Intelligent energy-saving control method, device and equipment for air conditioner and medium

By receiving control commands in the air-conditioning system, automatically judging the operating mode and detecting the temperature in real time, the precise energy-saving control of the air-conditioning system is achieved, and the problem of poor energy-saving control accuracy in the existing technology is solved, reducing energy consumption and improving user comfort.

CN119958066APending Publication Date: 2025-05-09QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202510118775.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-05-09

AI Technical Summary

Technical Problem

The existing air conditioning systems have poor accuracy in energy-saving control, making it difficult to effectively reduce energy consumption while ensuring indoor comfort, especially when facing complex indoor and outdoor environment changes, the adjustment capability is limited.

Method used

By receiving the air conditioning control command, it is automatically determined whether it is the first operation, control the air conditioning operation mode according to the air conditioning control command, and detect in real time whether the indoor ambient temperature reaches the target set temperature. After reaching the target set temperature, it automatically switches to the preset energy-saving control mode, and reduces the operating capacity in stages to achieve accurate energy-saving control.

Benefits of technology

It realizes precise energy-saving control of the air conditioning system, reduces energy consumption, extends the service life of air conditioning equipment, reduces maintenance costs, and improves user comfort experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of household appliances, and provides an intelligent energy-saving control method, device and equipment for an air conditioner and a medium. Wherein the air conditioner control instruction comprises a target set temperature; on the basis of initial operation, controlling the air conditioner to refrigerate or heat according to the air conditioner control instruction and an air conditioner operation mode, and detecting whether the indoor environment temperature reaches a target set temperature or not; and controlling the air conditioner to operate according to a preset energy-saving control mode when the indoor environment temperature reaches the target set temperature. According to the method, the defect that the energy-saving control precision is poor due to the limitation of the sensor precision and the algorithm is overcome, energy-saving precise control is achieved, and the energy consumption is effectively reduced while the indoor comfort degree is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of household appliances, and in particular to an intelligent energy-saving control method, device, equipment and medium for an air conditioner. Background Art

[0002] With the continuous advancement of technology, air conditioners have become an indispensable electrical appliance in modern homes and work environments. However, as energy consumption issues become increasingly prominent, energy-saving control of air conditioners has become the focus of industry research and development. Energy-saving control technology aims to reduce unnecessary energy consumption while maintaining the comfort of the indoor environment by optimizing the operation mode of air conditioners.

[0003] At present, the energy-saving control method commonly used in air-conditioning systems mainly relies on sensors to monitor indoor and outdoor environmental parameters, such as indoor ambient temperature, outdoor temperature and humidity. These data are transmitted to the air-conditioning control unit. The control unit adjusts the air-conditioning operation mode according to the preset program algorithm, including the working status of the compressor, fan speed and refrigerant flow rate, etc., in order to achieve efficient use of energy while meeting the user's comfort needs.

[0004] However, due to the limitations of the algorithm, the above energy-saving control method often makes it difficult for the air-conditioning system to achieve the expected energy-saving effect and comfort in actual operation, which easily leads to energy waste or reduced indoor comfort. The control accuracy needs to be improved, and when faced with complex changes in indoor and outdoor environments, the adjustment ability is limited, making it difficult to achieve the optimal energy-saving effect. Summary of the invention

[0005] The present invention provides an intelligent energy-saving control method, device, equipment and medium for air conditioning, which are used to solve the defect of poor energy-saving control accuracy in the prior art, realize precise control of energy saving, and effectively reduce energy consumption while ensuring indoor comfort.

[0006] The present invention provides an intelligent energy-saving control method for an air conditioner, comprising: receiving an air-conditioning control instruction, and determining whether it is an initial operation; wherein the air-conditioning control instruction includes a target set temperature; based on the initial operation, controlling the air-conditioning to cool or heat according to an air-conditioning operation mode according to the air-conditioning control instruction, and detecting whether the indoor ambient temperature reaches the target set temperature; based on the indoor ambient temperature reaching the target set temperature, controlling the air-conditioning to operate according to a preset energy-saving control mode.

[0007] It should be noted that by receiving the air-conditioning control command, it automatically determines whether it is the first operation to avoid users from making complex parameter settings. The air conditioner directly cools or heats according to the corresponding mode according to the air-conditioning control command, and detects the indoor ambient temperature in real time to determine whether the target set temperature is reached, thereby ensuring that the indoor temperature accurately reaches the user's expected value, creating a stable and comfortable indoor environment for users, and meeting users' basic needs for temperature comfort. After the indoor ambient temperature reaches the target set temperature, the air conditioner automatically switches to the preset energy-saving control mode to avoid energy waste caused by the air conditioner still running in a high energy consumption mode after reaching the target set temperature. While ensuring indoor comfort, it effectively reduces energy consumption. Long-term use can save users electricity expenses and achieve precise control of energy saving.

[0008] According to the present invention, there is provided an intelligent energy-saving control method for air conditioning. Based on the indoor ambient temperature reaching the target set temperature, the air conditioner is controlled to operate according to a preset energy-saving control mode, including: based on the indoor ambient temperature reaching the target set temperature, the air conditioner continues to be controlled to operate according to the air-conditioning operation mode, and detects whether the indoor ambient temperature reaches a first preset temperature; based on the indoor ambient temperature reaching the first preset temperature, the preset energy-saving control mode is turned on to reduce the operating capacity of the air-conditioning operation mode according to a first preset ratio, obtain the first operation mode, and control the air conditioner to operate according to the first operation mode.

