Method and device for intelligent control of a water heating appliance

By collecting user data through wearable devices, the pre-preparation operation of hot water equipment can be intelligently controlled, solving the problems of users waiting for water to boil and insensitive temperature adjustment, thus improving the flexibility and experience of bathing.

CN116255743BActive Publication Date: 2026-03-03YUNMI HULIAN TECH (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202111502023.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-09
Publication Date
2026-03-03
Estimated Expiration
2041-12-09

AI Technical Summary

Technical Problem

Existing smart water heaters require users to turn them on temporarily and wait for the water to heat up when they need to take a shower, which lacks flexibility and the temperature adjustment is not sensitive enough, affecting the user experience.

Method used

By collecting users' body indicators and daily routine data through wearable devices, the system can pre-control the hot water equipment to perform pre-preparation operations, such as preheating and pre-discharging water, and adjust equipment parameters according to the user's real-time location and status to provide intelligent bathing services.

Benefits of technology

Reduce user waiting time, improve the user experience of hot water equipment, ensure flexibility and safety in the bathing process, and provide personalized bathing services.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of method and device for intelligently controlling hot water equipment, the method includes: when detecting that wearable equipment is in wearing state, based on the first data of target user collected by wearable equipment, first data includes the index data corresponding to the body index of target user;Target data corresponding to target user is obtained, target data includes the rest habit data associated with target user, rest habit data includes the time information of target user daily bath and the parameter information corresponding to the hot water equipment used by target user when bathing;According to target data and index data, control the target hot water equipment pre-allocated for target user to execute matching pre-preparation operation at preset time.
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Description

Technical Field

[0001] This invention relates to the field of low-power transmission technology, and in particular to a method and apparatus for intelligent control of hot water equipment. Background Technology

[0002] With the popularization and development of smart home appliances, they have begun to permeate people's daily lives, such as smart robot vacuums, smart TVs, smart refrigerators, and smart water heaters. However, the level of intelligence in smart homes still needs improvement. Smart water heaters, which are frequently used in daily life, are a typical example and still have the following inconveniences:

[0003] When users need to take a shower, they often have to turn on the smart water heater temporarily to heat water, which requires waiting for a while; or the smart water heater will start heating water at a fixed time using a timer, which lacks flexibility; or they need to manually adjust the water temperature while showering, and if the temperature adjustment function of the smart water heater is not sensitive enough, this manual adjustment process can be time-consuming. All of these problems greatly affect the user experience of water heaters. Therefore, it is particularly important to achieve intelligent control of water heating equipment to improve the user experience. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a method and apparatus for intelligent control of hot water equipment, which can control the hot water equipment to perform corresponding operations in advance based on the indicator data of the wearer collected by the wearable device, which helps to save the user's bathing time and thus improves the user's experience of using the hot water equipment.

[0005] To address the aforementioned technical problems, the first aspect of this invention discloses a method for intelligently controlling a hot water device, the method comprising:

[0006] When the wearable device is detected to be in a wearing state, the first data of the target user is collected based on the wearable device. The first data includes the indicator data corresponding to the target user's body indicators. The target user is the user wearing the wearable device.

[0007] Obtain target data corresponding to the target user, the target data including daily routine data associated with the target user, the daily routine data including the time information of the target user's daily bathing and the parameter information of the hot water equipment used by the target user when bathing;

[0008] Based on the target data and the indicator data, the target hot water equipment pre-assigned to the target user is controlled to perform a matching pre-preparation operation at a preset time. The difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time.

[0009] The pre-preparation operations include preheating and / or pre-draining.

[0010] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0011] The real-time location of the wearable device is collected within the time range corresponding to the time information, and the target user is detected to have entered the bathing scene corresponding to the target hot water device based on the real-time location of the wearable device.

[0012] When the target user is detected to enter the bathing scene corresponding to the target hot water device, the wear status change of the wearable device is collected, and it is determined whether the wear status change indicates that the wearable device has changed from a worn state to an unworn state.

[0013] When it is determined that the wearable device has changed from a worn state to an unworn state, a first control command is generated for the target hot water device based on the parameter information and the indicator data. The first control command is used to control the target hot water device to perform the following operations:

[0014] The target hot water device senses whether anyone has entered the bathing area corresponding to the target hot water device. When someone is sensed to have entered, the device executes a matching bathing service operation according to the control command.

[0015] As an optional implementation, in the first aspect of the present invention, before controlling the hot water equipment pre-assigned to the target user to perform a matching pre-preparation operation at a preset time based on the target data and the indicator data, the method further includes:

[0016] Determine the equipment type corresponding to the target hot water equipment pre-assigned to the target user, wherein the equipment type includes shower type, bathtub type, or shower-bathtub hybrid type;

[0017] Based on the device type and the parameter information, determine the operations that the target hot water device can perform in advance for the target user, as pre-preparation operations.

[0018] As an optional implementation, in the first aspect of the present invention, the daily routine data further includes the target user's daily exercise volume; the method further includes:

[0019] The wearable device is used to collect the target user's movement trajectory and record the duration the target user wears the wearable device.

[0020] The target exercise volume of the target user is determined based on the movement trajectory and the wearing duration.

[0021] When it is determined that the difference between the value corresponding to the target exercise volume and the value corresponding to the daily exercise volume is greater than a preset value threshold, the data change of the indicator data corresponding to the target user after the target exercise volume is collected and analyzed to obtain the recovery time required for the target user's indicator data to change to the predetermined indicator threshold after the target exercise volume.

[0022] Based on the recovery time and the time information, determine the target time for the target user to take a shower on that day, and update the time information to the target time.

[0023] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0024] Based on the seasonal information corresponding to the current date, the target data corresponding to the current season in the daily routine data of the target user is determined, and historical data is obtained;

[0025] Determine whether the historical data matches the target data; if it is determined that the historical data does not match the target data, update the target data based on the historical data.

[0026] When it is determined that the historical data matches the target data, it is determined whether the obtained maximum temperature difference value for the day is greater than the preset temperature difference threshold.

[0027] When it is determined that the temperature difference value is greater than the preset temperature difference threshold, the target data is updated according to the temperature difference value.

[0028] As an optional implementation, in the first aspect of the present invention, when it is determined that the change in the wearing state does not indicate that the wearable device has changed from a worn state to an unworn state, and the target hot water device is detected to be in a working state, the method further includes:

[0029] The wearable device collects data changes corresponding to the target user's indicator data.

