CN112120537A - Intelligent drinking water control method and system, intelligent terminal and computer storage medium - Google Patents

Intelligent drinking water control method and system, intelligent terminal and computer storage medium Download PDF

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Publication number
CN112120537A
CN112120537A CN202010965221.8A CN202010965221A CN112120537A CN 112120537 A CN112120537 A CN 112120537A CN 202010965221 A CN202010965221 A CN 202010965221A CN 112120537 A CN112120537 A CN 112120537A
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China
Prior art keywords
user
water
drinking water
intelligent
information
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Pending
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CN202010965221.8A
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Chinese (zh)
Inventor
杨彬
魏中科
全永兵
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Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
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Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
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Application filed by Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd filed Critical Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
Priority to CN202010965221.8A priority Critical patent/CN112120537A/en
Publication of CN112120537A publication Critical patent/CN112120537A/en
Priority to PCT/CN2021/118307 priority patent/WO2022053066A1/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/52Alarm-clock-controlled mechanisms for coffee- or tea-making apparatus ; Timers for coffee- or tea-making apparatus; Electronic control devices for coffee- or tea-making apparatus
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/52Alarm-clock-controlled mechanisms for coffee- or tea-making apparatus ; Timers for coffee- or tea-making apparatus; Electronic control devices for coffee- or tea-making apparatus
    • A47J31/521Alarm-clock-controlled mechanisms for coffee- or tea-making apparatus ; Timers for coffee- or tea-making apparatus; Electronic control devices for coffee- or tea-making apparatus the electronic control being performed over a network, e.g. by means of a computer or a handheld device
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/60Cleaning devices
    • A47J31/605Water filters

Abstract

The invention discloses an intelligent drinking water control method, an intelligent drinking water control system, an intelligent terminal and a computer storage medium, wherein the intelligent drinking water control method comprises the following steps: acquiring motion information of a user; when the fact that the user finishes the exercise is determined according to the obtained exercise information, calculating drinking water information required by the user according to the exercise information; and controlling the water dispenser to work according to the calculated drinking water information required by the user. The invention can provide corresponding drinking water according to the requirements of users, thereby solving the problems that the water and mineral substances which are lost when the users do exercises are too much, and the users can supplement water at one time or the quantity of the supplemented water is not enough to make up the energy consumed during the exercises under the unknown condition, so that the health of the users is influenced.

Description

Intelligent drinking water control method and system, intelligent terminal and computer storage medium
Technical Field
The invention relates to the technical field of intelligent drinking water, in particular to an intelligent drinking water control method, an intelligent drinking water control system, an intelligent terminal and a computer storage medium.
Background
The importance of water to human body is self-evident, and a proper amount of reasonable drinking water is directly related to human health, and drinking water is indispensable in daily life of people. When a user does exercise, the lost water and the corresponding lost substances are more, and if the user does not know, the user can replenish the purified water without replenishing the lost substances or the supplemented water amount is not enough to compensate the energy consumed during the exercise, the health of the user is affected.
Disclosure of Invention
The invention mainly aims to provide an intelligent drinking water control method, an intelligent drinking water control system, an intelligent terminal and a computer storage medium, and aims to provide corresponding drinking water for a user according to the requirement of the user.
In order to achieve the purpose, the invention provides an intelligent drinking water control method, which comprises the following steps:
acquiring motion information of a user;
when the fact that the user finishes the exercise is determined according to the obtained exercise information, calculating drinking water information needed by the user according to the exercise information; and
and controlling the water dispenser to work according to the calculated drinking water information required by the user.
Optionally, the intelligent drinking water control method further comprises:
and outputting the calculated drinking water information required by the user to a user terminal.
Optionally, after the step of outputting the calculated drinking water information required by the user to the user terminal, the intelligent drinking water control method further includes:
acquiring a water outlet control instruction triggered by a user;
and controlling the water dispenser to work according to a water outlet control instruction triggered by a user.
Optionally, the intelligent drinking water control method further comprises:
outputting the calculated drinking water information required by the user to a user terminal so that the user can adjust the drinking water information based on the user terminal;
and when the drinking water information adjusted by the user is received, controlling the water dispenser to work according to the drinking water information adjusted by the user.
Optionally, the step of acquiring the motion information of the user specifically includes:
detecting vital sign parameters of a user;
when the vital sign parameters of the user reach a first preset parameter threshold value, determining that the user starts to move, starting timing, and recording the vital sign parameters of the user during movement in real time;
when the vital sign parameters of the user reach a second preset parameter threshold value, determining that the user completes the movement;
and storing the user movement time obtained by timing and the vital sign parameters of the user during movement recorded in real time to obtain the movement information of the user.
Optionally, the drinking water information required by the user includes calories and mineral ions consumed by the user during exercise and an amount of water to be replenished, and the step of calculating the drinking water information required by the user according to the exercise information of the user when it is determined that the user has completed the exercise according to the acquired exercise information specifically includes:
acquiring stored user movement time and vital sign parameters recorded in real time when the user moves;
and calculating calories and mineral ions consumed by the user during exercise and the amount of water required to be supplemented according to the acquired user exercise time and the real-time recorded vital sign parameters of the user during exercise.
