A method for learning water outlet of a boiling kettle
By learning the water dispensing mode of the thermos, the system remembers the user's water preferences and updates the dispensing time for each time, solving the problems of large water dispensing deviation and user safety of the thermos, and achieving accurate water dispensing and convenient operation.
Patent Information
- Application Number
- CN202311265587.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-27
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2043-09-27
AI Technical Summary
Existing hot water bottle dispensing methods suffer from problems such as large deviations in the fixed amount of water dispensed or the risk of burns to users who press and hold the button for too long, making it difficult to achieve high-precision and safe water dispensing.
By learning the water dispensing mode of the thermos, the system accumulates and updates the duration of each dispensing cycle, memorizes the user's water preferences, and adapts to the dispensing needs of different dispensing levels, thus achieving accurate water dispensing in the regular dispensing mode.
It improves the water dispensing accuracy of the thermos and the ease of operation for users, reduces the occurrence of excessive or insufficient water dispensing, and enhances the user experience.
Smart Images

Figure CN119699857B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent household appliances, in particular to a water outlet learning method of a boiling water bottle. BACKGROUND
[0002] In existing products, the water outlet mode of a boiling water bottle (or a drinking water boiling water bottle) mainly has two kinds, one is a point-and-click response type water outlet with fixed water outlet time or fixed water outlet volume after a user clicks a water outlet key once, and the other is a long-press response type water outlet with a water outlet time corresponding to a signal trigger time length in response to a user's long-press trigger signal of the water outlet key. However, the above two water outlet modes have disadvantages, the first mode will have problems of over-quantity or under-quantity in response to a trigger signal and based on a preset fixed quantity to perform at least one water outlet each time under the condition that the user's cup capacity is relatively fixed, and the second mode requires the user to maintain the action of pressing the key for a long time during the water outlet process, and the water outlet key is usually arranged above the water outlet faucet, so that the user has the risk of being scalded by high-temperature water vapor. On this basis, even if the existing products have pushed out a function of corresponding to a fixed quantity of water according to a user's selected water outlet quantity, based on the difference of waterway devices of different boiling water bottles (for example, the unit pump water quantity has a deviation of more than 10% based on the difference of individual device structures), and the difference of service life (some may have aging conditions), the boiling water bottle is difficult to achieve high-precision water outlet for the user-specified water quantity when the boiling water bottle is instructed to outlet water. SUMMARY
[0003] The purpose of the present application is to provide a water outlet learning method of a boiling water bottle, which controls the boiling water bottle to accumulate and update the single water outlet time corresponding to the specified water outlet gear in the water outlet learning mode, so that the boiling water bottle can outlet water according to the single water outlet time corresponding to the water outlet instruction in the normal water outlet mode. Therefore, the present application has the advantages of convenient operation, accurate water outlet, and improved user experience.
[0004] Embodiments of the present application are implemented as follows:
[0005] The first aspect of the embodiments of the present application provides a water outlet learning method of a boiling water bottle, which includes: responding to a first trigger instruction, controlling the boiling water bottle to enter a water outlet learning mode; in the water outlet learning mode, accumulating the continuous water outlet time for at least one water outlet gear; based on the continuous water outlet time, updating the single water outlet time of the at least one water outlet gear in the normal water outlet mode; and in the normal water outlet mode, controlling the boiling water bottle to outlet water based on the single water outlet time corresponding to the water outlet instruction.
[0006] In an embodiment, before accumulating the continuous water outlet time for the at least one water outlet gear, the method further includes: based on the trigger time length or the trigger number corresponding to the first trigger instruction, determining the water outlet gear of the boiling water bottle in the water outlet learning mode.
[0007] In an embodiment, in the normal water outlet mode, the water outlet of the water bottle is controlled based on the single water outlet duration corresponding to the water outlet instruction, including: determining the target water outlet gear of the water bottle in the normal water outlet mode based on the trigger duration or the trigger times corresponding to the water outlet instruction; and controlling the water outlet of the water bottle based on the single water outlet duration corresponding to the target water outlet gear.
[0008] In an embodiment, after the water outlet of the water bottle is controlled based on the single water outlet duration corresponding to the water outlet instruction, the method further includes: in the normal water outlet mode, recording the water outlet gear corresponding to the latest water outlet, and accumulating the use times of the water outlet gear in a preset time period; and marking the water outlet gear with the most use times as the default water outlet gear.
