Interconnection control method and device of air conditioner and intelligent equipment, and air conditioner
By interconnecting and controlling air conditioners with smart devices, the humidity of the wood flooring is obtained and anti-mold and anti-corrosion instructions are generated. By using heating equipment and electric heating, the problem of mold and rot caused by humidity in wood flooring is solved, realizing intelligent anti-mold and anti-corrosion treatment, extending the life of wood flooring and improving the user experience.
Patent Information
- Application Number
- CN202310591537.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-23
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2043-05-23
AI Technical Summary
Existing air conditioners cannot effectively prevent wooden floors from becoming moldy and rotting due to humidity, especially the problem of moisture being difficult to remove from under the wooden floor.
By using the interconnection and control method between air conditioners and smart devices, the humidity of the wood floor is obtained and anti-mold and anti-corrosion instructions are generated. The air conditioner and smart devices work together to implement dehumidification measures, such as heating equipment, electric heating, or heating mode, to directly or indirectly increase the temperature of the wood floor to prevent mold growth.
It improves the accuracy and timeliness of anti-mildew and anti-corrosion treatment, extends the service life of wood flooring, enhances the user experience, and avoids manual intervention by the user.
Smart Images

Figure CN119022417B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent control technology, and in particular to an interconnection control method, device, and air conditioner for air conditioners and intelligent devices. Background Technology
[0002] As people pursue a higher quality of life, bedroom floors are often made of interlocking wood flooring, and some users even install wood flooring in their living rooms. Due to the special nature of the material, wood flooring requires more careful protection to extend its lifespan. Mold and rot are the most common problems with wood flooring, and one of the major causes is water. In daily life, it's inevitable that small amounts of water will be spilled on wood flooring, and rainwater may even seep through windows. Because wood flooring is interlocked, some water can seep down through the gaps between adjacent planks. While small amounts of water on the surface can be easily wiped away, water that seeps underneath is difficult to remove and evaporate, eventually leading to mold and even rot. Therefore, anti-mold and anti-rot treatments for wood flooring are crucial. Even with the increasing sophistication of technology and the growing intelligence of home appliances, household air conditioners haven't been designed with corresponding solutions. Summary of the Invention
[0003] One objective of the first aspect of this invention is to overcome at least one deficiency of the prior art and to provide an interconnected control method for air conditioners and smart devices for anti-mildew and anti-corrosion treatment of wooden floors in indoor environments.
[0004] A further objective of the first aspect of this invention is to improve the accuracy and timeliness of anti-mildew and anti-corrosion treatment.
[0005] Another further objective of the first aspect of the present invention is to improve the effectiveness of anti-mildew and anti-corrosion measures.
[0006] The second aspect of this invention aims to provide an interconnected control device for air conditioners and smart devices to perform anti-mildew and anti-corrosion treatment on wooden floors in indoor environments.
[0007] A third aspect of the present invention is to provide an air conditioner having the above-described interconnection control device.
[0008] According to a first aspect of the present invention, the present invention provides a method for interconnecting and controlling an air conditioner and a smart device, wherein the smart device and the air conditioner are located in the same indoor environmental space; and
[0009] The interconnection control method includes:
[0010] Obtain the humidity of the wooden floor in the indoor environment;
[0011] Based on the humidity of the wood flooring, selectively generate anti-mold and anti-corrosion instructions to instruct the wood flooring to be dehumidified; and
[0012] Control the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions.
[0013] Optionally, the air conditioner is communicatively connected to a humidity detection device disposed on the underside of the wooden floor;
[0014] The steps for obtaining the humidity of the wooden floor in the indoor environment include:
[0015] Obtain the humidity value at the underside of the wooden floor as measured by the humidity detection device.
[0016] Optionally, the step of selectively generating a mildew and rot prevention instruction to dehumidify the wood flooring based on its humidity includes:
[0017] When the humidity of the wood flooring is higher than a preset humidity threshold, the anti-mold and anti-corrosion command is automatically generated.
