Temperature control method and system for a multifunctional water dispenser

By monitoring user needs and current water temperature values, a dynamic adjustment mechanism is generated, and the target temperature intervention device is used to dynamically adjust the multi-functional water dispenser, solving the problem of inaccurate temperature control of traditional water dispensers and achieving the accuracy and stability of the water dispenser.

CN120036626BActive Publication Date: 2025-09-30GUANGDONG WILLING TECH CORP
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Patent Information

Application Number
CN202510199299.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-09-30
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

Traditional water dispensers have problems with inaccurate adjustment, unstable water temperature, and low heating or cooling efficiency in temperature control. They cannot meet users' various water temperature requirements in different scenarios, resulting in a poor user experience.

Method used

By monitoring the user's water temperature demand and current water temperature value on the multi-functional water dispenser, the adjustment direction and parameters are determined, a dynamic water temperature adjustment mechanism is generated, and dynamic adjustment is performed using the target temperature intervention device to ensure the accuracy and stability of temperature control.

Benefits of technology

The accuracy and reliability of temperature control of the multifunctional water dispenser are achieved, the stability of water temperature is improved, and the precise needs of users for different water temperatures are met.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention provides a temperature control method and system for a multifunctional water dispenser, comprising: real-time monitoring of a user-triggered water temperature demand on the multifunctional water dispenser; and based on the triggering result, monitoring the current water temperature in the multifunctional water dispenser via a temperature sensor; determining the direction and parameters for adjusting the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature; and generating a dynamic water temperature adjustment mechanism based on the adjustment direction and parameters; and dynamically adjusting the water temperature in the multifunctional water dispenser by controlling a target temperature intervention device based on the dynamic water temperature adjustment mechanism. This ensures the accuracy and reliability of the temperature control of the multifunctional water dispenser and improves the stability of the water temperature.
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Description

Technical Field

[0001] The present invention relates to the technical field of equipment control, and in particular to a temperature control method and system for a multifunctional water dispenser. Background Art

[0002] With the improvement of people's living standards and the growing demand for healthy drinking water, the functional requirements for water dispensers are becoming more and more diverse. Traditional water dispensers often have limitations in temperature control and cannot meet the precise needs of different users for various water temperatures in different scenarios.

[0003] Traditional water dispensers can suffer from issues like inaccurate temperature regulation, unstable water temperature, and low heating or cooling efficiency when it comes to temperature control. This can lead to a poor user experience. For example, they may not be able to quickly provide water at a specific temperature, or they may not be able to maintain a constant water temperature, significantly reducing the user experience.

[0004] Therefore, in order to overcome the above-mentioned defects, the present invention provides a temperature control method and system for a multifunctional water dispenser. Summary of the Invention

[0005] The present invention provides a temperature control method and system for a multifunctional water dispenser, which is used to monitor the water temperature demand triggered by the user on the multifunctional water dispenser, and monitor the current water temperature value in the multifunctional water dispenser after the trigger is detected, thereby providing a reference basis for water temperature control. Secondly, according to the obtained water temperature demand and the current water temperature value, the adjustment direction and adjustment parameters of the working temperature of the multifunctional water dispenser are accurately and effectively determined, and the dynamic water temperature adjustment mechanism is accurately and effectively formulated according to the adjustment direction and adjustment parameters. Finally, according to the dynamic water temperature adjustment mechanism, the target temperature intervention device is controlled to dynamically adjust the water temperature in the multifunctional water dispenser, thereby ensuring the accuracy and reliability of the temperature control of the multifunctional water dispenser and improving the stability of the water temperature.

[0006] The present invention provides a temperature control method for a multifunctional water dispenser, comprising:

[0007] Step 1: Real-time monitoring of the water temperature demand triggered by the user on the multi-function water dispenser, and based on the trigger result, monitoring the current water temperature value in the multi-function water dispenser through the temperature sensor;

[0008] Step 2: Determine the adjustment direction and adjustment parameters for the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and generate a water temperature dynamic adjustment mechanism based on the adjustment direction and adjustment parameters;

[0009] Step 3: Based on the water temperature dynamic adjustment mechanism, the target temperature intervention device is controlled to dynamically adjust the water temperature in the multi-functional water dispenser.

[0010] Preferably, a temperature control method for a multifunctional water dispenser, in step 1, before real-time monitoring of the water temperature demand triggered by the user on the multifunctional water dispenser, includes:

[0011] Obtain temperature control requirements and determine the water temperature control range of the multi-function water dispenser based on the temperature control requirements;

[0012] At the same time, based on the temperature control requirements, the allowable temperature gear control ladder for the multi-functional water dispenser is determined, and the water temperature control range is divided into temperature gears based on the allowable temperature gear control ladder;

[0013] The target water temperature value of each temperature level is locked based on the temperature level division result, and the background operation parameters of the multi-function water dispenser are configured based on the temperature level and the corresponding target water temperature value.

[0014] Preferably, a temperature control method for a multifunctional water dispenser, in step 1, real-time monitoring of the water temperature demand triggered by the user on the multifunctional water dispenser, includes:

[0015] The real-time status of the multi-function water dispenser's operation panel is monitored based on the touch sensor, and the monitoring results at each moment are compared with the status parameters when no touch operation is performed;

[0016] When it is determined that there is a parameter difference based on the difference comparison result, the user's touch data on the operation panel is acquired based on the touch sensor, and the touch data is analyzed to obtain a touch position and a touch behavior amount corresponding to the touch data;

[0017] At the same time, the last memorized water temperature of the multi-function water dispenser is obtained, and the last memorized water temperature is corrected based on the touch position and the touch behavior amount to obtain the water temperature requirement triggered by the user on the multi-function water dispenser.