[0009] In an embodiment, the single water outlet duration of at least one water outlet gear in the normal water outlet mode is updated based on the continuous water outlet duration, including: if the continuous water outlet duration is within a preset duration threshold range, marking the continuous water outlet duration as the single water outlet duration; and if the continuous water outlet duration is outside the preset duration threshold range, marking the endpoint duration threshold adjacent to the continuous water outlet duration as the single water outlet duration.
[0010] In an embodiment, after the single water outlet duration of at least one water outlet gear in the normal water outlet mode is updated based on the continuous water outlet duration, the method further includes: modifying the single water outlet duration corresponding to the fine-tuning water outlet gear based on the fine-tuning water outlet gear and the fine-tuning duration corresponding to the fine-tuning instruction.
[0011] In an embodiment, the water bottle has a learning button, and before the water bottle is controlled to enter the water outlet learning mode in response to the first trigger instruction, the method further includes: when the trigger duration corresponding to the trigger signal of the learning button reaches a first preset duration, determining the trigger instruction type corresponding to the trigger signal based on the trigger time corresponding to the trigger signal.
[0012] In an embodiment, when the trigger duration corresponding to the trigger signal reaches the first preset duration, the trigger instruction type corresponding to the trigger signal is determined based on the trigger time corresponding to the trigger signal, including: when the trigger duration corresponding to the trigger signal reaches the first preset duration, checking the power-on time and the current working state of the water bottle; if the trigger time is within a first preset time period after the power-on time and the current working state is the standby state, the trigger instruction corresponding to the trigger signal is marked as the first trigger instruction.
[0013] In an embodiment, the water bottle has at least one water outlet button, and after the water bottle is controlled to enter the water outlet learning mode in response to the first trigger instruction, the method further includes: continuously controlling the water outlet in response to the short trigger signal of the water outlet button until the short trigger signal is received again to stop the water outlet.
[0014] In an embodiment, the thermos bottle has at least one water outlet button, after the thermos bottle enters the water outlet learning mode in response to the first trigger instruction, the method further comprises: in response to the long-time trigger signal of the water outlet button, the water outlet is continued until the release signal of the water outlet button is received to stop the water outlet.
[0015] The application has the following beneficial effects compared with the prior art:
[0016] The application can solve the technical problems in the prior art that the thermos bottle has a large deviation in water outlet according to a fixed amount, or the user is easily scalded by high-temperature water vapor in a long-press button state. The thermos bottle learns the single water outlet time length commonly used by the user when taking water in the water outlet learning mode, to adapt to the single water taking amount demand of the user in the subsequent water taking process. The thermos bottle can further learn the corresponding single water outlet time length for the water outlet gear selected by the user in the water outlet learning mode, to adapt to the regular water taking amount demand of the user when selecting different gears in the subsequent water taking process. Therefore, the water outlet learning method of the thermos bottle provided by the application improves the operation convenience of the user, can quickly learn the water taking preference of the current user, and improves the water outlet accuracy in the subsequent water outlet, effectively improving the use experience of the user. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the application, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0018] Figure 1 The structural schematic diagram of the thermos bottle provided by an embodiment of the application;
[0019] Figure 2 The operation panel schematic diagram of the thermos bottle provided by an embodiment of the application;
[0020] Figure 3 The flowchart of the water outlet learning method of the thermos bottle provided by an embodiment of the application;
[0021] Figure 4 The flowchart of the water outlet learning method of the thermos bottle provided by an embodiment of the application.
[0022] The drawings show that: 1 is a thermos bottle; 11 is an operation panel; 110 is a display module; 111 is a button module; 112 is a water outlet button; 12 is a processor; and 13 is a memory. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of this application will now be described with reference to the accompanying drawings.
[0024] Similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. Furthermore, in the description of this application, terms such as "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0025] The technical solution of this application will now be clearly and completely described with reference to the accompanying drawings.