[0018] Optionally, the step of selectively generating a mildew and rot prevention instruction to dehumidify the wood flooring based on its humidity includes:
[0019] When the humidity of the wooden floor exceeds a preset humidity threshold, an inquiry message is sent to a terminal device interconnected with the air conditioner. This inquiry message indicates whether the wooden floor needs anti-mildew and anti-corrosion treatment.
[0020] When a positive feedback signal is received from the terminal device, the anti-mold and anti-corrosion instruction is generated; the positive feedback signal is used to indicate that the wood flooring needs to be treated for anti-mold and anti-corrosion.
[0021] Optionally, after controlling the air conditioner and / or the smart device to perform anti-mildew and anti-corrosion measures according to the anti-mildew and anti-corrosion instructions, the interconnection control method further includes:
[0022] The humidity of the wooden floor in the indoor environment space was obtained again; and
[0023] If the humidity of the wood flooring is again lower than the preset humidity threshold, the air conditioner and / or the smart device are controlled to return to the state before the anti-mold and anti-corrosion measures were implemented.
[0024] Optionally, the smart device includes heating equipment; and
[0025] The steps of controlling the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions include:
[0026] Get the current time;
[0027] Determine whether the current time is within the heating season;
[0028] If the current time falls within the heating period, then determine whether the heating equipment is in the on state;
[0029] If the heating equipment is on, then increase the set heating temperature of the heating equipment; and
[0030] If the heating equipment is in the off state, then the heating equipment is turned on.
[0031] Optionally, the step of controlling the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions further includes:
[0032] If the current time is outside the heating period, the air conditioner is started in heating mode and controlled to blow hot air after heat exchange toward the wooden floor.
[0033] Optionally, the smart device further includes an electric heating device; and
[0034] The steps of controlling the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions further include:
[0035] If the current time is outside the heating period, the electric heating equipment is activated to directly or indirectly increase the temperature of the wooden floor.
[0036] According to a second aspect of the present invention, the present invention also provides an interconnection control device for an air conditioner and a smart device, wherein the smart device and the air conditioner are located in the same indoor environmental space; and
[0037] The interconnection control device includes a processor and a memory, the memory storing a machine-executable program, and the machine-executable program being executed by the processor to implement the interconnection control method described in any of the above schemes.
[0038] According to a third aspect of the present invention, the present invention also provides an air conditioner including the interconnection control device described in any of the above embodiments.
[0039] The present invention provides an interconnection and control method for air conditioners and smart devices. The air conditioner and smart devices are located in the same indoor environment, facilitating collaborative operation to jointly regulate environmental parameters within the space. Specifically, since the humidity of wooden floors is the most significant and direct factor affecting mold and rot, the interconnection and control method of this invention first acquires the humidity of the wooden floors in the indoor environment. Then, based on the humidity, it selectively generates anti-mold and anti-rot commands. Finally, it controls the air conditioner and / or smart devices to execute corresponding anti-mold and anti-rot measures according to the commands, dehumidifying the wooden floors and preventing them from remaining damp for extended periods. This effectively eliminates the possibility of mold or rot, extends the lifespan of the wooden floors, and avoids losses for the user. Furthermore, this invention does not require user intervention in the condition of the wooden floors, exhibiting a high degree of intelligence and providing a superior user experience.
[0040] Furthermore, the air conditioner is connected to a humidity detection device located under the wooden floor. This allows the humidity level under the wooden floor to be detected and used as the humidity level of the wooden floor. This humidity level is more likely to reflect the humidity in areas near the wooden floor where water is difficult to remove. Therefore, the anti-mold and anti-corrosion instructions generated accordingly are more in line with the actual needs of whether the wooden floor needs dehumidification, and the execution results are more accurate and timely.
[0041] Furthermore, in the anti-mold and anti-corrosion measures of this invention, it is first determined whether the current time is during the heating season. If so, the heating equipment is turned on or its heating temperature is increased to heat the wooden floor. Since the heating equipment is widely distributed throughout the indoor environment, the heat it provides can be evenly transferred to the indoor space, thus heating the wooden floor uniformly. Some heating equipment is underfloor heating, which can heat the wooden floor more directly, resulting in higher dehumidification efficiency and better effect. Therefore, using heating equipment can disrupt the humidity conditions for mold growth, reduce the speed and possibility of mold growth, and improve the effectiveness of the anti-mold and anti-corrosion treatment.
