Temperature regulation methods, devices, equipment, and storage media based on heating equipment

By setting up acquisition, determination, and control modules in the heating equipment, the heating status is determined based on indoor and outdoor temperatures, and corresponding plans are executed. This solves the problem of heating equipment being unable to adjust the temperature in a timely manner, ensuring stable indoor temperature and improving user experience.

CN119687502BActive Publication Date: 2026-03-06QINGDAO ECONOMIC AND TECHNOLOGICAL DEVELOPMENT ZONE HAIER WATER HEATER CO LTD +1
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Patent Information

Application Number
CN202311246727.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-25
Publication Date
2026-03-06
Estimated Expiration
2043-09-25

AI Technical Summary

Technical Problem

Existing heating systems cannot adjust the heating temperature in a timely manner according to changes in indoor and outdoor temperatures, resulting in excessive fluctuations in indoor temperature and affecting the quality of life.

Method used

By setting up acquisition, determination, and control modules in the heating equipment, the current indoor and outdoor temperatures are acquired according to a preset cycle, the heating status is determined, and the corresponding heating scheme is executed, including heating, cooling, or stabilization, to ensure that the indoor temperature is kept within a comfortable range.

Benefits of technology

This enables heating equipment to adjust the heating temperature in a timely manner, maintain a stable indoor temperature, and improve the user experience and quality of life.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application belongs to the field of smart home appliance technology, specifically relating to a temperature regulation method, device, equipment, and computer storage medium based on heating equipment. After acquiring the current indoor temperature of a target space according to a preset cycle, the heating status of the target space is determined based on the current indoor temperature and the current heating temperature of the heating equipment. Then, based on the heating status, a target heating scheme corresponding to the heating status is determined and executed. This method not only enables the heating equipment to adjust its energy setting temperature in a timely manner but also ensures that the heating equipment can provide sufficient heating temperature to maintain a consistently warm indoor temperature, thereby improving the user experience and enhancing the user's quality of life.
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Description

Technical Field

[0001] This application belongs to the field of smart home appliance technology, specifically relating to a temperature regulation method, device, equipment, and computer storage medium based on heating equipment. Background Technology

[0002] As people's living standards improve and technology advances, their pursuit of a comfortable life is also increasing. In the past, people had to manually adjust the indoor temperature to achieve a comfortable living environment. However, with the advancement of technology, heating equipment has emerged, bringing convenience and comfort to people.

[0003] Heating equipment is a type of intelligent device that automatically adjusts the operation of air conditioners, heaters, and other appliances by sensing environmental parameters such as indoor temperature and humidity to achieve the desired temperature. However, existing heating equipment typically connects to the energy source via signal lines. Once the set temperature is detected, the signal can be disconnected, and the energy source, upon detecting this disconnection, immediately stops heating. Conversely, if the set temperature is detected, the energy source continues to provide heating to maintain warmth. Therefore, this method can lead to excessive temperature fluctuations indoors, affecting daily life and reducing quality of life.

[0004] Therefore, the current problem to be solved is how to ensure that heating equipment adjusts the heating temperature in a timely manner according to changes in indoor and outdoor temperatures, so as to keep the indoor temperature warm at all times and thus improve people's user experience. Summary of the Invention

[0005] This application provides a method, apparatus, device, and computer storage medium for temperature regulation based on heating equipment, which solves the problem that heating equipment cannot adjust the heating temperature in a timely manner according to changes in indoor and outdoor temperatures.

[0006] Firstly, this application provides a temperature regulation method based on heating equipment, including:

[0007] The current indoor temperature of the target space is obtained according to a preset cycle;

[0008] The heating status of the target space is determined based on the current indoor temperature and the current heating temperature of the heating equipment, wherein the current heating temperature is determined based on the current outdoor temperature of the target space.

[0009] Based on the heating status, a target heating scheme corresponding to the heating status is determined, and the heating equipment is controlled to execute the target heating scheme.

[0010] Optionally, before obtaining the current indoor temperature of the target space according to a preset period, the method further includes:

[0011] Obtain the lowest historical temperature in the region where the target space is located;

[0012] Based on the minimum temperature and heating curve, the target temperature curve corresponding to the heating equipment is determined. Different heating methods correspond to different temperature curves.

[0013] The current heating temperature of the heating equipment is determined according to the preset cycle based on the target temperature curve and the current outdoor temperature of the target space.

[0014] Optionally, determining the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment includes:

[0015] The difference between the current heating temperature and the current indoor temperature is taken as the temperature difference.

[0016] Determine whether the temperature difference is within a first preset range;

[0017] If so, the heating state of the target space is determined to be the first heating state;

[0018] If not, determine whether the temperature difference value is within the second preset range;

[0019] When the temperature difference is within the second preset range, the heating state of the target space is determined to be the second heating state, where the first preset range is greater than the second preset range.

[0020] Optionally, if the heating state is a first heating state, then determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme includes:

[0021] Get the historical indoor temperature from the last cycle;

[0022] Determine whether the difference between the current indoor temperature and the historical indoor temperature falls within a third preset range;

[0023] If so, the current heating temperature is taken as the new heating temperature, and the heating equipment is controlled to provide heating according to the new heating temperature.

[0024] If not, determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range;

[0025] If the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range, then the sum of the current heating temperature and the first preset temperature is taken as the new heating temperature, and the heating equipment is controlled to provide heating according to the new heating temperature.

[0026] If the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, and the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range, then the sum of the current heating temperature and the second preset temperature is taken as the new heating temperature, and the heating equipment is controlled to provide heating according to the new heating temperature, wherein the second preset temperature is greater than the first preset temperature.

[0027] Optionally, if the heating state is a second heating state, then determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme includes:

[0028] Get the historical indoor temperature from the last cycle;

[0029] Determine whether the difference between the current indoor temperature and the historical indoor temperature falls within a third preset range;

[0030] If so, the difference between the current heating temperature and the second preset temperature is taken as the new heating temperature, and the heating equipment is controlled to provide heating according to the new heating temperature.

[0031] If not, determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range;

[0032] If the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range, then the difference between the current heating temperature and the first preset temperature is taken as the new heating temperature, and the heating equipment is controlled to provide heating according to the new heating temperature.

[0033] If the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, and the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range, then the current heating temperature is taken as the new heating temperature, and the heating equipment is controlled to provide heating according to the new heating temperature.

[0034] Optionally, controlling the heating equipment to provide heating according to the new heating temperature includes:

[0035] Get the historical heating temperature corresponding to the last cycle;

[0036] Determine whether the new heating temperature is greater than the historical heating temperature;

[0037] If so, the heating equipment is controlled to provide heating according to the new heating temperature;

[0038] If not, the heating equipment is controlled to provide heating according to the historical heating temperature.

[0039] Optionally, the method further includes:

[0040] When the temperature difference is not within the second preset range, the heating state of the target space is determined to be the third heating state;

[0041] If the heating state is the third heating state, determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme includes:

[0042] The water grading device relay is kept in the off state, and the current indoor temperature of the target space is detected in real time;

[0043] When the current indoor temperature meets the preset conditions, the water purifier relay is controlled to be in the open state, and the heating equipment is controlled to provide heating according to the current heating temperature.

[0044] Secondly, this application provides a temperature regulating device based on a heating equipment, comprising:

[0045] The acquisition module is used to acquire the current indoor temperature of the target space according to a preset cycle;

[0046] The determination module is used to determine the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment, wherein the current heating temperature is determined based on the current outdoor temperature of the target space;

[0047] The determining module is further configured to determine a target heating scheme corresponding to the heating state based on the heating state.

[0048] The control module is used to control the heating equipment to execute the target heating scheme.

[0049] Optionally, the acquisition module is further configured to acquire the lowest temperature in the historical temperature range of the region where the target space is located;

[0050] The determining module is also used to determine the target temperature curve corresponding to the heating equipment based on the minimum temperature and the heating curve. Different heating methods correspond to different temperature curves.

[0051] The determining module is specifically used to determine the current heating temperature of the heating equipment according to the target temperature curve and the current outdoor temperature of the target space according to the preset cycle.

[0052] Optionally, the device further includes: a processing module;

[0053] The processing module is used to take the difference between the current heating temperature and the current indoor temperature as the temperature difference value.

[0054] The device further includes: a judgment module;

[0055] The judgment module is used to determine whether the temperature difference is within a first preset range;

[0056] The determining module determines the heating state of the target space as the first heating state when the temperature difference is within the first preset range.

[0057] The judgment module is further configured to determine whether the temperature difference is within a second preset range when the temperature difference is not within a first preset range.

