Air conditioner solar heating mode control method, device and equipment and air conditioner

By receiving user commands, detecting the air conditioner's power mode, and matching the power supply mode, the air conditioner's heating operation mode is adjusted. This solves the problem of how to save electricity and provide heat when the air conditioner is powered by solar energy, achieving the best heating effect and cost savings.

CN116379568BActive Publication Date: 2026-05-12QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +3
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD
Filing Date
2023-04-07
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

How can an air conditioner automatically adjust its operating mode according to the power supply mode in heating mode to achieve both energy saving and optimal heating effect, especially when using solar power without lowering the heating temperature?

Method used

By receiving the user's power-saving mode command, the system detects the air conditioner's power operation mode and matches it with the preset power supply mode, adjusting it to the air conditioner's target heating operation mode, including power supply ratio adjustment in the initial operation mode, power-saving heating operation mode, and mixed power supply mode.

Benefits of technology

It achieves optimal heating performance and energy savings for air conditioners under different power supply modes, thereby improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a kind of air conditioner solar energy heating mode control method, device, equipment and air conditioner, it is related to air conditioner technical field.The method comprises: receiving the power saving mode instruction issued by user;According to the power saving mode instruction, the power supply operation mode of air conditioner is detected;The power supply operation mode is matched with the preset power supply mode, and the matching result is obtained;According to the matching result, the operating mode of the air conditioner is controlled to adjust the target heating operation mode.The embodiment provided by the application can control the air conditioner to operate in the target heating operation mode according to different power supply operation modes, which realizes both saving electricity cost and achieving the best heating effect, greatly improving the user experience.
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Description

Technical Field

[0001] This invention relates to the field of air conditioner technology, and in particular to a method, device, equipment, and air conditioner for controlling the solar heating mode of an air conditioner. Background Technology

[0002] This novel solar-powered superconducting air conditioner utilizes solar energy and renewable biomass fuels as its primary energy sources for heating, making it a truly green heating method. For cooling, it leverages a small amount of electricity to utilize the low temperatures of the ground, employing a superconducting energy transfer system for direct cooling, achieving the most efficient and energy-saving cooling effect. Traditional air coolers cannot eliminate unpleasant side effects—long-term consumption of large amounts of energy, low energy efficiency, and acceleration of global warming. How wonderful it would be if people could successfully use sunlight to cool their homes or offices—without consuming large amounts of non-renewable energy and releasing minimal carbon dioxide during the cooling process.

[0003] When using solar-powered air conditioners for heating, they typically consume a significant amount of electricity, increasing electricity costs. Users may choose to run the air conditioner in a power-saving mode for heating. However, if the air conditioner needs to both heat and save electricity, the heating temperature will inevitably drop to some extent. The question remains: how much of a drop is needed to achieve the best heating effect while also maximizing energy savings? Furthermore, when powered by solar energy, which is a clean energy source, there is no need to lower the temperature to achieve both energy savings and heating. Therefore, how to automatically adjust the air conditioner's operating mode based on the current power supply mode during heating is a pressing technical problem that needs to be solved. Summary of the Invention

[0004] This invention provides a method, device, equipment, and air conditioner for controlling the solar heating mode of an air conditioner. It can control the air conditioner to operate in a target heating mode according to different power supply operation modes, thereby saving electricity costs and achieving the best heating effect, greatly improving the user experience.

[0005] In a first aspect, the present invention provides a method for controlling the solar heating mode of an air conditioner, comprising:

[0006] Receive power-saving mode commands from users;

[0007] Detect the power operation mode of the air conditioner according to the power saving mode command;

[0008] The power supply operation mode is matched with the preset power supply mode to obtain the matching result;

[0009] Based on the matching result, the operating mode of the air conditioner is adjusted to the target heating operating mode.

[0010] Preferably, according to the solar heating mode control method for an air conditioner provided by the present invention,

[0011] The matching results include at least: a first result, a second result, and a third result;

[0012] The process of matching the power supply operating mode with a preset power supply mode to obtain a matching result includes:

[0013] When the power supply operation mode is matched with the pure solar power supply mode, the first result is obtained;

[0014] When the power supply operation mode is matched with the pure AC power supply mode, the second result is obtained;

[0015] When the power supply operation mode is matched with the hybrid power supply mode, a third result is obtained.

