frequency;
[0054] S403: Determine the flow rate difference data based on the current water output flow rate and the standard water output flow rate;
[0055] S405: Determine the frequency change value based on the flow rate difference data and the target frequency change coefficient;
[0056] S407: Determine the target underwater acoustic frequency based on the target standard frequency and the frequency change value.
[0057] In a specific embodiment, the target standard frequency may be the standard frequency corresponding to the water addition indication information among the preset standard frequencies corresponding to the target water tank; the flow rate difference data may be the flow rate difference between the water output flow rate of the target water purifier in the real-time situation and the water output flow rate of the target water purifier in the normal situation; the frequency change value may be the change value of the underwater acoustic frequency of the target water tank between the normal situation and the real-time situation; the target water tank frequency may be the underwater acoustic frequency that the target water tank should correspond to when the target water purifier finishes adding water to the target water tank.
[0058] Specifically, first calculate the target standard frequency based on the water addition indication information and the preset standard frequency. Correspondingly, calculate the flow rate difference data based on the current water output flow rate and the standard water output flow rate. Specifically, based on the formula S = πVR 2Determine the water outlet flow rate. Here, V represents the water outlet velocity, R represents the water outlet radius, and S represents the water outlet flow rate. Correspondingly, during the process of controlling the target water purifier to add water to the target water tank, the standard water outlet velocity and standard water outlet radius of the target water purifier are obtained. Correspondingly, determine the standard water outlet flow rate. Further, the current water outlet radius and current water outlet flow rate velocity of the target water purifier are obtained, and the current water outlet flow rate of the target water purifier is determined. Further, based on the standard water outlet flow rate and the current water outlet flow rate, perform a subtraction operation to determine the flow rate difference data;
[0059] Further, multiply the calculated flow rate difference data by the target frequency change coefficient to calculate the frequency change value. Then, based on the frequency change value and the target standard frequency, perform an addition operation to determine the target underwater acoustic frequency, that is, calculate the target underwater acoustic frequency based on the formula F = f + (A1 - A) * K, where F represents the target underwater acoustic frequency, f represents the target standard frequency, A1 represents the current water outlet flow rate, A represents the standard water outlet flow rate, and K represents the target frequency change coefficient.
[0060] In the above embodiment, by using the obtained water addition instruction information, preset standard frequency, current water outlet flow rate, standard water outlet flow rate, and target frequency change coefficient to calculate the target underwater acoustic frequency, the accuracy of calculating the target underwater acoustic frequency is improved, and further the accuracy of controlling the opening and closing state of the target water purifier is improved.
[0061] Figure 5 It is a schematic flow chart of determining the target standard frequency provided according to an exemplary embodiment. In an alternative embodiment, the preset standard frequency includes multiple standard frequencies corresponding to different water levels of the target water tank, such as Figure 5 shown. The determination of the target standard frequency based on the water addition instruction information and the preset standard frequency includes:
[0062] S501: When the water addition instruction information is the water addition amount information, obtain the current water level of the target water tank;
[0063] S503: Based on the water addition amount information and the current water level, determine the target water level of the target water tank;
[0064] S505: Based on the target water level, determine the target standard frequency from multiple standard frequencies.
[0065] In a specific embodiment, the current water level can be the corresponding water level of the amount of water in the target water tank at the start moment when the target water purifier adds water to the target water tank;
[0066] Specifically, during the process of adding water to the target water tank based on the standard water output flow rate of the target water purifier, the standard frequencies of the target water tank at different water levels are obtained. Correspondingly, in this step, the standard frequencies of the target water tank at different water levels stored in the voice box can be directly called. Further, when the water addition instruction information is water addition amount information, the current water level of the target water tank is obtained. Correspondingly, the current water amount corresponding to the current water level in the target water tank is determined. Further, based on the water addition amount information and the current water amount, an addition operation is performed to determine the target water amount of the target water tank, that is, the amount of water that needs to be added to the target water tank. Correspondingly, the target water amount of the target water tank is converted into the target water level corresponding to the target water tank. Optionally, the water tank capacity information of the target water tank is obtained, and then based on the water addition amount information, the current water level, and the water tank capacity information, the target water level is determined. Specifically, when the sum of the current water amount corresponding to the current water level and the water addition amount information is less than the water tank capacity information, the target water amount is determined based on the water addition amount information and the current water amount corresponding to the current water level, and then the target water level is determined; when the sum of the current water amount corresponding to the current water level and the water addition amount information is not less than the water tank capacity information, the target water level is determined as the water level corresponding to the full water amount of the water tank. Further, after the target water level is determined, based on the target water level, the standard frequency corresponding to the target water tank at the target water level is determined from multiple standard frequencies, that is, the target standard frequency.