[0058] The determining module is further configured to determine the heating state of the target space as a second heating state when the temperature difference is within the second preset range, wherein the first preset range is greater than the second preset range.

[0059] Optionally, the acquisition module is also used to acquire the historical indoor temperature obtained in the previous cycle;

[0060] The judgment module is also used to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a third preset range.

[0061] The determining module is further configured to use the current heating temperature as the new heating temperature when the difference between the current indoor temperature and the historical indoor temperature is within a third preset range.

[0062] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0063] The judgment module is further configured to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range when the difference between the current indoor temperature and the historical indoor temperature is not within a third preset range.

[0064] The determining module is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range, take the sum of the current heating temperature and the first preset temperature as the new heating temperature.

[0065] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0066] The determining module is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is not in the fourth preset range and the difference between the current indoor temperature and the historical indoor temperature is in the fifth preset range, take the sum of the current heating temperature and the second preset temperature as the new heating temperature, wherein the second preset temperature is greater than the first preset temperature.

[0067] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0068] Optionally, the acquisition module also acquires the historical indoor temperature obtained in the previous cycle;

[0069] The judgment module is also used to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a third preset range.

[0070] The determining module is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is within a third preset range, use the difference between the current heating temperature and the second preset temperature as the new heating temperature.

[0071] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0072] The judgment module is further configured to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range when the difference between the current indoor temperature and the historical indoor temperature is not within a third preset range.

[0073] The determining module is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range, use the difference between the current heating temperature and the first preset temperature as the new heating temperature.

[0074] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0075] The determining module is further configured to use the current heating temperature as the new heating temperature when the difference between the current indoor temperature and the historical indoor temperature is not in the fourth preset range and the difference between the current indoor temperature and the historical indoor temperature is in the fifth preset range.

[0076] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0077] Optionally, the acquisition module is further configured to acquire the current heating temperature of the heating equipment;

[0078] The judgment module is also used to determine whether the new heating temperature is greater than the current heating temperature;

[0079] The control module is specifically used to control the heating equipment to provide heating according to the new heating temperature when the new heating temperature is greater than the current heating temperature.

[0080] The control module is specifically used to control the heating equipment to provide heating according to the current heating temperature when the new heating temperature is not greater than the current heating temperature.

[0081] Optionally, the determining module is specifically used to determine the heating state of the target space as the third heating state when the temperature difference is not within the second preset range;

[0082] If the heating state is the third heating state, determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme includes:

[0083] The control module is also used to control the water grading relay to be in the off state and to detect the current indoor temperature of the target space in real time.

[0084] The control module is also used to control the water purifier relay to be in the open state when the current indoor temperature meets the preset conditions, and to control the heating equipment to provide heating according to the current heating temperature.

[0085] Thirdly, this application provides a temperature regulating device based on a heating device, comprising:

[0086] Memory;

[0087] processor;

[0088] The memory stores computer-executed instructions;

[0089] The processor executes computer execution instructions stored in the memory to implement the temperature regulation method based on heating equipment as described in the first aspect and various possible implementations of the first aspect above.

[0090] Fourthly, this application provides a computer storage medium storing computer execution instructions thereon, which are executed by a processor to implement the temperature regulation method based on heating equipment as described in the first aspect and various possible implementations of the first aspect above.

[0091] The temperature regulation method based on heating equipment provided in this application, after acquiring the current indoor temperature of the target space according to a preset cycle, determines the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment. Then, based on the heating status, it determines and executes the target heating scheme corresponding to the heating status. This method not only enables the heating equipment to adjust its energy setting temperature in a timely manner but also ensures that the heating equipment can provide sufficient heating temperature to maintain a consistently warm indoor temperature, thereby improving the user experience and enhancing the user's quality of life. Attached Figure Description

[0092] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0093] Figure 1 This application provides a flowchart of a temperature regulation method based on heating equipment. Figure 1 ;

[0094] Figure 2 This application provides a flowchart of a temperature regulation method based on heating equipment. Figure 2 ;

[0095] Figure 3 This is a schematic diagram of the heating curve of the temperature regulation method based on heating equipment provided in this application;

[0096] Figure 4 This application provides a flowchart of a temperature regulation method based on heating equipment. Figure 3 ;

[0097] Figure 5 This application provides a flowchart of a temperature regulation method based on heating equipment. Figure 4 ;

[0098] Figure 6 This application provides a flowchart of a temperature regulation method based on heating equipment. Figure 5 ;

[0099] Figure 7 This is a schematic diagram of the temperature regulation device based on heating equipment provided in this application;

[0100] Figure 8 This is a schematic diagram of the temperature regulation device based on heating equipment provided in this application.

[0101] The accompanying drawings have illustrated specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to specific embodiments. Detailed Implementation

[0102] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0103] The terms "first," "second," "third," "fourth," etc. (if present) in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that embodiments of the invention described herein can be implemented, for example, in orders other than those illustrated or described herein.

[0104] In this application, the terms "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described as "exemplary" or "for example" in this application should not be construed as being more preferred or advantageous than other embodiments or designs. Specifically, the use of terms such as "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.

[0105] As people's living standards improve and technology advances, their pursuit of a comfortable life is also increasing. In the past, to create a livable environment, people needed to manually adjust the indoor temperature. However, with technological advancements, heating equipment has emerged, bringing convenience and comfort to people.

[0106] Heating equipment can not only sense environmental parameters such as indoor temperature and humidity, and automatically adjust the operation of equipment such as underfloor heating, radiators and air conditioners to meet users' requirements for indoor temperature, but also improve people's quality of life, allowing them to enjoy a comfortable life in a warm environment.

[0107] However, existing heating systems typically connect to the energy source via signal lines. Once the set indoor temperature is detected, the thermostat disconnects the signal and directs the energy source to stop heating. Conversely, if the indoor temperature has not reached the set value, the heating system continues to control energy supply to ensure the room remains warm. However, significant fluctuations in indoor temperature can negatively impact the living environment and human health. For example, large temperature fluctuations can reduce occupants' comfort, making them feel uncomfortable or unable to adapt. Furthermore, frequent temperature changes can adversely affect specific populations, such as the elderly, infants, or those with respiratory illnesses. Sudden temperature changes can cause or exacerbate respiratory problems such as asthma or sinusitis. In addition, significant changes in indoor temperature can also damage electronic devices, furniture, and other indoor items. For example, the operational stability of electronic devices may be affected by dryness or overheating, and wooden furniture may expand or contract due to temperature changes, leading to damage.

[0108] Therefore, the current problem to be solved is how to ensure that heating equipment adjusts the heating temperature in a timely manner according to changes in indoor and outdoor temperatures, so as to keep the indoor temperature warm at all times and thus improve people's user experience.

[0109] The temperature regulation method based on heating equipment provided in this application, after acquiring the current indoor temperature of the target space according to a preset cycle, determines the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment. Then, based on the heating status, it determines and executes the target heating scheme corresponding to the heating status. This method not only enables the heating equipment to adjust its energy setting temperature in a timely manner but also ensures that the heating equipment can provide sufficient heating temperature to maintain a consistently warm indoor temperature, thereby improving the user experience and enhancing the user's quality of life.

[0110] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.

[0111] Figure 1 The flowchart of the temperature regulation method based on heating equipment provided in the embodiments of this application Figure 1 .

[0112] like Figure 1 As shown, the temperature regulation method based on heating equipment provided in this embodiment includes:

[0113] S101: Obtain the current indoor temperature of the target space according to a preset cycle.

[0114] The preset cycle can be, for example, 0.5h, 1h, or 2h. The target space refers to the room heated by the heating equipment. The current indoor temperature refers to the indoor temperature value reached in the target space when the heating equipment is used.

[0115] By setting a preset cycle, the indoor temperature of the target space can be obtained at different time periods, thus obtaining the actual indoor temperature data for different time periods.

[0116] Understandably, by taking multiple measurements of the indoor temperature within a certain time interval, the actual indoor temperature change in the target space can be obtained, thus providing information on the indoor temperature of the target space, so that the heating equipment can be adjusted in a timely manner.

[0117] The same target space has different indoor temperatures at different times, and the current indoor temperature is affected by a variety of factors, such as the outside temperature, sunlight, the number of people in the room, and the use of equipment. Therefore, it can be determined that the change in indoor temperature is a dynamic process.

[0118] The current indoor temperature of the target space can be obtained, for example, through an indoor temperature sensor or through a smart home system. This application does not impose any special restrictions on this.