[0042] Furthermore, the heat provided by the heating equipment is relatively natural and gentle, and will not cause any unpleasant experience for users. Moreover, during the heating season, turning on the heating equipment or increasing its temperature can also raise the indoor temperature, which perfectly meets the user's temperature requirements.
[0043] The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments of the invention in conjunction with the accompanying drawings. Attached Figure Description
[0044] The following sections will describe some specific embodiments of the invention in detail by way of example and not limitation, with reference to the accompanying drawings. The same reference numerals in the drawings denote the same or similar parts or portions. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:
[0045] Figure 1 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to an embodiment of the present invention;
[0046] Figure 2 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a second embodiment of the present invention;
[0047] Figure 3 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a third embodiment of the present invention;
[0048] Figure 4 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a fourth embodiment of the present invention;
[0049] Figure 5 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a fifth embodiment of the present invention;
[0050] Figure 6 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a sixth embodiment of the present invention;
[0051] Figure 7 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a seventh embodiment of the present invention;
[0052] Figure 8 This is a schematic structural block diagram of an interconnected control device according to an embodiment of the present invention;
[0053] Figure 9 This is a schematic structural block diagram of an air conditioner according to an embodiment of the present invention. Detailed Implementation
[0054] This invention first provides a method for interconnecting and controlling air conditioners and smart devices, which can realize the intelligent interconnection between air conditioners and smart devices, providing a scenario for the interconnection of smart home appliances and effectively improving the level of intelligence.
[0055] Specifically, the smart device and the air conditioner are located in the same indoor environment so that the air conditioner and the smart device can work together to regulate the environmental parameters in the indoor environment.
[0056] It should be noted that the methods in the following embodiments of the present invention are all described from the perspective of the interconnection control device between the air conditioner and the smart device, that is, the relevant steps are performed by the control device. Furthermore, the premise for implementing the solutions in the following embodiments of the present invention is that the air conditioner and the smart device are interconnected. Specifically, an interconnection control device between the air conditioner and the smart device can be provided. This control device can receive signals sent by the air conditioner and the smart device, and can also send signals to the air conditioner and the smart device. This control device can be set up separately or can be installed inside the air conditioner.
[0057] The intelligent device in this embodiment possesses intelligent characteristics precisely because, as mentioned above, it can both send signals to and receive signals from the control device. Specifically, this can be achieved by setting a controller on the intelligent device. Similarly, an air conditioner can also be equipped with its own controller, thereby enabling it to both send and receive signals from the control device.
[0058] Figure 1 This is a schematic flowchart illustrating an interconnection control method between an air conditioner and a smart device according to an embodiment of the present invention. See also... Figure 1 The interconnection control method of the present invention includes:
[0059] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0060] Step S20: Selectively generate anti-mold and anti-corrosion instructions for dehumidifying the wood flooring based on its humidity level; and
[0061] Step S30: Control the air conditioner and / or smart devices to perform anti-mold and anti-corrosion measures in accordance with the anti-mold and anti-corrosion instructions.
[0062] Since humidity is the most important and direct factor affecting whether wood flooring will mold or rot, the interconnected control method of this invention first obtains the humidity of the wood flooring in the indoor environment, then selectively generates anti-mold and anti-rot instructions based on the humidity of the wood flooring, and finally controls the air conditioner and / or smart devices to execute corresponding anti-mold and anti-rot measures according to the anti-mold and anti-rot instructions to dehumidify the wood flooring, prevent the wood flooring from being in a damp state for a long time, effectively eliminate the possibility of wood flooring mold or rot, extend the service life of the wood flooring, and avoid losses for users.
[0063] Furthermore, this invention, through the interconnection between household air conditioners and smart devices, eliminates the need for users to personally monitor the condition of wooden floors, resulting in a high degree of intelligence and a better user experience.