[0030] When the data change is greater than or equal to a predetermined safety data threshold, a second control command is generated for the target hot water device based on the changed index data. The second control command is used to control the target hot water device to adjust the parameter information.

[0031] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0032] During the process of the target user taking a shower using the target hot water device, the corresponding working time of the hot water device is recorded;

[0033] Determine whether the working time is greater than or equal to a preset time threshold;

[0034] When it is determined that the working time is greater than or equal to the preset time threshold, the wearable device collects environmental parameters corresponding to the target scene, including the oxygen content corresponding to the target scene.

[0035] Determine whether the oxygen content is lower than a preset oxygen content threshold;

[0036] When it is determined that the oxygen content is lower than the preset oxygen content threshold, the outlet water temperature and / or outlet water volume of the target hot water equipment are adjusted.

[0037] A second aspect of the present invention discloses an intelligent control device for a hot water equipment, the device comprising:

[0038] The first acquisition module is used to acquire first data of a target user based on the wearable device when the wearable device is detected to be in a wearing state. The first data includes indicator data corresponding to the target user's body indicators. The target user is the user wearing the wearable device.

[0039] The first processing module is used to acquire target data corresponding to the target user. The target data includes daily routine data associated with the target user. The daily routine data includes the time information of the target user's daily bathing and the parameter information of the hot water equipment used by the target user when bathing.

[0040] The first processing module is further configured to control the target hot water device pre-assigned to the target user to perform a matching pre-preparation operation at a preset time based on the target data and the indicator data, wherein the difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time.

[0041] The pre-preparation operations include preheating and / or pre-draining.

[0042] As an optional implementation, in a second aspect of the present invention, the first acquisition module is further configured to acquire the real-time location of the wearable device within the time range corresponding to the time information;

[0043] The first processing module is further configured to detect whether the target user has entered the bathing scene corresponding to the target hot water device based on the real-time location of the wearable device;

[0044] The first acquisition module is also used to acquire the wear status change of the wearable device when the first processing module detects that the target user has entered the bathing scene corresponding to the target hot water device;

[0045] The device further includes:

[0046] The first judgment module is used to determine whether the wearable state change collected by the first acquisition module indicates that the wearable device has changed from a worn state to an unworn state.

[0047] The second processing module is configured to, when the first judgment module determines that the change in wearing status indicates that the wearable device has changed from a worn state to an unworn state, generate a first control command for the target hot water device based on the parameter information and the indicator data. The first control command is used to control the target hot water device to perform the following operations:

[0048] The target hot water device senses whether anyone has entered the bathing area corresponding to the target hot water device. When someone is sensed to have entered, the device executes a matching bathing service operation according to the control command.

[0049] As an optional implementation, in a second aspect of the invention, the apparatus further includes:

[0050] The determining module is used to determine the equipment type corresponding to the target hot water equipment pre-assigned to the target user before the first processing module controls the hot water equipment pre-assigned to the target user to perform a matching pre-preparation operation at a preset time based on the target data and the indicator data. The equipment type includes shower type, bathtub type or shower-bathtub hybrid type.

[0051] The determining module is further configured to determine, based on the device type and the parameter information, the operations that the target hot water device can perform in advance for the target user, as pre-preparation operations.

[0052] As an optional implementation, in a second aspect of the present invention, the daily routine data further includes the target user's daily exercise volume;

[0053] The first acquisition module is also used to acquire the movement trajectory of the target user based on the wearable device;

[0054] The second processing module is further configured to record the wearing time of the target user wearing the wearable device based on the wearable device;

[0055] The second processing module is further configured to evaluate the target user's target amount of exercise based on the motion trajectory collected by the first acquisition module and the wearing duration;

[0056] The second processing module is further configured to, when it is determined that the difference between the value corresponding to the target amount of exercise and the value corresponding to the daily amount of exercise is greater than a preset value threshold, collect and analyze the data change of the indicator data corresponding to the target user after the target amount of exercise, and obtain the recovery time required for the target user's indicator data to change to a predetermined indicator threshold after the target amount of exercise.

[0057] The determining module is also used to determine the target time for the target user to take a bath on that day by combining the recovery time and the time information;

[0058] The device also includes:

[0059] An update module is used to update the time information to the target time determined by the determination module.

[0060] As an optional implementation, in a second aspect of the present invention, the determining module is further configured to determine the target data corresponding to the current season in the daily routine data of the target user based on the seasonal information corresponding to the current date, thereby obtaining historical data;

[0061] The first judgment module is further configured to determine whether the historical data matches the target data;

[0062] The update module is further configured to update the target data according to the historical data when the first judgment module determines that the historical data does not match the target data;

[0063] The device further includes:

[0064] The second judgment module is used to determine whether the maximum temperature difference value obtained on the day is greater than a preset temperature difference threshold when the first judgment module determines that the historical data matches the target data.

[0065] The update module is further configured to update the target data based on the temperature difference value when the second judgment module determines that the temperature difference value is greater than the preset temperature difference threshold.

[0066] As an optional implementation, in a second aspect of the present invention, the first acquisition module is further configured to, when the first judgment module determines that the change in the wearing state does not indicate that the wearable device has changed from a worn state to an unworn state, and detects that the target hot water device is in a working state, collect data changes corresponding to the indicator data of the target user based on the wearable device.

[0067] The first processing module is further configured to generate a second control instruction for the target hot water device based on the changed index data when the data change acquired by the first acquisition module is greater than or equal to a predetermined safety data threshold. The second control instruction is used to control the target hot water device to adjust the parameter information.

[0068] As an optional implementation, in a second aspect of the invention, the apparatus further includes:

[0069] The third processing module is used to record the working time of the hot water device during the process of the target user taking a shower using the target hot water device;

[0070] The third processing module is also used to determine whether the working time is greater than or equal to a preset time threshold. When it is determined that the working time is greater than or equal to the preset time threshold, the environmental parameters corresponding to the target scene are collected based on the wearable device. The environmental parameters include the oxygen content corresponding to the target scene.

[0071] The third processing module is further configured to determine whether the oxygen content is lower than a preset oxygen content threshold, and when it is determined that the oxygen content is lower than the preset oxygen content threshold, adjust the outlet water temperature and / or outlet water volume corresponding to the target hot water equipment.