[0119] For example, if the preset cycle is to measure the indoor temperature once per hour throughout the day, then the indoor temperature of the target space can be obtained for each hour. For example, at 8:00 AM, the indoor temperature is recorded as 22℃; at 9:00 AM, the indoor temperature is recorded as 24℃; at 12:00 PM, the indoor temperature is recorded as 26℃, and so on.

[0120] S102: Determine the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment, wherein the current heating temperature is determined based on the current outdoor temperature of the target space.

[0121] The current heating temperature refers to the energy output temperature provided by the heating equipment to the target space.

[0122] Heating conditions include: heating up, cooling down, and stable heating. Heating up refers to the stage where, when the difference between the indoor temperature and the current heating temperature is too large, the heating equipment needs to provide sufficient heat energy to heat the target space so that the indoor temperature reaches or approaches the target temperature. Understandably, in heating up mode, the energy output temperature of the heating equipment is higher to compensate for the temperature difference and quickly raise the indoor temperature.

[0123] The heating-cooling state refers to a stage where the difference between the indoor temperature and the current heating temperature is too close, and the heating equipment needs to reduce its energy output temperature to avoid overheating and causing the indoor temperature to become too high. Understandably, in the heating-cooling state, the heating equipment still provides a suitable amount of heat energy, but the energy output temperature will be relatively lower than in the previous heating state to maintain a stable indoor temperature.

[0124] A stable heating state refers to a state where the difference between the indoor temperature and the current heating temperature is stable. In this state, the heating equipment needs to maintain a constant energy output temperature to keep the indoor temperature comfortable and stable. Understandably, in a stable heating state, the heating equipment only provides enough heat energy to offset the heat loss in the room in order to maintain temperature stability, without needing excessive energy output.

[0125] By using the current heating temperature of the heating equipment and the current indoor temperature of the target space as a basis, the operating status and efficiency of the heating system can be more accurately judged and assessed. This ensures that the heating equipment can better adapt to changes in indoor temperature, thereby keeping the indoor temperature within a comfortable range and ensuring that the user's comfort needs are met.

[0126] In this step, for example, the current heating temperature of the heating equipment can be obtained first, and then the heating status of the target space can be determined together based on the current heating temperature of the heating equipment and the current indoor temperature of the target space.

[0127] S103: Based on the heating status, determine the target heating scheme corresponding to the heating status, and control the heating equipment to execute the target heating scheme.

[0128] The heating schemes include: heating schemes for heating states, heating schemes for cooling states, and heating schemes for stable states.

[0129] Understandably, different heating conditions require different heating solutions, and choosing the appropriate heating solution for different conditions can achieve efficient, comfortable, and energy-saving heating results.

[0130] Once the target heating scheme corresponding to the heating status is determined, the heating equipment can be controlled to execute the target heating scheme to ensure that the heating equipment can provide sufficient heating temperature, thereby keeping the indoor temperature warm at all times and improving the user experience.

[0131] The temperature regulation method based on heating equipment provided in this embodiment, after obtaining the current indoor temperature of the target space according to a preset cycle, first determines the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment. Then, based on the heating status, it determines the target heating scheme corresponding to the heating status, thereby controlling the heating equipment to execute the target heating scheme. This method not only enables the heating equipment to adjust the energy setting temperature in a timely manner, but also ensures that the heating equipment can provide sufficient heating temperature to ensure that the indoor temperature is warm, thereby improving the user experience and improving the user's quality of life.

[0132] Figure 2 The flowchart of the temperature regulation method based on heating equipment provided in the embodiments of this application Figure 2 .like Figure 2 As shown, this embodiment is... Figure 1 Based on the embodiments, a temperature regulation method based on heating equipment is described in detail. The temperature regulation method based on heating equipment shown in this embodiment includes:

[0133] S201: Obtain the lowest historical temperature in the region where the target space is located.

[0134] The term "target space" indicates the geographical location of the target space. This target area can be divided according to a city or a district; this application does not impose any special restrictions on this.

[0135] The lowest temperature is used to indicate the historical lowest temperature in the area where the target area is located.

[0136] The lowest historical temperature in the area where the target space is located can be obtained from, for example, a network weather platform, an application connected to smart home appliances, or a data repository within the smart home appliances. This application does not limit this.

[0137] By obtaining the lowest historical temperature in the region where the target space is located, the historical lowest temperature information of that region can be obtained.

[0138] Understandably, by obtaining historical temperature data of the area where the target space is located and finding the lowest temperature value from the historical temperature data, it is possible to determine the lowest temperature that the area has ever experienced in the past.

[0139] For example, assuming the region is Beijing and temperature data for the past 5 years has been obtained, we can find that the temperature in 2021 was the lowest compared to other years, thus we can conclude that the historical lowest temperature in the past 5 years for the city is -10℃.

[0140] Optionally, before obtaining the lowest historical temperature in the area where the target space is located, it should be determined whether the heating equipment has established a connection with the server. If so, it should be determined whether the heating equipment is in a network disconnected state; otherwise, the lowest historical temperature in the area where the target space is located should be obtained.

[0141] The purpose of determining whether the heating equipment has established a connection with the server is to ascertain whether the equipment can communicate normally with the server to remotely monitor, collect, and analyze indoor temperature data. Conversely, determining whether the heating equipment is disconnected from the network is to ascertain whether it can normally receive instructions and control signals from the server.

[0142] The heating status of the heating equipment includes: network connection status and network disconnection status. Network connection status means that there is a communication channel between the heating equipment and the server, while network disconnection status means that there is no communication channel between the heating equipment and the server.

[0143] If the heating equipment establishes a connection with the server, it indicates that the heating equipment can communicate normally with the server. Therefore, it can be determined whether the heating equipment is in a network disconnected state.

[0144] If the heating equipment and the server have not established a connection, it means that the heating equipment cannot communicate normally with the server. Therefore, the current temperature curve set by the heating equipment can be obtained, and the heating equipment can be controlled to perform heating treatment according to the current temperature curve set.

[0145] Understandably, when the heating equipment and the server are not connected, in order to ensure that the current indoor temperature meets the user's need for warmth and comfort, it is necessary to obtain the current temperature curve set by the heating equipment so that the heating equipment currently used in the home can provide heating according to the temperature curve.

[0146] When the heating equipment is disconnected from the network, it means that the heating equipment cannot receive instructions and control signals from the server normally. Therefore, it is possible to obtain historical temperature curves and control the heating equipment to perform heating treatment according to the corresponding temperature curves.

[0147] When the heating equipment is not disconnected from the network, it indicates that the heating equipment can receive instructions and control signals from the server normally. Therefore, it can obtain the lowest temperature in the historical temperature range of the target space.

[0148] The historical temperature curve table includes the temperature curves that the heating equipment has executed, the historical outdoor temperature, and the corresponding heating temperature for the historical outdoor temperature.

[0149] By obtaining historical temperature curves, one can obtain information about the temperature curves currently being used by the heating equipment in a household.

[0150] Understandably, when the heating equipment is disconnected from the network, in order to ensure that the indoor temperature meets the user's needs for warmth and comfort, it is necessary to obtain historical temperature curves so that the heating equipment can adjust the indoor temperature in a timely manner.

[0151] S202: Based on the minimum temperature and heating curve, determine the target temperature curve corresponding to the heating equipment.

[0152] Among them, the heating curve is a chart drawn based on historical temperature data, used to reflect the trend of water outlet temperature changes under different outdoor temperatures.

[0153] Different heating methods correspond to different temperature curves. Heating methods may include underfloor heating, air conditioning, and wall-mounted boilers. This application does not impose any special restrictions on the heating method.

[0154] Since different families use different heating methods, once the target heating method for the current family is determined, the target temperature curve corresponding to the heating equipment can be determined by combining the target heating method, the lowest historical temperature in the area where the target space is located, and the heating curve.

[0155] By identifying the historical lowest temperature in the area where the target space is located, and finding the heating curve that best matches the historical lowest temperature from the heating curve graph, the target temperature curve used by the heating equipment can be determined.

[0156] Based on the historical lowest temperature and heating curve of the target space's location, the heating curve that best matches the area can be obtained, enabling the heating equipment to provide a suitable heating temperature to meet the comfort needs of the target space.

[0157] Understandably, the heating curve reflects the performance characteristics of the heating system. For example, when the outdoor temperature is too low, the heating system of the heating equipment needs to provide more heat to maintain a stable indoor temperature, while when the outdoor temperature is too high, the heating system of the heating equipment only needs to provide less heat to maintain a stable indoor temperature.

[0158] In this step, for example, the target heating method can be determined first, and then the heating curve can be obtained. Then, based on the target heating method, the historical lowest temperature of the area where the target space is located, and the heating curve, the target temperature curve corresponding to the heating equipment can be determined together.