Optionally, the controlling the water dispenser to work according to the calculated drinking water information required by the user specifically includes:
acquiring the temperature, mineral substances and water consumption of drinking water required by the user in the drinking water information required by the user;
controlling an ultrafiltration membrane of the water dispenser to work so as to filter raw water to obtain mineral substances required by a user;
controlling a reverse osmosis membrane of the water dispenser to work so as to filter raw water to obtain purified water;
controlling an electromagnetic proportional valve of the water dispenser to work so as to mix the purified water with minerals required by a user and obtain mixed water with the water drinking amount required by the user;
and controlling a heating system of the water dispenser to heat the mixed water to the temperature of drinking water required by a user.
Optionally, the step of controlling the operation of the water dispenser according to the calculated drinking water information required by the user further includes:
and when the water outlet control instruction is received, controlling the water dispenser to discharge water according to the water drinking amount required by the user.
Optionally, after the step of acquiring the motion information of the user, the intelligent drinking water control method includes:
and when the user finishes the movement according to the acquired movement information, reading the stored drinking water information required by the user so as to control the water dispenser to work according to the read drinking water information.
The present invention also provides an intelligent terminal, including a memory, a processor, and a computer program stored on the memory and operable on the processor, wherein: the computer program, when being executed by the processor, carries out the steps of the intelligent drinking control method as described above.
Optionally, the intelligent terminal is one or a combination of a water dispenser, an intelligent wearable device or a cloud server.
The invention also provides a computer storage medium, wherein the computer storage medium is stored with an intelligent drinking water control program, and the intelligent drinking water control program realizes the steps of the intelligent drinking water control method when being executed by the processor.
The invention also provides an intelligent drinking water control system, which comprises:
a water dispenser;
the intelligent wearable device is used for acquiring motion information of a user;
the cloud server is in communication connection with the intelligent wearable device and the water dispenser respectively; the cloud server is used for calculating drinking water information required by the user according to the motion information when the fact that the user finishes the motion is determined according to the obtained motion information; and the number of the first and second groups,
and controlling the water dispenser to work according to the calculated drinking water information required by the user.
Optionally, the intelligent wearable device is specifically configured to detect a vital sign parameter of a user;
when the vital sign parameters of the user reach a first preset parameter threshold value, determining that the user starts to move, starting timing, and recording the vital sign parameters of the user during movement in real time;
when the vital sign parameters of the user reach a second preset parameter threshold value, determining that the user completes the movement;
and storing the user movement time obtained by timing and the vital sign parameters of the user during movement recorded in real time to obtain the movement information of the user.
Optionally, the water dispenser comprises:
the electric control assembly is used for acquiring the temperature, mineral substances and water consumption of drinking water required by the user in the drinking water information required by the user; and the number of the first and second groups,
controlling an ultrafiltration membrane of the water dispenser to work so as to filter raw water to obtain mineral substances required by a user;
controlling a reverse osmosis membrane of the water dispenser to work so as to filter raw water to obtain purified water;
controlling an electromagnetic proportional valve of the water dispenser to work so as to mix the purified water with minerals required by a user and obtain mixed water with the water drinking amount required by the user;
and controlling a heating system of the water dispenser to heat the mixed water to the temperature of drinking water required by a user.
The intelligent drinking water control method comprises the steps of obtaining motion information of a user, and calculating drinking water information required by the user according to the motion information when the user is determined to finish motion according to the obtained motion information; therefore, the water dispenser is controlled to work according to the calculated drinking water information required by the user, whether the user is moving or just moving can be judged according to the vital sign parameter condition of the user, and then the water dispenser is controlled to work to provide the required drinking water for the user. The invention can provide corresponding drinking water according to the requirements of users, thereby solving the problems that the water and mineral substances which are lost when the users do exercises are too much, and the users can supplement water at one time or the supplement amount is not enough to make up the energy consumed during the exercises under the unknown condition, so that the health of the users is influenced.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
FIG. 1 is a schematic flow chart illustrating an embodiment of an intelligent drinking water control method according to the present invention;
FIG. 2 is a schematic flow chart illustrating another embodiment of the intelligent drinking water control method according to the present invention;
FIG. 3 is a schematic flow chart illustrating an intelligent drinking water control method according to another embodiment of the present invention;
FIG. 4 is a schematic flow chart illustrating an intelligent drinking water control method according to another embodiment of the present invention;
FIG. 5 is a schematic view of a detailed process of one embodiment of step S100 in FIG. 1;
FIG. 6 is a schematic view of a detailed process of step S300 in FIG. 1;
fig. 7 is a schematic terminal structure diagram of an operating environment of an intelligent terminal according to an embodiment of the present invention;
FIG. 8 is a schematic structural diagram of an embodiment of the intelligent drinking water control system of the present invention.
The implementation, functional features and advantages of the objects of the present invention will be further explained with reference to the accompanying drawings.
Detailed Description
It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The invention provides an intelligent drinking water control method.
With the development of intelligent technology, household appliances are changed from single function oriented to service oriented and from single application scene to multi-application scene. Therefore, when paying attention to user function experience, the current intelligent household appliances can provide more reasonable and effective function experience according to user actual use scenes, user body states and the like, and the user feels good from the simple mode and is transited to the experience that the user feels comfortable. Research shows that the mineral ions in the water have different contents, so that different effects can be brought to human bodies, for example, after exercise, the bodies are in a fatigue state, and the water with more mineral contents needs to be supplemented, so that the fatigue state of the human bodies can be effectively relieved; therefore, the current state of a person can be obtained, and water with different mineral contents is prepared according to the state of the human body, so that the method is very important for improving the user experience and maintaining the health of the person. When a user does exercise, the lost water and the mineral content clamped in the water are more than the non-exercise time such as rest and study, and the water and the substances lost correspondingly need to be supplemented in time after the exercise, however, the user can not know that the water is supplemented at once or the supplemented amount is not enough to make up for the energy consumed during the exercise, so that the health of the user is affected.