[0064] In some embodiments, the air conditioner is communicatively connected to a humidity detection device disposed under the wooden floor to facilitate signal transmission between the air conditioner and the humidity detection device.
[0065] In these embodiments, step S10, which involves obtaining the humidity of the wooden floor in the indoor environment, may specifically include:
[0066] Obtain the humidity value at the underside of the wooden floor as measured by a humidity detection device.
[0067] The air conditioner is connected to a humidity detection device located under the wooden floor. The humidity value under the wooden floor can be detected by the humidity detection device and used as the humidity of the wooden floor. This humidity value is more in line with the humidity of the area near the wooden floor where water is not easily removed. Therefore, the anti-mold and anti-corrosion instructions generated accordingly are more in line with the actual needs of whether the wooden floor needs dehumidification, and the execution results are more accurate and timely.
[0068] In some embodiments, step S20, which selectively generates an anti-mold and anti-corrosion instruction to dehumidify the wood flooring based on its humidity, may specifically include:
[0069] When the humidity of the wood flooring exceeds a preset humidity threshold, an anti-mold and anti-corrosion instruction is automatically generated to instruct the wood flooring to be dehumidified.
[0070] In other words, the anti-mold and anti-rot command is automatically generated when the humidity of the wood flooring exceeds a preset humidity threshold. When the humidity of the wood flooring is high, such as above the preset humidity threshold, the wood flooring is damp and prone to mold and rot. Therefore, this invention automatically generates an anti-mold and anti-rot command when the humidity of the wood flooring exceeds the preset humidity threshold, which is timely and highly intelligent, requiring no user intervention.
[0071] Specifically, Figure 2 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a second embodiment of the present invention. See also... Figure 2 The interconnection control method of the present invention includes:
[0072] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0073] Step S211: Determine whether the humidity of the wood flooring is higher than the preset humidity threshold; if yes, proceed to step S212; if no, return to step S10.
[0074] Step S212: Generate an anti-mold and anti-corrosion instruction for dehumidifying the wood flooring; and
[0075] Step S30: Control the air conditioner and / or smart devices to perform anti-mold and anti-corrosion measures in accordance with the anti-mold and anti-corrosion instructions.
[0076] In other embodiments, step S20, which selectively generates an anti-mold and anti-corrosion instruction to dehumidify the wood flooring based on its humidity, may also include:
[0077] When the humidity of the wooden floor exceeds a preset humidity threshold, an inquiry message is sent to a terminal device connected to the air conditioner. This message indicates whether the wooden floor needs anti-mold and anti-corrosion treatment.
[0078] When a positive feedback signal is received from the terminal device, an anti-mold and anti-corrosion instruction is generated; the positive feedback signal indicates that the wood flooring needs to be treated for anti-mold and anti-corrosion.
[0079] and Figure 2 The difference between this embodiment and the previous one is that, in this embodiment, when the humidity of the wooden floor exceeds a preset humidity threshold, an inquiry message is first sent to the terminal device connected to the air conditioner to ask the user whether dehumidification of the wooden floor is necessary. If the user deems it necessary, a positive feedback signal is sent through the terminal device. Only when a positive feedback signal is received is an anti-mold and anti-corrosion command generated. If a negative feedback signal is received from the terminal device, or if no signal is received, no anti-mold and anti-corrosion command is generated.
[0080] This embodiment incorporates user perception, implementing anti-mold and anti-corrosion measures only when the user deems the wood flooring necessary. This increases the necessity of these measures, making them more aligned with user needs and reducing energy consumption to some extent. For example, in humid seasons or weather, water evaporation is slower, making anti-mold and anti-corrosion measures essential; in dry seasons or weather, evaporation is faster, potentially eliminating the need for such measures. Therefore, this embodiment is suitable for regions with distinct wet and dry seasons.
[0081] Specifically, Figure 3 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a third embodiment of the present invention. See also... Figure 3 The interconnection control method of the present invention includes:
[0082] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0083] Step S221: Determine whether the humidity of the wood flooring is higher than the preset humidity threshold; if so, proceed to step S222.