[0159] For example, a schematic diagram of a heating curve is given here. Figure 3As shown, the vertical axis of the heating curve represents the outlet water temperature in °C, and the horizontal axis represents the outdoor temperature in degrees Celsius. It is used to display the heat output capacity of the heating system in the heating equipment.

[0160] Depend on Figure 3 It can be seen that different heating curves correspond to different outlet water temperatures and outdoor temperatures, and the outlet water temperature and outdoor temperature are inversely proportional. When the outlet water temperature of the heating equipment is higher, the outdoor temperature of the target space is lower, and when the outlet water temperature of the heating equipment is lower, the outdoor temperature of the target space is higher.

[0161] For example, if the current household uses underfloor heating (for example, the maximum adjustable temperature of underfloor heating energy does not exceed 60℃), and the outdoor temperature of the current household area is -25℃, then by consulting the heating curve chart, the target temperature heat curve corresponding to -25℃ can be obtained as the E3 curve.

[0162] S203: Determine the current heating temperature of the heating equipment according to the target temperature curve and the current outdoor temperature of the target space according to a preset cycle.

[0163] The current outdoor temperature refers to the current outdoor temperature of the area where the target space is located.

[0164] By obtaining the current outdoor temperature of the target area according to a preset cycle, the heating equipment can be adjusted according to the latest outdoor temperature so that the indoor temperature can meet the user's comfort needs.

[0165] Understandably, periodically adjusting the heating temperature of heating equipment based on the outdoor temperature helps maintain the indoor temperature within the user's desired comfort range. When the outdoor temperature is low, the heating equipment can provide a higher heating temperature to maintain indoor comfort. Conversely, when the outdoor temperature is high, the heating equipment can lower the heating temperature or stop operating to avoid overheating or wasting energy.

[0166] The purpose of obtaining the current lowest outdoor temperature of the target space may be, for example, through the outdoor temperature sensor of the heating equipment, or from an application connected to the heating equipment via IoT, or from a network platform; this application does not impose any special restrictions on this.

[0167] In this step, for example, the current outdoor temperature of the target space can be obtained according to a preset cycle, and then the most suitable current heating temperature can be determined together based on the current outdoor temperature and the target heating curve.

[0168] Optionally, this application provides a method for determining the heating temperature corresponding to the outdoor temperature. For example, after determining the current outdoor temperature of the area where the target space is located, the outdoor temperature can be used as the outdoor temperature factor of the target temperature curve, that is, multiplying it with the target temperature curve or participating in the calculation to determine the heating temperature corresponding to the outdoor temperature.

[0169] For example, if the target temperature curve for the current household is curve E3 (y = -0.8x + 36), and the current outdoor temperature of the household is known to be -10℃, then the current heating temperature of the heating equipment can be determined to be 44℃.

[0170] S204: Obtain the current indoor temperature of the target space according to the preset cycle.

[0171] Step S204 is similar to step S101 above, and will not be repeated here.

[0172] S205: The difference between the current heating temperature and the current indoor temperature is taken as the temperature difference.

[0173] Comparing the current heating temperature of the heating equipment with the current indoor temperature of the target space is to determine whether the current indoor temperature meets the user's desired comfort range.

[0174] Understandably, when the difference between the current heating temperature of the heating equipment and the current indoor temperature of the target space is too large, it indicates that the current indoor temperature has not reached the user's desired comfort range. Therefore, the heating equipment needs to provide a higher heating temperature to reach the user's comfort range. On the other hand, when the difference between the current heating temperature of the heating equipment and the current indoor temperature of the target space is close to or too low, the heating equipment needs to reduce the current heating temperature or stop working to avoid excessive energy waste or excessively high indoor temperature.

[0175] By checking whether the current heating temperature meets the user's comfort needs according to a preset cycle, the indoor temperature can not only be kept within the user's desired comfort range, but also the energy utilization efficiency can be improved.

[0176] S206: Determine whether the temperature difference is within the first preset range; if yes, proceed to step S207; if no, proceed to step S208.

[0177] The preset intervals included in the temperature difference value are: a first preset interval, a second preset interval, and a third preset interval. The first preset interval is greater than the second preset interval, and the second preset interval is greater than the third preset interval.

[0178] The first preset interval is used to indicate that the current heating temperature of the heating equipment needs to be increased, the second preset interval is used to indicate that the current heating temperature of the heating equipment needs to be decreased, and the third preset interval is used to indicate that the current heating temperature of the heating equipment can remain unchanged.

[0179] Heating status can include: first heating status, second heating status, and third heating status.

[0180] The first heating state indicates that the heating equipment is in the heating state, the second heating state indicates that the heating equipment is in the cooling state, and the third heating state indicates that the heating equipment is in the stable heating state.

[0181] The purpose of determining whether the temperature difference is within the first preset range is to determine whether the current heating temperature of the heating equipment meets the actual indoor temperature requirement.

[0182] Understandably, by determining whether the temperature difference is within the first preset range, it is possible to ensure the matching degree between the heating temperature of the heating equipment and the actual indoor temperature, thereby providing a comfortable indoor environment.

[0183] If the temperature difference is within the first preset range, it indicates that the current heating temperature of the heating equipment has not reached the required actual indoor temperature. Therefore, the heating state of the target space can be determined as the first heating state. Based on the first heating state, a target heating scheme corresponding to the first heating state can be determined, and the heating equipment can be controlled to execute the target heating scheme.

[0184] Understandably, when it is determined that the heating temperature provided by the heating equipment is insufficient to meet the actual indoor temperature requirements, it is necessary to control the heating equipment to adjust the provided temperature in order to avoid poor indoor temperature performance.

[0185] If the temperature difference is not within the first preset range, it indicates that the current heating temperature of the heating equipment may have already reached the required indoor temperature. Therefore, it is also necessary to determine whether the temperature difference is within the second preset range.

[0186] Understandably, once it is determined that the heating temperature provided by the heating equipment meets the actual indoor temperature requirement, it is also necessary to control the heating equipment to re-determine whether the current heating temperature is causing the indoor temperature to be too high, in order to avoid excessive energy waste and affect the later use of the heating equipment.

[0187] S207: Determine the heating state of the target space as the first heating state.

[0188] S208: Determine whether the temperature difference is within the second preset range; if yes, proceed to step S209; if no, proceed to step S210.

[0189] The purpose of determining whether the temperature difference is within the second preset range is to determine whether the current heating temperature of the heating equipment exceeds the required actual indoor temperature.

[0190] Understandably, by determining whether the temperature difference is within the second preset range, the matching degree between the heating temperature of the heating equipment and the actual indoor temperature can be ensured, thereby providing a comfortable indoor environment.

[0191] If the temperature difference is within the second preset range, it indicates that the current heating temperature of the heating equipment exceeds the actual indoor temperature requirement. Therefore, the heating state of the target space can be determined as the second heating state. Thus, it is necessary to control the heating equipment to cool down the current heating temperature.

[0192] Understandably, when the heating temperature provided by the heating equipment exceeds the actual indoor temperature, it is necessary to control the heating equipment to lower the current heating temperature in order to reduce energy consumption and extend the service life of the heating equipment.

[0193] If the temperature difference is not within the second preset range, it indicates that the current heating temperature of the heating equipment does not exceed the actual indoor temperature requirement. Therefore, the heating state of the target space can be determined as the third heating state. Based on the third heating state, the target heating scheme corresponding to the third heating state can be determined, and the heating equipment can be controlled to execute the target heating scheme.

[0194] Understandably, when the heating temperature provided by the heating equipment does not exceed the actual indoor temperature, it indicates that the heating equipment is operating normally and meets the indoor temperature requirements. Therefore, the equipment can continue to maintain the current heating temperature. This not only avoids excessively low indoor temperatures and makes people feel comfortable, but also reduces additional heating needs, thereby reducing energy consumption.

[0195] S207: Determine the heating state of the target space as the first heating state.

[0196] S209: Determine the heating state of the target space as the second heating state.

[0197] S210: Determine the heating state of the target space as the third heating state.

[0198] S211: Based on the heating status, determine the target heating scheme corresponding to the heating status, and control the heating equipment to execute the target heating scheme.

[0199] Step S211 is similar to step S103 above, and will not be repeated here.