In order to solve the above problems, referring to fig. 1, the present invention provides an intelligent drinking water control method, and a method for supplementing water and substances lost after exercise, in an embodiment of the present invention, the intelligent drinking water control method includes:
s100, acquiring motion information of a user;
in this embodiment, user's motion information can be realized through the sensor that sets up in intelligent wearing equipment such as intelligent bracelet, intelligent wrist-watch, wireless earphone, for example heart rate sensor, temperature sensor, pulse sensor, blood pressure sensor can detect user's vital sign parameter's sensor, and this embodiment is optional to be realized for heart rate sensor, and heart rate sensor can be heart rate sensors such as photoelectric type heart rate sensor, vibrating heart rate sensor. In the process of user movement, the heart rate sensor is attached to the skin of a user and converts heart rate signals into corresponding electric signals so as to obtain movement information of the user. Moreover, the user can wear the intelligent wearable device during sports, or can wear the intelligent wearable device continuously in daily life, for example, the vital sign parameters of the user are detected continuously during rest, work, learning and the like. The vital sign parameters of the user vary from work to rest (sport to rest, etc.), for example the heart rate, and may be presented with one value when the user is at rest and another value when the user is performing a sport, for example running, swimming. The vital sign parameters of the user are obtained through the sensor arranged in the intelligent wearable device, whether the user moves or not can be determined according to the change of the vital sign parameters of the user, and the specific numerical values of the vital sign parameters during movement, the change trend and the like can be determined, so that the movement information of the user can be obtained. Of course, in other embodiments, the exercise information of the user may also be obtained through an exercise device, such as a treadmill, etc., and the exercise information of the user may also be obtained through the start time, the end time, the amount of exercise, the type of exercise, etc. of the exercise of the user.
Step S200, when the fact that the user finishes the exercise is determined according to the obtained exercise information, calculating drinking water information required by the user according to the exercise information;
it can be understood that, during the non-exercise time of the user for rest or learning, working, etc., the change trend of the vital signs of the user is small and tends to be calm, and during the exercise time of the user for swimming, climbing, running, etc., the vital sign parameters change and are larger than the non-exercise time. According to the difference of physique, age, gender and the like, the vital sign parameters of each user during exercise are different, so that when the user is determined to move or not through the vital sign parameters, the parameters of the vital signs of a period of time can be recorded, the time is adjustable, the user can set according to own habits and preferences, and the setting is not limited. The embodiment can be selected as the parameters of the vital signs of the user within 24 hours, the parameter range with small change of the parameters of the vital signs of the user is determined according to the parameters of the vital signs of the user within 24 hours, the parameter range is used as basic information for judging the behavior of the user, and then the threshold value of the vital signs of the user in the motion state is set according to the information range of the parameters of the vital signs of the user in the non-motion state. When the vital sign parameter of the user changes and is larger than the threshold value, the user is determined to be doing physical exercise, and when the vital vibration-raising parameter of the user tends to be calm and falls back to the information range of the vital sign parameter during non-exercise, the user is determined to finish exercise. In the process of the user movement, besides obtaining the vital sign parameters of the user in real time, the time (the starting time, the ending time, the movement duration and the like) of the whole movement process of the user and the time (the morning, the daytime, the night, the evening and the like) of the movement of the user can be recorded. And calculating the moisture needed to be supplemented by the user during the exercise according to the exercise time of the user, the vital sign parameters during the exercise, the exercise type, the exercise time and the like.
And step S300, controlling the water dispenser to work according to the calculated drinking water information required by the user.
In this embodiment, the drinking water information required by the user may include a TDS (total dispersed solids, content of mineral ions), a temperature, a water intake, and the like, and the drinking water information required by the user is different according to different exercise time, different vital sign parameters during exercise, different exercise types, different exercise time, and the like, for example, the drinking water amount, the drinking water temperature, and the TDS required for jogging in the morning are different from the drinking water amount, the drinking water temperature, and the TDS required for jogging at night; different seasons, such as different amounts of water, different temperatures of drinking water, different TDS values, and different amounts of water needed for jogging in the morning in summer and winter; the water intake, the drinking water temperature and the TDS value required between 30min exercise and 1h exercise are different due to different exercise time lengths; the type of exercise, such as the amount of water, water temperature, TDS values required for jogging and swimming, may also vary; the amount of water, the temperature of drinking water, and the TDS value required may vary from one body constitution to another, from one age to another, and from one gender to another. Therefore, the drinking water information required by the user needs to be calculated according to the exercise information, that is, the drinking water amount, the drinking water temperature and the TDS value required by the user during exercise are calculated, so that the water dispenser is controlled to work, raw water is filtered, filtered water rich in the TDS value is mixed with purified water, the mixed water is heated to the temperature required by the user, and the like, so that water required by the user is provided for the user. The embodiment can customize the drinking water information required by the user according to the user motion information and the user identity individuation, and meets the drinking water requirement of the user.
The intelligent drinking water control method comprises the steps of obtaining motion information of a user, and calculating drinking water information required by the user according to the motion information when the user is determined to finish motion according to the obtained motion information; therefore, the water dispenser is controlled to work according to the calculated drinking water information required by the user, whether the user is moving or just moving can be judged according to the vital sign parameter condition of the user, and then the water dispenser is controlled to work to provide the required drinking water for the user. The invention can provide corresponding drinking water according to the requirements of users, thereby solving the problems that the water and mineral substances which are lost when the users do exercises are too much, and the users can supplement water at one time or the quantity of the supplemented water is not enough to make up the energy consumed during the exercises under the unknown condition, so that the health of the users is influenced.