[0072] A third aspect of the present invention discloses another intelligent control device for a hot water device, the device comprising:

[0073] Memory containing executable program code;

[0074] A processor coupled to the memory;

[0075] The processor calls the executable program code stored in the memory to execute the intelligent control method for hot water equipment disclosed in the first aspect of the present invention.

[0076] The fourth aspect of the present invention discloses a computer storage medium storing computer instructions, which, when invoked, are used to execute the intelligent control method for hot water equipment disclosed in the first aspect of the present invention.

[0077] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0078] This invention provides a method and apparatus for intelligently controlling a hot water device. The method includes: when a wearable device is detected to be in a wearing state, collecting first data of a target user based on the wearable device, the first data including indicator data corresponding to the target user's body indicators, the target user being a user wearing the wearable device; acquiring target data corresponding to the target user, the target data including daily routine data associated with the target user, the daily routine data including the target user's daily bathing time information and the parameter information corresponding to the hot water device used by the target user during bathing; and, based on the target data and indicator data, controlling the target hot water device pre-assigned to the target user to perform a matching pre-preparation operation at a preset time, wherein the difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time, wherein the pre-preparation operation includes a preheating operation and / or a pre-discharge operation. As can be seen, implementing this invention enables wearable devices to intelligently allocate available hot water devices to users based on the collected physical indicators and target data of the target user, thereby reducing the time users spend searching for available hot water devices. Furthermore, it can intelligently control the hot water devices to perform matching pre-preparation operations (such as adjusting the water temperature in advance and filling the bathtub with bathwater in advance), reducing the likelihood of users forgetting to turn on the hot water device before showering and having to wait, thus saving users showering time or waiting time and improving the user experience of using hot water devices. Attached Figure Description

[0079] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0080] Figure 1 This is a flowchart illustrating a method for intelligently controlling a hot water device according to an embodiment of the present invention;

[0081] Figure 2 This is a flowchart illustrating a method for intelligently controlling a hot water device according to an embodiment of the present invention;

[0082] Figure 3 This is a schematic diagram of the structure of an intelligent control device for hot water equipment disclosed in an embodiment of the present invention;

[0083] Figure 4 This is a schematic diagram of the structure of another intelligent control device for hot water equipment disclosed in an embodiment of the present invention;

[0084] Figure 5 This is a schematic diagram of the structure of another intelligent control device for hot water equipment disclosed in an embodiment of the present invention. Detailed Implementation

[0085] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0086] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product, or end that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or ends.

[0087] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0088] This invention discloses a method and apparatus for intelligently controlling hot water equipment. Through a wearable device, it can intelligently allocate available hot water equipment to a user based on collected data of the user's physical indicators and target data, reducing the time spent searching for available equipment. It can also intelligently control the hot water equipment to perform corresponding pre-preparation operations, reducing situations where users forget to turn on the hot water before showering and need to wait. Furthermore, it improves the user experience of using the hot water equipment, thereby enhancing the user's water usage experience during showering. Detailed descriptions follow.

[0089] Example 1

[0090] Please see Figure 1 , Figure 1 This is a flowchart illustrating a method for intelligently controlling a hot water device according to an embodiment of the present invention. Figure 1 The described method for intelligently controlling hot water equipment can be applied to hot water equipment control devices to control domestic hot water equipment or hot water equipment in public bathroom scenarios. Furthermore, this hot water control device can be integrated into wearable devices (such as smart slippers) or can be a standalone control device; this embodiment of the invention does not impose limitations. Figure 1 As shown, the method for intelligently controlling a hot water device may include the following operations:

[0091] 101. When the wearable device is detected to be in a wearing state, the first data of the target user is collected based on the wearable device.

[0092] In this embodiment of the invention, the wearable device can be a smart device with data collection function, such as any of the following: smart slippers, smart bracelets, or smart glasses; the first data includes indicator data corresponding to the target user's body indicators, which includes any of the following health parameters: degree of arteriosclerosis, blood pressure, heart rate, and blood oxygen saturation, etc., which are not limited in this embodiment of the invention; and the target user is the user wearing the wearable device.

[0093] In this embodiment of the invention, it should be noted that the collection of the first data can be achieved through a module with relevant collection functions carried on a wearable device; furthermore, the collected first data can be transmitted wirelessly to a device associated with the wireless transmission module, which can be a PC, a smartphone, or a smart TV; when the device is a PC, the first data can be parsed by a program carried on the PC and displayed on the screen; when the device is a smartphone, the received first data can be displayed through an APP installed on the smartphone; when the device is a smart TV, the first data can be read and displayed through software installed on the smart TV. This embodiment of the invention does not impose any limitations.

[0094] 102. Obtain the target data corresponding to the target user.

[0095] In this embodiment of the invention, the target data includes daily routine data associated with the target user. The daily routine data includes the target user's daily bathing time information and the parameter information of the hot water device used by the target user when bathing. The parameter information may include the outlet water temperature, outlet water flow rate, outlet water volume and outlet water duration of the hot water device, which are not limited in this embodiment of the invention.

[0096] In this embodiment of the invention, the target data may be stored in the storage space corresponding to the PC and / or cloud server and / or mobile terminal, and the target data is obtained by reading the data stored in the storage space.

[0097] 103. Based on the target data and indicator data, control the target hot water equipment pre-assigned to the target user to perform matching pre-preparation operations at a preset time.

[0098] In this embodiment of the invention, the difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time. In practical applications, the absolute value of the difference between the preset time and the start time corresponding to the time information is taken, that is, the difference and the time threshold are both non-negative values. For example, assuming the time threshold is 10 minutes, the difference between the preset time and the start time corresponding to the time information is 5 minutes, and the start time corresponding to the time information is 21:30 in the evening, then the preset time is 21:25.

[0099] In this embodiment of the invention, the pre-preparation operation may include a preheating operation and / or a pre-draining operation. Further, the preheating operation may include: the target hot water device heating the water stored in the container corresponding to the target hot water device at a preset time according to the parameter information included in the target data, so that the outlet water temperature of the target hot water device meets the outlet water temperature in the parameter information; the pre-draining operation may include: when the target hot water device is associated with a bathtub, the target hot water device injecting the preheated water into the bathtub.