[0009] It should be noted that when the indoor ambient temperature reaches the target set temperature, the air-conditioning operating mode is not adjusted immediately and significantly. Instead, the current operating mode is maintained first to avoid excessive temperature fluctuations that may affect the user's physical sensation. The energy-saving mode is turned on only when the temperature rises to the first preset temperature to reduce the operating capacity according to the first preset ratio. This effectively reduces the air-conditioning energy consumption while ensuring indoor comfort, achieves the purpose of energy saving, avoids frequent and drastic adjustments to the operating mode of the air-conditioner, reduces the number of starts and stops of equipment compressors, fans and other components, and drastic changes in operating loads, helps reduce equipment wear, extends the service life of air-conditioning equipment, and reduces equipment maintenance costs.

[0010] According to the present invention, there is provided an intelligent energy-saving control method for air conditioning, after controlling the operation of the air conditioning according to the first operation mode, the method includes: detecting whether the indoor ambient temperature reaches the second preset temperature within the first target time; wherein the difference between the second preset temperature and the target setting temperature is greater than the difference between the first preset temperature and the target setting temperature; if the indoor ambient temperature reaches the second preset temperature within the first target time, controlling the air conditioning to continue to operate in the first operation mode; otherwise, continuing to control the operation of the air conditioning according to the first operation mode until the indoor ambient temperature reaches the second preset temperature, reducing the operation capacity of the first operation mode according to the second preset ratio, obtaining the second operation mode, and controlling the operation of the air conditioning according to the second operation mode; wherein the second preset ratio is greater than the first preset ratio.

[0011] It should be noted that after the air conditioner is operated in the first operating mode, it will decide whether to reduce the operating capacity again based on whether the indoor ambient temperature reaches the second preset temperature within the first target time. If the second preset temperature can be reached within the first target time, the first operating mode can be maintained to maintain the indoor ambient temperature at the target set temperature, thereby ensuring a smooth transition of the indoor ambient temperature and avoiding temperature fluctuations that may be caused by frequent adjustments to the operating mode, so that users are always in a more comfortable temperature environment and improve the continuity of comfort. If the second preset temperature cannot be reached within the first target time, the operating capacity will be reduced according to a larger second preset ratio. This allows the air conditioner to continuously optimize operating efficiency, deeply tap energy-saving potential, and reduce energy consumption while ensuring that the indoor ambient temperature is suitable.

[0012] According to the present invention, there is provided an intelligent energy-saving control method for air conditioners, which controls the air conditioner to continuously operate in a first operating mode, including: controlling the air conditioner to continuously operate in the first operating mode, and detecting whether the indoor ambient temperature changes within a second target time; wherein the second target time is greater than the first target time; if the indoor ambient temperature changes within the second target time, continuing to control the air conditioner to operate in the first operating mode; otherwise, reducing the operating capacity of the first operating mode according to a third preset ratio to obtain a third operating mode, and controlling the air conditioner to operate in the third operating mode; wherein the third preset ratio is greater than the first preset ratio.

[0013] It should be noted that, based on the control of the existing first operating mode, the corresponding operating mode is further adjusted according to whether the indoor temperature changes within a longer second target time. If the indoor ambient temperature does not change, the operating capacity is increased according to a third preset ratio that is greater than the first preset ratio, so as to accurately match the actual indoor temperature demand and energy consumption, thereby avoiding energy waste and preventing uncomfortable indoor temperature due to excessive energy saving, and effectively balancing energy saving and comfort. If the indoor ambient temperature changes, the first operating mode is maintained to prevent temperature fluctuations caused by mode switching, thereby creating a continuous, stable and comfortable environment for users and improving the overall living or working experience.

[0014] According to the present invention, an intelligent energy-saving control method for air conditioning is provided, which includes: detecting whether the indoor ambient temperature reaches the target setting temperature, and uploading the corresponding air conditioning operation parameters to the cloud based on the indoor ambient temperature reaching the target setting temperature, after controlling the air conditioning operation according to the corresponding mode.

[0015] It should be noted that by uploading the air-conditioning operating parameters to the cloud after the corresponding energy-saving control is completed during the initial operation, the current indoor environmental conditions can be accurately identified by matching with the massive historical data in the cloud when it is not the initial operation, so as to flexibly adjust the energy-saving control method. The continuously uploaded operating parameters are convenient for subsequent analysis and processing, so as to detect potential fault hazards in advance.

[0016] According to the air-conditioning intelligent energy-saving control method provided by the present invention, determining whether it is the first operation also includes: based on the non-initial operation state, obtaining the current air-conditioning operation parameters, and matching the current air-conditioning operation parameters with the cloud data; wherein the cloud data is used to characterize the air-conditioning operation parameters uploaded to the cloud; based on a successful match, according to the air-conditioning control instruction, controlling the air-conditioning to operate according to the current air-conditioning operation parameters, and detecting whether the indoor ambient temperature reaches the target set temperature; based on the indoor ambient temperature reaching the target set temperature, increasing the preset frequency by the counted frequency to control the operation of the air-conditioning.

[0017] It should be noted that when it is detected that it is not the first time to operate, the current air-conditioning operating parameters are obtained and matched with the cloud data. If the match is successful, the air-conditioning is operated according to the current air-conditioning operating parameters, so as to automatically adjust according to past usage habits, avoid users from resetting air-conditioning parameters, and improve the convenience of users using air-conditioning. After running according to the matching current air-conditioning operating parameters, the indoor ambient temperature is continuously detected to see whether it reaches the target setting temperature, so as to ensure that the indoor ambient temperature can be accurately controlled at the user's expected level, creating a stable and comfortable indoor environment for users. When the indoor ambient temperature reaches the target setting temperature, the preset frequency is increased by taking into account the frequency to control the operation of the air conditioner, so that the air conditioner can flexibly adjust the operating status according to changes in the indoor environment, which helps to maintain the stability of the indoor temperature, while avoiding frequent start and stop of the air conditioner and extending the service life of the air conditioner.