Referring to fig. 2, in an embodiment, the intelligent drinking water control method further includes:
and S400, outputting the calculated drinking water information required by the user to a user terminal.
In this embodiment, the computational process of user's drinking water can be realized in the high in the clouds server, also can realize in intelligent wearing equipment, also can realize in the treater of water dispenser, this embodiment can be optionally realized in the high in the clouds server, the high in the clouds calculates the required mineral substance ion make-up volume of user, the water supplement volume, and can give the terminal after the required drinking water information of users such as the temperature that is fit for directly drinking water, for example, wearable equipment, cell-phone APP, intelligent stereo set, sports equipment's display device, for example, the treadmill is etc. sent, in order to make the user obtain the drinking water suggestion through user terminal, realize suggestion user drinking water.
Referring to fig. 3, in an embodiment, after the step of outputting the calculated drinking water information required by the user to the user terminal, the intelligent drinking water control method further includes:
s500, acquiring a water outlet control instruction triggered by a user;
and step S600, controlling the water dispenser to work according to a water outlet control instruction triggered by a user.
In this embodiment, after the drinking water information is sent to the user terminal, the user may also determine the drinking water information, such as the drinking water amount, the drinking water temperature, the working time of the water dispenser, and the like, through the user terminal. After the user terminal sends prompt information to the user, the user can send a control instruction for controlling the water dispenser to work through the user terminal, and the fact that the user knows and determines the water drinking amount required by the user is represented. Or after the drinking water information is sent to the user terminal for a preset time, for example, within 2min, if the water outlet control cancelling instruction sent by the user terminal is not received, it can be determined that the user knows the drinking water information, and the water dispenser is controlled to work according to the calculated drinking water information required by the user.
Referring to fig. 4, in an embodiment, the intelligent drinking water control method further includes:
step S700, outputting the calculated drinking water information required by the user to a user terminal so that the user can adjust the drinking water information based on the user terminal;
and step S800, when the drinking water information adjusted by the user is received, controlling the water dispenser to work according to the drinking water information adjusted by the user.
It can be understood that, during the exercise, the user may need to have a short rest, or need to suspend the exercise for a short time due to an unexpected situation, and then need to continue the exercise, the sensor arranged in the intelligent wearable device detects that the user stops the exercise, and starts to calculate the water drinking amount required by the user, and sends the water drinking information to the user terminal. At this time, the user can adjust drinking water information, such as water drinking amount, drinking water temperature, time for starting the water dispenser, and the like, through the user terminal, that is, the user can adjust drinking water information required by the user according to practical application. Of course, in other embodiments, after the actual exercise of the user is completed, the user may also adjust the drinking water information, such as adjusting the drinking water temperature, the drinking water amount, and the like, according to the personal preference and habit based on the user terminal.
Referring to fig. 5, in an embodiment, the step of acquiring the motion information of the user specifically includes:
step S110, detecting vital sign parameters of a user;
in this embodiment, the vital sign parameter can include but not limited to blood pressure, rhythm of the heart, temperature, pulse etc. and the vital sign parameter can detect through the intelligent wearing equipment that the user dressed for a long time, also can adopt intelligent wearing equipment that the user dressed when moving such as motion earphone, motion wrist-watch to detect.
Step S120, when the vital sign parameters of the user reach a first preset parameter threshold value, determining that the user starts to move, starting timing, and recording the vital sign parameters of the user during movement in real time;
in this embodiment, the first preset parameter threshold may be a threshold of any one of blood pressure, heart rate, temperature, and pulse, or may be a comprehensive parameter threshold of multiple combinations of two or more of blood pressure, heart rate, temperature, and pulse. When the intelligent wearable device worn by the user for a long time is used for detection, the vital sign parameters of the user can be detected in real time, a database is established for the user, and a first preset parameter threshold value representing the starting motion of the user is set according to the work and rest habits, the motion habits and the body characteristics of the user. When detecting through the intelligent wearing equipment that the user wore when moving, the user can set up the first preset parameter threshold value that the characterization user began the motion based on intelligent wearing equipment, for example the user types first preset parameter threshold value by oneself, or after the user wore motion earphone, motion wrist-watch, detects the vital sign parameter and begins timing, confirms that the vital sign parameter reaches first preset parameter threshold value through whether reaching the time of predetermineeing. Of course, in other embodiments, the user-specific gesture may be detected by the smart wearable device or the identity blood pressure, heart rate, temperature, and pulse recognition may be performed to match the first preset parameter threshold. Therefore, when the vital sign parameters of the user reach a first preset parameter threshold value, the user can be determined to start to move, after the user starts to move, the vital sign parameters such as blood pressure, heart rate, temperature and pulse of the user during movement are recorded in real time, timing is started, and the movement starting time, the movement type and the like of the user are recorded. In this embodiment, after the non-exercise state enters the exercise state, parameters such as blood pressure, heart rate, temperature, and pulse may increase, and after the exercise state enters the non-exercise state, parameters such as blood pressure, heart rate, temperature, and pulse may tend to decrease to normal values. Of course, in other embodiments, if other vital sign parameters are decreased after entering the non-exercise state from the exercise state, and parameters such as blood pressure, heart rate, temperature, and pulse tend to increase to normal values after entering the non-exercise state from the exercise state, in this embodiment, reaching the first preset parameter threshold may be understood as being less than or equal to the first preset parameter threshold, and reaching the second parameter threshold may be understood as being greater than or equal to the second parameter threshold.