[0100] It is evident that implementation Figure 1 The described method for intelligently controlling hot water equipment can intelligently allocate available hot water devices to a target user based on collected data on the user's physical indicators and target data, reducing the time the user spends searching for available devices. It can also intelligently control the hot water equipment to perform corresponding pre-preparation operations (such as pre-adjusting the water temperature and pre-filling the bathtub), reducing the likelihood of users forgetting to turn on the hot water before showering and having to wait, thus saving showering or waiting time. Furthermore, it can adjust the corresponding equipment parameters based on parameter information (such as outlet water temperature), improving the user experience.

[0101] In an optional embodiment, before controlling the pre-assigned hot water equipment to perform matching pre-preparation operations based on target data and indicator data at a preset time, the method for intelligently controlling the hot water equipment may further include the following steps:

[0102] Determine the equipment type corresponding to the target hot water equipment pre-assigned to the target user. The equipment type includes shower type, bathtub type, or shower-bathtub hybrid type.

[0103] Based on the equipment type and parameter information, determine the operations that the target hot water equipment can perform in advance for the target user, as preparatory operations.

[0104] In this optional embodiment, the pre-preparation operations that can be performed by different target types of hot water equipment can be determined according to the type of target hot water equipment used by the target user. For example, when the equipment type is a shower type, the pre-preparation operations that can be performed include: adjusting at least one of the shower head's water temperature, water flow rate, and water volume; when the equipment type is a bathtub type, the pre-preparation operations that can be performed include: pre-filling the bathtub with water at a temperature that matches the target user's daily bathing temperature.

[0105] As can be seen, in this optional embodiment, a pre-preparation operation corresponding to the determined target hot water device can be determined based on the device type of the target hot water device, so that the target hot water device can perform the pre-preparation operation, such as intelligently adjusting the outlet water temperature of the hot water device, so that when the target user uses the target hot water device for showering, the target hot water device can provide water at the same temperature as the user's daily shower, thereby improving the user experience of the target user using the target hot water device.

[0106] In this optional embodiment, the aforementioned daily routine data may further include the target user's daily exercise volume; and the method for intelligently controlling the hot water equipment may further include the following steps:

[0107] The system collects the target user's movement trajectory based on wearable devices and records the duration of time the target user wears the wearable devices;

[0108] The target exercise volume of the target user is determined based on the movement trajectory and wearing time.

[0109] When it is determined that the difference between the value corresponding to the target exercise volume and the value corresponding to the daily exercise volume is greater than the preset value threshold, the data change of the target user after the target exercise volume is collected and analyzed to obtain the recovery time required for the target user's indicator data to return to the predetermined indicator threshold after the target exercise volume.

[0110] Based on the recovery time and time information, determine the target time for the target user to take a shower on that day, and update the time information to the target time.

[0111] In this optional embodiment, assuming the target user's daily exercise volume is 1 and the preset value threshold is 3, when the target exercise volume is 6, the absolute value of the difference between the daily exercise volume and the target exercise volume is 5, which exceeds the preset value threshold 3, then it is determined that the target user's current physical state is in a state of excitement or fatigue after strenuous exercise that is not suitable for bathing.

[0112] In this optional embodiment, when the target user has engaged in more exercise than usual before their daily bathing time, and their body is in a state of excitement or fatigue after strenuous exercise that is not suitable for bathing, the system can intelligently analyze the recovery time of the target user's body to a state suitable for bathing, and combine this with the target user's daily bathing time information to postpone this time information, such as by 10 or 20 minutes, and notify the target user of the postponed time via SMS or by sending a message to the target user's mobile APP.

[0113] As can be seen, in the optional embodiments, it is possible to intelligently detect whether the target user's current physical state is suitable for bathing before the target user takes a bath. If it is detected that the target user's current physical state is not suitable for bathing, the operation of delaying the target user's bathing time is executed, thereby reducing the occurrence of fainting or dizziness during bathing or after bathing when the target user takes a bath immediately after strenuous exercise and before the physical state has recovered, thereby improving the safety of the target user's bathing.

[0114] In another optional embodiment, the method for intelligently controlling a hot water device may further include the following steps:

[0115] Based on the seasonal information corresponding to the current date, the target data corresponding to the current season in the daily routine data of the target user is determined, and historical data is obtained.

[0116] Determine whether historical data matches target data. If it is determined that historical data does not match target data, update the target data based on the historical data.

[0117] When it is determined that the historical data matches the target data, it is determined whether the maximum temperature difference value obtained on that day is greater than the preset temperature difference threshold.

[0118] When the temperature difference value is determined to be greater than the preset temperature difference threshold, the target data is updated based on the temperature difference value.

[0119] In this optional embodiment, the historical data includes target data corresponding to any season of spring, summer, autumn or winter. That is, the parameter information of the hot water equipment used by the user when bathing in different seasons may be different. Assuming that the temperature difference threshold is 5 degrees, the maximum temperature difference obtained on the day is 10 degrees (that is, the temperature drops or soars). When the temperature drops or soars, the water temperature and other data corresponding to the target data need to be adaptively adjusted.

[0120] As can be seen, in this optional embodiment, wearable devices can intelligently check for seasonal changes and / or sudden temperature changes, and perform corresponding adjustments to the target data of the target hot water device based on the check results. This helps reduce the inconsistency between the target data and the target data corresponding to the current season due to delays in target data updates during seasonal changes. Furthermore, a solution for dealing with sudden temperature changes is provided: the parameters of the target hot water device used by the target user are intelligently adjusted on days with sudden temperature changes, thereby providing the target user with a more humanized bathing service, improving the user experience of the target hot water device and the overall bathing experience.

[0121] In yet another optional embodiment, the method for intelligently controlling a hot water device may further include the following steps:

[0122] Within the time interval included by the preset time and the start time corresponding to the time information, monitor the current usage status of the target hot water equipment, including idle status or usage status;

[0123] When the target hot water device is detected to be in use, it is checked whether there are other hot water devices that are idle. These other hot water devices are configured in other scenarios besides the target scenario.

[0124] If no hot water device is detected to be in an idle state, the target user's shower time will be postponed, and the target user will be notified of the postponed shower time.

[0125] When other hot water devices that are not in use are detected, the system controls these other hot water devices to perform hot water operation based on the parameter information, and notifies the target user to change their showering scenario to another scenario.

[0126] As can be seen, in this optional embodiment, when the target hot water device is detected to be occupied, the operation of delaying the shower time or adjusting the shower scene for the target user can be performed, which improves the speed at which the target user is informed that the target hot water device is temporarily occupied, and improves the speed at which the target user is informed of the corresponding solution after the target hot water device is temporarily occupied.