[0067] In the above embodiment, when the water addition instruction information is water addition amount information, the target water level is calculated and determined through the current water level and the water addition amount information, and the standard frequency corresponding to the target water level is selected as the target standard frequency, which improves the accuracy of determining the target standard frequency and also improves the accuracy of calculating the target underwater sound frequency. Further, the intelligence of water addition control is improved.
[0068] In an alternative embodiment, the preset standard frequencies include multiple standard frequencies corresponding to different water levels of the target water tank. The determining the target standard frequency based on the water addition instruction information and the preset standard frequencies includes:
[0069] When the water addition instruction information is the water addition water level, based on the water addition water level, the target standard frequency is determined from the multiple standard frequencies.
[0070] When the water addition instruction information is the water addition water level, that is, the water level when the target water tank is finally filled with water is determined. Then, based on the water addition water level, the standard frequency corresponding to the target water tank at the water addition water level is selected from multiple target frequencies corresponding to different water levels of the target water tank as the target standard frequency.
[0071] In the above embodiments, by separately discussing the water addition indication information, the rationality of the solution is improved. Further, based on the water addition indication information, the target standard frequency is determined, improving the accuracy of calculating the target underwater acoustic frequency in the subsequent process, and thus improving the accuracy of water addition control.
[0072] S105: Obtain the real-time underwater acoustic frequency of the target water tank.
[0073] In a specific embodiment, the real-time underwater acoustic frequency can be the actual underwater acoustic frequency collected during the process of controlling the target water purifier to add water to the target water tank. Specifically, during the process of the target water purifier adding water to the target water tank, the voice box is constantly collecting the real-time underwater acoustic frequency.
[0074] S107: Based on the real-time underwater acoustic frequency and the target underwater acoustic frequency, determine the frequency comparison result.
[0075] In a specific embodiment, the frequency comparison result can be the comparison result between the real-time underwater acoustic frequency and the target underwater acoustic frequency. Specifically, the voice box compares the real-time underwater acoustic frequency collected in real time with the target underwater acoustic frequency, and further obtains the frequency comparison result.
[0076] In the above embodiments, by comparing the real-time underwater acoustic frequency with the target underwater acoustic frequency to determine the frequency comparison result, the accuracy of determining the frequency comparison result is improved, and thus the accuracy of controlling the opening and closing state of the target water purifier and the intelligence of water addition are improved.
[0077] S109: Based on the frequency comparison result, control the opening and closing state of the target water purifier.
[0078] In a specific embodiment, the opening and closing state is used to indicate whether to stop adding water to the target water tank. Optionally, the opening and closing state can include an open state and a closed state. Correspondingly, in the case where the opening and closing state is the open state, it indicates adding water to the target water tank; in the case where the opening and closing state is the closed state, it indicates stopping adding water to the target water tank. Specifically, according to the frequency comparison result, the opening and closing state of the target water purifier is determined, and then the opening and closing state of the target water purifier is controlled.
[0079] In an alternative embodiment, the above method may further include:
[0080] In the case where the water addition indication information is the water addition amount information, based on the water addition amount information and the current water outlet flow rate, determine the target water addition time corresponding to the target water tank, and perform a countdown based on the target water addition time;
[0081] The controlling the opening and closing state of the target water purifier during the process of the target water purifier adding water to the target water tank based on the frequency comparison result includes:
[0082] Before the countdown corresponding to the target water addition time ends, and when the frequency comparison result indicates that the real-time underwater acoustic frequency is less than the target underwater acoustic frequency, control the opening and closing state of the target water purifier to the open state.
[0083] In a specific embodiment, the target water addition time can be the time for the target water purifier to add water to the target water tank when the water addition indication information is the water addition amount information; specifically, when the water addition amount information is obtained, a division operation is performed based on the water addition amount information and the current water output flow rate of the target water purifier, that is, water addition amount information / current water output flow rate = target water addition time. Further, after determining the target water addition time, start the water addition time countdown, and correspondingly, perform the countdown based on the target water addition time.