[0026] Please see Figure 1 , Figure 1 This is a schematic diagram of the structure of a thermos 1 provided in one embodiment of this application. Figure 1 As shown, the thermos 1 includes an operation panel 11, at least one processor 12, and a memory 13. Figure 1 Taking a processor 12 as an example. The processor 12 and the memory 13 are connected via a bus. The memory 13 stores instructions that can be executed by at least one processor 12 to cause at least one processor 12 to perform the water dispensing learning method of the hot water bottle 1 as described in the following embodiment.
[0027] Please see Figure 2 , Figure 2 This is a schematic diagram of the operation panel 11 of a thermos 1 provided in an embodiment of this application. Figure 2 As shown, the operation panel 11 includes a display module 110 and a button module 111. The operation panel 11 is disposed on the outer surface of the thermos 1. The button module 111 includes at least one button, one of which is a water dispensing button 112. The display module 110 is configured to display the water temperature or dispensing time of the thermos 1, or to display the current dispensing function of the thermos 1.
[0028] During application, users can control the dispensing of water from the thermos 1, stop dispensing water, enter the water dispensing learning mode, or enter the normal water dispensing mode by clicking or pressing the buttons on the control panel 11. Users can also set a lock mode to prevent the thermos 1 from suddenly dispensing boiling water by clicking or pressing the buttons on the control panel 11, or adjust the water dispensing time or water temperature by clicking or pressing the buttons on the control panel 11. The display module 110 can display the current working status of the thermos 1 (e.g., keeping warm, heating, dechlorinating, water shortage, etc.) on the display screen. The display module 110 can also display the water dispensing time (or remaining water dispensing time) and water temperature of the thermos 1 when it is about to dispense water or is dispensing water. The display module 110 can display the current water dispensing function of the thermos 1 through indicator lights. The current water dispensing function of the thermos 1 includes room temperature, making formula, making tea, making oatmeal, etc.
[0029] Please refer to Figure 3 , Figure 3 The flowchart of the water outlet learning method of the boiling kettle 1 provided by an embodiment of the present application. The water outlet learning method of the boiling kettle 1 can be applied to the boiling kettle 1 in the above embodiments, and can also be applied to other boiling kettle products on the market with hot water outlet function. As shown in Figure 3 The water outlet learning method of the boiling kettle 1 includes the following steps.
[0030] S110: In response to the first trigger instruction, control the boiling kettle 1 to enter the water outlet learning mode.
[0031] The first trigger instruction refers to the instruction for controlling the boiling kettle 1 to enter the self-learning mode. The water outlet learning mode refers to the mode in which the boiling kettle 1 starts or stops water outlet in response to the trigger instruction (user water taking instruction), and automatically records the specific information of the last water outlet, such as cumulative water outlet time, water outlet temperature, water outlet gear, etc. (i.e. user's water taking preference information) after the water outlet is completed, so that the boiling kettle 1 can directly outlet water according to the memorized water outlet information in the subsequent regular water outlet. The trigger instruction usually carries trigger time information, trigger button information, and / or trigger number information.
[0032] In this step, the processor 12 determines that the instruction is the first trigger instruction for controlling the boiling kettle 1 to enter the water outlet learning mode according to the information carried by the received trigger instruction. Then, the processor 12 controls the boiling kettle 1 to enter the water outlet learning mode in response to the first trigger instruction, so as to automatically memorize the user's water taking preference information.
[0033] S120: In the water outlet learning mode, accumulate the continuous water outlet time for at least one water outlet gear.
[0034] The user will adopt different water outlet gears in the water taking process based on different water taking containers. For example, when the user needs to brew coffee or milk powder, the user will adopt a coffee cup or a milk bottle with small capacity, and accordingly, the user will select a smaller water outlet gear on the operation panel 11 of the boiling kettle 1. When the user adopts a thermos or a water taking container with large capacity based on other needs, the user will select a larger water outlet gear on the operation panel 11 of the boiling kettle 1. Therefore, in this step, when the boiling kettle 1 is in the water outlet learning mode, the processor 12 accumulates the continuous water outlet time for the water outlet gear of the boiling kettle 1 until the boiling kettle 1 stops water outlet.
[0035] S130: Update the single water outlet time of at least one water outlet gear in the regular water outlet mode based on the continuous water outlet time.