[0018] According to an air conditioning intelligent energy-saving control method provided by the present invention, after increasing the counting frequency according to the preset frequency and controlling the air conditioning operation, the method includes: detecting whether the indoor ambient temperature drops; if the indoor ambient temperature drops, canceling the temperature compensation; wherein the temperature compensation is performed based on cloud data when the air conditioning is controlled to operate according to the current air conditioning operation parameters according to the air conditioning control instruction; otherwise, the air conditioning operation is continued to be controlled according to the adjusted counting frequency.

[0019] It should be noted that after the air conditioner is controlled to operate according to the calculated frequency of the increased preset frequency, the indoor ambient temperature is detected to see if it has dropped so as to capture the change in indoor temperature. Once the indoor ambient temperature is detected to have dropped, the temperature compensation is immediately canceled to make the air conditioner operation more in line with the actual temperature requirements, avoiding excessive adjustment resulting in uncomfortable indoor temperature, and providing users with a more accurate and comfortable temperature environment. In addition, the temperature compensation strategy is dynamically adjusted according to the change in indoor temperature to make the air conditioner operation more scientific and reasonable, improve energy utilization efficiency, reduce energy costs while ensuring user comfort, and achieve energy-saving effects.

[0020] The present invention also provides an intelligent energy-saving control device for an air conditioner, comprising: a state detection module, which receives an air-conditioning control instruction and determines whether it is an initial operation; wherein the air-conditioning control instruction includes a target set temperature; a temperature detection module, which controls the air-conditioning to cool or heat according to an air-conditioning operation mode according to the air-conditioning control instruction based on the initial operation, and detects whether the indoor ambient temperature reaches the target set temperature; and an energy-saving control module, which controls the operation of the air-conditioning according to a preset energy-saving control mode based on the indoor ambient temperature reaching the target set temperature.

[0021] It should be noted that the air-conditioning control command is received through the status detection module, and it is automatically determined whether it is the first operation to avoid the user from making complex parameter settings. The air-conditioning is controlled by the temperature detection module to directly cool or heat according to the corresponding mode according to the air-conditioning control command, and the indoor ambient temperature is detected in real time to determine whether the target set temperature is reached, thereby ensuring that the indoor temperature accurately reaches the user's expected value, creating a stable and comfortable indoor environment for the user, and meeting the user's basic needs for temperature comfort. After the indoor ambient temperature reaches the target set temperature, the air-conditioning automatically switches to the preset energy-saving control mode through the energy-saving control module to avoid energy waste caused by the air-conditioning still running in a high energy consumption mode after reaching the target set temperature. While ensuring indoor comfort, it effectively reduces energy consumption. Long-term use can save electricity bills for users and achieve precise control of energy saving.

[0022] The present invention also provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the computer program, the steps of any of the above-mentioned intelligent energy-saving control methods for air conditioners are implemented.

[0023] The present invention also provides a non-transitory computer-readable storage medium on which a computer program is stored. When the computer program is executed by a processor, the steps of any of the above-mentioned intelligent energy-saving control methods for air conditioners are implemented. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0025] Figure 1 This is one of the flow charts of the air conditioner intelligent energy-saving control method provided by the present invention; Figure 2 This is the second flow chart of the air conditioner intelligent energy-saving control method provided by the present invention; Figure 3 It is a structural schematic diagram of the air conditioner intelligent energy-saving control device provided by the present invention; Figure 4 It is a structural schematic diagram of the electronic device provided by the present invention. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be clearly and completely described below in conjunction with the drawings of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0027] Figure 1 A flow chart of an air conditioner intelligent energy-saving control method of the present invention is described, the method comprising: S11, receiving an air conditioning control instruction and determining whether it is the first operation; wherein the air conditioning control instruction includes a target setting temperature; S12, based on the fact that it is the first operation, controlling the air conditioner to perform cooling or heating according to the air conditioner operation mode according to the air conditioner control instruction, and detecting whether the indoor ambient temperature reaches the target set temperature; S13, based on the indoor ambient temperature reaching the target set temperature, the air conditioner is controlled to operate according to a preset energy-saving control mode.

[0028] It should be noted that the step numbers "S1N" in this manual do not represent the order of the air conditioner intelligent energy-saving control method. Figure 2 The air conditioning intelligent energy-saving control method of the present invention is described.

[0029] Step S11, receiving an air conditioning control instruction and determining whether it is the first operation; wherein the air conditioning control instruction includes a target set temperature.

[0030] In an optional embodiment, determining whether it is the first operation includes: obtaining current air-conditioning operating parameters, and matching the current air-conditioning operating parameters with cloud data; if the match is successful, it is the first operation; otherwise, it is not the first operation.

[0031] It should be added that the cloud data is used to characterize the air-conditioning operating parameters in the cloud, and the air-conditioning operating parameters are uploaded after the air-conditioning operation is controlled based on the initial operation according to the preset energy-saving control mode.

[0032] Step S12, based on the fact that it is the first operation, the air conditioner is controlled to perform cooling or heating according to the air conditioner operation mode according to the air conditioner control instruction, and whether the indoor ambient temperature reaches the target set temperature.

[0033] It should be added that detecting whether the indoor ambient temperature reaches the target set temperature also includes: based on the indoor ambient temperature not reaching the target set temperature, continuing to control the air conditioner according to the air conditioner operation mode to cool or heat according to the air conditioner control instruction until the indoor ambient temperature reaches the target set temperature. In addition, the air conditioner operation mode can be set according to the actual use needs of the user, such as cooling mode or heating mode, which is not further limited here.

[0034] Step S13, based on the indoor ambient temperature reaching the target set temperature, the air conditioner is controlled to operate according to a preset energy-saving control mode.