[0016] Preferably, according to the solar heating mode control method for an air conditioner provided by the present invention,

[0017] The target heating operation mode includes at least: initial operation mode and power-saving heating operation mode;

[0018] The step of controlling the air conditioner to adjust its operating mode to the target heating operating mode based on the matching result includes:

[0019] Based on the first result, the air conditioner is controlled to operate in the initial operating mode;

[0020] Based on the second result, the operating mode of the air conditioner is adjusted to an energy-saving heating mode.

[0021] Preferably, according to the solar heating mode control method for an air conditioner provided by the present invention,

[0022] The step of controlling the air conditioner to adjust its operating mode to the target heating operating mode based on the matching result further includes:

[0023] Based on the third result, the power supply ratio of the mains power supply mode in the hybrid power supply mode is obtained;

[0024] The power supply ratio corresponding to the mains power supply mode is reduced until the operating mode of the air conditioner is adjusted to the energy-saving heating operating mode.

[0025] Preferably, according to the solar heating mode control method for an air conditioner provided by the present invention,

[0026] After the step of adjusting the operating mode of the air conditioner to the target heating operating mode based on the matching result, the method includes:

[0027] Obtain the set temperature corresponding to the target heating operation mode, and obtain the current indoor ambient temperature;

[0028] The temperature difference is calculated by considering the set temperature and the ambient temperature.

[0029] If the air conditioner operates in the initial operating mode for less than a first time, and the temperature difference is greater than a first temperature threshold, then the set temperature is lowered to the first temperature.

[0030] If the air conditioner operates in its initial operating mode for a period of less than the first time, and if the temperature difference is less than or equal to the first temperature threshold, then the set temperature is lowered to the second temperature, wherein the second temperature is greater than the first temperature.

[0031] Preferably, according to the solar heating mode control method for an air conditioner provided by the present invention,

[0032] After the step of calculating the temperature difference between the set temperature and the ambient temperature, the method further includes:

[0033] If the air conditioner operates in the initial operating mode for a longer period than the first time, and if the temperature difference is greater than the second temperature threshold, then the set temperature is lowered to the third temperature.

[0034] If the air conditioner operates in the initial operating mode for a period of time longer than the first time, and if the temperature difference is less than or equal to the second temperature threshold, the set temperature is lowered to the fourth temperature, wherein the second temperature threshold is less than the first temperature threshold, and the fourth temperature is greater than the third temperature.

[0035] Secondly, the present invention also provides an air conditioner solar heating mode control device, comprising:

[0036] The receiving module is used to receive power-saving mode commands issued by the user.

[0037] The detection module is used to detect the power operation mode of the air conditioner according to the power saving mode command;

[0038] The matching module is used to match the power supply operating mode with a preset power supply mode to obtain a matching result;

[0039] The control module is used to adjust the operating mode of the air conditioner to the target heating operating mode based on the matching result.

[0040] Thirdly, the present invention also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the steps of any of the above-described methods for controlling the solar heating mode of an air conditioner.

[0041] Fourthly, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the solar heating mode control method for an air conditioner as described above.

[0042] Fifthly, the present invention also provides a computer program product, including a computer program that, when executed by a processor, implements the steps of any of the above-described air conditioner solar heating mode control methods.

[0043] Sixthly, the present invention also provides an air conditioner, including a controller and an air conditioner inverter external board, wherein the air conditioner inverter external board is connected to a solar photovoltaic panel and a mains power supply via circuits, and the controller executes the steps of any of the above-described air conditioner solar heating mode control methods.