[0036] The single-time water outlet duration refers to a duration of continuous water outlet of the kettle 1 in the normal water outlet mode in response to a water outlet instruction based on a target water outlet gear corresponding to the water outlet instruction and a default single-time continuous water outlet duration. In this step, the kettle 1 memorizes a continuous water outlet duration corresponding to at least one water outlet gear in the water outlet learning mode as a single-time water outlet duration corresponding to the same water outlet gear in the normal water outlet mode, so that when the kettle 1 cancels the water outlet learning mode and enters the normal water outlet mode, the kettle 1 directly performs water outlet according to the single-time water outlet duration corresponding to the target water outlet gear in response to the water outlet instruction based on the target water outlet gear selected by the user.
[0037] S140: In the normal water outlet mode, the kettle 1 is controlled to perform water outlet based on the single-time water outlet duration corresponding to the water outlet instruction.
[0038] In this step, when the kettle 1 is in the normal water outlet mode, the processor 12 responds to the water outlet instruction, checks the single-time water outlet duration corresponding to the target water outlet gear based on the target water outlet gear corresponding to the water outlet instruction, and then controls the kettle 1 to perform continuous water outlet according to the single-time water outlet duration, until the cumulative water outlet duration of the kettle 1 reaches the single-time water outlet duration, and then controls the kettle 1 to stop water outlet.
[0039] Based on the above scheme, the kettle 1 can automatically memorize the water taking preference information (for example, the single-time water outlet duration corresponding to a water outlet gear) of the user in the water outlet learning mode, and in the normal water outlet mode, the user only needs to press the water outlet button once, and the kettle can automatically perform water outlet according to the user's preference, which well adapts to the user's common water taking amount and improves the user's convenience. The water outlet amount control mode based on the water outlet duration can avoid the problem of large water outlet amount deviation of the kettle caused by individual differences of waterway devices or aging damage of the waterway devices after long-term use, and can effectively improve the water outlet accuracy of the kettle 1. In addition, the kettle 1 distinguishes and memorizes the single-time water outlet duration corresponding to different water outlet gears, which can well adapt to the different water taking amount requirements of the user in different use scenarios and effectively improve the user's experience.
[0040] Please refer to Figure 4 , Figure 4 The flowchart of the water outlet learning method of the kettle 1 provided by an embodiment of the present application. The water outlet learning method of the kettle 1 can be applied to the kettle 1 in the above-mentioned embodiments, and can also be applied to other kettle products with hot water outlet function on the market. As shown in Figure 4 , the water outlet learning method of the kettle 1 includes the following steps:
[0041] S210: Determine the trigger instruction type corresponding to the trigger signal based on the trigger time and / or trigger button information corresponding to the trigger signal.
[0042] The trigger signal refers to a signal generated when a button on the operation panel 11 of the kettle 1 is triggered. In this step, the processor 12 determines the trigger instruction type corresponding to the trigger signal based on the trigger time (for example, the receiving time when the processor 12 receives the trigger signal) corresponding to the trigger signal, and / or the trigger button information, and / or the trigger duration, and generates the corresponding trigger instruction.
[0043] In an embodiment, the button on the operation panel 11 includes a learning button. The learning button can be the same as the water outlet button 112, which generates different trigger signals based on different user button pressing methods. For example, when the trigger duration corresponding to the trigger signal of the learning button (water outlet button 112) reaches the first preset duration, that is, the user presses the button for a duration that reaches the first preset duration, the processor 12 determines that the trigger instruction type corresponding to the trigger signal is the first trigger instruction for controlling the kettle 1 to enter the water outlet learning mode.
[0044] The learning button can also be distinguished from the water outlet button 112 and be two different buttons on the operation panel 11. The button that can control the kettle 1 to enter the water outlet learning mode by being pressed or held by the user can be referred to as a learning button. The learning button generates a corresponding trigger signal based on the user's short pressing method or long pressing method, and the processor 12 determines that the trigger instruction type corresponding to the trigger signal is the first trigger instruction for controlling the kettle 1 to enter the water outlet learning mode based on the trigger button information (i.e., the trigger button is the learning button) corresponding to the trigger signal.