Step S130, when the vital sign parameters of the user reach a second preset parameter threshold value, determining that the user completes the movement;
in this embodiment, vital sign parameters of the user, such as blood pressure, heart rate, temperature, and pulse, are different in the exercise state and the non-exercise state, and the first preset parameter threshold and the second preset parameter threshold may be set according to an information range of the vital sign parameters in the non-exercise state, so that when the vital sign parameters of the user change and reach the threshold, it is determined that the user is performing physical exercise, and when the vital sign parameters of the user change to be calm and reach the second preset parameter threshold, that is, fall back to the information range of the vital sign parameters in the non-exercise state, it is determined that the user completes exercise. The first preset parameter threshold and the second preset parameter threshold can be set to be the same or different, and when the first preset parameter threshold and the second preset parameter threshold are set to be different, the first preset parameter threshold can be smaller than the second preset parameter threshold. Therefore, in order to improve the accuracy of the detection, the first preset parameter threshold may be smaller than the second preset parameter threshold.
Step S140, storing the user movement time obtained by timing and the vital sign parameters recorded in real time during the user movement to obtain the movement information of the user.
In the implementation, by obtaining the exercise starting time, the exercise duration and the exercise vital sign parameters of the user, the water content required by the user during exercise can be calculated according to the exercise time, the exercise vital sign parameters, the exercise type, the exercise time and the like of the user, the exercise information is used for calculating the drinking water information required by the user during exercise, namely the drinking water volume, the drinking water temperature and the TDS value required by the user during exercise are calculated, and the water dispenser is controlled to work.
In an embodiment, the drinking water information required by the user includes calories and mineral ions consumed by the user during exercise and an amount of water to be replenished, and the step of calculating the drinking water information required by the user according to the exercise information of the user when it is determined that the user has completed the exercise according to the acquired exercise information specifically includes:
acquiring stored user movement time and vital sign parameters recorded in real time when the user moves;
and calculating calories and mineral ions consumed by the user during exercise and the amount of water required to be supplemented according to the acquired user exercise time and the real-time recorded vital sign parameters of the user during exercise.
In this embodiment, according to the exercise duration of the user, the exercise type and the time of the user during exercise, the calories and mineral ions consumed by the user and the amount of water to be replenished are different, and therefore replenishment is required according to actual consumption.
Referring to fig. 6, in an embodiment, the controlling the water dispenser to work according to the calculated drinking water information required by the user specifically includes:
it can be understood that the water dispenser is provided with a filtering device, the filtering device is provided with an ultrafiltration membrane, a reverse osmosis membrane and the like, and the water dispenser is also provided with an electromagnetic proportional valve and a heating system.
Step S310, obtaining the temperature, mineral substances and water consumption of drinking water required by the user in the drinking water information required by the user;
step S320, controlling an ultrafiltration membrane of the water dispenser to work so as to filter raw water to obtain mineral substances required by a user;
s330, controlling a reverse osmosis membrane of the water dispenser to work so as to filter raw water to obtain purified water;
step S340, controlling an electromagnetic proportional valve of the water dispenser to work so as to mix the purified water with minerals required by a user and obtain mixed water with the water drinking amount required by the user;
and S350, controlling a heating system of the water dispenser to heat the mixed water to the temperature of drinking water required by a user.
In this embodiment, after the drinking water information of the user, that is, the temperature, minerals and the drinking water volume of the drinking water are obtained, corresponding components in the water dispenser are controlled to operate, so that the raw water is primarily filtered, after purified water is obtained, useful mineral ions are retained through the ultrafiltration membranes, and final pure water is obtained through the reverse osmosis membrane, then the pure water and the water containing the mineral ions are mixed through the electromagnetic proportional valve, heated to the temperature of the drinking water required by the user, and then collected to the water outlet, so that the drinking water with the required drinking water volume is provided for the user.
In an embodiment, the step of controlling the operation of the water dispenser according to the calculated drinking water information required by the user further includes:
and when the water outlet control instruction is received, controlling the water dispenser to discharge water according to the water drinking amount required by the user.
In this embodiment, the water dispenser is further provided with a flow meter, which can realize a quantitative water outlet function, so that water is discharged after the water dispenser works and produces drinking water required by a user. The water outlet control instruction can be a water outlet instruction sent by a user through a mobile phone, a remote control special for controlling the water dispenser, an intelligent wearable device or a sports device capable of carrying out wireless communication, and the water outlet control instruction can be realized in the forms of voice, touch keys or specific gestures and the like. Or, the user can manually open a button arranged on the drinking water, or the drinking water machine automatically discharges water when the user places the container on a water receiving tray of the drinking water machine.
In one embodiment, after the step of acquiring the motion information of the user, the intelligent drinking water control method includes:
and when the user finishes the movement according to the acquired movement information, reading the stored drinking water information required by the user so as to control the water dispenser to work according to the read drinking water information.
It can be understood that, the user can also store the personal habits and the drinking habits of the user when forming personal sports habits, such as jogging at fixed time and fixed point and yoga, and when the sports time, the sports duration, the sports type and the like of the user do not change, the drinking water machine can be directly controlled according to the stored drinking water information, so that the calculation amount of the cloud server, the processor of the drinking water machine and the like is reduced, and the work efficiency of the drinking water machine is improved.