[0018] Preferably, a temperature control method for a multifunctional water dispenser, in step 1, monitoring the current water temperature value in the multifunctional water dispenser according to the temperature sensor based on the trigger result, includes:

[0019] Synchronously generate a sensor control instruction based on the user's trigger result on the multi-function water dispenser, and control the temperature sensor to start based on the sensor control instruction;

[0020] Based on the startup result, the current water temperature in the multifunctional water dispenser is monitored a target number of times, and the monitoring results of the target number of times are averaged to obtain the current water temperature value in the multifunctional water dispenser;

[0021] The current water temperature value in the multi-function water dispenser is fed back to the main control center for recording.

[0022] Preferably, a temperature control method for a multifunctional water dispenser, in step 2, determines the adjustment direction and adjustment parameters of the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and generates a water temperature dynamic adjustment mechanism based on the adjustment direction and adjustment parameters, including:

[0023] Obtain the water temperature demand and the current water temperature value, and perform a difference operation on the water temperature demand and the current water temperature value to obtain the relative size relationship between the water temperature demand and the current water temperature value;

[0024] Determine the adjustment direction and adjustment parameters of the working temperature of the multifunctional water dispenser based on the relative size relationship;

[0025] At the same time, the device parameters of the multifunctional water dispenser are extracted, and the temperature change rate of the multifunctional water dispenser when working is determined based on the device parameters;

[0026] Determining the division phases of the adjustment parameter based on the temperature change rate, wherein the division phases include a temperature rise or temperature fall phase and a temperature stabilization phase;

[0027] Determine the target value corresponding to the adjustment parameter, and divide the adjustment parameter into stages based on the target value and the division stage of the adjustment parameter;

[0028] Obtaining a change in the operating temperature of the multifunctional water dispenser in a heating or cooling stage based on the stage division result, and determining a first control variable for the operating temperature of the multifunctional water dispenser based on the change;

[0029] Retrieve multiple sets of historical operating data of the multifunctional water dispenser based on the preset database, and overlay and visualize the multiple sets of historical operating data in a preset visualization coordinate system;

[0030] Based on the superimposed visualization results, the trend of value changes in multiple groups of historical operating data was determined. Based on the neural network, the correlation analysis between the trend of value changes and the corresponding environmental parameters was carried out to obtain the causal relationship between the natural heat dissipation of water temperature in the multi-functional water dispenser and the environmental parameters.

[0031] Determine, based on the causal relationship, the unit natural heat dissipation of the water temperature in the multifunctional water dispenser when the current water temperature requirement is met, and determine a second control variable for the operating temperature of the multifunctional water dispenser based on the unit natural heat dissipation;

[0032] The first control variable and the second control variable are logically associated with each other based on the execution order of the division result to obtain a dynamic water temperature adjustment mechanism.

[0033] Preferably, a temperature control method for a multifunctional water dispenser, which obtains a water temperature dynamic adjustment mechanism, comprises:

[0034] Obtain the dynamic water temperature regulation mechanism corresponding to different water temperature requirements, and summarize the dynamic water temperature regulation mechanism under the same water temperature requirement and different environmental parameters;

[0035] Determine the influencing parameters of different environmental parameters on the dynamic regulation mechanism of water temperature based on the summary results, select benchmark environmental parameters from the environmental parameters, and determine the dynamic correction amount of the dynamic regulation mechanism of water temperature under different influencing parameters based on the benchmark environmental parameters;

[0036] Sorting the water temperature dynamic regulation mechanisms based on the increasing order of water temperature requirements, and storing the water temperature dynamic regulation mechanisms in a pre-built reference strategy library based on the sorting results;

[0037] At the same time, based on the stored results, additional adjustment instructions are added to the dynamic adjustment mechanism of water temperature under different environmental parameters according to the dynamic correction amount, and the target adjustment strategy library is obtained based on the added results.

[0038] Preferably, a temperature control method for a multifunctional water dispenser, in step 3, dynamically adjusting the water temperature in the multifunctional water dispenser by controlling a target temperature intervention device based on a water temperature dynamic adjustment mechanism, includes:

[0039] Obtain a water temperature dynamic adjustment mechanism, and control a target temperature intervention device based on the water temperature dynamic adjustment mechanism to dynamically adjust the water temperature in the multifunctional water dispenser;

[0040] At the same time, based on the control results, a dynamic adjustment mechanism for the preset temperature sensor collection frequency is triggered, and based on the monitoring requirements, the prior water temperature point is determined before the water temperature demand;

[0041] Based on the dynamic adjustment mechanism, the collection frequency of the preset temperature sensor is increased, and based on the increase processing result, the preset temperature sensor is controlled to collect the current water temperature value in the multi-functional water dispenser at a priori water temperature point with multiple frequencies.

[0042] Preferably, a temperature control method for a multifunctional water dispenser controls a preset temperature sensor to collect the current water temperature value in the multifunctional water dispenser at multiple frequencies based on the increase processing result, including:

[0043] Obtain the time information corresponding to each frequency collection, and dynamically display the collected real-time water temperature values ​​on the visualization panel of the multi-functional water dispenser based on the development order of the time information;

[0044] Compare the real-time water temperature value with the water temperature demand based on the dynamic display results;

[0045] If the difference between the real-time water temperature value and the target water temperature requirement is stable within the preset threshold range, it is determined that the temperature control of the multi-function water dispenser is completed;

[0046] Otherwise, the current water temperature value in the multifunctional water dispenser is controlled and adjusted until the difference between the real-time water temperature value and the target water temperature demand is stabilized within a preset threshold range.

[0047] The present invention provides a temperature control system for a multifunctional water dispenser, comprising:

[0048] The water temperature monitoring module is used to monitor the water temperature demand triggered by the user on the multi-function water dispenser in real time, and based on the trigger result, monitor the current water temperature value in the multi-function water dispenser through the temperature sensor;

[0049] A regulation mechanism generation module is used to determine the regulation direction and regulation parameters of the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and to generate a water temperature dynamic regulation mechanism based on the regulation direction and regulation parameters;

[0050] The temperature control module is used to control the target temperature intervention device to dynamically adjust the water temperature in the multi-functional water dispenser based on the water temperature dynamic adjustment mechanism.