[0035] In this embodiment, reference Figure 2 , based on the indoor ambient temperature reaching the target set temperature, the air conditioner is controlled to operate according to the preset energy-saving control mode, including: based on the indoor ambient temperature reaching the target set temperature, the air conditioner continues to be controlled to operate according to the air-conditioning operation mode, and detects whether the indoor ambient temperature reaches a first preset temperature; based on the indoor ambient temperature reaching the first preset temperature, the preset energy-saving control mode is turned on to reduce the operating capacity of the air-conditioning operation mode according to a first preset ratio, obtain the first operation mode, and control the air conditioner to operate according to the first operation mode.

[0036] It should be noted that when the indoor ambient temperature reaches the target set temperature, the air-conditioning operating mode is not adjusted immediately and significantly. Instead, the current operating mode is maintained first to avoid excessive temperature fluctuations that may affect the user's physical sensation. The energy-saving mode is turned on only when the temperature rises to the first preset temperature to reduce the operating capacity according to the first preset ratio. This effectively reduces the air-conditioning energy consumption while ensuring indoor comfort, achieves the purpose of energy saving, avoids frequent and drastic adjustments to the operating mode of the air-conditioner, reduces the number of starts and stops of equipment compressors, fans and other components, and drastic changes in operating loads, helps reduce equipment wear, extends the service life of air-conditioning equipment, and reduces equipment maintenance costs.

[0037] It should be supplemented that detecting whether the indoor ambient temperature reaches the first preset temperature also includes: based on the indoor ambient temperature not reaching the first preset temperature, continuing to control the air conditioner to operate according to the air conditioning operation mode until the indoor ambient temperature reaches the first preset temperature, turning on the preset energy-saving control mode.

[0038] In addition, the first preset temperature and the first preset ratio can flexibly adjust the energy-saving control strategy according to different usage scenarios, seasons, user preferences, etc. In summer and winter, in different regions or for user groups with different temperature sensitivities, a more optimized balance between energy saving and comfort can be achieved by adjusting these two parameters.

[0039] Furthermore, the magnitude of the first preset temperature and the target setting temperature needs to be determined according to the actual air-conditioning operation mode. In the cooling mode, the first preset temperature is lower than the target setting temperature. In the heating mode, the first preset temperature is higher than the target setting temperature. For example, in the heating mode, the first preset temperature can increase the target setting temperature by 2 degrees Celsius. The first preset ratio can be 20%, so that the operating capacity of the corresponding air-conditioning operation mode is adjusted to 80%. No further limitation is made here. The preset energy-saving control mode is set based on the energy-saving design requirements. Please refer to the context for the control method after the preset energy-saving control mode is turned on. No repetition is made here.

[0040] In an optional embodiment, after controlling the operation of the air conditioner according to the first operating mode, it includes: detecting whether the indoor ambient temperature reaches a second preset temperature within a first target time; wherein the difference between the second preset temperature and the target setting temperature is greater than the difference between the first preset temperature and the target setting temperature; if the indoor ambient temperature reaches the second preset temperature within the first target time, controlling the air conditioner to continue to operate in the first operating mode; otherwise, continuing to control the operation of the air conditioner according to the first operating mode until the indoor ambient temperature reaches the second preset temperature, reducing the operating capacity of the first operating mode according to a second preset ratio, obtaining the second operating mode, and controlling the operation of the air conditioner according to the second operating mode; wherein the second preset ratio is greater than the first preset ratio.

[0041] It should be noted that after the air conditioner is operated in the first operating mode, it will decide whether to reduce the operating capacity again based on whether the indoor ambient temperature reaches the second preset temperature within the first target time. If the second preset temperature can be reached within the first target time, the first operating mode can be maintained to maintain the indoor ambient temperature at the target set temperature, thereby ensuring a smooth transition of the indoor ambient temperature and avoiding temperature fluctuations that may be caused by frequent adjustments to the operating mode, so that users are always in a more comfortable temperature environment and improve the continuity of comfort. If the second preset temperature cannot be reached within the first target time, the operating capacity will be reduced according to a larger second preset ratio. This allows the air conditioner to continuously optimize operating efficiency, deeply tap energy-saving potential, and reduce energy consumption while ensuring that the indoor ambient temperature is suitable.

[0042] It should be noted that the above control mode is not static, but dynamically adjusted according to changes in indoor ambient temperature. By setting different second preset ratios, second preset temperatures and first target times, it can better adapt to heat loss or gain in different environments. For example, when there are many people indoors and the equipment generates a lot of heat, resulting in a rapid increase in heat, the air-conditioning operation mode can be flexibly adjusted to maintain a stable indoor ambient temperature.

[0043] Furthermore, the magnitude of the second preset temperature, the first preset temperature and the target setting temperature also needs to be determined according to the actual air-conditioning operation mode. In the cooling mode, the second preset temperature is lower than the target setting temperature and higher than the first preset temperature. In the heating mode, the second preset temperature is higher than the target setting temperature and lower than the first preset temperature. For example, the first target time may be 10 minutes. In the heating mode, the second preset temperature may be 1 degree Celsius higher than the target setting temperature. The second preset ratio may be 40%, so that the operation capacity of the corresponding air-conditioning operation mode is adjusted to 60%. No further limitation is made here. In addition, by reducing the operating capacity of the air-conditioning operating mode according to a first preset ratio when the indoor ambient temperature reaches a first preset temperature, and reducing the operating capacity of the corresponding operating mode according to a second preset ratio when the second preset temperature is reached within the first target time, the operating capacity is reduced in stages and according to different preset ratios to achieve fine-grained control of the indoor temperature, avoiding sudden and significant frequency reduction or frequency increase of the air-conditioning equipment, thereby reducing the mechanical stress and electrical shock of the equipment, reducing the risk of equipment failure, helping to extend the overall service life of the air-conditioning equipment, and reducing equipment maintenance and replacement costs.