[0045] For example, the user controls the kettle 1 to enter the water outlet learning mode by long pressing the water outlet button 112. In an operation process, the user long presses the water outlet button 112 and maintains it for a certain duration, the water pump in the kettle 1 starts to work, the processor 12 controls the kettle 1 to enter the water outlet learning mode, and a timer is started to time the continuous water outlet duration. The user maintains the state that the water outlet button 112 is long pressed to control the kettle 1 to continuously outlet water. Until the user releases the water outlet button 112. When the user releases the water outlet button, the water pump in the kettle 1 stops working, the processor 12 controls the timer to stop timing, and the continuous working duration T of the water pump is obtained and stored as a single water outlet duration, so that the user can subsequently single press the water outlet button 112 when the kettle 1 is in the regular water outlet mode, and the kettle 1 controls the water pump to open and maintain for the duration T to continuously outlet water according to the single water outlet duration.
[0046] In another embodiment, the processor 12 needs to further determine the trigger instruction type corresponding to the trigger signal based on the trigger time corresponding to the trigger signal after receiving the trigger signal based on the above scheme. For example, the kettle 1 can only enter the water outlet learning mode in response to the first trigger instruction within a preset time period after the kettle 1 is turned on.
[0047] In the case, the trigger instruction type corresponding to the trigger signal is determined according to the trigger time corresponding to the trigger signal, including: when the trigger time corresponding to the trigger signal reaches the first preset time length, or the trigger button information corresponding to the trigger signal is the learning button, the power-on time of the kettle 1 and the current working state are checked; if the trigger time is within the first preset time period after the power-on time, and the current working state is the standby state, the trigger instruction corresponding to the trigger signal is marked as the first trigger instruction.
[0048] Taking the user long-pressing the water outlet button 112 to control the kettle 1 to enter the water outlet learning mode as an example. Since the water outlet button 112 is a high-frequency use button, in order to avoid the user mispressing the button and incorrectly controlling the kettle 1 to enter the water outlet learning mode, the user can only long-press the water outlet button 112 for a certain time (for example, 2s) within 3s after the kettle 1 is powered on and when the kettle 1 is in the standby state to control the kettle 1 to enter the water outlet learning mode.
[0049] S220: When the trigger instruction type is the first trigger instruction, the kettle 1 is controlled to enter the water outlet learning mode in response to the first trigger instruction.
[0050] The water outlet learning mode refers to that the kettle 1 starts or stops water outlet in response to the trigger instruction (user water taking instruction), and automatically memorizes the specific information of the last water outlet (i.e., user water taking preference information) such as water outlet time length, water outlet temperature, water outlet gear, etc. after the water outlet is completed, so that the water outlet can be directly performed according to the memorized water outlet information in subsequent water outlet. The trigger instruction usually carries trigger time length information, and / or trigger button information, and / or trigger number information.
[0051] In this step, the processor 12 determines the water outlet gear of the kettle 1 in the water outlet learning mode based on the trigger time length or the trigger number corresponding to the first trigger instruction. For example, after the user generates the first trigger instruction by pressing the water outlet button 112 or the learning button, the user can adjust the water outlet gear by continuing to long-press the button or pressing other specified buttons multiple times.
[0052] The trigger signal for controlling the kettle 1 to outlet water can be in different forms. In one embodiment, the processor 12 controls the kettle 1 to continuously outlet water in response to the short-time trigger signal of the water outlet button 112 until the short-time trigger signal is received again to stop the water outlet. In another embodiment, the processor 12 controls the kettle 1 to continuously outlet water in response to the long-time trigger signal of the water outlet button 112 until the release signal (end of the long-time trigger signal) of the water outlet button 112 is received to stop the water outlet.
[0053] For example, the user presses and holds the water outlet key 112 for a long time, and controls the electric kettle 1 to enter the water outlet learning mode. In the standby state of the electric kettle 1 within 3s after being powered on, the user presses and holds the water outlet key 112 for a long time and maintains it for 2s, and the electric kettle 1 enters the self-learning state. Then, the user continues to maintain the pressing action of the water outlet key 112, and the digital tube displays the 1st water outlet gear at the 3rd s when the water outlet key 112 is triggered (i.e., at the 3rd s when the user presses and holds the water outlet key 112 for a long time), and the digital tube displays the 2nd water outlet gear at the 4th s when the water outlet key 112 is triggered. Then, the user immediately releases the water outlet key 112 to control the electric kettle to adjust the current water outlet gear to the 2nd gear. Then, the user presses the water outlet key 112 again, and the electric kettle 1 starts to outlet water, and the processor 12 controls the timer to open to accumulate the continuous water outlet time length of the 2nd gear. When the user presses the water outlet key 112 again, the electric kettle stops to outlet water, the processor 12 controls the timer to stop timing, and stores the accumulated continuous water outlet time length as T2, as the single water outlet time length of the electric kettle 1 in the normal water outlet mode for the 2nd gear.