[0051] Preferably, a temperature control system and a water temperature monitoring module of a multifunctional water dispenser include:

[0052] A range determination unit, configured to obtain a temperature control requirement and determine a water temperature control range of the multifunctional water dispenser based on the temperature control requirement;

[0053] A gear division unit, configured to determine an allowable temperature gear control step for the multifunctional water dispenser based on the temperature control requirements, and to divide the water temperature control range into temperature gears based on the allowable temperature gear control step;

[0054] The device configuration unit is used to lock the target water temperature value of each temperature level based on the temperature level division result, and configure the background operation parameters of the multi-functional water dispenser based on the temperature level and the corresponding target water temperature value.

[0055] Compared with the prior art, the present invention has the following beneficial effects:

[0056] 1. By monitoring the water temperature demand triggered by the user on the multi-functional water dispenser, and monitoring the current water temperature value in the multi-functional water dispenser after the trigger is detected, a reference basis is provided for water temperature control. Secondly, the adjustment direction and adjustment parameters of the working temperature of the multi-functional water dispenser are accurately and effectively determined according to the obtained water temperature demand and the current water temperature value, and the dynamic water temperature adjustment mechanism is accurately and effectively formulated according to the adjustment direction and adjustment parameters. Finally, the target temperature intervention device is controlled according to the dynamic water temperature adjustment mechanism to dynamically adjust the water temperature in the multi-functional water dispenser, ensuring the accuracy and reliability of the temperature control of the multi-functional water dispenser and improving the stability of the water temperature.

[0057] 2. The real-time status of the multi-function water dispenser's operation panel is monitored through the touch sensor, and after the detection is triggered, the touch position and touch behavior amount are determined, so that the last memorized water temperature of the multi-function water dispenser can be corrected according to the touch position and touch behavior amount, and the final water temperature requirement can be accurately and effectively determined.

[0058] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be achieved and obtained through the structures specifically pointed out in this application document.

[0059] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0060] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0061] Figure 1 This is a flow chart of a temperature control method for a multifunctional water dispenser according to an embodiment of the present invention;

[0062] Figure 2 This is a flow chart of step 1 in a temperature control method for a multifunctional water dispenser according to an embodiment of the present invention;

[0063] Figure 3 This is a structural diagram of a temperature control system of a multifunctional water dispenser in an embodiment of the present invention. DETAILED DESCRIPTION

[0064] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0065] Example 1:

[0066] This embodiment provides a temperature control method for a multifunctional water dispenser. Figure 1 As shown, including:

[0067] Step 1: Real-time monitoring of the water temperature demand triggered by the user on the multi-function water dispenser, and based on the trigger result, monitoring the current water temperature value in the multi-function water dispenser through the temperature sensor;

[0068] Step 2: Determine the adjustment direction and adjustment parameters for the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and generate a water temperature dynamic adjustment mechanism based on the adjustment direction and adjustment parameters;

[0069] Step 3: Based on the water temperature dynamic adjustment mechanism, the target temperature intervention device is controlled to dynamically adjust the water temperature in the multi-functional water dispenser.

[0070] In this embodiment, the water temperature requirement refers to the water temperature value selected by the user on the multi-function water dispenser, for example, the user may need to obtain water at 50 degrees Celsius.

[0071] In this embodiment, monitoring the current water temperature value in the multifunctional water dispenser using the temperature sensor based on the trigger result refers to obtaining the temperature value of the water in the multifunctional water dispenser through the temperature sensor.

[0072] In this embodiment, the adjustment direction refers to increasing or decreasing the operating temperature of the multifunctional water dispenser.

[0073] In this embodiment, the adjustment parameter refers to a specific value for temperature adjustment in the adjustment direction, for example, it may be a temperature increase of 20 degrees Celsius.

[0074] In this embodiment, the water temperature dynamic adjustment mechanism refers to a scheme or method for adjusting the water temperature in the multifunctional water dispenser.

[0075] In this embodiment, the target temperature intervention device is a device in a multi-functional water dispenser, such as a heating plate or a cooling fan.

[0076] The working principle and beneficial effects of the above technical solution are: by monitoring the water temperature demand triggered by the user on the multi-functional water dispenser, and monitoring the current water temperature value in the multi-functional water dispenser after the trigger is detected, a reference basis is provided for water temperature control; secondly, the adjustment direction and adjustment parameters of the working temperature of the multi-functional water dispenser are accurately and effectively determined according to the obtained water temperature demand and the current water temperature value, and the dynamic water temperature adjustment mechanism is accurately and effectively formulated according to the adjustment direction and adjustment parameters; finally, the target temperature intervention device is controlled according to the dynamic water temperature adjustment mechanism to dynamically adjust the water temperature in the multi-functional water dispenser, ensuring the accuracy and reliability of the temperature control of the multi-functional water dispenser and improving the stability of the water temperature.

[0077] Example 2:

[0078] Based on Example 1, this embodiment provides a temperature control method for a multi-functional water dispenser. In step 1, before the water temperature demand triggered by the user on the multi-functional water dispenser is monitored in real time, the method includes:

[0079] Obtain temperature control requirements and determine the water temperature control range of the multi-function water dispenser based on the temperature control requirements;

[0080] At the same time, based on the temperature control requirements, the allowable temperature gear control ladder for the multi-functional water dispenser is determined, and the water temperature control range is divided into temperature gears based on the allowable temperature gear control ladder;

[0081] The target water temperature value of each temperature level is locked based on the temperature level division result, and the background operation parameters of the multi-function water dispenser are configured based on the temperature level and the corresponding target water temperature value.