[0044] This invention provides a method, device, equipment, and air conditioner for controlling the solar heating mode of an air conditioner. The method involves receiving a power-saving mode command from a user; detecting the air conditioner's power operating mode based on the command; matching the power operating mode with a preset power supply mode to obtain a matching result; and adjusting the air conditioner's operating mode to the target heating mode based on the matching result. This allows the air conditioner to operate in the target heating mode according to different power supply modes, achieving both cost savings and optimal heating performance, significantly improving the user experience. Attached Figure Description

[0045] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0046] Figure 1 This is one of the flowcharts of the solar heating mode control method for air conditioners provided by the present invention;

[0047] Figure 2 This is the second flowchart of the solar heating mode control method for air conditioners provided by the present invention;

[0048] Figure 3This is a schematic diagram of the hybrid power supply for the air conditioner provided by the present invention;

[0049] Figure 4 This is a schematic diagram of the structure of the solar heating mode control device for air conditioners provided by the present invention;

[0050] Figure 5 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation

[0051] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.

[0052] The following is combined with Figures 1-5 This invention describes a method, apparatus, device, and air conditioner for controlling the solar heating mode of an air conditioner. It can control the air conditioner to operate in a target heating mode according to different power supply operation modes, thereby saving electricity costs and achieving the best heating effect, greatly improving the user experience.

[0053] like Figure 1 As shown, it is one of the implementation flow diagrams of an air conditioner solar heating mode control method provided by an embodiment of the present invention. An air conditioner solar heating mode control method may include, but is not limited to, steps S100 to S400.

[0054] S100 receives power-saving mode commands issued by the user;

[0055] S200, based on the power saving mode command, detect the power operation mode of the air conditioner;

[0056] S300, the power supply operation mode is matched with the preset power supply mode to obtain a matching result;

[0057] S400, based on the matching result, control the air conditioner to adjust its operating mode to the target heating operating mode.

[0058] It should be noted that the execution subject of the solar heating mode control method for an air conditioner in this application embodiment can be a hardware device with data information processing capability and / or the necessary software to drive the hardware device to work.

[0059] Optionally, the executing entity may include, but is not limited to, workstations, servers, computers, user terminals, and other intelligent devices. User terminals include, but are not limited to, mobile phones, computers, intelligent voice interaction devices, smart home appliances, and in-vehicle terminals.

[0060] In step S100 of some embodiments, a power-saving mode command issued by the user is received.

[0061] Understandably, after the air conditioner has been running in heating mode for a period of time, if the user wants to switch to energy-saving heating mode, the user can issue an energy-saving mode command via voice or remote control, and the server will receive the energy-saving mode command issued by the user.

[0062] In step S200 of some embodiments, the power operation mode of the air conditioner is detected according to the power saving mode command.

[0063] Understandably, after executing step S100 to receive the power-saving mode command issued by the user, the server detects the power operation mode of the air conditioner according to the power-saving mode command, that is, detects what power supply currently supports the heating operation of the air conditioner and determines the current power supply mode.

[0064] In step S300 of some embodiments, the power supply operation mode is matched with a preset power supply mode to obtain a matching result.

[0065] It is understandable that after executing step S200, which detects the power operation mode of the air conditioner according to the power saving mode instruction, the specific execution steps can be: matching the detected power operation mode with the preset power supply mode.

[0066] When the power supply operation mode is matched with the pure solar power supply mode, the first result is obtained;

[0067] When the power supply operation mode is matched with the pure AC power supply mode, the second result is obtained;

[0068] When the power supply operation mode is matched with the hybrid power supply mode, a third result is obtained.

[0069] It should be noted that the matching results include at least: a first result, a second result, and a third result.

[0070] It can be further understood that if the power supply operation mode matches the pure solar power supply mode, a first result is obtained, and the operation mode of the air conditioner is controlled according to the first result to operate in the initial operation mode.

[0071] If the current power supply mode matches the pure AC power supply mode, a second result is obtained. Based on the second result, the operating mode of the air conditioner is adjusted to the energy-saving heating mode.

[0072] In some embodiments of the present invention, if the current power supply operation mode matches the hybrid power supply mode, a third result is obtained, and the third result is used to obtain the power supply ratio of the mains power supply mode in the hybrid power supply mode.

[0073] In step S400 of some embodiments, the operating mode of the air conditioner is adjusted to the target heating operating mode according to the matching result.

[0074] It should also be noted that the target heating operation mode includes at least: initial operation mode and power-saving heating operation mode.