[0044] Furthermore, controlling the air conditioner to continuously operate in the first operating mode includes: controlling the air conditioner to continuously operate in the first operating mode, and detecting whether the indoor ambient temperature changes within a second target time; wherein the second target time is greater than the first target time; if the indoor ambient temperature changes within the second target time, continuing to control the air conditioner to operate in the first operating mode; otherwise, reducing the operating capacity of the first operating mode according to a third preset ratio to obtain a third operating mode, and controlling the air conditioner to operate in the third operating mode; wherein the third preset ratio is greater than the first preset ratio.

[0045] It should be noted that, based on the control of the existing first operating mode, the corresponding operating mode is further adjusted according to whether the indoor temperature changes within a longer second target time. If the indoor ambient temperature does not change, the operating capacity is increased according to a third preset ratio that is greater than the first preset ratio, so as to accurately match the actual indoor temperature demand and energy consumption, thereby avoiding energy waste and preventing uncomfortable indoor temperature due to excessive energy saving, and effectively balancing energy saving and comfort. If the indoor ambient temperature changes, the first operating mode is maintained to prevent temperature fluctuations caused by mode switching, thereby creating a continuous, stable and comfortable environment for users and improving the overall living or working experience.

[0046] In addition, the second target time can be configured with reference to the first target time above to ensure that the second target time is greater than the first target time. For example, if the first target time is 10 minutes, the second target time can be 15 minutes. The third preset ratio can be set with reference to the second preset ratio, or it can be less than the first preset ratio and greater than or equal to the second preset ratio. No further limitation is made here.

[0047] In an optional embodiment, after controlling the air conditioner to operate in a corresponding mode, it includes: detecting whether the indoor ambient temperature reaches the target set temperature, and uploading the corresponding air conditioner operating parameters to the cloud based on whether the indoor ambient temperature reaches the target set temperature.

[0048] It should be added that when the indoor ambient temperature reaches the target setting temperature, it is necessary to exit the preset energy-saving control mode. In addition, if the indoor ambient temperature does not reach the target setting temperature, the air conditioner operation will continue to be controlled according to the corresponding mode. The specific control method can refer to the energy-saving control method above, and will not be repeated here.

[0049] It should be noted that by uploading the air-conditioning operating parameters to the cloud after the corresponding energy-saving control is completed during the initial operation, the current indoor environmental conditions can be accurately identified by matching with the massive historical data in the cloud when it is not the initial operation, so as to flexibly adjust the energy-saving control method. The continuously uploaded operating parameters are convenient for subsequent analysis and processing, so as to detect potential fault hazards in advance.

[0050] In an optional embodiment, determining whether it is the first operation also includes: based on the non-initial operation state, obtaining the current air-conditioning operation parameters, and matching the current air-conditioning operation parameters with the cloud data; wherein the cloud data is used to characterize the air-conditioning operation parameters uploaded to the cloud; based on a successful match, according to the air-conditioning control instructions, controlling the air-conditioning to operate according to the current air-conditioning operation parameters, and detecting whether the indoor ambient temperature reaches the target set temperature; based on the indoor ambient temperature reaching the target set temperature, increasing the preset frequency by the calculated frequency to control the air-conditioning operation.

[0051] It should be noted that when it is detected that it is not the first time to operate, the current air-conditioning operating parameters are obtained and matched with the cloud data. If the match is successful, the air-conditioning is operated according to the current air-conditioning operating parameters, so as to automatically adjust according to past usage habits, avoid users from resetting air-conditioning parameters, and improve the convenience of users using air-conditioning. After running according to the matching current air-conditioning operating parameters, the indoor ambient temperature is continuously detected to see whether it reaches the target setting temperature, so as to ensure that the indoor ambient temperature can be accurately controlled at the user's expected level, creating a stable and comfortable indoor environment for users. When the indoor ambient temperature reaches the target setting temperature, the preset frequency is increased by taking into account the frequency to control the operation of the air conditioner, so that the air conditioner can flexibly adjust the operating status according to changes in the indoor environment, which helps to maintain the stability of the indoor temperature, while avoiding frequent start and stop of the air conditioner and extending the service life of the air conditioner.

[0052] In addition, if the matching is unsuccessful, it can be controlled in the same way as the initial operation. For details, please refer to the above text and will not be repeated here.

[0053] In an optional embodiment, after the counting frequency is increased according to the preset frequency and the air conditioner operation is controlled, it includes: detecting whether the indoor ambient temperature drops; if the indoor ambient temperature drops, canceling the temperature compensation; wherein the temperature compensation is performed based on cloud data when the air conditioner is controlled to operate according to the current air conditioner operating parameters according to the air conditioner control instructions; otherwise, the air conditioner operation is continued to be controlled according to the adjusted counting frequency.

[0054] It should be noted that after the air conditioner is controlled to operate according to the calculated frequency of the increased preset frequency, the indoor ambient temperature is detected to see if it has dropped so as to capture the change in indoor temperature. Once the indoor ambient temperature is detected to have dropped, the temperature compensation is immediately canceled to make the air conditioner operation more in line with the actual temperature requirements, avoiding excessive adjustment resulting in uncomfortable indoor temperature, and providing users with a more accurate and comfortable temperature environment. In addition, the temperature compensation strategy is dynamically adjusted according to the change in indoor temperature to make the air conditioner operation more scientific and reasonable, improve energy utilization efficiency, reduce energy costs while ensuring user comfort, and achieve energy-saving effects.