[0054] In the above operation process, the user presses and holds the water outlet key 112 for a long time for n seconds, and the digital tube displays the n-2 gear. The user releases the water outlet key 112, presses the water outlet key 112 again to control the electric kettle 1 to start to outlet water, and the processor opens the timer. When the user presses the water outlet key 112 again, the water pump in the electric kettle 1 stops to pump water, the timer stops timing, and the electric kettle 1 stores the current accumulated continuous water outlet time length Tn-2 as the single water outlet time length corresponding to the n-2 gear. n-2
[0055] S230: In the water outlet learning mode, the continuous water outlet time length is accumulated for at least one water outlet gear.
[0056] The user adopts different water outlet gears based on different water containers during the water taking process. In this step, when the electric kettle 1 is in the water outlet learning mode, the processor 12 accumulates the continuous water outlet time length for the water outlet gear of the electric kettle 1 during water outlet until the electric kettle 1 stops to outlet water. In the water outlet learning mode, the continuous water outlet time length can refer to the continuous water outlet time length corresponding to the single water outlet of the electric kettle, or can refer to the accumulated time length corresponding to the continuous multiple water outlets of the electric kettle for the same water outlet gear.
[0057] S240: Based on the continuous water outlet time length, the single water outlet time length of at least one water outlet gear in the normal water outlet mode is updated.
[0058] The single-time water outlet duration refers to a duration of single-time continuous water outlet of the kettle 1 in the normal water outlet mode based on a target water outlet gear carried by a water outlet instruction and a default single-time continuous water outlet duration. In this step, if the continuous water outlet duration accumulated by the timer is within a preset duration threshold range, the continuous water outlet duration is marked as the single-time water outlet duration; if the continuous water outlet duration is outside the preset duration threshold range, an endpoint duration threshold adjacent to the continuous water outlet duration is marked as the single-time water outlet duration. Each preset duration threshold range is composed of two endpoint duration thresholds, i.e., a maximum endpoint duration threshold and a minimum endpoint duration threshold. In an embodiment, the preset duration threshold range corresponds to the water outlet gear one by one.
[0059] Taking the maximum capacity of the kettle 1 as 3L and the average flow rate of the kettle as 50mL / s as an example, the pump running duration for completely emptying the liquid in the kettle 1 is 60s. If the actual continuous water outlet duration exceeds 60s, the pump in the kettle 1 is prone to long-time idling, which will affect the service life of the pump. Therefore, the maximum endpoint duration threshold of the preset duration threshold range is 60s, i.e., the single-time water outlet duration of the kettle 1 is not more than 60s. Due to the low water storage level in the kettle 1 or the long waterway travel in the kettle 1, the single-time water outlet duration of the kettle 1 cannot be lower than the minimum endpoint duration threshold of the preset duration threshold range, so as to avoid that the water in the kettle 1 has not reached the water outlet faucet of the kettle 1 and the kettle 1 stops water outlet (the pump stops pumping). In an embodiment, the minimum endpoint duration threshold is 2s. That is, the single-time water outlet duration should be within the interval range of [2s, 60s]. If the continuous water outlet duration is less than 2s, the single-time water outlet duration of the kettle 1 in the normal water outlet mode is memorized as 2s; if the continuous water outlet duration is greater than 60s, the single-time water outlet duration of the kettle 1 in the normal water outlet mode is memorized as 60s. In other embodiments of the present application, the endpoint duration threshold of the preset duration threshold range and its value can be set based on the product parameters of the kettle, and can be further calculated according to the average water outlet flow rate corresponding to different water outlet gears of the kettle.
[0060] In an embodiment, after updating the single-time water outlet duration of at least one water outlet gear in the normal water outlet mode based on the continuous water outlet duration, the user can also fine-tune the single-time water outlet duration by clicking the keys on the operation panel 11, and the processor 12 modifies the single-time water outlet duration corresponding to the fine-tuned water outlet gear based on the fine-tuned water outlet gear corresponding to the fine-tuning instruction and the fine-tuning duration.