[0075] It is understandable that after executing step S300, the specific execution steps can be as follows:

[0076] The first result is used to control the air conditioner to operate in the initial operating mode.

[0077] If the current power supply mode matches the pure AC power supply mode, a second result is obtained. Based on the second result, the operating mode of the air conditioner is adjusted to the energy-saving heating mode.

[0078] If the current power supply mode matches the hybrid power supply mode, a third result is obtained. Based on the third result, the power supply ratio of the mains power supply mode in the hybrid power supply mode is obtained. The power supply ratio corresponding to the mains power supply mode is lowered until the operating mode of the air conditioner is adjusted to the energy-saving heating operating mode.

[0079] The initial operating mode is the heating mode initially set by the user. The user-set temperature does not need to be changed, and the first result is solar power. Since solar energy is a clean energy source and does not waste electricity resources, there is no need to lower the user's initial set temperature when using solar power. This achieves the best heating effect and saves costs.

[0080] The energy-saving heating mode means that when the air conditioner is powered by pure AC power for heating, in order to save costs and maintain a good heating effect, the heating temperature needs to be appropriately reduced from the user's set temperature. This can achieve a better heating effect while saving electricity costs.

[0081] In some embodiments of the present invention, after the step of controlling the operating mode of the air conditioner to adjust to the target heating operating mode according to the matching result, the method includes:

[0082] Obtain the set temperature corresponding to the target heating operation mode, and obtain the current indoor ambient temperature;

[0083] The temperature difference is calculated by considering the set temperature and the ambient temperature.

[0084] If the air conditioner operates in the initial operating mode for less than a first time, and the temperature difference is greater than a first temperature threshold, then the set temperature is lowered to the first temperature.

[0085] If the air conditioner operates in its initial operating mode for a period of less than the first time, and if the temperature difference is less than or equal to the first temperature threshold, then the set temperature is lowered to the second temperature, wherein the second temperature is greater than the first temperature.

[0086] It is understood that after the step of controlling the air conditioner to adjust its operating mode to the target heating operating mode according to the matching result, the set temperature is obtained and set as Ts, and the ambient temperature of the current indoor environment is obtained through the temperature sensor and set as Tr. The set temperature is subtracted from the ambient temperature to obtain the temperature difference C.

[0087] After obtaining the running time t1 of the air conditioner in the initial operating mode, assuming the first time is t2 = 30 minutes, the running time t1 and t2 are compared. If the air conditioner's running time t1 is less than the first time t2, the temperature difference C is compared with the preset first temperature threshold M. Assuming the first temperature threshold M is 5 degrees Celsius, if C is greater than M, the set temperature Ts is lowered to the first temperature, for example, the set temperature Ts is lowered by 3 degrees Celsius.

[0088] It is also understandable that if the air conditioner's running time t1 is less than the first time t2, the temperature difference C is compared with the preset first temperature threshold M. If C is less than or equal to M, the set temperature Ts is lowered to the second temperature, for example, the set temperature Ts is lowered by 2 degrees Celsius.

[0089] It should be noted that the first temperature is lower than the second temperature.

[0090] In some embodiments of the present invention, after the step of calculating the temperature difference between the set temperature and the ambient temperature, the method further includes:

[0091] If the air conditioner operates in the initial operating mode for a longer period than the first time, and if the temperature difference is greater than the second temperature threshold, then the set temperature is lowered to the third temperature.

[0092] If the air conditioner operates in the initial operating mode for a period of time longer than the first time, and if the temperature difference is less than or equal to the second temperature threshold, the set temperature is lowered to the fourth temperature, wherein the second temperature threshold is less than the first temperature threshold, and the fourth temperature is greater than the third temperature.

[0093] It is also understandable that if the air conditioner runs in the initial operating mode for a longer period than the first time, that is, the operating time t1 is greater than the first time t2, i.e., t1 is greater than 30 minutes, then the temperature difference C is compared with the preset second temperature threshold N. If the temperature difference C is greater than the second temperature threshold N, for example, if N is 2 degrees Celsius, then the set temperature Ts is lowered to the third temperature, for example, Ts is lowered by 2 degrees Celsius.