[0055] It is worth noting that before controlling the air conditioner to operate according to the current air conditioner operating parameters according to the air conditioner control instructions, it includes: determining the compensation value of the air conditioner operation and the indoor and outdoor heat exchange compensation value under the current indoor ambient temperature based on cloud data; wherein, the indoor and outdoor heat exchange compensation value is determined based on the indoor and outdoor heat exchange corresponding to the cloud data and the current indoor ambient temperature.

[0056] In addition, when the air conditioner is controlled to operate according to the current air conditioner operating parameters according to the air conditioner control instruction, it also includes: temperature compensation for the air conditioner operation according to the compensation value of the air conditioner operation; temperature compensation for indoor and outdoor heat exchange according to the indoor and outdoor heat exchange compensation value.

[0057] Correspondingly, detecting whether the indoor ambient temperature reaches the target set temperature also includes: based on the indoor ambient temperature reaching the target set temperature, canceling the temperature compensation for the air-conditioning operation, and continuing to perform temperature compensation for indoor and outdoor heat exchange.

[0058] Likewise, when the indoor ambient temperature drops, the temperature compensation that is canceled is the temperature compensation for indoor and outdoor heat exchange.

[0059] To summarize, the embodiment of the present invention automatically determines whether it is the first operation by receiving the air-conditioning control command, so as to avoid the user from performing complex parameter settings. The air-conditioning directly cools or heats according to the corresponding mode according to the air-conditioning control command, and detects the indoor ambient temperature in real time to determine whether the target setting temperature is reached, thereby ensuring that the indoor temperature accurately reaches the value expected by the user, creating a stable and comfortable indoor environment for the user, and meeting the user's basic needs for temperature comfort. After the indoor ambient temperature reaches the target setting temperature, the air-conditioning automatically switches to the preset energy-saving control mode to avoid energy waste caused by the air-conditioning still running in a high energy consumption mode after reaching the target setting temperature. While ensuring indoor comfort, it effectively reduces energy consumption. Long-term use can save electricity expenses for users and achieve precise control of energy saving.

[0060] The air conditioner intelligent energy-saving control device provided by the present invention is described below. The air conditioner intelligent energy-saving control device described below and the air conditioner intelligent energy-saving control method described above can be referenced to each other.

[0061] Figure 3 The schematic diagram of the structure of an intelligent energy-saving control device for air conditioner is shown, and the device comprises: The state detection module 31 receives the air conditioning control instruction and determines whether it is the first operation; wherein the air conditioning control instruction includes the target setting temperature; The temperature detection module 32 controls the air conditioner to cool or heat according to the air conditioner operation mode based on the first operation according to the air conditioner control instruction, and detects whether the indoor ambient temperature reaches the target set temperature; The energy-saving control module 33 controls the operation of the air conditioner according to a preset energy-saving control mode based on the indoor ambient temperature reaching the target set temperature.

[0062] In an optional embodiment, the state detection module 31 includes: a parameter acquisition unit, which acquires the current air-conditioning operation parameters; a matching unit, which matches the current air-conditioning operation parameters with the cloud data. If the match is successful, it is the first operation, otherwise, it is not the first operation.

[0063] It should be added that the cloud data is used to characterize the air-conditioning operating parameters in the cloud, and the air-conditioning operating parameters are uploaded after the air-conditioning operation is controlled based on the initial operation according to the preset energy-saving control mode.

[0064] In an optional embodiment, the temperature detection module 32 is also used to: based on the indoor ambient temperature not reaching the target set temperature, continue to control the air conditioner to cool or heat according to the air conditioning operation mode according to the air conditioning control instruction until the indoor ambient temperature reaches the target set temperature.

[0065] In this embodiment, the temperature detection module 32 includes: based on the indoor ambient temperature reaching the target set temperature, continuing to control the air conditioner to operate in the air conditioning operation mode, and detecting whether the indoor ambient temperature reaches the first preset temperature; based on the indoor ambient temperature reaching the first preset temperature, starting the preset energy-saving control mode to reduce the operating capacity of the air conditioning operation mode according to the first preset ratio, obtaining the first operation mode, and controlling the air conditioner operation according to the first operation mode.

[0066] The energy-saving control module 33 includes: a first detection unit, which continues to control the air conditioner to operate in the air-conditioning operation mode based on the indoor ambient temperature reaching the target set temperature, and detects whether the indoor ambient temperature reaches the first preset temperature; an energy-saving control unit, which starts the preset energy-saving control mode based on the indoor ambient temperature reaching the first preset temperature, so as to reduce the operating capacity of the air-conditioning operation mode according to the first preset ratio, obtain the first operation mode, and control the air conditioner operation according to the first operation mode.

[0067] In an optional embodiment, the energy-saving control module 33 also includes: a second detection unit, which detects whether the indoor ambient temperature reaches a second preset temperature within a first target time after controlling the air conditioner to operate in the first operating mode; wherein the difference between the second preset temperature and the target setting temperature is greater than the difference between the first preset temperature and the target setting temperature; if the indoor ambient temperature reaches the second preset temperature within the first target time, the energy-saving control unit controls the air conditioner to continue to operate in the first operating mode; otherwise, the energy-saving control unit continues to control the air conditioner to operate in the first operating mode until the indoor ambient temperature reaches the second preset temperature, reduces the operating capacity of the first operating mode according to a second preset ratio, obtains the second operating mode, and controls the air conditioner to operate in the second operating mode; wherein the second preset ratio is greater than the first preset ratio.

[0068] Furthermore, the energy-saving control unit includes: a first detection subunit, which controls the air conditioner to continue to operate in the first operating mode, and detects whether the indoor ambient temperature changes within a second target time; wherein the second target time is greater than the first target time; if the indoor ambient temperature changes within the second target time, the energy-saving control subunit continues to control the air conditioner to operate in the first operating mode; otherwise, the operating capacity of the first operating mode is reduced according to a third preset ratio to obtain a third operating mode, and the air conditioner is controlled to operate in the third operating mode; wherein the third preset ratio is greater than the first preset ratio.