[0084] Further, during the countdown process, compare the real-time underwater acoustic frequency and the target underwater acoustic frequency in real time. Correspondingly, before the countdown corresponding to the target water addition time ends, and when the real-time underwater acoustic frequency is less than the target underwater acoustic frequency, control the target water purifier to keep adding water to the target water tank, that is, control the opening and closing state of the target water purifier to the open state;
[0085] Correspondingly, before the countdown corresponding to the target water addition time ends, if the real-time underwater acoustic frequency is always less than the target underwater acoustic frequency, the opening and closing state of the target water purifier will always be controlled to the open state. Correspondingly, at the end of the countdown, control the opening and closing state of the target water purifier to the closed state.
[0086] In the above embodiment, when the water addition indication information is the water addition amount information, the target water addition time is calculated and determined based on the water addition amount information and the current water output flow rate, and the water addition countdown is performed based on the target water addition time. When the real-time underwater acoustic frequency is less than the target underwater acoustic frequency, water is continuously added to the target water tank based on the target water addition time, which improves the intelligence of water addition control, eliminates the need for the user to wait, reduces time waste, and improves the convenience of water addition.
[0087] In an alternative embodiment, the controlling the opening and closing state of the target water purifier based on the frequency comparison result during the process of the target water purifier adding water to the target water tank includes:
[0088] When the frequency comparison result indicates that the real-time underwater acoustic frequency is not less than the target underwater acoustic frequency, control the opening and closing state of the target water purifier to the closed state.
[0089] In a specific embodiment, control the opening and closing state of the target water purifier based on the frequency comparison result. Correspondingly, when the frequency comparison result indicates that the real-time underwater acoustic frequency is not less than the target underwater acoustic frequency, control the target water purifier to stop adding water to the target water tank, that is, control the opening and closing state of the target water purifier to the closed state.
[0090] In an optional embodiment, during the process of the target water purifier adding water to the target water tank based on the frequency comparison result, controlling the opening and closing state of the target water purifier further includes:
[0091] When the frequency comparison result indicates that the real-time underwater sound frequency is less than the target underwater sound frequency, controlling the opening and closing state of the target water purifier to the open state.
[0092] In a specific embodiment, when the frequency comparison result indicates that the real-time underwater sound frequency is less than the target underwater sound frequency, controlling the target water purifier to stop adding water to the target water tank, that is, controlling the opening and closing state of the target water purifier to the open state.
[0093] In the above embodiment, controlling the opening and closing state of the target water purifier through the frequency comparison result improves the intelligence of water addition. Further, there is no need for the user to wait and check during the process of the target water purifier adding water to the target water tank, reducing time waste and improving the convenience and efficiency of water addition.
[0094] In a specific embodiment, before adding water, taking the standard water outlet flow rate as the water outlet flow rate, during the process of controlling the target water purifier to add water to the target water tank, collecting the standard frequencies corresponding to different water levels in the target water tank, adjusting the water outlet flow rate, and controlling the target water purifier to add water to the target water tank based on the adjusted water outlet flow rate, collecting multiple adjusted frequencies corresponding to different water levels in the target water tank, performing linear fitting based on the standard frequencies and multiple adjusted frequencies at different water levels in the target water tank, thereby determining the target frequency change coefficient corresponding to the target water tank. Further, during the current process of controlling the target water purifier to add water to the target water tank, obtaining the standard water outlet flow rate of the target water purifier, and based on the standard water outlet flow rate and the identification information of the target water tank, determining the target frequency change coefficient corresponding to the target water tank. During the current process of controlling the target water purifier to add water to the target water tank, obtaining the current water outlet flow rate of the target water purifier, the preset standard frequency of the target water tank, and the water addition indication information carried by the water addition control instruction. Then, based on the obtained current water outlet flow rate, preset standard frequency, standard water outlet flow rate, water addition indication information, and target frequency change coefficient, calculating and determining the target underwater sound frequency, comparing the obtained real-time underwater sound frequency with the target underwater sound frequency to determine the frequency comparison result, and further controlling the opening and closing state of the target water purifier based on the frequency comparison result. Through the water addition control method of the present application, the accuracy of controlling the opening and closing state of the target water purifier and the intelligence of water addition are improved. Further, by automatically determining the opening and closing state of the water purifier, there is no need for the user to wait and check during the process of the target water purifier adding water to the target water tank, reducing time waste and improving the convenience and efficiency of water addition.