[0094] If the air conditioner operates in the initial operating mode for a longer period than the first time, i.e., the operating time t1 is greater than the first time t2, i.e., t1 is greater than 30 minutes, then the temperature difference C is compared with the preset second temperature threshold N. If the temperature difference C is less than or equal to the second temperature threshold N, for example, if N is 2 degrees Celsius, then the set temperature Ts is lowered to the fourth temperature, for example, Ts is lowered by 1 degree Celsius.

[0095] In the embodiments of the present invention, it should also be noted that the minimum set temperature is 20 degrees Celsius. If the corrected (lowered) set temperature is greater than 20 degrees Celsius, the system will operate at the actual lowered temperature. If the lowered set temperature is less than 20 degrees Celsius, the system will operate at 20 degrees Celsius.

[0096] If the set temperature is less than 20 degrees Celsius, the set temperature will not be lowered, thus enabling the air conditioner to achieve better heating and energy-saving effects.

[0097] like Figure 2 The diagram shown is a second flowchart of the solar heating mode control method for air conditioners provided by this invention. After the user selects the energy-saving mode, the air conditioner continues to operate in the initial heating mode without immediately switching to energy-saving mode. First, the current power supply mode of the air conditioner is monitored according to the energy-saving mode command to determine the current power supply mode. If the current power supply mode is pure solar power, the energy-saving heating mode is not executed, and the air conditioner operates at the set temperature for heating, thus achieving energy saving. If the current power supply mode is pure AC power, the energy-saving heating mode is executed, and the set temperature is appropriately lowered. When it is a mixed power supply, the proportion of AC power is appropriately lowered until the air conditioner executes the energy-saving heating mode. This allows for flexible implementation of both energy-saving and optimal heating effects, greatly improving the user experience.

[0098] like Figure 3The diagram shown is a schematic of a hybrid power supply for an air conditioner provided by the present invention. An air conditioner includes a controller and an inverter external panel. The inverter external panel is connected to a solar photovoltaic panel and mains power via wiring. The controller executes the steps of the aforementioned air conditioner solar heating mode control method. The air conditioner can utilize solar power from the photovoltaic panel or be powered by mains power.

[0099] This invention provides a method, device, equipment, and air conditioner for controlling the solar heating mode of an air conditioner. The method involves receiving a power-saving mode command from a user; detecting the air conditioner's power operating mode based on the command; matching the power operating mode with a preset power supply mode to obtain a matching result; and adjusting the air conditioner's operating mode to the target heating mode based on the matching result. This allows the air conditioner to operate in the target heating mode according to different power supply modes, achieving both cost savings and optimal heating performance, significantly improving the user experience.

[0100] The following describes the air conditioner solar heating mode control device provided by the present invention. The air conditioner solar heating mode control device described below can be referred to in correspondence with the air conditioner solar heating mode control method described above.

[0101] like Figure 4 The diagram shown is a structural schematic of the air conditioner solar heating mode control device provided by the present invention. The air conditioner solar heating mode control device includes:

[0102] The receiving module 410 is used to receive power-saving mode commands issued by the user;

[0103] The detection module 420 is used to detect the power operation mode of the air conditioner according to the power saving mode command;

[0104] The matching module 430 is used to match the power supply operating mode with a preset power supply mode to obtain a matching result;

[0105] The control module 440 is used to control the air conditioner to adjust its operating mode to the target heating operating mode based on the matching result.

[0106] Optionally, according to the solar heating mode control device for an air conditioner provided by the present invention, the matching result includes at least: a first result, a second result, and a third result; the matching module 430 is used to obtain the first result when the power supply operation mode is matched with the pure solar power supply mode;

[0107] When the power supply operation mode is matched with the pure AC power supply mode, the second result is obtained;

[0108] When the power supply operation mode is matched with the hybrid power supply mode, a third result is obtained.

[0109] Optionally, according to the solar heating mode control device for an air conditioner provided by the present invention, the target heating operation mode includes at least: an initial operation mode and an energy-saving heating operation mode; the control module 440 is used to control the operation mode of the air conditioner to operate in the initial operation mode according to the first result;

[0110] Based on the second result, the operating mode of the air conditioner is adjusted to an energy-saving heating mode.