[0200] The temperature regulation method based on heating equipment provided in this embodiment first determines the target temperature curve corresponding to the lowest temperature of the target space's area from a target curve graph. Second, it determines the current heating temperature of the heating equipment and the current indoor temperature of the target space according to a preset cycle. Then, it determines the difference between the two temperatures. Finally, it determines the target heating scheme to be executed by the heating equipment based on this difference and controls the heating equipment to execute the target heating scheme. This method not only ensures that the indoor temperature meets the user's needs but also improves energy utilization efficiency, thereby improving the user's quality of life and enhancing the user experience.

[0201] Figure 4 The flowchart of the temperature regulation method based on heating equipment provided in the embodiments of this application Figure 3 .like Figure 4 As shown, this embodiment is... Figure 2 Based on the embodiments, and when the heating state is the first heating state, the method for determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme is described in detail. This embodiment shows a temperature regulation method based on heating equipment, including:

[0202] S401: Get the historical indoor temperature obtained in the last cycle.

[0203] Among them, historical indoor temperature is used to indicate the historical indoor temperature data acquired in the previous period.

[0204] By obtaining the historical indoor temperature from the previous cycle, the indoor temperature change trend of the target space can be obtained.

[0205] Understandably, understanding the indoor temperature trend of a target space allows for more rational adjustment and optimization of the heating system's operation. When the historical indoor temperature of the previous cycle is obtained, and the current indoor temperature of the current cycle is also acquired, the indoor temperature trend of the target space can be determined based on both the historical and current indoor temperatures.

[0206] The historical indoor temperature obtained in the last period can be obtained, for example, from an application connected to the smart home appliance, or from a data repository within the smart home appliance. This application does not impose any restrictions on this.

[0207] For example, the heating equipment obtains the actual indoor temperature of the target space once per hour. Assuming that the heating equipment obtains the indoor temperature at 9:00 AM, then the actual indoor temperature of the target space at 8:00 AM can be obtained from the data at this time, that is, the actual indoor temperature of the target space at 8:00 AM is 22℃.

[0208] S402: Determine whether the difference between the current indoor temperature and the historical indoor temperature is within a third preset range; if yes, proceed to step S403; if no, proceed to step S404.

[0209] The third preset interval is used to indicate that when the heating status of the target space is in the first heating state, the indoor temperature of the target space has a relatively large upward trend within a preset period. For example, the third preset interval can be an indoor temperature rise of ≥2℃ in 1 hour.

[0210] The purpose of determining whether the difference between the current indoor temperature and the historical indoor temperature is within the third preset range is to determine whether the indoor temperature rise trend of the target space is significant within the preset period.

[0211] When the indoor temperature rises significantly, it means the indoor temperature has increased substantially within the preset period. Therefore, a larger adjustment to the heating equipment's temperature is needed to ensure a comfortable indoor temperature. Conversely, when the indoor temperature rises slightly, it means the indoor temperature has changed relatively slowly within the preset period. Therefore, a more moderate adjustment to the heating equipment's temperature is needed to avoid excessive energy waste. Thus, determining whether the difference between the indoor temperature and historical indoor temperatures falls within the third preset range helps the heating equipment select an appropriate adjustment strategy based on the temperature rise trend.

[0212] If the difference between the current indoor temperature and the historical indoor temperature is within the third preset range, it indicates that the indoor temperature of the target space is rising significantly within the preset period. Therefore, the current heating temperature can be used as the new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0213] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is within the third preset range, it means that the indoor temperature in the target space is rising at a relatively fast rate within the preset period. Therefore, it is necessary to set the current heating temperature to the new heating temperature and control the heating equipment to execute the new heating temperature in order to meet the demand for faster temperature rise.

[0214] If the difference between the current indoor temperature and the historical indoor temperature is not within the third preset range, it indicates that the indoor temperature rise trend of the target space within the preset period is small. Therefore, it is necessary to determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range.

[0215] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is not within the third preset range, it means that the indoor temperature of the target space is rising at a relatively slow rate within the preset period. Therefore, it is necessary to determine whether this temperature difference is within the fourth preset range so that adjustments can be made according to the heating scheme corresponding to the fourth preset range.

[0216] S403: Use the current heating temperature as the new heating temperature, and control the heating equipment to provide heating according to the new heating temperature.

[0217] By referencing the changes in indoor temperature in the target space to determine the new heating temperature, the user's needs can be met more accurately.

[0218] Understandably, if heating equipment adjusts its temperature solely based on a preset cycle and the outdoor temperature of the target space, it may fail to respond promptly to changes in indoor temperature, resulting in a lack of comfortable indoor temperatures. Therefore, determining the new heating temperature by referencing changes in the target space's indoor temperature not only ensures a comfortable indoor environment but also improves the control precision of the heating equipment.

[0219] In this step, for example, the current heating temperature can be determined first, and then the current heating temperature can be used as the new heating temperature, thereby controlling the heating equipment to provide heating according to the new heating temperature.

[0220] S404: Determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range; if yes, proceed to step S405; if no, proceed to step S406.

[0221] The fourth preset interval is used to indicate that when the heating status of the target space is in the first heating state, the indoor temperature rise trend of the target space is moderate within a preset period. For example, the fourth preset interval can be 0.5℃ < 1h indoor temperature rise < 2℃.

[0222] The purpose of determining whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range is to determine whether the indoor temperature rise trend of the target space within the preset period is appropriate.

[0223] If the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range, it indicates that the indoor temperature rise trend of the target space is moderate within the preset period. Therefore, the sum of the current heating temperature and the first preset temperature can be used as the new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0224] When the difference between the current indoor temperature and the historical indoor temperature is determined to be within the fourth preset range, it means that the indoor temperature in the target space is rising steadily within the preset period. Therefore, the sum of the current heating temperature and the first preset temperature needs to be used as the new heating temperature, and the heating equipment needs to be controlled to implement the new heating temperature.

[0225] If the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, it indicates that the indoor temperature rise trend of the target space is not appropriate within the preset period. Therefore, when the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range, the sum of the current heating temperature and the second preset temperature can be used as the new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0226] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, it means that the indoor temperature in the target space is rising at a slow rate within the preset period. Therefore, it is necessary to determine whether the indoor temperature is rising at a slow rate within the fifth preset range. If it is within the fifth preset range, the sum of the current heating temperature and the second preset temperature is taken as the new heating temperature, and the heating equipment is controlled to execute the new heating temperature.

[0227] S405: The sum of the current heating temperature and the first preset temperature is taken as the new heating temperature, and the heating equipment is controlled to perform heating treatment according to the new heating temperature.

[0228] The first preset temperature can be, for example, 3°C.

[0229] Since the current heating temperature is the higher of the outdoor heating temperature and the heating temperature currently set by the heating equipment, after determining the current heating temperature, it can be processed with the first preset temperature to obtain a new heating temperature, so that the heating equipment can provide heating according to the new heating temperature.

[0230] In this step, for example, the current heating temperature can be determined first, and then the current heating temperature and the first preset temperature can be calculated to obtain a new heating temperature, thereby controlling the heating equipment to provide heating according to the new heating temperature.

[0231] S406: When the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range, the sum of the current heating temperature and the second preset temperature is taken as the new heating temperature, and the heating equipment is controlled to perform heating treatment according to the new heating temperature.

[0232] The fifth preset interval is used to indicate that when the heating status of the target space is in the first heating state, the indoor temperature rise trend of the target space is relatively low within a preset period. For example, the fifth preset interval can be an indoor temperature rise of ≤0.5℃ in 1 hour.

[0233] The second preset temperature can be, for example, 5℃. The second preset temperature is higher than the first preset temperature.

[0234] Once it is determined that the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, it should also be determined whether the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range.

[0235] Understandably, when the difference between the current indoor temperature and the historical indoor temperature is determined to be within the fifth preset range, it can be considered that the current indoor temperature rises at a relatively slow rate. Therefore, the sum of the current heating temperature and the second preset temperature can be used as the new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0236] Optionally, the specific implementation process of controlling the heating equipment to provide heating according to the new heating temperature may include, for example, obtaining the current heating temperature of the heating equipment; determining whether the new heating temperature is greater than the current heating temperature; if so, controlling the heating equipment to provide heating according to the new heating temperature; if not, controlling the heating equipment to provide heating according to the current heating temperature.

[0237] The purpose of determining whether the new heating temperature is higher than the current heating temperature is to confirm that the new heating temperature can meet the needs of both indoor and outdoor temperatures.

[0238] Comparing the outdoor temperature corresponding to the heating temperature with the indoor temperature corresponding to the heating temperature not only allows for comprehensive and multi-faceted temperature considerations, but also enables the appropriate heating of the target space.

[0239] Understandably, by comparing outdoor and indoor temperatures with their corresponding heating temperatures, the indoor and outdoor temperature conditions can be comprehensively considered, allowing the heating equipment to be adjusted according to actual needs to meet indoor temperature requirements.