[0082] In this embodiment, the temperature control requirement is set in advance and is used to represent the water temperature control range of the multifunctional water dispenser.

[0083] In this embodiment, the allowable temperature gear control step refers to setting the temperature control range of the multi-functional water dispenser, for example, it can be 55 degrees Celsius, 60 degrees Celsius, etc.

[0084] In this embodiment, the temperature level division refers to dividing the water temperature control range into stages according to the allowable temperature level control steps.

[0085] In this embodiment, the target water temperature value refers to the specific value corresponding to each temperature level.

[0086] The working principle and beneficial effects of the above technical solution are: by analyzing the temperature control requirements, the water temperature control range of the multi-functional water dispenser is effectively determined; secondly, the allowable temperature gear control steps of the multi-functional water dispenser are determined according to the temperature control requirements, and the water temperature control range is divided into temperature gears according to the allowable temperature gear control steps, which provides convenience for determining the water temperature requirements triggered by the user; finally, the background operating parameters of the multi-functional water dispenser are configured according to the temperature gear division results, which provides convenience for water temperature control.

[0087] Example 3:

[0088] Based on Example 1, this embodiment provides a temperature control method for a multifunctional water dispenser, such as Figure 2 As shown, in step 1, the water temperature demand triggered by the user on the multi-function water dispenser is monitored in real time, including:

[0089] Step 101: monitoring the real-time status of the operation panel of the multifunctional water dispenser using a touch sensor, and comparing the monitoring results at each moment with the status parameters when no touch operation is performed;

[0090] Step 102: When it is determined that there is a parameter difference based on the difference comparison result, the user's touch data on the operation panel is acquired using the touch sensor, and the touch data is analyzed to obtain the touch position and touch behavior amount corresponding to the touch data;

[0091] Step 103: At the same time, the last memorized water temperature of the multifunctional water dispenser is obtained, and the last memorized water temperature is corrected based on the touch position and the touch behavior amount to obtain the water temperature requirement triggered by the user on the multifunctional water dispenser.

[0092] In this embodiment, the touch sensor is pre-set and is used to monitor whether there is a user click operation on the operation panel of the multi-functional water dispenser.

[0093] In this embodiment, the touch data refers to the click position and the number of clicks of the user on the operation panel acquired by the touch sensor.

[0094] In this embodiment, the touch behavior amount refers to information such as the number of clicks and click strength of the user at different positions on the operation panel. The touch behavior amount can be used to determine the specific value of the temperature increase or decrease selected by the user through the operation panel. For example, if the user clicks twice, the allowable temperature adjustment value is 1 degree Celsius each time, thereby realizing the determination of the final required temperature based on the touch behavior amount and the touch position, wherein the touch position is used to determine whether the user clicked on the temperature increase operation or the temperature decrease operation.

[0095] In this embodiment, the last memorized water temperature refers to the water temperature value that needs to be maintained after the multifunctional water dispenser was last used.

[0096] The working principle and beneficial effects of the above technical solution are: the real-time status on the operation panel of the multi-functional water dispenser is monitored by a touch sensor, and after the detection is triggered, the touch position and touch behavior amount are determined, so as to realize the correction of the last memorized water temperature of the multi-functional water dispenser according to the touch position and touch behavior amount, and realize the accurate and effective determination of the final water temperature requirement.

[0097] Example 4:

[0098] Based on Example 1, this embodiment provides a temperature control method for a multifunctional water dispenser. In step 1, based on a trigger result, a temperature sensor is used to monitor the current water temperature in the multifunctional water dispenser, including:

[0099] Synchronously generate a sensor control instruction based on the user's trigger result on the multi-function water dispenser, and control the temperature sensor to start based on the sensor control instruction;

[0100] Based on the startup result, the current water temperature in the multifunctional water dispenser is monitored a target number of times, and the monitoring results of the target number of times are averaged to obtain the current water temperature value in the multifunctional water dispenser;

[0101] The current water temperature value in the multi-function water dispenser is fed back to the main control center for recording.

[0102] In this embodiment, the sensor control instruction is a control instruction automatically generated by the system according to demand after the user triggers a function on the multi-functional water dispenser.

[0103] In this embodiment, the target number of times is set in advance, for example, the temperature may be monitored five times within one minute.

[0104] The working principle and beneficial effects of the above technical solution are: by synchronously generating sensor control instructions according to the user's triggering results on the multi-functional water dispenser, the temperature sensor is controlled to start according to the sensor control instructions, and then the current water temperature in the multi-functional water dispenser is accurately and effectively determined, providing reliable data support for temperature control.

[0105] Example 5:

[0106] Based on Example 1, this embodiment provides a temperature control method for a multifunctional water dispenser. In step 2, the adjustment direction and adjustment parameters for the operating temperature of the multifunctional water dispenser are determined based on the water temperature demand and the current water temperature value, and a water temperature dynamic adjustment mechanism is generated based on the adjustment direction and adjustment parameters, including:

[0107] Obtain the water temperature demand and the current water temperature value, and perform a difference operation on the water temperature demand and the current water temperature value to obtain the relative size relationship between the water temperature demand and the current water temperature value;

[0108] Determine the adjustment direction and adjustment parameters of the working temperature of the multifunctional water dispenser based on the relative size relationship;

[0109] At the same time, the device parameters of the multifunctional water dispenser are extracted, and the temperature change rate of the multifunctional water dispenser when working is determined based on the device parameters;

[0110] Determining the division phases of the adjustment parameter based on the temperature change rate, wherein the division phases include a temperature rise or temperature fall phase and a temperature stabilization phase;

[0111] Determine the target value corresponding to the adjustment parameter, and divide the adjustment parameter into stages based on the target value and the division stage of the adjustment parameter;

[0112] Obtaining a change in the operating temperature of the multifunctional water dispenser in a heating or cooling stage based on the stage division result, and determining a first control variable for the operating temperature of the multifunctional water dispenser based on the change;

[0113] Retrieve multiple sets of historical operating data of the multifunctional water dispenser based on the preset database, and overlay and visualize the multiple sets of historical operating data in a preset visualization coordinate system;

[0114] Based on the superimposed visualization results, the trend of value changes in multiple groups of historical operating data was determined. Based on the neural network, the correlation analysis between the trend of value changes and the corresponding environmental parameters was carried out to obtain the causal relationship between the natural heat dissipation of water temperature in the multi-functional water dispenser and the environmental parameters.