[0127] In another optional embodiment, before determining whether the change in the wearing status of the wearable device indicates a change from a worn state to an unworn state, the method for intelligently controlling the hot water device may further include the following steps:

[0128] A verification identifier is generated based on wearable devices. The verification identifier includes the identity information corresponding to the target user, and the verification identifier is used to verify whether the wearable device currently associated with the target hot water device matches the identity information when the target user enters the target scene.

[0129] Verify whether the wearable device currently associated with the target hot water device matches the identity information included in the verification identifier;

[0130] When the verification result is a mismatch, the target hot water device and its corresponding device parameters are locked to prevent the target user who failed the verification from using the target hot water device.

[0131] In this optional embodiment, when the wearable device enters the sensing area of ​​the target hot water device, the verification identifier can be transmitted to the sensing device corresponding to the target hot water device through the wireless transmission module carried on the wearable device, thereby realizing the verification of the identity information of the target user wearing the wearable device.

[0132] As can be seen, in this optional embodiment, by generating a verification identifier, the identity information of the target user wearing the wearable device can be verified when the target user enters the sensing area of ​​the target hot water device. If the verification fails, the target hot water device and its corresponding device parameters are locked. This reduces the possibility that the target user's assigned hot water device may be temporarily occupied, preventing the user from taking a shower. Alternatively, it reduces the possibility that when the target user enters an incorrect showering scenario, the user experience of using the target hot water device may be reduced due to incorrect parameter information of the target hot water device, such as the water temperature of the target hot water device being inconsistent with the water temperature of the target user's daily shower.

[0133] Example 2

[0134] Please see Figure 2 , Figure 2 This is a schematic flowchart of another method for intelligently controlling a hot water device disclosed in an embodiment of the present invention. Figure 2 The described method for intelligently controlling hot water equipment can be applied to hot water equipment control devices to control domestic hot water equipment or hot water equipment in public bathroom scenarios. Furthermore, this hot water control device can be integrated into wearable devices (such as smart slippers) or can be a standalone control device; this embodiment of the invention does not impose limitations. Figure 2 As shown, the method for intelligently controlling a hot water device may include the following operations:

[0135] 201. When the wearable device is detected to be in a wearing state, the first data of the target user is collected based on the wearable device.

[0136] 202. Obtain the target data corresponding to the target user.

[0137] 203. Based on the target data and indicator data, control the target hot water equipment pre-assigned to the target user to perform matching pre-preparation operations at a preset time.

[0138] For further descriptions of steps 201-203 in this embodiment of the invention, please refer to the other specific descriptions of steps 101-103 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.

[0139] 204. Collect the real-time location of wearable devices within the time range corresponding to the time information.

[0140] In this embodiment of the invention, the real-time location of the wearable device is collected within the time range before the user is about to take a shower, so as to execute the corresponding shower service operation in a timely manner based on the real-time location information, thereby improving the timeliness of information processing.

[0141] 205. Detect whether the target user has entered the bathing scene corresponding to the target hot water device based on the real-time location of the wearable device.

[0142] In this embodiment of the invention, when the detection result is yes, step 206 is executed; the bathing scene can be a private scene equipped with the target hot water device or a public scene equipped with the target hot water device, and this embodiment of the invention does not limit it.

[0143] 206. When a target user is detected entering the bathing scene corresponding to the target hot water device, the wear status changes of the wearable device are collected.

[0144] In this embodiment of the invention, the change in the wearable state can be used as a basis for determining whether the target user has started showering; the wearable state change is collected by the sensing device equipped with the wearable device; the sensing device can be a temperature sensor or a pressure sensor, and this embodiment of the invention does not limit it.

[0145] 207. Determine whether the change in wearing status indicates that the wearable device has changed from a worn state to an unworn state.

[0146] In this embodiment of the invention, unless otherwise specified, i.e. the user does not change the default settings, the default sign that the user has started showering is when the target user enters the shower scene and changes from wearing the wearable device to not wearing the wearable device.

[0147] 208. When it is determined that the wearable device has changed from a worn state to an unworn state, a first control command is generated for the target hot water device based on parameter information and index data.

[0148] In this embodiment of the invention, the first control command is used to control the target hot water device to perform the following operations:

[0149] The target hot water device senses whether anyone has entered the bathing area corresponding to the target hot water device. When someone is sensed, the device executes a matching bathing service operation according to the control command. The sensing range of the target hot water device can be 5 meters or 8 meters, and this embodiment of the invention does not limit it.

[0150] It should be noted that the bathing service may include, but is not limited to: automatically providing hot water from the target hot water equipment, adjusting the water temperature, water frequency, water flow rate, and water duration based on target data and indicator data.

[0151] It is evident that implementation Figure 2 The described intelligent control method for hot water equipment can intelligently allocate available hot water devices to a target user based on collected data on the user's physical indicators and target data, reducing the time spent searching for available devices. It can also intelligently control the hot water equipment to perform pre-preparation operations (such as pre-adjusting the water temperature and pre-filling the bathtub), reducing the likelihood of users forgetting to turn on the hot water before showering and having to wait, thus saving showering time. Furthermore, it can adjust the corresponding equipment parameters based on parameter information (such as water temperature), improving the user experience. When a target user enters the shower area, it can control the target hot water equipment to provide appropriate shower services, such as automatically providing hot water and adjusting the water temperature, frequency, flow rate, and duration based on target and indicator data, further enhancing the user's showering experience.

[0152] In an optional embodiment, when it is determined that the change in wearing status does not indicate a change from a worn state to an unworn state, and the target hot water device is detected to be in a working state, the method for intelligently controlling the hot water device may further include the following steps:

[0153] Based on the data changes corresponding to the target user's metrics collected from wearable devices;

[0154] When the data change is greater than or equal to a predetermined safety data threshold, a second control command is generated for the target hot water equipment based on the changed index data. The second control command is used to control the target hot water equipment to adjust parameter information.

[0155] In this optional embodiment, the target user's corresponding indicator data will also change during the bathing process. When the target user takes a cold / hot shower for a long time until the data change is greater than or equal to a predetermined safety data threshold, it is necessary to control the target hot water equipment to adjust the outlet water temperature.

[0156] As can be seen, in this optional embodiment, when the target user is wearing the wearable device and taking a bath, the system can perform operations to adjust the parameters according to the changes in the target user's indicator data. This helps to reduce the physical discomfort experienced by the target user after taking a long bath in excessively hot or cold water, lowers the probability of safety accidents during the bath, and improves the safety of the target user during the bath.