The present invention also provides an intelligent terminal, including a memory, a processor, and a computer program stored on the memory and operable on the processor, wherein: the computer program, when being executed by the processor, carries out the steps of the intelligent drinking control method as described above.
The intelligent terminal of the embodiment of the invention can be a PC, and can also be a mobile intelligent terminal device with a display function, such as an intelligent mobile phone, a tablet computer, an electronic book reader, an MP4(Moving Picture Experts Group Audio Layer IV) player, a portable computer and the like. As shown in fig. 1, the smart terminal may include a processor 1001 (e.g., CPU), a communication bus 1002, a user interface 1003, a network interface 1004, and a memory 1005. The communication bus 1002 is used for realizing connection communication among the components; the user interface 1003 may include a Display screen (Display), an input unit such as a Keyboard (Keyboard); the network interface 1004 may optionally include a standard wired interface, a wireless interface (e.g., WI-FI interface); the memory 1005 may be a high-speed RAM memory, or may be a non-volatile memory (e.g., a magnetic disk memory), and optionally, the memory 1005 may be a storage device independent of the processor 1001.
Those skilled in the art will appreciate that the smart terminal architecture of the smart terminal hardware operating environment illustrated in fig. 7 is not intended to be limiting of the smart terminal of the present invention and may include more or fewer components than those illustrated, or some components may be combined, or a different arrangement of components.
In the intelligent terminal shown in fig. 7, the network interface 1004 is mainly used for connecting to a cloud server and performing data communication with the cloud server; the network interface 1004 is also used to connect to provide a cross-contamination prevention platform that includes generic function modules for providing various service functions. The user interface 1003 may be connected to a client (user side) and performs data communication with the client; and the processor 1001 may be configured to call the intelligent drinking water control program stored in the memory 1005, such as the steps of the intelligent drinking water control method described above.
In one embodiment, the intelligent terminal is one or a combination of a water dispenser, an intelligent wearable device or a cloud server.
In this embodiment, it can be understood that, in the water dispenser, the intelligent wearable device and the cloud server, processors are all provided, and the processors can acquire the motion information of the user according to the intelligent wearable device provided with the sensor, and then calculate the drinking water information of the user according to the motion information of the user. That is, this embodiment can gather and calculate user's motion information through intelligent wearing equipment to calculate and obtain user's drinking water information, and directly control the work of water dispenser according to the drinking water information that obtains calculates. Or after the motion information of the user is collected through the intelligent wearable device and is output to the cloud server, the drinking water information required by the user is calculated through the cloud server, so that the cloud server directly controls the water dispenser to work according to the drinking water information obtained through calculation, and the drinking water information obtained through calculation is sent to the terminal, such as the intelligent wearable device, capable of prompting the user to drink water. Or after the motion information of the user is collected through the intelligent wearable device, the motion information is output to the water dispenser, the drinking water information required by the user is calculated through the water dispenser, the water dispenser can provide required drinking water for the user according to the drinking water information obtained through calculation, the water dispenser can also send the drinking water information obtained through calculation to terminals, such as the intelligent wearable device, capable of prompting the user to drink water, and meanwhile the drinking water information obtained through calculation can be sent to the cloud server so as to be provided for the cloud storage server.
The invention also provides a computer storage medium, wherein the computer storage medium is stored with an intelligent drinking water control program, and the intelligent drinking water control program realizes the steps of the intelligent drinking water control method when being executed by the processor.
The method for implementing the intelligent drinking water control program when executed can refer to the embodiments of the intelligent drinking water control method of the present invention, and will not be described herein again.
The invention further provides an intelligent drinking water control system.
Referring to fig. 8, the intelligent drinking water control system includes:
a water dispenser 30;
in this embodiment, the water dispenser 30 is provided with a filtering device, the filtering device is provided with an ultrafiltration membrane, a reverse osmosis membrane and the like, and the water dispenser 30 is further provided with an electromagnetic proportional valve and a heating system. After the drinking water information of the user, that is, the temperature, minerals and the drinking water amount of the drinking water are obtained, the water dispenser 30 can primarily filter the raw water to obtain purified water, and then the purified water respectively passes through the ultrafiltration membrane to retain useful mineral ions and passes through the reverse osmosis membrane to obtain final purified water, and then the purified water and the water containing the mineral ions are mixed through the electromagnetic proportional valve and then are gathered to the water outlet.
The intelligent wearable device 10 is used for acquiring motion information of a user;
intelligent wearing equipment 10 can be intelligent bracelet, intelligent wrist-watch, wireless earphone etc. is provided with the sensor in intelligent wearing equipment 10, for example heart rate sensor, temperature sensor, pulse sensor, blood pressure sensor etc. can detect user's vital sign parameter. In the process of user movement, the rate sensor is attached to the skin of the user and converts the heart rate signals into corresponding electric signals so as to obtain the movement information of the user. Moreover, the user may wear the intelligent wearable device 10 during exercise, or may wear the intelligent wearable device 10 continuously in daily life, for example, to detect the vital sign parameters of the user continuously during rest, work, learning, and the like.
The cloud server 30 is in communication connection with the intelligent wearable device 10 and the water dispenser 30 respectively; the cloud server 30 is configured to calculate drinking water information required by the user according to the motion information when it is determined that the user has completed the motion according to the obtained motion information; and the number of the first and second groups,
and controlling the water dispenser 30 to work according to the calculated drinking water information required by the user.