[0115] Determine, based on the causal relationship, the unit natural heat dissipation of the water temperature in the multifunctional water dispenser when the current water temperature requirement is met, and determine a second control variable for the operating temperature of the multifunctional water dispenser based on the unit natural heat dissipation;

[0116] The first control variable and the second control variable are logically associated with each other based on the execution order of the division result to obtain a dynamic water temperature adjustment mechanism.

[0117] In this embodiment, the adjustment direction and adjustment parameter refer to whether to heat or cool the current water temperature, and the specific heating or cooling value determined based on the relative size relationship between the water temperature demand and the current water temperature value.

[0118] In this embodiment, the device parameters refer to the factory configuration parameters of the multifunctional water dispenser, such as heating power.

[0119] In this embodiment, the temperature change rate refers to the speed at which the water temperature value changes when the multifunctional water dispenser is in operation.

[0120] In this embodiment, the target value refers to the specific numerical value corresponding to the adjustment parameter.

[0121] In this embodiment, dividing the adjustment parameters into stages based on the target values ​​and division stages of the adjustment parameters means dividing the adjustment parameters into intervals according to the determined target values, that is, the temperature values ​​that need to be provided in different stages, so as to achieve the effect of first heating up and then stabilizing the temperature or first cooling down and then stabilizing the temperature.

[0122] In this embodiment, the first control amount is generated according to the change in the operating temperature of the multifunctional water dispenser during the heating or cooling phase, and is used to control the temperature change of the multifunctional water dispenser.

[0123] In this embodiment, the preset database is set in advance and is used to store previous operating data of the multifunctional water dispenser.

[0124] In this embodiment, the preset visualization coordinate system is constructed in advance and is used to visualize multiple sets of historical operation data.

[0125] In this embodiment, the environmental parameter refers to the current external ambient temperature.

[0126] In this embodiment, the causal relationship between the natural heat dissipation of water temperature in the multifunctional water dispenser and environmental parameters refers to the relationship in which the natural heat dissipation of water temperature in the multifunctional water dispenser is affected by environmental parameters. For example, when the external temperature in the environmental parameters is lower, the natural heat dissipation of water temperature in the multifunctional water dispenser is faster.

[0127] In this embodiment, the unit natural heat dissipation refers to the specific degree to which the water temperature in the multifunctional water dispenser decreases within a unit time.

[0128] In this embodiment, the second control amount refers to the control amount of the operating temperature of the multifunctional water dispenser required per unit time when the water temperature is stabilized, which is determined based on the unit natural heat dissipation of the water temperature in the multifunctional water dispenser.

[0129] The working principle and beneficial effects of the above technical solution are: by determining the relative size relationship between the obtained water temperature demand and the current water temperature value, the adjustment direction and adjustment parameters of the working temperature of the multi-functional water dispenser are quickly and effectively determined. At the same time, the equipment parameters of the multi-functional water dispenser are analyzed to determine the temperature change rate of the multi-functional water dispenser when it is working, and then the working temperature of the multi-functional water dispenser is divided into stages according to the temperature change rate, adjustment direction and adjustment parameters. Secondly, according to the stage division results, the first control quantity of the working temperature of the multi-functional water dispenser during heating or cooling and the second control quantity of the working temperature of the multi-functional water dispenser during the water temperature stabilization stage are accurately determined, so as to facilitate the effective control of the multi-functional water dispenser in different ways at different stages. Finally, the obtained first control quantity and the second control quantity are logically associated, and the water temperature dynamic adjustment mechanism is locked according to the execution logical association result, which provides convenience and guarantee for the temperature control of the multi-functional water dispenser.

[0130] Example 6:

[0131] Based on Example 5, this embodiment provides a temperature control method for a multifunctional water dispenser, which obtains a water temperature dynamic adjustment mechanism, including:

[0132] Obtain the dynamic water temperature regulation mechanism corresponding to different water temperature requirements, and summarize the dynamic water temperature regulation mechanism under the same water temperature requirement and different environmental parameters;

[0133] Determine the influencing parameters of different environmental parameters on the dynamic regulation mechanism of water temperature based on the summary results, select benchmark environmental parameters from the environmental parameters, and determine the dynamic correction amount of the dynamic regulation mechanism of water temperature under different influencing parameters based on the benchmark environmental parameters;

[0134] Sorting the water temperature dynamic regulation mechanisms based on the increasing order of water temperature requirements, and storing the water temperature dynamic regulation mechanisms in a pre-built reference strategy library based on the sorting results;

[0135] At the same time, based on the stored results, additional adjustment instructions are added to the dynamic adjustment mechanism of water temperature under different environmental parameters according to the dynamic correction amount, and the target adjustment strategy library is obtained based on the added results.

[0136] In this embodiment, the influencing parameters refer to the degree of influence of different environmental parameters on the water temperature dynamic adjustment mechanism when performing water temperature control, that is, the interference with the water temperature control.

[0137] In this embodiment, the reference environmental parameter refers to an environmental parameter of an average level selected from different environmental parameters.

[0138] In this embodiment, the dynamic correction amount refers to the adjustment value of the reference environmental parameter required by different influencing parameters.