[0157] In another optional embodiment, the method for intelligently controlling a hot water device may further include the following steps:

[0158] Record the operating time of the hot water equipment during the time that the target user uses the target hot water equipment for showering.

[0159] Determine whether the working duration is greater than or equal to a preset duration threshold;

[0160] When it is determined that the working time is greater than or equal to the preset time threshold, environmental parameters corresponding to the target scene are collected based on wearable devices. The environmental parameters include the oxygen content corresponding to the target scene.

[0161] Determine whether the oxygen content is lower than the preset oxygen content threshold;

[0162] When it is determined that the oxygen content is lower than the preset oxygen content threshold, adjust the outlet water temperature and / or outlet water volume of the target hot water equipment.

[0163] In this optional embodiment, the duration threshold can be fifty minutes or one hour, and the present invention does not limit it.

[0164] As can be seen, in the optional embodiments, when the target user's bathing time exceeds a preset threshold, the oxygen content corresponding to the target scene can be detected, and the corresponding operation of adjusting the outlet water temperature and / or outlet water volume of the target hot water equipment can be performed according to the oxygen content. This reduces the risk of oxygen deficiency in the target scene caused by the target user taking a hot shower for a long time, thereby preventing accidents such as dizziness and fainting of the target user, and further improving the safety of the target user when using the target hot water equipment for bathing.

[0165] Example 3

[0166] Please see Figure 3 , Figure 3 This is a schematic diagram of a device for intelligently controlling hot water equipment, as disclosed in an embodiment of the present invention. This device can be applied to control domestic hot water equipment or hot water equipment in public bathrooms. Furthermore, the hot water control device can be integrated into a wearable device (such as smart slippers) or it can be a standalone control device; the present invention does not impose any limitations. Figure 3 As shown, the intelligent control device for hot water equipment may include a first acquisition module 301 and a first processing module 302, wherein:

[0167] The first acquisition module 301 is used to acquire first data of the target user based on the wearable device when the wearable device is detected to be in a wearing state. The first data includes indicator data corresponding to the target user's body indicators. The target user is the user wearing the wearable device.

[0168] The first processing module 302 is used to acquire target data corresponding to the target user. The target data includes daily routine data associated with the target user, including the time information of the target user's daily bathing and the parameter information of the hot water equipment used by the target user when bathing.

[0169] The first processing module 302 is further configured to control the target hot water equipment pre-assigned to the target user to perform a matching pre-preparation operation at a preset time based on the target data and the index data collected by the first acquisition module 301. The difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time. The pre-preparation operation includes a preheating operation and / or a pre-discharge operation.

[0170] It is evident that implementation Figure 3The described intelligent hot water control device can intelligently allocate available hot water units to a target user based on collected data on the user's physical indicators and target data, reducing the time spent searching for available units. It can also intelligently control the hot water units to perform corresponding pre-preparation operations, minimizing waiting time caused by users forgetting to turn on the hot water before showering. Furthermore, it can adjust the corresponding equipment parameters based on parameter information (such as water temperature), improving the user experience.

[0171] In an optional embodiment, the first acquisition module 301 is further configured to acquire the real-time location of the wearable device within the time range corresponding to the time information.

[0172] The first processing module 302 is also used to detect whether the target user has entered the bathing scene corresponding to the target hot water device based on the real-time location of the wearable device.

[0173] The first acquisition module 301 is also used to acquire the wear status changes of the wearable device when the first processing module 302 detects that the target user has entered the bathing scene corresponding to the target hot water device.

[0174] In this optional embodiment, such as Figure 4 As shown, the intelligent control device for hot water equipment may further include a first judgment module 303 and a second processing module 304, wherein:

[0175] The first judgment module 303 is used to determine whether the wear status change collected by the first acquisition module 301 indicates that the wearable device has changed from a worn state to an unworn state.

[0176] The second processing module 304 is used to generate a first control command for the target hot water device based on the parameter information and index data obtained by the first processing module 302 when the first judgment module 303 determines that the wearable state change indicates that the wearable device has changed from a worn state to an unworn state. The first control command is used to control the target hot water device to perform the following operations:

[0177] The system senses whether anyone has entered the bathing area corresponding to the target hot water device. When someone is detected, the system executes the corresponding bathing service operation according to the control command.

[0178] It is evident that implementation Figure 4The described intelligent control device for hot water equipment can control the target hot water equipment to perform matching bathing services when it detects that a target user has entered the bathing area. This includes controlling the target hot water equipment to automatically provide hot water, adjusting the water temperature, water frequency, water flow rate, and water duration based on target data and indicator data, thereby further improving the bathing experience of the target user.

[0179] In another alternative embodiment, such as Figure 4 As shown, the intelligent control device for hot water equipment may further include a determining module 305, wherein:

[0180] The determination module 305 is used to determine the equipment type corresponding to the target hot water equipment pre-assigned to the target user before the first processing module 302 controls the pre-assigned hot water equipment to perform a matching pre-preparation operation based on the target data and indicator data at a preset time. The equipment type includes shower type, bathtub type or shower-bathtub hybrid type.

[0181] The determining module 305 is also used to determine, based on the above-mentioned equipment type and the parameter information obtained by the first processing module 302, the operations that the target hot water equipment can perform in advance for the target user, as pre-preparation operations.

[0182] It is evident that implementation Figure 4 The described intelligent control device for hot water equipment can determine a pre-preparation operation corresponding to the identified equipment type of the target hot water equipment, so that the target hot water equipment can perform the pre-preparation operation, such as intelligently adjusting the outlet water temperature of the hot water equipment, so that when the target user uses the target hot water equipment for showering, the target hot water equipment can provide water at the same temperature as the user's daily shower, thereby improving the user experience of the target hot water equipment.

[0183] In yet another optional embodiment, the sleep-wake cycle data also includes the target user's daily activity level;

[0184] The first acquisition module 301 is also used to acquire the motion trajectory of the target user based on the wearable device.

[0185] The second processing module 304 is also used to record the wearing time of the target user wearing the wearable device based on the wearable device.

[0186] The second processing module 304 is also used to evaluate the target user's target amount of exercise based on the motion trajectory collected by the first acquisition module 301 and the wearing time.