[0069] In an optional embodiment, the device further includes: a parameter uploading module, which detects whether the indoor ambient temperature reaches the target setting temperature after controlling the air conditioner to operate in a corresponding mode, and uploads the corresponding air conditioner operating parameters to the cloud based on whether the indoor ambient temperature reaches the target setting temperature.

[0070] In an optional embodiment, the device further includes: a parameter matching module, which obtains the current air-conditioning operating parameters based on the non-initial operation state, and matches the current air-conditioning operating parameters with the cloud data; wherein the cloud data is used to characterize the air-conditioning operating parameters uploaded to the cloud; based on a successful match, the temperature detection module 32, according to the air-conditioning control instruction, controls the air-conditioning to operate according to the current air-conditioning operating parameters, and detects whether the indoor ambient temperature reaches the target set temperature; the energy-saving control module 33, based on the indoor ambient temperature reaching the target set temperature, increases the preset frequency by the calculated frequency to control the air-conditioning operation.

[0071] In an optional embodiment, the device further includes: a temperature detection module 32, which detects whether the indoor ambient temperature drops after increasing the counting frequency according to the preset frequency and controlling the air conditioner to run; if the indoor ambient temperature drops, the energy-saving control module 33 cancels the temperature compensation; wherein the temperature compensation is performed based on cloud data when the air conditioner is controlled to run according to the current air conditioner operating parameters according to the air conditioner control instructions; otherwise, the energy-saving control module 33 continues to control the air conditioner operation according to the adjusted counting frequency.

[0072] It is worth noting that the device also includes: a compensation value determination module, which determines the compensation value of the air conditioning operation and the indoor and outdoor heat exchange compensation value under the current indoor ambient temperature based on cloud data before controlling the air conditioning to operate according to the current air conditioning operating parameters according to the air conditioning control instructions; wherein the indoor and outdoor heat exchange compensation value is determined based on the indoor and outdoor heat exchange corresponding to the cloud data and the current indoor ambient temperature.

[0073] In addition, the device also includes: a temperature compensation module, which performs temperature compensation on the air conditioning operation according to the compensation value of the air conditioning operation when controlling the air conditioning to operate according to the current air conditioning operation parameters according to the air conditioning control instruction; and performs temperature compensation on the indoor and outdoor heat exchange according to the indoor and outdoor heat exchange compensation value.

[0074] Correspondingly, the device also includes: a temperature compensation processing module, which cancels the temperature compensation for the air-conditioning operation based on the indoor ambient temperature reaching the target set temperature, and continues to perform temperature compensation for indoor and outdoor heat exchange.

[0075] Likewise, when the indoor ambient temperature drops, the temperature compensation that is canceled is the temperature compensation for indoor and outdoor heat exchange.

[0076] To summarize, the embodiment of the present invention receives the air-conditioning control instruction through the state detection module, automatically determines whether it is the first operation, so as to avoid the user from performing complex parameter settings, controls the air-conditioning to cool or heat directly according to the corresponding mode according to the air-conditioning control instruction through the temperature detection module, and detects the indoor ambient temperature in real time to determine whether the target set temperature is reached, thereby ensuring that the indoor temperature accurately reaches the user's expected value, creating a stable and comfortable indoor environment for the user, and meeting the user's basic needs for temperature comfort, and after the indoor ambient temperature reaches the target set temperature through the energy-saving control module, the air-conditioning automatically switches to the preset energy-saving control mode to avoid energy waste caused by the air-conditioning still running in a high energy consumption mode after reaching the target set temperature. While ensuring indoor comfort, it effectively reduces energy consumption. Long-term use can save electricity expenses for users and achieve precise control of energy saving.

[0077] Figure 4 An example of a physical structure diagram of an electronic device is shown in FIG. Figure 4 As shown, the electronic device may include: a processor 410, a communication interface 420, a memory 430 and a communication bus 440, wherein the processor 410, the communication interface 420 and the memory 430 communicate with each other through the communication bus 440. The processor 410 may call the logic instructions in the memory 430 to execute the air-conditioning intelligent energy-saving control method, which includes: receiving an air-conditioning control instruction and determining whether it is the first operation; wherein the air-conditioning control instruction includes a target set temperature; based on the first operation, controlling the air-conditioning to cool or heat according to the air-conditioning operation mode according to the air-conditioning control instruction, and detecting whether the indoor ambient temperature reaches the target set temperature; based on the indoor ambient temperature reaching the target set temperature, controlling the air-conditioning to operate according to the preset energy-saving control mode.

[0078] In addition, the logic instructions in the above-mentioned memory 430 can be implemented in the form of a software functional unit and can be stored in a computer-readable storage medium when it is sold or used as an independent product. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art or the part of the technical solution, can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk, etc. Various media that can store program codes.

[0079] On the other hand, the present invention also provides a computer program product, which includes a computer program stored on a non-transitory computer-readable storage medium, and the computer program includes program instructions. When the program instructions are executed by a computer, the computer can execute the air conditioning intelligent energy-saving control method provided by the above methods, the method including: receiving an air conditioning control instruction, and determining whether it is the first operation; wherein the air conditioning control instruction includes a target set temperature; based on the first operation, controlling the air conditioning to cool or heat according to the air conditioning operation mode according to the air conditioning control instruction, and detecting whether the indoor ambient temperature reaches the target set temperature; based on the indoor ambient temperature reaching the target set temperature, controlling the air conditioning operation according to a preset energy-saving control mode.