[0139] In this embodiment, the pre-built reference strategy library is constructed in advance and is used to store water temperature dynamic adjustment mechanisms under different water temperature requirements.

[0140] In this embodiment, the auxiliary adjustment description refers to the description parameters of the water temperature dynamic adjustment mechanism when it is working, specifically the description of the application environment of the water temperature dynamic adjustment mechanism and the parameter adjustment situation.

[0141] In this embodiment, the target adjustment strategy library refers to a database that can be directly called after storing all water temperature dynamic adjustment mechanisms.

[0142] The working principle and beneficial effect of the above technical solution are: by storing the water temperature dynamic adjustment mechanism corresponding to different water temperature requirements and the dynamic correction amount of the water temperature dynamic adjustment mechanism under different environmental parameters, the target adjustment strategy library can be accurately and effectively constructed, thereby providing convenience and guarantee for water temperature control.

[0143] Example 7:

[0144] Based on Example 1, this embodiment provides a temperature control method for a multifunctional water dispenser. In step 3, based on the water temperature dynamic adjustment mechanism, the target temperature intervention device is controlled to dynamically adjust the water temperature in the multifunctional water dispenser, including:

[0145] Obtain a water temperature dynamic adjustment mechanism, and control a target temperature intervention device based on the water temperature dynamic adjustment mechanism to dynamically adjust the water temperature in the multifunctional water dispenser;

[0146] At the same time, based on the control results, a dynamic adjustment mechanism for the preset temperature sensor collection frequency is triggered, and based on the monitoring requirements, the prior water temperature point is determined before the water temperature demand;

[0147] Based on the dynamic adjustment mechanism, the collection frequency of the preset temperature sensor is increased, and based on the increase processing result, the preset temperature sensor is controlled to collect the current water temperature value in the multi-functional water dispenser at a priori water temperature point with multiple frequencies.

[0148] In this embodiment, the priori water temperature point refers to a location point where the water temperature in the multi-functional water dispenser is detected when the water temperature requirement is implemented.

[0149] The working principle and beneficial effects of the above technical solution are: the target temperature intervention device is controlled by the obtained water temperature dynamic adjustment mechanism to dynamically adjust the water temperature in the multi-functional water dispenser, thereby ensuring the reliability of temperature control of the multi-functional water dispenser. Secondly, while controlling, the preset temperature sensor is controlled to collect the current water temperature value in the multi-functional water dispenser multiple times, thereby facilitating the determination of whether the control of the water temperature in the multi-functional water dispenser is qualified, thereby ensuring the accuracy and reliability of temperature control.

[0150] Example 8:

[0151] Based on Example 7, this embodiment provides a temperature control method for a multifunctional water dispenser, which controls a preset temperature sensor to collect the current water temperature value in the multifunctional water dispenser at multiple frequencies based on the increase processing result, including:

[0152] Obtain the time information corresponding to each frequency collection, and dynamically display the collected real-time water temperature values ​​on the visualization panel of the multi-functional water dispenser based on the development order of the time information;

[0153] Compare the real-time water temperature value with the water temperature demand based on the dynamic display results;

[0154] If the difference between the real-time water temperature value and the target water temperature requirement is stable within the preset threshold range, it is determined that the temperature control of the multi-function water dispenser is completed;

[0155] Otherwise, the current water temperature value in the multifunctional water dispenser is controlled and adjusted until the difference between the real-time water temperature value and the target water temperature demand is stabilized within a preset threshold range.

[0156] In this embodiment, the preset threshold range is set in advance and is used to measure whether the water temperature control of the multi-functional water dispenser meets the minimum standard required, and can be adjusted.

[0157] The working principle and beneficial effects of the above technical solution are: by monitoring the real-time control results of the water temperature of the multi-functional water dispenser by the water temperature dynamic adjustment mechanism, and comparing the real-time control results with the water temperature requirements, the difference between the two can be used to accurately and effectively judge whether the temperature control of the multi-functional water dispenser is qualified, and then timely control adjustments can be made when the control is unqualified, ensuring the accuracy of temperature control.

[0158] Example 9:

[0159] This embodiment provides a temperature control system for a multifunctional water dispenser. Figure 3 As shown, including:

[0160] The water temperature monitoring module is used to monitor the water temperature demand triggered by the user on the multi-function water dispenser in real time, and based on the trigger result, monitor the current water temperature value in the multi-function water dispenser through the temperature sensor;

[0161] A regulation mechanism generation module is used to determine the regulation direction and regulation parameters of the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and to generate a water temperature dynamic regulation mechanism based on the regulation direction and regulation parameters;

[0162] The temperature control module is used to control the target temperature intervention device to dynamically adjust the water temperature in the multi-functional water dispenser based on the water temperature dynamic adjustment mechanism.

[0163] The working principle and beneficial effects of the above technical solution are: by monitoring the water temperature demand triggered by the user on the multi-functional water dispenser, and monitoring the current water temperature value in the multi-functional water dispenser after the trigger is detected, a reference basis is provided for water temperature control; secondly, the adjustment direction and adjustment parameters of the working temperature of the multi-functional water dispenser are accurately and effectively determined according to the obtained water temperature demand and the current water temperature value, and the dynamic water temperature adjustment mechanism is accurately and effectively formulated according to the adjustment direction and adjustment parameters; finally, the target temperature intervention device is controlled according to the dynamic water temperature adjustment mechanism to dynamically adjust the water temperature in the multi-functional water dispenser, ensuring the accuracy and reliability of the temperature control of the multi-functional water dispenser and improving the stability of the water temperature.