[0095] Figure 6The structural schematic diagram of a water addition control device provided according to an exemplary embodiment is introduced. An embodiment of a water addition control device of the present application is described. Specifically, as Figure 6 shown, the device includes:
[0096] A response module 601, in response to a control water addition instruction, controls a target water purifier to add water to a target water tank, and obtains a preset standard frequency corresponding to the target water tank, a target frequency change coefficient corresponding to the target water tank, the current water output flow rate of the target water purifier, and the standard water output flow rate of the target water purifier; the control water addition instruction carries water addition indication information; the target frequency change coefficient is determined based on the standard water output flow rate and the identification information of the target water tank;
[0097] A determination module 603, based on the preset standard frequency, the water addition indication information, the current water output flow rate, the standard water output flow rate, and the target frequency change coefficient, determines a target water sound frequency corresponding to the target water tank;
[0098] An acquisition module 605, which acquires the real-time water sound frequency of the target water tank;
[0099] A comparison module 607, based on the real-time water sound frequency and the target water sound frequency, determines a frequency comparison result;
[0100] A control module 609, which is used to control the opening and closing state of the target water purifier based on the frequency comparison result.
[0101] In an optional embodiment, the above determination module 603 includes:
[0102] A target standard determination unit 6031, which is used to determine a target standard frequency based on the water addition indication information and the preset standard frequency;
[0103] A flow rate difference determination unit 6033, which is used to determine flow rate difference data based on the current water output flow rate and the standard water output flow rate;
[0104] A frequency change determination unit 6035, which is used to determine a frequency change value based on the flow rate difference data and the target frequency change coefficient;
[0105] A target water sound determination unit 6037, which is used to determine the target water sound frequency based on the target standard frequency and the frequency change value.
[0106] In an optional embodiment, the preset standard frequency includes multiple standard frequencies corresponding to different water levels of the target water tank. The above target standard determination unit 6031 includes:
[0107] A current water level acquisition subunit, configured to acquire the current water level of the target water tank when the water addition indication information is water addition volume information;
[0108] A target water level determination subunit, configured to determine the target water level of the target water tank based on the water addition volume information and the current water level;
[0109] A target standard selection subunit, configured to determine the target standard frequency from the multiple standard frequencies based on the target water level.
[0110] In an optional embodiment, the preset standard frequencies include multiple standard frequencies corresponding to different water levels of the target water tank, and the above-mentioned target standard determination unit 6031 further includes:
[0111] A water level determination standard subunit, configured to determine the target standard frequency from the multiple standard frequencies based on the water addition level when the water addition indication information is the water addition level.
[0112] In an optional embodiment, the above-mentioned device further includes:
[0113] A countdown module, configured to, when the water addition indication information is water addition volume information, determine the target water addition time corresponding to the target water tank based on the water addition volume information and the current water outlet flow rate, and perform a countdown based on the target water addition time;
[0114] The above-mentioned control module 609 includes:
[0115] A countdown start unit, configured to control the opening and closing state of the target water purifier to be in an open state before the countdown corresponding to the target water addition time ends and when the frequency comparison result indicates that the real-time underwater sound frequency is less than the target underwater sound frequency.
[0116] In an optional embodiment, the above-mentioned control module 609 includes:
[0117] A control closing unit, configured to control the opening and closing state of the target water purifier to be in a closed state when the frequency comparison result indicates that the real-time underwater sound frequency is not less than the target underwater sound frequency.
[0118] In an optional embodiment, the above-mentioned control module 609 further includes:
[0119] A control opening unit, configured to control the opening and closing state of the target water purifier to be in an open state when the frequency comparison result indicates that the real-time underwater sound frequency is less than the target underwater sound frequency.
[0120] In an optional embodiment, the above-mentioned device further includes:
[0121] A collection standard unit, configured to collect standard frequencies corresponding to different water levels of the target water tank during the process of adding water to the target water tank with the standard water outlet flow rate as the water outlet flow rate.
[0122] A collection adjustment unit, configured to adjust the water outlet flow rate, and collect multiple adjusted frequencies corresponding to different water levels of the target water tank during the process of adding water to the target water tank based on the adjusted water outlet flow rate.