[0061] In an application process, the thermos bottle 1 can display the corresponding single water outlet time for each water outlet position. The user can first select the fine adjustment water outlet position for which the single water outlet time is to be adjusted through the keys on the operation panel 11, and then fine adjust the single water outlet time for the fine adjustment water outlet position through the "+" and "-" keys. For example, after the thermos bottle 1 stops water outlet, the accumulated continuous water outlet time is initially memorized as the single water outlet time for the current water outlet position. After the thermos bottle 1 completes the initial water outlet self-learning, the display module 110 on the operation panel 11 displays the initial memorized single water outlet time corresponding to different water outlet positions through the nixie tube. For example, when the water outlet position is 1, the initial memorized single water outlet time is 5s, and the nixie tube displays 5s; when the water outlet position is 2, the initial memorized single water outlet time is 10s, and the nixie tube displays 10s. The user can directly fine adjust the single water outlet time for the current water outlet position, or first select the fine adjustment water outlet position and then fine adjust the single water outlet time for the fine adjustment water outlet position.
[0062] S250: In the normal water outlet mode, the thermos bottle 1 is controlled to outlet water based on the single water outlet time corresponding to the water outlet instruction.
[0063] In this step, when the thermos bottle 1 is in the normal water outlet mode, the processor 12 determines the target water outlet position of the thermos bottle 1 in the normal water outlet mode based on the trigger time or the trigger number corresponding to the water outlet instruction; then, the processor 12 checks the corresponding single water outlet time based on the target water outlet position, and controls the thermos bottle 1 to continuously outlet water according to the single water outlet time.
[0064] In the embodiment of the application, after the thermos bottle 1 outlets water in the normal water outlet mode, the processor 12 records the water outlet position corresponding to the last water outlet, and accumulates the use number of the water outlet position within a preset time period; based on the accumulated use numbers corresponding to different water outlet positions, the processor 12 marks the water outlet position with the largest use number as the default water outlet position.
[0065] For example, within the preset time period, the user uses the first water outlet position of the thermos bottle 1 once, the processor 12 records the use number +1 for the position, and records C1+1; the user uses the second water outlet position of the thermos bottle 1 once, the processor 12 records the use number +1 for the position, and records C2+1; the user uses the third water outlet position of the thermos bottle 1 once, the processor 12 records the use number +1 for the position, and records C3+1; and so on. The processor 12 compares the use numbers corresponding to each water outlet position, that is, compares the values of C1, C2, …, Cn from high to low, and sorts them in descending order; finally, the processor 12 marks the water outlet position with the largest use number as the default water outlet position of the thermos bottle 1 after the water outlet key 112 is pressed. n
[0066] Based on the above technical scheme, the boiled water bottle memorizes the single-time water outlet time length required by the user single-time pressing the water outlet key in the water outlet learning mode, can customize the water outlet for the user pressing action in the normal water outlet mode, makes the user operation more convenient, improves the user experience, and reduces the situation of excessive or insufficient water outlet amount. The present application can also learn the single-time water outlet time length for different water outlet gears respectively. In the normal water outlet mode, when the user long-presses the water outlet key 112, the nixie tube displays the water outlet gears in a jump form in sequence, the user releases the key to select the target water outlet gear, and the boiled water bottle outlets water in the single-time water outlet time length corresponding to the target water outlet gear, realizing multi-gear intelligent water outlet. In addition, the user can fine-tune the single-time water outlet time length for different water outlet gears to more accurately control the single-time water outlet amount of the boiled water bottle, and the nixie tube can display the water outlet countdown in real time when the boiled water bottle outlets water, which is more convenient for the user to monitor the water outlet situation and improves the user experience. Finally, the boiled water bottle sets the water outlet gear most frequently used by the user in a preset period as the default water outlet gear for the user pressing water outlet, which is convenient for simplifying the water taking operation of the user, the boiled water bottle can timely track and determine the change of the water demand of the user in the recent period, automatically adjusts the default water outlet gear when the user presses, and improves the user experience.