[0164] Example 10:

[0165] Based on Example 9, this embodiment provides a temperature control system for a multifunctional water dispenser, including a water temperature monitoring module, comprising:

[0166] A range determination unit, configured to obtain a temperature control requirement and determine a water temperature control range of the multifunctional water dispenser based on the temperature control requirement;

[0167] A gear division unit, configured to determine an allowable temperature gear control step for the multifunctional water dispenser based on the temperature control requirements, and to divide the water temperature control range into temperature gears based on the allowable temperature gear control step;

[0168] The device configuration unit is used to lock the target water temperature value of each temperature level based on the temperature level division result, and configure the background operation parameters of the multi-functional water dispenser based on the temperature level and the corresponding target water temperature value.

[0169] The working principle and beneficial effects of the above technical solution are: by analyzing the temperature control requirements, the water temperature control range of the multi-functional water dispenser is effectively determined; secondly, the allowable temperature gear control steps of the multi-functional water dispenser are determined according to the temperature control requirements, and the water temperature control range is divided into temperature gears according to the allowable temperature gear control steps, which provides convenience for determining the water temperature requirements triggered by the user; finally, the background operating parameters of the multi-functional water dispenser are configured according to the temperature gear division results, which provides convenience for water temperature control.

[0170] Obviously, those skilled in the art may make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if such changes and modifications fall within the scope of the claims and their equivalents, the present invention is intended to include such changes and modifications.

Claims

1. A temperature control method for a multifunctional water dispenser, characterized in that: include: Step 1: Real-time monitoring of the water temperature demand triggered by the user on the multi-function water dispenser, and based on the trigger result, monitoring the current water temperature value in the multi-function water dispenser through the temperature sensor; Step 2: Determine the adjustment direction and adjustment parameters for the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and generate a water temperature dynamic adjustment mechanism based on the adjustment direction and adjustment parameters; Step 3: Based on the water temperature dynamic adjustment mechanism, the target temperature intervention device is controlled to dynamically adjust the water temperature in the multifunctional water dispenser; In step 2, the adjustment direction and adjustment parameters of the operating temperature of the multifunctional water dispenser are determined based on the water temperature demand and the current water temperature value, and a water temperature dynamic adjustment mechanism is generated based on the adjustment direction and adjustment parameters, including: Obtain the water temperature demand and the current water temperature value, and perform a difference operation on the water temperature demand and the current water temperature value to obtain the relative size relationship between the water temperature demand and the current water temperature value; Determine the adjustment direction and adjustment parameters of the working temperature of the multifunctional water dispenser based on the relative size relationship; At the same time, the device parameters of the multifunctional water dispenser are extracted, and the temperature change rate of the multifunctional water dispenser when working is determined based on the device parameters; Determining the division phases of the adjustment parameter based on the temperature change rate, wherein the division phases include a temperature rise or temperature fall phase and a temperature stabilization phase; Determine the target value corresponding to the adjustment parameter, and divide the adjustment parameter into stages based on the target value and the division stage of the adjustment parameter; Obtaining a change in the operating temperature of the multifunctional water dispenser in a heating or cooling stage based on the stage division result, and determining a first control variable for the operating temperature of the multifunctional water dispenser based on the change; Retrieve multiple sets of historical operating data of the multifunctional water dispenser based on the preset database, and overlay and visualize the multiple sets of historical operating data in a preset visualization coordinate system; Based on the superimposed visualization results, the trend of value changes in multiple groups of historical operating data was determined. Based on the neural network, the correlation analysis between the trend of value changes and the corresponding environmental parameters was carried out to obtain the causal relationship between the natural heat dissipation of water temperature in the multi-functional water dispenser and the environmental parameters. Determine, based on the causal relationship, the unit natural heat dissipation of the water temperature in the multifunctional water dispenser when the current water temperature requirement is met, and determine a second control variable for the operating temperature of the multifunctional water dispenser based on the unit natural heat dissipation; The first control variable and the second control variable are logically associated with each other based on the execution order of the division result to obtain a dynamic water temperature adjustment mechanism.

2. The temperature control method of a multifunctional water dispenser according to claim 1, characterized in that: In step 1, before real-time monitoring of the water temperature demand triggered by the user on the multi-function water dispenser, the following steps are performed: Obtain temperature control requirements and determine the water temperature control range of the multi-function water dispenser based on the temperature control requirements; At the same time, based on the temperature control requirements, the allowable temperature gear control ladder for the multi-functional water dispenser is determined, and the water temperature control range is divided into temperature gears based on the allowable temperature gear control ladder; The target water temperature value of each temperature level is locked based on the temperature level division result, and the background operation parameters of the multi-function water dispenser are configured based on the temperature level and the corresponding target water temperature value.

3. The temperature control method of a multifunctional water dispenser according to claim 1, characterized in that: In step 1, the water temperature demand triggered by the user on the multi-function water dispenser is monitored in real time, including: The real-time status of the multi-function water dispenser's operation panel is monitored based on the touch sensor, and the monitoring results at each moment are compared with the status parameters when no touch operation is performed; When it is determined that there is a parameter difference based on the difference comparison result, the user's touch data on the operation panel is acquired based on the touch sensor, and the touch data is analyzed to obtain a touch position and a touch behavior amount corresponding to the touch data; At the same time, the last memorized water temperature of the multi-function water dispenser is obtained, and the last memorized water temperature is corrected based on the touch position and the touch behavior amount to obtain the water temperature requirement triggered by the user on the multi-function water dispenser.

4. The temperature control method of a multifunctional water dispenser according to claim 1, characterized in that: In step 1, based on the trigger result, the temperature sensor monitors the current water temperature in the multi-function water dispenser, including: Synchronously generate a sensor control instruction based on the user's trigger result on the multi-function water dispenser, and control the temperature sensor to start based on the sensor control instruction; Based on the startup result, the current water temperature in the multifunctional water dispenser is monitored a target number of times, and the monitoring results of the target number of times are averaged to obtain the current water temperature value in the multifunctional water dispenser; The current water temperature value in the multi-function water dispenser is fed back to the main control center for recording.