[0240] If the new heating temperature is higher than the current heating temperature, it means that the new heating temperature can meet the needs of both indoor and outdoor temperatures. Therefore, the heating equipment can be controlled to provide heating according to the new heating temperature.

[0241] If the new heating temperature is not greater than the current heating temperature, it indicates that the new heating temperature cannot meet the needs of both indoor and outdoor temperatures. Therefore, the heating equipment can be controlled to provide heating according to the current heating temperature.

[0242] The temperature regulation method based on heating equipment provided in this embodiment, when the heating state of the target space is determined to be the first heating state, acquires the historical indoor temperature obtained in the previous cycle, and determines the difference between the historical indoor temperature and the current indoor temperature. Based on this difference, it determines the new heating temperature that the heating equipment needs to implement, thereby controlling the heating equipment to implement the new heating temperature. This method not only automatically adjusts the heating temperature of the heating equipment according to the indoor temperature rise, but also ensures that the indoor temperature is always warm, thereby improving the user's happiness index and ensuring people's quality of life.

[0243] Figure 5 The flowchart of the temperature regulation method based on heating equipment provided in the embodiments of this application Figure 4 .like Figure 5 As shown, this embodiment is... Figure 2 Based on the previous embodiment, and when the heating state is the second heating state, the method for determining a target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme is described in detail. This embodiment illustrates a temperature regulation method based on heating equipment, including:

[0244] S501: Get the historical indoor temperature obtained in the last cycle.

[0245] Step S501 is similar to step S401 above, and will not be repeated here.

[0246] S502: Determine whether the difference between the current indoor temperature and the historical indoor temperature is within a third preset range; if yes, proceed to step S503; if no, proceed to step S504.

[0247] The third preset interval is used to indicate that when the heating status of the target space is in the second heating state, the indoor temperature of the target space has a relatively large upward trend within a preset period. For example, the third preset interval can be an indoor temperature rise of ≥2℃ in 1 hour.

[0248] The purpose of determining whether the difference between the current indoor temperature and the historical indoor temperature is within the third preset range is to determine whether the indoor temperature rise trend of the target space is significant within the preset period.

[0249] When the indoor temperature rises significantly, it means the indoor temperature has increased substantially within the preset period. Therefore, a larger adjustment to the heating equipment's temperature is needed to ensure a comfortable indoor temperature. Conversely, when the indoor temperature rises slightly, it means the indoor temperature has changed relatively slowly within the preset period. Therefore, a more moderate adjustment to the heating equipment's temperature is needed to avoid excessive energy waste. Thus, determining whether the difference between the indoor temperature and historical indoor temperatures falls within the third preset range helps the heating equipment select an appropriate adjustment strategy based on the temperature rise trend.

[0250] If the difference between the current indoor temperature and the historical indoor temperature is within the third preset range, it indicates that the indoor temperature of the target space is rising significantly within the preset period. Therefore, the difference between the current heating temperature and the second preset temperature can be used as the new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0251] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is within the third preset range, it means that the indoor temperature in the target space is rising at a relatively fast rate within the preset period and has exceeded the actual needs. Therefore, it is necessary to take the difference between the current heating temperature and the second preset temperature as the new heating temperature and control the heating equipment to heat according to the new heating temperature in order to reduce energy consumption and maintain a relatively stable indoor temperature.

[0252] If the difference between the current indoor temperature and the historical indoor temperature is not within the third preset range, it indicates that the indoor temperature rise trend of the target space within the preset period is small. Therefore, it is necessary to determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range.

[0253] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is not within the third preset range, it means that although the indoor temperature of the target space exceeds the actual need, the rate of increase within the preset period is relatively slow. Therefore, it is necessary to determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range.

[0254] S503: The difference between the current heating temperature and the second preset temperature is taken as the new heating temperature, and the heating equipment is controlled to perform heating treatment according to the new heating temperature.

[0255] The second preset temperature can be, for example, 5°C.

[0256] Using the difference between the current heating temperature and the second preset temperature as the new heating temperature means adjusting the heating temperature to match the current indoor temperature of the target space, thereby improving the efficiency of the heating equipment and energy utilization. Controlling the heating equipment to operate at the new heating temperature means adjusting its operating status according to the newly set temperature, ensuring it provides heat that meets the new temperature requirements.

[0257] Understandably, using the difference between the current heating temperature and the second preset temperature as the new heating temperature and controlling the heating equipment accordingly not only allows for flexible adjustment of the heating temperature based on actual conditions but also ensures that the heating effect is met.

[0258] In this step, for example, the current heating temperature can be determined first, and then the current heating temperature and the second preset temperature can be calculated to obtain a new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0259] S504: Determine whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range; if yes, proceed to step S505; if no, proceed to step S506.

[0260] The fourth preset interval is used to indicate that when the heating status of the target space is in the second heating state, the indoor temperature rise trend of the target space is moderate within a preset period. For example, the fourth preset interval can be 0.5℃ < 1h indoor temperature rise < 2℃.

[0261] The purpose of determining whether the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range is to determine whether the indoor temperature rise trend of the target space within the preset period is appropriate.

[0262] If the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range, it indicates that the temperature rise trend of the target space is moderate within the preset period. Therefore, the difference between the current heating temperature and the first preset temperature can be used as the new heating temperature, and the heating equipment can be controlled to heat according to the new heating temperature.

[0263] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is within the fourth preset range, it means that although the indoor temperature in the target space exceeds the actual need, it is in a steady upward process. Therefore, the difference between the current heating temperature and the first preset temperature needs to be used as the new heating temperature, and the heating equipment should be controlled to implement the new heating temperature.

[0264] If the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, it indicates that the temperature rise trend of the target space is not appropriate within the preset period. Therefore, when the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range, the current heating temperature can be used as the new heating temperature, and the heating equipment can be controlled to provide heating according to the new heating temperature.

[0265] When it is determined that the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, it means that the indoor temperature in the target space is exceeding the actual needs according to the normal temperature rise frequency. Therefore, it is necessary to determine whether the indoor temperature difference within the preset period is within the fifth preset range. If it is within the fifth preset range, the current heating temperature is taken as the new heating temperature, and the heating equipment is controlled to execute the new heating temperature.

[0266] S505: The difference between the current heating temperature and the first preset temperature is taken as the new heating temperature, and the heating equipment is controlled to perform heating treatment according to the new heating temperature.

[0267] The first preset temperature can be, for example, 3°C.

[0268] In this step, for example, the current heating temperature can be determined first, and then the current heating temperature and the first preset temperature can be processed to obtain a new heating temperature, thereby controlling the heating equipment to execute the new heating temperature.

[0269] S506: When the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range, the current heating temperature is taken as the new heating temperature, and the heating equipment is controlled to perform heating treatment according to the new heating temperature.

[0270] The fifth preset interval is used to indicate that when the target space is in the second heating state, the indoor temperature rise trend of the target space is relatively low within a preset period. For example, the fifth preset interval can be an indoor temperature rise of ≤0.5℃ in 1 hour.

[0271] Once it is determined that the difference between the current indoor temperature and the historical indoor temperature is not within the fourth preset range, it should also be determined whether the difference between the current indoor temperature and the historical indoor temperature is within the fifth preset range.

[0272] Understandably, when the difference between the current indoor temperature and the historical indoor temperature is determined to be within the fifth preset range, it can be considered that the current indoor temperature is rising at a relatively slow rate. Therefore, the current heating temperature can be used as the new heating temperature to reduce energy waste.

[0273] Optionally, the specific implementation process of controlling the heating equipment to provide heating according to the new heating temperature is explained above and will not be repeated here.

[0274] The temperature regulation method based on heating equipment provided in this embodiment, when the heating state of the target space is determined to be the second heating state, acquires the historical indoor temperature obtained in the previous cycle, and determines the difference between the historical indoor temperature and the current indoor temperature. Based on this difference, it determines the new heating temperature that the heating equipment needs to implement, thereby controlling the heating equipment to implement the new heating temperature. This method not only automatically adjusts the heating temperature of the heating equipment according to the indoor temperature rise, but also ensures that the indoor temperature is always warm, thereby improving the user's happiness index and ensuring people's quality of life.

[0275] Figure 6 The flowchart of the temperature regulation method based on heating equipment provided in the embodiments of this application Figure 5 .like Figure 6 As shown, this embodiment is... Figure 2 Based on the embodiments, and when the heating state is the third heating state, the method for determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme is described in detail. The temperature regulation method based on heating equipment shown in this embodiment includes:

[0276] S601: The control water classifier relay is in the off state.