[0111] Optionally, according to the solar heating mode control device for an air conditioner provided by the present invention, the control module 440 is used to obtain the power supply ratio of the mains power supply mode in the hybrid power supply mode based on the third result.

[0112] The power supply ratio corresponding to the mains power supply mode is reduced until the operating mode of the air conditioner is adjusted to the energy-saving heating operating mode.

[0113] Optionally, according to the solar heating mode control device for an air conditioner provided by the present invention, after the step of controlling the operation mode of the air conditioner to be adjusted to the target heating operation mode according to the matching result, the device is used to: obtain the set temperature corresponding to the target heating operation mode, and obtain the ambient temperature of the current indoor environment;

[0114] The temperature difference is calculated by considering the set temperature and the ambient temperature.

[0115] If the air conditioner operates in the initial operating mode for less than a first time, and the temperature difference is greater than a first temperature threshold, then the set temperature is lowered to the first temperature.

[0116] If the air conditioner operates in its initial operating mode for a period of less than the first time, and if the temperature difference is less than or equal to the first temperature threshold, then the set temperature is lowered to the second temperature, wherein the second temperature is greater than the first temperature.

[0117] Optionally, according to the solar heating mode control device for an air conditioner provided by the present invention, after the step of calculating the temperature difference between the set temperature and the ambient temperature, the device is further configured to: if the temperature difference is greater than a second temperature threshold when the air conditioner operates in the initial operating mode for a longer period than the first time, then lower the set temperature to a third temperature.

[0118] If the air conditioner operates in the initial operating mode for a period of time longer than the first time, and if the temperature difference is less than or equal to the second temperature threshold, the set temperature is lowered to the fourth temperature, wherein the second temperature threshold is less than the first temperature threshold, and the fourth temperature is greater than the third temperature.

[0119] This invention provides a method, device, equipment, and air conditioner for controlling the solar heating mode of an air conditioner. The method involves receiving a power-saving mode command from a user; detecting the air conditioner's power operating mode based on the command; matching the power operating mode with a preset power supply mode to obtain a matching result; and adjusting the air conditioner's operating mode to the target heating mode based on the matching result. This allows the air conditioner to operate in the target heating mode according to different power supply modes, achieving both cost savings and optimal heating performance, significantly improving the user experience.

[0120] Figure 5 An example is a schematic diagram of the physical structure of an electronic device, such as... Figure 5 As shown, the electronic device may include a processor 510, a communication interface 520, a memory 530, and a communication bus 540, wherein the processor 510, the communication interface 520, and the memory 530 communicate with each other through the communication bus 540. The processor 510 can call logic instructions in the memory 530 to execute an air conditioner solar heating mode control method, which includes: receiving a power-saving mode command issued by a user; detecting the power operation mode of the air conditioner according to the power-saving mode command; matching the power operation mode with a preset power supply mode to obtain a matching result; and controlling the air conditioner to adjust its operation mode to the target heating operation mode according to the matching result.

[0121] Furthermore, the logical instructions in the aforementioned memory 530 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, essentially, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0122] On the other hand, the present invention also provides a computer program product, which includes a computer program that can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the air conditioner solar heating mode control method provided by the above methods. The method includes: receiving a power-saving mode command issued by a user; detecting the power operation mode of the air conditioner according to the power-saving mode command; matching the power operation mode with a preset power supply mode to obtain a matching result; and controlling the air conditioner to adjust its operation mode to the target heating operation mode according to the matching result.

[0123] In another aspect, the present invention also provides a non-transitory computer-readable storage medium storing a computer program thereon, which, when executed by a processor, implements the air conditioner solar heating mode control method provided by the above methods. The method includes: receiving a power-saving mode command issued by a user; detecting the power operation mode of the air conditioner according to the power-saving mode command; matching the power operation mode with a preset power supply mode to obtain a matching result; and controlling the air conditioner to adjust its operation mode to a target heating operation mode according to the matching result.

[0124] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0125] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.