[0080] On the other hand, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, is implemented to execute the above-mentioned intelligent energy-saving control methods for air conditioners, the methods comprising: receiving an air-conditioning control instruction, and determining whether it is an initial operation; wherein the air-conditioning control instruction includes a target set temperature; based on the initial operation, controlling the air-conditioning to cool or heat according to the air-conditioning operation mode according to the air-conditioning control instruction, and detecting whether the indoor ambient temperature reaches the target set temperature; based on the indoor ambient temperature reaching the target set temperature, controlling the air-conditioning operation according to a preset energy-saving control mode.

[0081] The device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Ordinary technicians in this field can understand and implement it without paying creative labor.

[0082] Through the description of the above implementation methods, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, can also be implemented by hardware. Based on this understanding, the above technical solution is essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a disk, an optical disk, etc., including a number of instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.

[0083] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. An air conditioning intelligent energy-saving control method, characterized in that: include: receiving an air conditioning control instruction and determining whether it is an initial operation; wherein the air conditioning control instruction includes a target set temperature; Based on the fact that it is the first operation, the air conditioner is controlled to perform cooling or heating according to the air conditioner operation mode according to the air conditioner control instruction, and whether the indoor ambient temperature reaches the target set temperature; Based on the indoor ambient temperature reaching the target set temperature, the air conditioner is controlled to operate according to a preset energy-saving control mode.

2. The air conditioning intelligent energy-saving control method according to claim 1, characterized in that: Based on the indoor environment temperature reaching the target set temperature, the air conditioner is controlled to operate according to a preset energy-saving control mode, including: Based on the indoor environment temperature reaching the target set temperature, continue to control the air conditioner to operate in the air conditioner operation mode, and detect whether the indoor environment temperature reaches the first preset temperature; Based on the indoor ambient temperature reaching the first preset temperature, a preset energy-saving control mode is turned on to reduce the operating capacity of the air-conditioning operating mode according to a first preset ratio, obtain a first operating mode, and control the air-conditioning operation according to the first operating mode.

3. The air conditioning intelligent energy-saving control method according to claim 2, characterized in that: After the air conditioner is controlled to operate in the first operating mode, the method includes: Detecting whether the indoor ambient temperature reaches a second preset temperature within a first target time; wherein the difference between the second preset temperature and the target setting temperature is greater than the difference between the first preset temperature and the target setting temperature; If the indoor ambient temperature reaches the second preset temperature within the first target time, controlling the air conditioner to continue to operate in the first operating mode; Otherwise, continue to control the air conditioner operation according to the first operating mode until the indoor ambient temperature reaches the second preset temperature, reduce the operating capacity of the first operating mode according to the second preset ratio, obtain the second operating mode, and control the air conditioner operation according to the second operating mode; wherein the second preset ratio is greater than the first preset ratio.

4. The air conditioning intelligent energy-saving control method according to claim 3, characterized in that: Controlling the air conditioner to continue to operate in the first operating mode includes: Controlling the air conditioner to continue to operate in the first operating mode, and detecting whether the indoor ambient temperature changes within a second target time; wherein the second target time is greater than the first target time; If the indoor ambient temperature changes within the second target time, the air conditioner continues to be controlled to operate in the first operating mode; Otherwise, the operating capacity of the first operating mode is reduced according to a third preset ratio to obtain a third operating mode, and the air conditioner is controlled to operate according to the third operating mode; wherein the third preset ratio is greater than the first preset ratio.

5. The air conditioning intelligent energy-saving control method according to any one of claims 1 to 4, characterized in that: After the air conditioner is controlled to run in the corresponding mode, including: Detect whether the indoor ambient temperature reaches the target setting temperature, and based on whether the indoor ambient temperature reaches the target setting temperature, upload the corresponding air-conditioning operating parameters to the cloud.

6. The air conditioning intelligent energy-saving control method according to claim 5, characterized in that: The determining whether it is the first operation further includes: Based on the non-initial operation state, obtaining current air-conditioning operation parameters, and matching the current air-conditioning operation parameters with cloud data; wherein the cloud data is used to represent the air-conditioning operation parameters uploaded to the cloud; Based on the successful matching, the air conditioner is controlled to operate according to the current air conditioner operating parameters according to the air conditioner control instruction, and whether the indoor ambient temperature reaches the target set temperature is detected; Based on the indoor ambient temperature reaching the target set temperature, the counting frequency is increased by a preset frequency to control the operation of the air conditioner.

7. The air conditioning intelligent energy-saving control method according to claim 6, characterized in that: After the counted frequency is increased according to the preset frequency and the air conditioner is controlled to operate, the method includes: Detect whether the indoor ambient temperature drops; If the indoor environment temperature drops, the temperature compensation is canceled; wherein the temperature compensation is performed based on the cloud data when the air conditioner is controlled to operate according to the current air conditioner operating parameters according to the air conditioner control instruction; Otherwise, continue to control the air conditioner operation according to the adjusted input frequency.

8. An intelligent energy-saving control device for air conditioner, characterized in that: include: A state detection module receives an air conditioning control instruction and determines whether it is an initial operation; wherein the air conditioning control instruction includes a target set temperature; a temperature detection module, based on the first operation, controlling the air conditioner to perform cooling or heating according to the air conditioner operation mode according to the air conditioner control instruction, and detecting whether the indoor ambient temperature reaches the target set temperature; The energy-saving control module controls the operation of the air conditioner according to a preset energy-saving control mode based on the indoor environment temperature reaching the target set temperature.

9. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the computer program, the steps of the air conditioner intelligent energy-saving control method as described in any one of claims 1 to 7 are implemented.

10. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by the processor, the steps of the air conditioner intelligent energy-saving control method as described in any one of claims 1 to 7 are implemented.