In this embodiment, the cloud server 30 can be according to the required drinking water information of motion information calculation user, also calculate required drinking water volume, drinking water temperature, TDS value of user when the motion, and then control water dispenser 30 work to filter the raw water, mix the water that is rich in the TDS value after will filtering with the pure water, and heat the water after will mixing to the required temperature of user etc. provides the required water of user for the user. The embodiment can customize the drinking water information required by the user according to the user motion information and the user identity individuation, and meets the drinking water requirement of the user. After calculating the drinking water information required by the user, the cloud server 30 sends the drinking water information to the water dispenser 30 to control the water dispenser 30 to work. Cloud server 30 can also send drinking water information to intelligent wearing equipment 10 or have the sports equipment of suggestion such as pronunciation, demonstration, can also send drinking water information to other electrical equipment, and cloud server 30 and other electrical equipment wireless connection inform the user with user drinking water information through intelligent wearing equipment 10, sports equipment and other electrical equipment etc. to remind the user to drink water.
Referring to fig. 8, in an embodiment, the smart wearable device 10 is specifically configured to detect a vital sign parameter of a user;
when the vital sign parameters of the user reach a first preset parameter threshold value, determining that the user starts to move, starting timing, and recording the vital sign parameters of the user during movement in real time;
when the vital sign parameters of the user reach a second preset parameter threshold value, determining that the user completes the movement;
and storing the user movement time obtained by timing and the vital sign parameters of the user during movement recorded in real time to obtain the movement information of the user.
In this embodiment, vital sign parameters of the user, such as blood pressure, heart rate, temperature, and pulse, are different in the exercise state and the non-exercise state, and the first preset parameter threshold and the second preset parameter threshold may be set according to an information range of the vital sign parameters in the non-exercise state, so that when the vital sign parameters of the user change and reach the threshold, it is determined that the user is performing physical exercise, and when the vital sign parameters of the user change to be calm and reach the second preset parameter threshold, that is, fall back to the information range of the vital sign parameters in the non-exercise state, it is determined that the user completes exercise. The first preset parameter threshold and the second preset parameter threshold can be set to be the same or different, and when the first preset parameter threshold and the second preset parameter threshold are set to be different, the first preset parameter threshold can be smaller than the second preset parameter threshold. Therefore, in order to improve the accuracy of the detection, the first preset parameter threshold may be smaller than the second preset parameter threshold. By obtaining the exercise starting time, exercise duration and the exercise vital sign parameters of the user, the exercise information required by the user can be calculated according to the exercise time, the exercise vital sign parameters, the exercise type, the exercise time and the like of the user, the water content required by the user during exercise can be calculated, the exercise information is calculated, and the water intake, the water drinking temperature and the TDS value required by the user during exercise can be calculated, so that the water dispenser 30 is controlled to work.
Referring to fig. 8, in one embodiment, the water dispenser 30 includes:
an electric control component (not shown) for obtaining the drinking water information required by the user, the temperature, the mineral substances and the drinking water amount required by the user; and the number of the first and second groups,
controlling an ultrafiltration membrane of the water dispenser 30 to work so as to filter raw water to obtain mineral substances required by a user;
controlling a reverse osmosis membrane of the water dispenser 30 to work so as to filter raw water to obtain purified water;
controlling an electromagnetic proportional valve of the water dispenser 30 to work so as to mix the purified water with minerals required by a user and obtain mixed water with a water drinking amount required by the user;
the heating system of the water dispenser 30 is controlled to heat the mixed water to the temperature required by the user for drinking water.
In this embodiment, the electronic control component is provided with a processor, a memory, a wireless communication module, and the like, the processor is a control center of the water dispenser 30, the wireless communication module, such as a bluetooth module, a WIFI module, an infrared transceiver module, and the like, is used for receiving drinking water information, user control instructions, and the like sent by the cloud server 30, and the like, and is connected with various parts of the whole water dispenser 30 by using various interfaces and lines, and executes various functions and processing data of the water dispenser 30 by running or executing software programs and/or modules stored in the memory and calling data stored in the memory, thereby integrally monitoring the water dispenser 30. A processor may include one or more processing units; preferably, the processor may integrate an application processor, which mainly handles operating systems, user interfaces, application programs, etc., and a modem processor, which mainly handles wireless communications. It will be appreciated that the modem processor described above may not be integrated into the processor. The electric control assembly can also be provided with a driving device to drive the electromagnetic proportional valve, the filtering device and other parts of the water dispenser to work.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or system that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or system. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other like elements in a process, method, article, or system that comprises the element.
The above-mentioned serial numbers of the embodiments of the present invention are merely for description and do not represent the merits of the embodiments.
Through the above description of the embodiments, those skilled in the art will clearly understand that the method of the above embodiments can be implemented by software plus a necessary general hardware platform, and certainly can also be implemented by hardware, but in many cases, the former is a better implementation manner. Based on such understanding, the technical solution of the present invention may be embodied in the form of a software product, which is stored in a storage medium (e.g., ROM/RAM, magnetic disk, optical disk) as described above and includes instructions for enabling a terminal device (e.g., a mobile phone, a computer, a server, an air conditioner, or a network device) to execute the method according to the embodiments of the present invention.
The above description is only an alternative embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications and equivalents of the present invention, which are made by the contents of the present specification and the accompanying drawings, or directly/indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (15)

1. An intelligent drinking water control method is characterized by comprising the following steps:
acquiring motion information of a user;
when the fact that the user finishes the exercise is determined according to the obtained exercise information, calculating drinking water information needed by the user according to the exercise information; and
and controlling the water dispenser to work according to the calculated drinking water information required by the user.