[0187] The second processing module 304 is also used to collect and analyze the data changes of the target user's indicator data after the target exercise volume when it is determined that the difference between the value corresponding to the target exercise volume and the value corresponding to the daily exercise volume is greater than a preset value threshold, so as to obtain the recovery time required for the target user's indicator data to change to the predetermined indicator threshold after the target exercise volume.

[0188] The determination module 305 is also used to determine the target time for the target user to take a shower on that day by combining the recovery time obtained by the second processing module 304 and the time information obtained by the first processing module 302.

[0189] And, such as Figure 4 As shown, the intelligent control device for hot water equipment may further include an update module 306, wherein:

[0190] The update module 306 is used to update the time information obtained by the first processing module 302 to the target time determined by the determination module 305.

[0191] It is evident that implementation Figure 4 The described intelligent control device for hot water equipment can intelligently detect whether a user's current physical condition is suitable for bathing before the user takes a shower. If it detects that the user's current physical condition is not suitable for bathing, it will postpone the user's bathing time, thereby reducing the occurrence of dizziness or lightheadedness during or after bathing caused by taking a shower immediately after strenuous exercise and before the user has fully recovered. This improves the safety of the target user's bathing experience.

[0192] In another optional embodiment, the determining module 305 is further configured to determine the target data corresponding to the current season in the target user's daily routine data based on the seasonal information corresponding to the current date, and obtain historical data.

[0193] The first judgment module 303 is also used to determine whether the historical data determined by the determination module 305 matches the target data obtained by the first processing module 302.

[0194] The update module 306 is also used to update the target data based on the historical data determined by the determination module 305 when the first judgment module 303 determines that the historical data and the target data do not match.

[0195] In this optional embodiment, such as Figure 4 As shown, the intelligent control device for hot water equipment may further include a second judgment module 307, wherein:

[0196] The second judgment module 307 is used to determine whether the maximum temperature difference value obtained on the day is greater than the preset temperature difference threshold when the first judgment module 303 determines that the historical data matches the target data.

[0197] The update module 306 is also used to update the target data based on the temperature difference value when the second judgment module 307 determines that the temperature difference value is greater than the preset temperature difference threshold.

[0198] It is evident that implementation Figure 4 The described intelligent control device for hot water equipment can intelligently check for seasonal changes and / or sudden temperature fluctuations via wearable devices, and perform corresponding adjustments to the target data of the target hot water equipment based on the check results. This helps reduce inconsistencies between the target data and the target data corresponding to the current season due to delays in target data updates during seasonal changes. Furthermore, it provides a solution for dealing with sudden temperature changes: intelligently adjusting the parameters of the target hot water equipment used by the target user on days with sudden temperature changes, thereby providing a more user-friendly bathing service and improving the user experience of the target hot water equipment and the overall bathing experience.

[0199] In yet another alternative embodiment, such as Figure 4 As shown, the first acquisition module 301 is further configured to, when the first judgment module 303 determines that the change in the wearing status does not indicate that the wearable device has changed from a worn state to an unworn state, and detects that the target hot water device is in working state, collect data changes corresponding to the target user's indicator data based on the wearable device.

[0200] The first processing module 302 is further configured to generate a second control command for the target hot water equipment based on the changed index data when the data change collected by the first acquisition module 301 is greater than or equal to a predetermined safety data threshold. The second control command is used to control the target hot water equipment to adjust parameter information.

[0201] It is evident that implementation Figure 4 The described intelligent control device for hot water equipment can adjust parameters according to changes in the target user's indicator data when the target user is wearing the wearable device and taking a bath. This helps reduce physical discomfort caused by prolonged bathing in excessively hot or cold water, lowers the probability of safety accidents during bathing, and improves the safety of the target user during bathing.

[0202] In another alternative embodiment, such as Figure 4 As shown, the intelligent control device for hot water equipment may further include a third processing module 308, wherein:

[0203] The third processing module 308 is used to generate a first control command for the target hot water device based on parameter information and index data when the second processing module 304 determines that the wearable device has changed from a worn state to an unworn state, and to record the corresponding working time of the hot water device during the process of the target user taking a shower using the target hot water device.

[0204] The third processing module 308 is also used to determine whether the working time is greater than or equal to a preset time threshold. When it is determined that the working time is greater than or equal to the preset time threshold, the environmental parameters corresponding to the target scene are collected based on the wearable device. The environmental parameters include the oxygen content corresponding to the target scene.

[0205] The third processing module 308 is also used to determine whether the oxygen content is lower than a preset oxygen content threshold. When it is determined that the oxygen content is lower than the preset oxygen content threshold, the corresponding outlet water temperature and / or outlet water volume of the target hot water equipment is adjusted.

[0206] It is evident that implementation Figure 4 The described intelligent control device for hot water equipment can detect the oxygen content of the target scene when the target user's shower exceeds a preset time threshold, and perform corresponding adjustments to the outlet water temperature and / or outlet water volume of the target hot water equipment based on the oxygen content. This reduces the risk of oxygen deficiency in the target scene caused by prolonged hot showers, thereby preventing accidents such as dizziness and fainting, and further improving the safety of the target user when using the target hot water equipment for showering.

[0207] Example 4

[0208] Please see Figure 5 , Figure 5 This is a structural schematic diagram of another intelligent control device for hot water equipment disclosed in an embodiment of the present invention. For example... Figure 5 As shown, the device for intelligent control of the hot water equipment may include:

[0209] Memory 401 storing executable program code;

[0210] Processor 402 coupled to memory 401;

[0211] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the method for intelligent control of hot water equipment described in Embodiment 1 or Embodiment 2 of the present invention.

[0212] Example 5

[0213] This invention discloses a computer storage medium storing computer instructions. When these computer instructions are invoked, they are used to execute the steps in the method for intelligently controlling a hot water device described in Embodiment 1 or Embodiment 2 of this invention.

[0214] Example 6

[0215] This invention discloses a computer program product, which includes a non-transitory computer storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps in the method for intelligently controlling a hot water device described in Embodiment 1 or Embodiment 2.

[0216] Example 7

[0217] This invention discloses a wearable device that can be used to perform the steps in the method for intelligently controlling a hot water device described in Embodiment 1 or Embodiment 2 of this invention. Alternatively, the wearable device may include any of the devices for intelligently controlling a hot water device described in Embodiments 3 and 4.

[0218] Furthermore, this wearable device could be a smart slipper.

[0219] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0220] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-erasable programmable read-only memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.