[0123] A calculation coefficient unit, configured to determine the target frequency change coefficient based on the standard frequencies corresponding to different water levels of the target water tank and the multiple adjusted frequencies corresponding to different water levels of the target water tank.
[0124] In an alternative embodiment, the above calculation coefficient unit includes:
[0125] A first determination unit, configured to determine multiple frequency change values of the target water tank at different water levels based on the standard frequencies corresponding to different water levels of the target water tank and the multiple adjusted frequencies corresponding to different water levels of the target water tank.
[0126] A second determination unit, configured to determine the average frequency of the target water tank at different water levels based on the multiple frequency change values of the target water tank at different water levels.
[0127] A third determination unit, configured to determine the frequency coefficient of the target water tank at different water levels based on the average frequency of the target water tank at different water levels and the standard frequencies corresponding to different water levels of the target water tank.
[0128] A fourth determination unit, configured to perform an averaging process based on the frequency coefficients of the target water tank at different water levels to determine the target frequency change coefficient corresponding to the target water tank.
[0129] Regarding the device in the above embodiment, the specific manners in which each module performs operations have been described in detail in the embodiment related to the method, and will not be elaborated herein.
[0130] In an exemplary embodiment, an electronic device is further provided, including: a processor; a memory for storing instructions executable by the processor; wherein, the processor is configured to execute the instructions to implement the water addition control method as in the embodiments of the present disclosure.
[0131] In an exemplary embodiment, a computer-readable storage medium is further provided, when the instructions in the storage medium are executed by the processor of the electronic device, enabling the electronic device to execute the water addition control method as in the embodiments of the present disclosure.
[0132] In an exemplary embodiment, a computer program product or a computer program is further provided. The computer program product or the computer program includes computer instructions that are stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium, and the processor executes the computer instructions, so that the computer device executes the water addition control method provided in the above various alternative implementation manners.
[0133] It can be understood that in the specific implementation manner of the present application, user-related data is involved. When the above embodiments of the present application are applied to specific products or technologies, user permission or consent needs to be obtained, and the collection, use, and processing of relevant data need to comply with relevant laws, regulations, and standards of relevant countries and regions.
[0134] Those of ordinary skill in the art can understand that all or part of the processes of implementing the methods in the above embodiments can be completed by instructing relevant hardware through a computer program. 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 embodiments of the above methods. Among them, any reference to a memory, storage, database, or other medium used in the various embodiments provided by the present application can include non-volatile and / or volatile memories. Non-volatile memories can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memories can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.
[0135] After considering the specification and practicing the invention disclosed herein, those skilled in the art will readily conceive of other embodiments of the present disclosure. The present application is intended to cover any variations, uses, or adaptations of the present disclosure, which follow the general principles of the present disclosure and include common general knowledge or conventional technical means in the technical field not disclosed by the present disclosure. The specification and examples are only to be considered as exemplary, and the true scope and spirit of the present disclosure are pointed out by the following claims.
[0136] It should be understood that the present disclosure is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.
Claims
1. A water addition control method, characterized in that, The method includes: In response to a control water addition instruction, controlling a target water purifier to add water to a target water tank, and obtaining a preset standard frequency corresponding to the target water tank, a target frequency change coefficient corresponding to the target water tank, a current water output flow rate of the target water purifier, and a standard water output flow rate of the target water purifier; the control water addition instruction carries water addition indication information; the target frequency change coefficient is determined based on the standard water output flow rate and the identification information of the target water tank; Based on the preset standard frequency, the water addition indication information, the current water output flow rate, the standard water output flow rate, and the target frequency change coefficient, determining a target underwater sound frequency corresponding to the target water tank; Obtaining a real-time underwater sound frequency of the target water tank; Based on the real-time underwater sound frequency and the target underwater sound frequency, determining a frequency comparison result; Based on the frequency comparison result, controlling the opening and closing state of the target water purifier.
2. The method according to claim 1, characterized in that The determining the target underwater sound frequency corresponding to the target water tank based on the preset standard frequency, the water addition indication information, the current water output flow rate, the standard water output flow rate, and the target frequency change coefficient includes: Based on the water addition indication information and the preset standard frequency, determining a target standard frequency; Based on the current water output flow rate and the standard water output flow rate, determining flow difference data; Based on the flow difference data and the target frequency change coefficient, determining a frequency change value; Based on the target standard frequency and the frequency change value, determining the target underwater sound frequency.