[0277] Among them, the water level relay is used to control the operating status of the water pump in the heating equipment.

[0278] When the heating equipment is in a stable heating state, in order to avoid unnecessary energy waste, extend the service life of the heating equipment, and avoid adverse effects on human health, the staged water heater relay can be controlled to disconnect.

[0279] Understandably, since the water level regulator relay is a control device in the heating system, it regulates heating by controlling the water flow. When the heating equipment is in a stable heating state, it means that the indoor temperature of the target space has reached the set temperature. Continuing to heat will lead to unnecessary energy waste. Furthermore, if the heating equipment is in a continuously stable state, continuous operation may cause overheating and wear, thus affecting the service life of the heating equipment.

[0280] S602: Real-time detection of the current indoor temperature of the target space.

[0281] The current indoor temperature of the target space can be detected by means of a temperature sensor, a smart thermostat, or a thermal imaging camera with temperature sensing capabilities. This application does not impose any special restrictions on this.

[0282] By detecting the current indoor temperature of the target space, information on temperature changes in that space can be obtained, allowing the heating equipment to adjust accordingly.

[0283] This is understandable, because when the indoor temperature of the target space is in a stable state, the water heater relay of the heating equipment is already in the off state. However, the indoor temperature of the target space changes in real time with the outdoor and indoor temperatures. Therefore, it is necessary to detect the current indoor temperature of the target space in real time so as to respond in a timely manner when a change in indoor temperature is detected.

[0284] S603: Determine whether the current indoor temperature meets the preset conditions; if yes, proceed to step S604; if no, proceed to step S602.

[0285] The preset condition could be, for example, the indoor temperature at the previous moment minus the indoor temperature at the current moment > 0.5℃.

[0286] The purpose of determining whether the current indoor temperature meets the preset conditions is to determine whether the current indoor temperature is gradually increasing.

[0287] If the current indoor temperature meets the preset conditions, it indicates that the current indoor temperature is gradually increasing. Therefore, the water purifier relay can be turned on, and the heating equipment can be controlled to provide heating according to the current heating temperature.

[0288] If the current indoor temperature does not meet the preset conditions, it indicates that the current indoor temperature is not gradually increasing. Therefore, the current indoor temperature of the target space can be re-detected.

[0289] Understandably, the preset condition is that the indoor temperature rises by more than 0.5℃ per hour. By comparing the current indoor temperature with the indoor temperature of the previous hour, it is determined whether the current indoor temperature change trend meets this condition. If it does, it means that the indoor temperature change value is gradually increasing, that is, the indoor temperature is rising rapidly, so it is necessary to keep the water purifier relay in the open state; if it does not meet the condition, it means that the indoor temperature change value is rising slowly, that is, the indoor temperature is rising slowly, so it is necessary to re-detect the current indoor temperature of the target space.

[0290] S604: Control the water classifier relay to be in the open state, and control the heating equipment to provide heating according to the current heating temperature.

[0291] Since the indoor temperature of the target space is gradually increasing, in order to meet the heating needs and improve energy efficiency, it is necessary to restart the water heater relay and control the heating equipment to provide heating according to the current heating temperature.

[0292] For example, if the current indoor temperature is 20℃ and the indoor temperature was 19℃ one hour ago, the change in the current indoor temperature is 1℃. Therefore, the change in the current indoor temperature exceeds the preset condition, so the water heater relay can be restarted and the heating equipment can be controlled to perform the current heating temperature.

[0293] The temperature regulation method based on heating equipment provided in this embodiment, when the heating state of the target space is determined to be the third heating state, controls the staged water heater relay to disconnect and monitors the current indoor temperature of the target space in real time. Then, when it is determined that the current indoor temperature of the target space meets the preset conditions, controls the staged water heater relay to open and controls the heating equipment to provide heating according to the current heating temperature. This method not only enables the indoor thermostat to adjust the energy setting temperature in a timely manner, but also ensures that the heating equipment can provide sufficient heating temperature to ensure that the indoor temperature is warm, thereby improving the user experience and improving the user's quality of life.

[0294] Figure 7 A schematic diagram of the temperature regulation device based on heating equipment provided in this application. Figure 7 As shown, this application provides a temperature regulating device based on a heating device, the temperature regulating device 700 based on a heating device includes:

[0295] The acquisition module 701 is used to acquire the current indoor temperature of the target space according to a preset cycle;

[0296] The determining module 702 is used to determine the heating status of the target space based on the current indoor temperature and the current heating temperature of the heating equipment, wherein the current heating temperature is determined based on the current outdoor temperature of the target space;

[0297] The determining module 702 is further configured to determine a target heating scheme corresponding to the heating state based on the heating state.

[0298] The control module 703 is used to control the heating equipment to execute the target heating scheme.

[0299] Optionally, the acquisition module 701 is further configured to acquire the lowest temperature in the historical temperature of the region where the target space is located;

[0300] The determining module 702 is further configured to determine the target temperature curve corresponding to the heating equipment based on the minimum temperature and the heating curve diagram, wherein different heating methods correspond to different temperature curves.

[0301] The determining module 702 is specifically used to determine the current heating temperature of the heating equipment according to the target temperature curve and the current outdoor temperature of the target space according to the preset cycle.

[0302] Optionally, the device further includes: a processing module 704;

[0303] The processing module 704 is used to take the difference between the current heating temperature and the current indoor temperature as the temperature difference.

[0304] The device further includes: a judgment module 705;

[0305] The judgment module 705 is used to determine whether the temperature difference is within a first preset range;

[0306] The determining module 702 determines the heating state of the target space as the first heating state when the temperature difference is within the first preset range.

[0307] The judgment module 705 is further configured to determine whether the temperature difference is within a second preset range when the temperature difference is not within a first preset range.

[0308] The determining module 702 is further configured to determine the heating state of the target space as a second heating state when the temperature difference is within the second preset range, wherein the first preset range is greater than the second preset range.

[0309] Optionally, the acquisition module 701 is also used to acquire the historical indoor temperature acquired in the previous cycle;

[0310] The judgment module 705 is also used to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a third preset range.

[0311] The determining module 702 is further configured to use the current heating temperature as the new heating temperature when the difference between the current indoor temperature and the historical indoor temperature is within a third preset range.

[0312] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0313] The judgment module 705 is further configured to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range when the difference between the current indoor temperature and the historical indoor temperature is not within a third preset range.

[0314] The determining module 702 is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range, take the sum of the current heating temperature and the first preset temperature as the new heating temperature.

[0315] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0316] The determining module 702 is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is not in the fourth preset range and the difference between the current indoor temperature and the historical indoor temperature is in the fifth preset range, take the sum of the current heating temperature and the second preset temperature as the new heating temperature, wherein the second preset temperature is greater than the first preset temperature.

[0317] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0318] Optionally, the acquisition module 701 also acquires the historical indoor temperature obtained in the previous cycle;

[0319] The judgment module 705 is also used to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a third preset range.

[0320] The determining module 702 is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is within a third preset range, use the difference between the current heating temperature and the second preset temperature as the new heating temperature.

[0321] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0322] The judgment module 705 is further configured to determine whether the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range when the difference between the current indoor temperature and the historical indoor temperature is not within a third preset range.

[0323] The determining module 702 is further configured to, when the difference between the current indoor temperature and the historical indoor temperature is within a fourth preset range, take the difference between the current heating temperature and the first preset temperature as the new heating temperature.

[0324] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0325] The determining module 702 is further configured to use the current heating temperature as the new heating temperature when the difference between the current indoor temperature and the historical indoor temperature is not in the fourth preset range and the difference between the current indoor temperature and the historical indoor temperature is in the fifth preset range.

[0326] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature.

[0327] Optionally, the acquisition module 701 is further configured to acquire the current heating temperature of the heating equipment;

[0328] The judgment module 705 is also used to determine whether the new heating temperature is greater than the current heating temperature;

[0329] The control module 703 is specifically used to control the heating equipment to provide heating according to the new heating temperature when the new heating temperature is greater than the current heating temperature.

[0330] The control module 703 is specifically used to control the heating equipment to provide heating according to the current heating temperature when the new heating temperature is not greater than the current heating temperature.

[0331] Optionally, the determining module 702 is specifically used to determine the heating state of the target space as the third heating state when the temperature difference is not within the second preset range;

[0332] If the heating state is the third heating state, determining the target heating scheme corresponding to the heating state and controlling the heating equipment to execute the target heating scheme includes:

[0333] The control module 703 is also used to control the water grader relay to be in the off state and to detect the current indoor temperature of the target space in real time.