2. The intelligent drinking water control method of claim 1, further comprising:
and outputting the calculated drinking water information required by the user to a user terminal.
3. The intelligent drinking water control method according to claim 2, wherein after the step of outputting the calculated drinking water information required by the user to a user terminal, the intelligent drinking water control method further comprises:
acquiring a water outlet control instruction triggered by a user;
and controlling the water dispenser to work according to a water outlet control instruction triggered by a user.
4. The intelligent drinking water control method of claim 1, further comprising:
outputting the calculated drinking water information required by the user to a user terminal so that the user can adjust the drinking water information based on the user terminal;
and when the drinking water information adjusted by the user is received, controlling the water dispenser to work according to the drinking water information adjusted by the user.
5. The intelligent drinking water control method according to claim 1, wherein the step of obtaining the motion information of the user specifically comprises:
detecting vital sign parameters of a user;
when the vital sign parameters of the user reach a first preset parameter threshold value, determining that the user starts to move, starting timing, and recording the vital sign parameters of the user during movement in real time;
when the vital sign parameters of the user reach a second preset parameter threshold value, determining that the user completes the movement;
and storing the user movement time obtained by timing and the vital sign parameters of the user during movement recorded in real time to obtain the movement information of the user.
6. The intelligent drinking water control method according to claim 5, wherein the drinking water information required by the user includes calories and mineral ions consumed by the user's exercise and an amount of water to be replenished, and the step of calculating the drinking water information required by the user based on the exercise information of the user when it is determined that the user has completed the exercise based on the acquired exercise information specifically includes:
acquiring stored user movement time and vital sign parameters recorded in real time when the user moves;
and calculating calories and mineral ions consumed by the user during exercise and the amount of water required to be supplemented according to the acquired user exercise time and the real-time recorded vital sign parameters of the user during exercise.
7. The intelligent drinking water control method according to claim 1, wherein the controlling the operation of the water dispenser according to the calculated drinking water information required by the user specifically comprises:
acquiring the temperature, mineral substances and water consumption of drinking water required by the user in the drinking water information required by the user;
controlling an ultrafiltration membrane of the water dispenser to work so as to filter raw water to obtain mineral substances required by a user;
controlling a reverse osmosis membrane of the water dispenser to work so as to filter raw water to obtain purified water;
controlling an electromagnetic proportional valve of the water dispenser to work so as to mix the purified water with minerals required by a user and obtain mixed water with the water drinking amount required by the user;
and controlling a heating system of the water dispenser to heat the mixed water to the temperature of drinking water required by a user.
8. The intelligent drinking water control method according to claim 7, wherein the step of controlling the operation of the water dispenser according to the calculated drinking water information required by the user further comprises:
and when the water outlet control instruction is received, controlling the water dispenser to discharge water according to the water drinking amount required by the user.
9. The intelligent drinking control method according to any one of claims 1 to 8, wherein after the step of obtaining the motion information of the user, the intelligent drinking control method comprises:
and when the user finishes the movement according to the acquired movement information, reading the stored drinking water information required by the user so as to control the water dispenser to work according to the read drinking water information.
10. An intelligent terminal, comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, wherein: the computer program when executed by the processor realizes the steps of the intelligent hydration control method according to any of the claims 1-9.
11. The intelligent terminal according to claim 10, wherein the intelligent terminal is one or more of a water dispenser, an intelligent wearable device and a cloud server.
12. A computer storage medium having an intelligent drinking water control program stored thereon, the intelligent drinking water control program when executed by a processor implementing the steps of the intelligent drinking water control method according to any one of claims 1 to 9.
13. The utility model provides an intelligence drinking water control system which characterized in that, intelligence drinking water control system includes:
a water dispenser;
the intelligent wearable device is used for acquiring motion information of a user;
the cloud server is in communication connection with the intelligent wearable device and the water dispenser respectively; the cloud server is used for calculating drinking water information required by the user according to the motion information when the fact that the user finishes the motion is determined according to the obtained motion information; and the number of the first and second groups,
and controlling the water dispenser to work according to the calculated drinking water information required by the user.
14. The intelligent drinking control system of claim 13, wherein the intelligent wearable device is specifically configured to detect vital sign parameters of a user;
when the vital sign parameters of the user reach a first preset parameter threshold value, determining that the user starts to move, starting timing, and recording the vital sign parameters of the user during movement in real time;
when the vital sign parameters of the user reach a second preset parameter threshold value, determining that the user completes the movement;
and storing the user movement time obtained by timing and the vital sign parameters of the user during movement recorded in real time to obtain the movement information of the user.
15. The intelligent drinking control system of claim 13, wherein the water dispenser comprises:
the electric control assembly is used for acquiring the temperature, mineral substances and water consumption of drinking water required by the user in the drinking water information required by the user; and the number of the first and second groups,
controlling an ultrafiltration membrane of the water dispenser to work so as to filter raw water to obtain mineral substances required by a user;
controlling a reverse osmosis membrane of the water dispenser to work so as to filter raw water to obtain purified water;
controlling an electromagnetic proportional valve of the water dispenser to work so as to mix the purified water with minerals required by a user and obtain mixed water with the water drinking amount required by the user;
and controlling a heating system of the water dispenser to heat the mixed water to the temperature of drinking water required by a user.
CN202010965221.8A 2020-09-14 2020-09-14 Intelligent drinking water control method and system, intelligent terminal and computer storage medium Pending CN112120537A (en)

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