5. The temperature control method of a multifunctional water dispenser according to claim 1, characterized in that: The water temperature dynamic regulation mechanism is obtained, including: Obtain the dynamic water temperature regulation mechanism corresponding to different water temperature requirements, and summarize the dynamic water temperature regulation mechanism under the same water temperature requirement and different environmental parameters; Determine the influencing parameters of different environmental parameters on the dynamic regulation mechanism of water temperature based on the summary results, select benchmark environmental parameters from the environmental parameters, and determine the dynamic correction amount of the dynamic regulation mechanism of water temperature under different influencing parameters based on the benchmark environmental parameters; Sorting the water temperature dynamic regulation mechanisms based on the increasing order of water temperature requirements, and storing the water temperature dynamic regulation mechanisms in a pre-built reference strategy library based on the sorting results; At the same time, based on the stored results, additional adjustment instructions are added to the dynamic adjustment mechanism of water temperature under different environmental parameters according to the dynamic correction amount, and the target adjustment strategy library is obtained based on the added results.

6. The temperature control method of a multifunctional water dispenser according to claim 1, characterized in that: In step 3, the target temperature intervention device is controlled based on the water temperature dynamic adjustment mechanism to dynamically adjust the water temperature in the multifunctional water dispenser, including: Obtain a water temperature dynamic adjustment mechanism, and control a target temperature intervention device based on the water temperature dynamic adjustment mechanism to dynamically adjust the water temperature in the multifunctional water dispenser; At the same time, based on the control results, a dynamic adjustment mechanism for the preset temperature sensor collection frequency is triggered, and based on the monitoring requirements, the prior water temperature point is determined before the water temperature demand; Based on the dynamic adjustment mechanism, the collection frequency of the preset temperature sensor is increased, and based on the increase processing result, the preset temperature sensor is controlled to collect the current water temperature value in the multi-functional water dispenser at a priori water temperature point with multiple frequencies.

7. The temperature control method of a multifunctional water dispenser according to claim 6, characterized in that: Based on the increase processing result, the preset temperature sensor is controlled to collect the current water temperature value in the multi-function water dispenser at multiple frequencies, including: Obtain the time information corresponding to each frequency collection, and dynamically display the collected real-time water temperature values ​​on the visualization panel of the multi-functional water dispenser based on the development order of the time information; Compare the real-time water temperature value with the water temperature demand based on the dynamic display results; If the difference between the real-time water temperature value and the target water temperature requirement is stable within the preset threshold range, it is determined that the temperature control of the multi-function water dispenser is completed; Otherwise, the current water temperature value in the multifunctional water dispenser is controlled and adjusted until the difference between the real-time water temperature value and the target water temperature demand is stabilized within a preset threshold range.

8. A temperature control system for a multifunctional water dispenser, characterized in that: include: The water temperature monitoring module is used to monitor the water temperature demand triggered by the user on the multi-function water dispenser in real time, and based on the trigger result, monitor the current water temperature value in the multi-function water dispenser through the temperature sensor; A regulation mechanism generation module is used to determine the regulation direction and regulation parameters of the operating temperature of the multifunctional water dispenser based on the water temperature demand and the current water temperature value, and to generate a water temperature dynamic regulation mechanism based on the regulation direction and regulation parameters; The temperature control module is used to control the target temperature intervention device to dynamically adjust the water temperature in the multifunctional water dispenser based on the water temperature dynamic adjustment mechanism; Among them, the regulation mechanism generation module includes: Obtain the water temperature demand and the current water temperature value, and perform a difference operation on the water temperature demand and the current water temperature value to obtain the relative size relationship between the water temperature demand and the current water temperature value; Determine the adjustment direction and adjustment parameters of the working temperature of the multifunctional water dispenser based on the relative size relationship; At the same time, the device parameters of the multifunctional water dispenser are extracted, and the temperature change rate of the multifunctional water dispenser when working is determined based on the device parameters; Determining the division phases of the adjustment parameter based on the temperature change rate, wherein the division phases include a temperature rise or temperature fall phase and a temperature stabilization phase; Determine the target value corresponding to the adjustment parameter, and divide the adjustment parameter into stages based on the target value and the division stage of the adjustment parameter; Obtaining a change in the operating temperature of the multifunctional water dispenser in a heating or cooling stage based on the stage division result, and determining a first control variable for the operating temperature of the multifunctional water dispenser based on the change; Retrieve multiple sets of historical operating data of the multifunctional water dispenser based on the preset database, and overlay and visualize the multiple sets of historical operating data in a preset visualization coordinate system; Based on the superimposed visualization results, the trend of value changes in multiple groups of historical operating data was determined. Based on the neural network, the correlation analysis between the trend of value changes and the corresponding environmental parameters was carried out to obtain the causal relationship between the natural heat dissipation of water temperature in the multi-functional water dispenser and the environmental parameters. Determine, based on the causal relationship, the unit natural heat dissipation of the water temperature in the multifunctional water dispenser when the current water temperature requirement is met, and determine a second control variable for the operating temperature of the multifunctional water dispenser based on the unit natural heat dissipation; The first control variable and the second control variable are logically associated with each other based on the execution order of the division result to obtain a dynamic water temperature adjustment mechanism.

9. The temperature control system of a multifunctional water dispenser according to claim 8, characterized in that: Water temperature monitoring module, including: A range determination unit, configured to obtain a temperature control requirement and determine a water temperature control range of the multifunctional water dispenser based on the temperature control requirement; A gear division unit, configured to determine an allowable temperature gear control step for the multifunctional water dispenser based on the temperature control requirements, and to divide the water temperature control range into temperature gears based on the allowable temperature gear control step; The device configuration unit is used to lock the target water temperature value of each temperature level based on the temperature level division result, and configure the background operation parameters of the multi-functional water dispenser based on the temperature level and the corresponding target water temperature value.