[0067] The embodiment of the present application provides a computer readable storage medium, and the storage medium stores a computer program. The computer program can be executed by the processor 12 to complete the water outlet learning method of the boiled water bottle.
[0068] If the functions are implemented in the form of software function modules and sold or used as independent products, the functions can be stored in a computer readable storage medium. Based on this understanding, the technical solutions of the present application essentially or the parts that make contributions to the prior art or parts of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the embodiments of the present application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various media that can store program codes.
[0069] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. 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 learning water discharge of a boiling water bottle, characterized by, The method comprises: in response to a first trigger instruction, controlling the boiling kettle to enter a water outlet learning mode; in the water outlet learning mode, accumulating a continuous water outlet time length for at least one water outlet gear; based on the continuous water outlet time length, updating a single water outlet time length of at least one water outlet gear in a regular water outlet mode; in the regular water outlet mode, controlling the boiling kettle to outlet water based on the single water outlet time length corresponding to a water outlet instruction.
2. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. Before the accumulating of the continuous water outlet time length for at least one water outlet gear, the method further comprises: based on a trigger time length or a trigger number corresponding to the first trigger instruction, determining a water outlet gear of the boiling kettle in the water outlet learning mode.
3. The method of claim 2, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. The controlling of the boiling kettle to outlet water based on the single water outlet time length corresponding to the water outlet instruction in the regular water outlet mode comprises: based on a trigger time length or a trigger number corresponding to the water outlet instruction, determining a target water outlet gear of the boiling kettle in the regular water outlet mode; based on a single water outlet time length corresponding to the target water outlet gear, controlling the boiling kettle to outlet water.
4. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. After the controlling of the boiling kettle to outlet water based on the single water outlet time length corresponding to the water outlet instruction, the method further comprises: in the regular water outlet mode, recording a water outlet gear corresponding to a most recent water outlet, and accumulating a use number of the water outlet gear in a preset time period; marking the water outlet gear with the largest use number as a default water outlet gear.
5. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. The updating of the single water outlet time length of at least one water outlet gear in the regular water outlet mode based on the continuous water outlet time length comprises: if the continuous water outlet time length is within a preset time length threshold range, marking the continuous water outlet time length as the single water outlet time length; if the continuous water outlet time length is outside the preset time length threshold range, marking an endpoint time length threshold adjacent to the continuous water outlet time length as the single water outlet time length.
6. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. After the updating of the single water outlet time length of at least one water outlet gear in the regular water outlet mode based on the continuous water outlet time length, the method further comprises: based on a fine-tuning water outlet gear and a fine-tuning time length corresponding to a fine-tuning instruction, modifying a single water outlet time length corresponding to the fine-tuning water outlet gear.
7. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. The boiling kettle has a learning button, and before the controlling of the boiling kettle to enter the water outlet learning mode in response to the first trigger instruction, the method further comprises: when a trigger time length of a trigger signal of the learning button reaches a first preset time length, determining a trigger instruction type corresponding to the trigger signal based on a trigger time corresponding to the trigger signal.
8. The method of claim 7, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. The determining of the trigger instruction type corresponding to the trigger signal based on the trigger time corresponding to the trigger signal when the trigger time length of the trigger signal reaches the first preset time length comprises: when the trigger time length of the trigger signal reaches the first preset time length, checking a power-on time of the boiling kettle and a current working state; if the trigger time is within a first preset time period after the power-on time and the current working state is a standby state, marking a trigger instruction corresponding to the trigger signal as the first trigger instruction.
9. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. The method further comprises, after the step of controlling the boiling water bottle to enter the boiling water learning mode in response to the first trigger instruction: continuing to dispense boiling water in response to a short-time trigger signal of the boiling water button until a release signal of the boiling water button is received.
10. The method of claim 1, wherein the method further comprises the steps of: determining whether the water level in the kettle is below a predetermined level; and if the water level is below the predetermined level, heating the water in the kettle to a predetermined temperature. The method further comprises, after the step of controlling the boiling water bottle to enter the boiling water learning mode in response to the first trigger instruction: continuing to dispense boiling water in response to a long-time trigger signal of the boiling water button until a release signal of the boiling water button is received.
Citation Information
Patent Citations
Faucet and quantitative water outlet control device and method thereof
CN107101033A
Water outlet control device and water outlet system
CN217003303U