3. The method according to claim 2, wherein The preset standard frequency includes multiple standard frequencies corresponding to different water levels of the target water tank. The determining the target standard frequency based on the water addition indication information and the preset standard frequency includes: When the water addition indication information is water addition amount information, obtaining the current water level of the target water tank; Based on the water addition amount information and the current water level, determining a target water level of the target water tank; Based on the target water level, determining the target standard frequency from the multiple standard frequencies.
4. The method according to claim 2, wherein The preset standard frequency includes multiple standard frequencies corresponding to different water levels of the target water tank. The determining the target standard frequency based on the water addition indication information and the preset standard frequency includes: When the water addition indication information is a water addition water level, based on the water addition water level, determining the target standard frequency from the multiple standard frequencies.
5. The method according to claim 1, wherein The method further includes: When the water addition indication information is water addition amount information, based on the water addition amount information and the current water output flow rate, determining a target water addition time corresponding to the target water tank, and performing a countdown based on the target water addition time; The controlling the opening and closing state of the target water purifier based on the frequency comparison result during the process of the target water purifier adding water to the target water tank includes: Before the countdown corresponding to the target water addition time ends, and when the frequency comparison result indicates that the real-time underwater sound frequency is less than the target underwater sound frequency, controlling the opening and closing state of the target water purifier to be an open state.
6. The method according to claim 1, characterized in that, Based on the frequency comparison result, during the process of the target water purifier adding water to the target water tank, controlling the opening and closing state of the target water purifier includes: When the frequency comparison result indicates that the real-time underwater sound frequency is not less than the target underwater sound frequency, controlling the opening and closing state of the target water purifier to be the closed state.
7. The method according to claim 6, characterized in that, Based on the frequency comparison result, during the process of the target water purifier adding water to the target water tank, controlling the opening and closing state of the target water purifier further includes: When the frequency comparison result indicates that the real-time underwater sound frequency is less than the target underwater sound frequency, controlling the opening and closing state of the target water purifier to be the open state.
8. The method according to claim 1, wherein The method further includes: During the process of adding water to the target water tank with the standard water outlet flow rate as the water outlet flow rate, collecting the standard frequencies corresponding to different water levels of the target water tank; Adjusting the water outlet flow rate, and during the process of adding water to the target water tank based on the adjusted water outlet flow rate, collecting multiple adjusted frequencies corresponding to different water levels of the target water tank; Based on the standard frequencies corresponding to different water levels of the target water tank and the multiple adjusted frequencies corresponding to different water levels of the target water tank, determining the target frequency change coefficient.
9. The method according to claim 8, wherein The determining the target frequency change coefficient based on the standard frequencies corresponding to different water levels of the target water tank and the multiple adjusted frequencies corresponding to different water levels of the target water tank includes: Based on the standard frequencies corresponding to different water levels of the target water tank and the multiple adjusted frequencies corresponding to different water levels of the target water tank, determining multiple frequency change values of the target water tank at different water levels; Based on the multiple frequency change values of the target water tank at different water levels, determining the frequency average value of the target water tank at different water levels; Based on the frequency average value of the target water tank at different water levels and the standard frequencies corresponding to different water levels of the target water tank, determining the frequency coefficient of the target water tank at different water levels; Based on the frequency coefficients of the target water tank at different water levels, performing mean processing to determine the target frequency change coefficient corresponding to the target water tank.
10. A water addition control device, characterized in that, The device includes: A response module, in response to a control water addition instruction, controlling the target water purifier to add water to the target water tank, and obtaining the preset standard frequency corresponding to the target water tank, the target frequency change coefficient corresponding to the target water tank, the current water outlet flow rate of the target water purifier, and the standard water outlet flow rate of the target water purifier; the control water addition instruction carries water addition indication information; the target frequency change coefficient is determined based on the standard water outlet flow rate and the identification information of the target water tank; A determination module, based on the preset standard frequency, the water addition indication information, the current water outlet flow rate, the standard water outlet flow rate, and the target frequency change coefficient, determining the target underwater sound frequency corresponding to the target water tank; An acquisition module, acquiring the real-time underwater sound frequency of the target water tank; A comparison module, based on the real-time underwater sound frequency and the target underwater sound frequency, determining a frequency comparison result; A control module, used to control the opening and closing state of the target water purifier based on the frequency comparison result.