[0334] The control module 703 is also used to control the water purifier relay to be in the open state when the current indoor temperature meets the preset conditions, and to control the heating equipment to perform heating treatment according to the current heating temperature.

[0335] Figure 8 A schematic diagram of the temperature regulation device based on heating equipment provided in this application. Figure 8 As shown, this application provides a temperature regulation device based on a heating device. The temperature regulation device 800 based on a heating device includes: a receiver 801, a transmitter 802, a processor 803, and a memory 804.

[0336] Receiver 801 is used to receive instructions and data;

[0337] Transmitter 802 is used to send commands and data;

[0338] Memory 804 is used to store instructions executed by the computer;

[0339] The processor 803 is used to execute computer execution instructions stored in the memory 804 to implement the various steps of the temperature regulation method based on heating equipment in the above embodiments. For details, please refer to the relevant descriptions in the foregoing embodiments of the temperature regulation method based on heating equipment.

[0340] Optionally, the memory 804 can be either standalone or integrated with the processor 803.

[0341] When the memory 804 is set up independently, the electronic device also includes a bus for connecting the memory 804 and the processor 803.

[0342] This application also provides a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, implement the temperature regulation method based on the heating equipment as described above.

[0343] It will be understood by those skilled in the art that all or some of the steps, systems, or apparatuses disclosed above, and their functional modules / units, can be implemented as software, firmware, hardware, or suitable combinations thereof. In hardware implementations, the division between functional modules / units mentioned above does not necessarily correspond to the division of physical components; for example, a physical component may have multiple functions, or a function or step may be performed collaboratively by several physical components. Some or all physical components may be implemented as software executed by a processor, such as a central processing unit, digital signal processor, or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit (ASIC). Such software may be distributed on a computer-readable medium, which may include computer storage media (or non-transitory media) and communication media (or transient media). As is known to those skilled in the art, the term computer storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media include, but are not limited to, RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disc (DVD) or other optical disc storage, magnetic cartridges, magnetic tape, disk storage or other magnetic storage devices, or any other medium that can be used to store desired information and can be accessed by a computer. Furthermore, it is well known to those skilled in the art that communication media typically contain computer-readable instructions, data structures, program modules, or other data in modulated data signals such as carrier waves or other transmission mechanisms, and may include any information delivery medium.

[0344] The technical solutions of this application have been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it is readily understood by those skilled in the art that the scope of protection of this application is obviously not limited to these specific embodiments. The above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit them. Although this application 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 or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A temperature adjustment method based on a heating device, characterized by, The method comprises the following steps: acquiring a current indoor temperature of a target space according to a preset period; determining a heating state of the target space according to the current indoor temperature and a current heating temperature of a heating device, the current heating temperature being determined according to a current outdoor temperature of the target space; determining a target heating scheme corresponding to the heating state according to the heating state, and controlling the heating device to execute the target heating scheme; before the step of acquiring the current indoor temperature of the target space according to the preset period, the method further comprises the following steps: acquiring a lowest temperature in historical temperatures of a region where the target space is located; determining a target temperature curve corresponding to the heating device according to the lowest temperature and a heating curve, the temperature curve being different for different heating modes; determining the current heating temperature of the heating device according to the target temperature curve and the current outdoor temperature of the target space according to the preset period; the step of determining the heating state of the target space according to the current indoor temperature and the current heating temperature of the heating device comprises the following steps: taking a difference between the current heating temperature and the current indoor temperature as a temperature difference; judging whether the temperature difference is in a first preset interval; if yes, determining that the heating state of the target space is a first heating state; if no, judging whether the temperature difference is in a second preset interval; if the temperature difference is in the second preset interval, determining that the heating state of the target space is a second heating state, the first preset interval being greater than the second preset interval.

2. The method of claim 1, wherein, if the heating state is the first heating state, the step of determining the target heating scheme corresponding to the heating state according to the heating state, and controlling the heating device to execute the target heating scheme comprises the following steps: acquiring a historical indoor temperature acquired in a last period; judging whether a difference between the current indoor temperature and the historical indoor temperature is in a third preset interval; if yes, taking the current heating temperature as a new heating temperature, and controlling the heating device to perform heating processing according to the new heating temperature; if no, judging whether the difference between the current indoor temperature and the historical indoor temperature is in a fourth preset interval; if the difference between the current indoor temperature and the historical indoor temperature is in the fourth preset interval, taking a sum of the current heating temperature and a first preset temperature as the new heating temperature, and controlling the heating device to perform heating processing according to the new heating temperature; if the difference between the current indoor temperature and the historical indoor temperature is not in the fourth preset interval, and the difference between the current indoor temperature and the historical indoor temperature is in a fifth preset interval, taking a sum of the current heating temperature and a second preset temperature as the new heating temperature, and controlling the heating device to perform heating processing according to the new heating temperature, wherein the second preset temperature is greater than the first preset temperature.

3. The method of claim 1, wherein, if the heating state is the second heating state, the step of determining the target heating scheme corresponding to the heating state according to the heating state, and controlling the heating device to execute the target heating scheme comprises the following steps: acquiring a historical indoor temperature acquired in a last period; determining whether the difference between the current indoor temperature and the historical indoor temperature is in a third preset interval; if yes, taking the difference between the current heating temperature and a second preset temperature as a new heating temperature, and controlling the heating device to perform heating processing according to the new heating temperature; if no, determining whether the difference between the current indoor temperature and the historical indoor temperature is in a fourth preset interval; if the difference between the current indoor temperature and the historical indoor temperature is in the fourth preset interval, taking the difference between the current heating temperature and a first preset temperature as a new heating temperature, and controlling the heating device to perform heating processing according to the new heating temperature; if the difference between the current indoor temperature and the historical indoor temperature is not in the fourth preset interval, and the difference between the current indoor temperature and the historical indoor temperature is in a fifth preset interval, taking the current heating temperature as a new heating temperature, and controlling the heating device to perform heating processing according to the new heating temperature.

4. The method according to claim 2 or 3, characterized in that, the controlling the heating device to perform heating processing according to the new heating temperature comprises: acquiring the current heating temperature of the heating device; determining whether the new heating temperature is greater than the current heating temperature; if yes, controlling the heating device to perform heating processing according to the new heating temperature; if no, controlling the heating device to perform heating processing according to the current heating temperature.

5. The method of claim 1, wherein, the method further comprises: when the temperature difference is not in the second preset interval, determining that the heating state of the target space is a third heating state; if the heating state is the third heating state, the determining, according to the heating state, of a target heating scheme corresponding to the heating state and the controlling of the heating device to execute the target heating scheme comprise: controlling a hierarchical water valve relay to be in an off state, and detecting the current indoor temperature of the target space in real time; when the current indoor temperature meets a preset condition, controlling the hierarchical water valve relay to be in an on state, and controlling the heating device to perform heating processing according to the current heating temperature.

6. A temperature adjustment device based on a heating device, characterized by comprise: an acquisition module, configured to acquire the current indoor temperature of a target space according to a preset period; a determination module, configured to determine a heating state of the target space according to the current indoor temperature and a current heating temperature of a heating device, the current heating temperature being determined according to a current outdoor temperature of the target space; the determination module is further configured to determine, according to the heating state, a target heating scheme corresponding to the heating state; a control module, configured to control the heating device to execute the target heating scheme; the acquisition module is further configured to acquire a lowest temperature in historical temperatures of a region where the target space is located; the determination module is further configured to determine, according to the lowest temperature and a heating curve, a target temperature curve corresponding to the heating device, the temperature curves corresponding to different heating modes being different; and determine, according to the target temperature curve and the current outdoor temperature of the target space, the current heating temperature of the heating device according to the preset period. The determining module is specifically configured to take a difference between the current heating temperature and the current indoor temperature as a temperature difference; determine whether the temperature difference is in a first preset interval; if yes, determine that a heating state of the target space is a first heating state; if no, determine whether the temperature difference is in a second preset interval; and when the temperature difference is in the second preset interval, determine that the heating state of the target space is a second heating state, the first preset interval being greater than the second preset interval.

7. A temperature regulating device based on a heating device, characterized in that The method comprises: a memory; a processor; wherein the memory stores computer-executed instructions; the processor executes the computer-executed instructions stored in the memory to implement the heating device-based temperature adjustment method according to any one of claims 1-5.

8. A computer storage medium, characterized in that, The computer storage medium stores computer-executed instructions, and the computer-executed instructions are executed by the processor to implement the heating device-based temperature adjustment method according to any one of claims 1-5.

Citation Information

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