[0126] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for controlling the solar heating mode of an air conditioner, characterized in that, include: Receive power-saving mode commands from users; Detect the power operation mode of the air conditioner according to the power saving mode command; The power supply operation mode is matched with the preset power supply mode to obtain a matching result; Based on the matching result, the operating mode of the air conditioner is adjusted to the target heating operating mode; Obtain the set temperature corresponding to the target heating operation mode, and obtain the current indoor ambient temperature; The temperature difference is calculated by considering the set temperature and the ambient temperature. If the air conditioner operates in the initial operating mode for less than a first time, and the temperature difference is greater than a first temperature threshold, then the set temperature is lowered to the first temperature. If the air conditioner operates in its initial operating mode for a period of less than the first time, and if the temperature difference is less than or equal to the first temperature threshold, then the set temperature is lowered to the second temperature, wherein the second temperature is greater than the first temperature.

2. The air conditioner solar heating mode control method according to claim 1, characterized in that, The matching results include at least: a first result, a second result, and a third result; The process of matching the power supply operating mode with a preset power supply mode to obtain a matching result includes: When the power supply operation mode is matched with the pure solar power supply mode, the first result is obtained; When the power supply operation mode is matched with the pure AC power supply mode, the second result is obtained; When the power supply operation mode is matched with the hybrid power supply mode, a third result is obtained.

3. The air conditioner solar heating mode control method according to claim 2, characterized in that, The target heating operation mode includes at least: initial operation mode and power-saving heating operation mode; The step of controlling the air conditioner to adjust its operating mode to the target heating operating mode based on the matching result includes: Based on the first result, the air conditioner is controlled to operate in the initial operating mode; Based on the second result, the operating mode of the air conditioner is adjusted to an energy-saving heating mode.

4. The air conditioner solar heating mode control method according to claim 3, characterized in that, The step of controlling the air conditioner to adjust its operating mode to the target heating operating mode based on the matching result further includes: Based on the third result, the power supply ratio of the mains power supply mode in the hybrid power supply mode is obtained; The power supply ratio corresponding to the mains power supply mode is reduced until the operating mode of the air conditioner is adjusted to the energy-saving heating operating mode.

5. The method for controlling the solar heating mode of an air conditioner according to any one of claims 1 to 4, characterized in that, After the step of calculating the temperature difference between the set temperature and the ambient temperature, the method further includes: If the air conditioner operates in the initial operating mode for a longer period than the first time, and if the temperature difference is greater than the second temperature threshold, then the set temperature is lowered to the third temperature. If the air conditioner operates in the initial operating mode for a period of time longer than the first time, and if the temperature difference is less than or equal to the second temperature threshold, the set temperature is lowered to the fourth temperature, wherein the second temperature threshold is less than the first temperature threshold, and the fourth temperature is greater than the third temperature.

6. A control device for solar heating mode of an air conditioner, characterized in that, include: The receiving module is used to receive power-saving mode commands issued by the user. The detection module is used to detect the power operation mode of the air conditioner according to the power saving mode command; The matching module is used to match the power supply operating mode with a preset power supply mode to obtain a matching result; The control module is used to adjust the operating mode of the air conditioner to the target heating operating mode according to the matching result; obtain the set temperature corresponding to the target heating operating mode, and obtain the current indoor ambient temperature; calculate the temperature difference between the set temperature and the ambient temperature. If the air conditioner operates in the initial operating mode for less than a first time, and the temperature difference is greater than a first temperature threshold, then the set temperature is lowered to the first temperature. If the air conditioner operates in its initial operating mode for a period of less than the first time, and if the temperature difference is less than or equal to the first temperature threshold, then the set temperature is lowered to the second temperature, wherein the second temperature is greater than the first temperature.

7. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the steps of the air conditioner solar heating mode control method as described in any one of claims 1 to 5.

8. 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, it implements the steps of the air conditioner solar heating mode control method as described in any one of claims 1 to 5.

9. An air conditioner, comprising a controller and an air conditioner inverter external board, characterized in that, The air conditioner inverter outer panel is connected to the solar photovoltaic panel and the mains power through wiring, and the controller executes the steps of the air conditioner solar heating mode control method as described in any one of claims 1 to 5.