[0221] Finally, it should be noted that the method and apparatus for intelligent control of hot water equipment disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for intelligently controlling a hot water device, characterized in that, The method includes: When the wearable device is detected to be in a wearing state, the first data of the target user is collected based on the wearable device. The first data includes the indicator data corresponding to the target user's body indicators. The target user is the user wearing the wearable device. Obtain target data corresponding to the target user, the target data including daily routine data associated with the target user, the daily routine data including the time information of the target user's daily bathing and the parameter information of the hot water equipment used by the target user when bathing; Based on the target data and the indicator data, the target hot water equipment pre-assigned to the target user is controlled to perform a matching pre-preparation operation at a preset time. The difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time. The pre-preparation operation includes a preheating operation and / or a pre-draining operation; The method further includes: The real-time location of the wearable device is collected within the time range corresponding to the time information, and the target user is detected to have entered the bathing scene corresponding to the target hot water device based on the real-time location of the wearable device. When the target user is detected to enter the bathing scene corresponding to the target hot water device, the wear status change of the wearable device is collected, and it is determined whether the wear status change indicates that the wearable device has changed from a worn state to an unworn state. When it is determined that the wearable device has changed from a worn state to an unworn state, a first control command is generated for the target hot water device based on the parameter information and the indicator data. The first control command is used to control the target hot water device to perform the following operations: The target hot water device senses whether anyone has entered the bathing area corresponding to the target hot water device. When someone is sensed to have entered, the device executes a matching bathing service operation according to the control command. The bathing service includes the target hot water device automatically providing hot water and adjusting the water temperature, water frequency, water flow rate, and water duration according to the target data and the indicator data. The method further includes: Within the time interval encompassed by the preset time and the start time corresponding to the time information, the current usage status of the target hot water equipment is monitored, including an idle state or a state in use; When the target hot water device is detected to be in use, it is detected whether there are other hot water devices that are idle. These other hot water devices are configured in scenarios other than the bathing scenario. When it is detected that there is no hot water device in the idle state, the shower time for the target user is postponed, and the target user is notified of the postponed shower time. When other hot water devices in the idle state are detected, the other hot water devices are controlled to perform hot water operation according to the parameter information, and the target user is notified to change the scene for taking a bath to the other scene.

2. The method for intelligently controlling a hot water device according to claim 1, characterized in that, Before controlling the target hot water device pre-assigned to the target user to perform a matching pre-preparation operation at a preset time based on the target data and the indicator data, the method further includes: Determine the equipment type corresponding to the target hot water equipment pre-assigned to the target user, wherein the equipment type includes shower type, bathtub type, or shower-bathtub hybrid type; Based on the device type and the parameter information, determine the operations that the target hot water device can perform in advance for the target user, as pre-preparation operations.

3. The method for intelligently controlling a hot water device according to claim 2, characterized in that, The sleep-wake habit data also includes the target user's daily exercise volume; the method further includes: The wearable device is used to collect the target user's movement trajectory and record the duration the target user wears the wearable device. The target exercise volume of the target user is determined based on the movement trajectory and the wearing duration. When it is determined that the difference between the value corresponding to the target exercise volume and the value corresponding to the daily exercise volume is greater than a preset value threshold, the data change of the indicator data corresponding to the target user after the target exercise volume is collected and analyzed to obtain the recovery time required for the target user's indicator data to change to the predetermined indicator threshold after the target exercise volume. Based on the recovery time and the time information, determine the target time for the target user to take a shower on that day, and update the time information to the target time.

4. The method for intelligently controlling a hot water device according to claim 3, characterized in that, The method further includes: Based on the seasonal information corresponding to the current date, the target data corresponding to the current season in the daily routine data of the target user is determined, and historical data is obtained; Determine whether the historical data matches the target data; if it is determined that the historical data does not match the target data, update the target data based on the historical data. When it is determined that the historical data matches the target data, it is determined whether the obtained maximum temperature difference value for the day is greater than the preset temperature difference threshold. When it is determined that the temperature difference value is greater than the preset temperature difference threshold, the target data is updated according to the temperature difference value.

5. The method for intelligently controlling a hot water device according to claim 1, characterized in that, When it is determined that the change in the wearing status does not indicate a change from a worn state to an unworn state, and the target hot water device is detected to be in a working state, the method further includes: The wearable device collects data changes corresponding to the target user's indicator data. When the data change is greater than or equal to a predetermined safety data threshold, a second control command is generated for the target hot water device based on the changed index data. The second control command is used to control the target hot water device to adjust the parameter information.

6. The method for intelligently controlling a hot water device according to any one of claims 1-5, characterized in that, The method further includes: During the process of the target user taking a shower using the target hot water device, the corresponding working time of the hot water device is recorded; Determine whether the working time is greater than or equal to a preset time threshold; When it is determined that the working time is greater than or equal to the preset time threshold, the environmental parameters corresponding to the bathing scene are collected based on the wearable device, and the environmental parameters include the oxygen content corresponding to the bathing scene; Determine whether the oxygen content is lower than a preset oxygen content threshold; When it is determined that the oxygen content is lower than the preset oxygen content threshold, the outlet water temperature and / or outlet water volume of the target hot water equipment are adjusted.

7. A device for intelligently controlling a hot water equipment, characterized in that, The apparatus is used to perform the method for intelligently controlling a hot water device as described in any one of claims 1-6, and the apparatus comprises: The first acquisition module is used to acquire first data of a target user based on the wearable device when the wearable device is detected to be in a wearing state. The first data includes indicator data corresponding to the target user's body indicators. The target user is the user wearing the wearable device. The first processing module is used to acquire target data corresponding to the target user. The target data includes daily routine data associated with the target user. The daily routine data includes the time information of the target user's daily bathing and the parameter information of the hot water equipment used by the target user when bathing. The first processing module is further configured to control the target hot water device pre-assigned to the target user to perform a matching pre-preparation operation at a preset time based on the target data and the indicator data, wherein the difference between the preset time and the start time corresponding to the time information is within a preset time threshold, and the preset time is before the start time. The pre-preparation operations include preheating and / or pre-draining.

8. A device for intelligently controlling a hot water equipment, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the method for intelligently controlling a hot water device as described in any one of claims 1-6.

9. A computer storage medium, characterized in that, The computer storage medium stores computer instructions, which, when invoked, are used to execute the method for intelligently controlling the hot water equipment as described in any one of claims 1-6.

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