[0084] Step S222: Send an inquiry message to the terminal device connected to the air conditioner;
[0085] Step S223: When a positive feedback signal is received from the terminal device, an anti-mold and anti-corrosion command is generated.
[0086] Step S30: Control the air conditioner and / or smart devices to perform anti-mold and anti-corrosion measures in accordance with the anti-mold and anti-corrosion instructions.
[0087] In some embodiments, the smart device includes a heating device. In these embodiments, step S30, which controls the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to anti-mold and anti-corrosion instructions, may specifically include:
[0088] Get the current time;
[0089] Determine whether the current time is within the heating season;
[0090] If the current time is during the heating season, determine whether the heating equipment is turned on;
[0091] If the heating equipment is on, increase the set heating temperature of the heating equipment; and
[0092] If the heating equipment is off, turn it on.
[0093] In the anti-mold and anti-corrosion measures of this invention, the first step is to determine whether the current time is during the heating season. If so, the heating equipment is turned on or its temperature is increased to heat the wooden floor. Since the heating equipment is widely distributed throughout the indoor environment, the heat it provides can be evenly transferred to the space, thus uniformly heating and dehumidifying the wooden floor. Some heating systems are underfloor heating, which can heat the wooden floor even more directly, resulting in higher dehumidification efficiency and better effects. Therefore, using heating equipment can comprehensively and effectively disrupt the humidity conditions necessary for mold growth, reducing the speed and likelihood of mold growth and improving the effectiveness of the anti-mold and anti-corrosion treatment.
[0094] Furthermore, the heat provided by the heating equipment is relatively natural and gentle, and will not cause any unpleasant experience for users. Moreover, during the heating season, turning on the heating equipment or increasing its temperature can also raise the indoor temperature, which perfectly meets the user's temperature requirements.
[0095] Specifically, Figure 4 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a fourth embodiment of the present invention. See also... Figure 4 The interconnection control method of the present invention includes:
[0096] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0097] Step S20: Selectively generate anti-mold and anti-corrosion instructions for dehumidifying the wood flooring based on its humidity.
[0098] Step S31: Obtain the current time;
[0099] Step S32: Determine if the current time is within the heating season; if so, proceed to step S33.
[0100] Step S33: Determine whether the heating equipment is in the on state; if yes, proceed to step S34; if no, proceed to step S35.
[0101] Step S34, increase the set heating temperature of the heating equipment; and
[0102] Step S35: Start the heating equipment.
[0103] In some embodiments, step S30, which controls the air conditioner and / or smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions, further includes:
[0104] If the current time is outside the heating season, start the air conditioner in heating mode and control the air conditioner to blow the heat-exchanged hot air toward the wooden floor.
[0105] In areas with centralized heating, heating equipment cannot be started outside of the heating season. In areas with individual heating systems, while heating equipment can be started outside of the heating season, it is more expensive, the temperature rises more slowly, and the response is slower. Furthermore, after the heating equipment is turned off, the indoor temperature drops more slowly, resulting in a noticeable negative experience for users.
[0106] Therefore, outside of the heating season, the anti-mold and anti-corrosion measures of this invention activate the air conditioner in heating mode and control it to blow hot air directly onto the wooden floor. This targeted approach allows for a faster and more efficient increase in the floor's temperature, thus effectively dehumidifying the wood and improving the effectiveness of the anti-mold and anti-corrosion treatment. Furthermore, because the hot air is specifically directed at the wooden floor, it minimizes any unpleasant experience for users who do not require heating.
[0107] Specifically, Figure 5 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a fifth embodiment of the present invention. See also... Figure 5 The interconnection control method of the present invention includes:
[0108] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0109] Step S20: Selectively generate anti-mold and anti-corrosion instructions for dehumidifying the wood flooring based on its humidity.
[0110] Step S31: Obtain the current time;
[0111] Step S32: Determine whether the current time is within the heating season; if yes, proceed to step S33; if no, proceed to step S36.
[0112] Step S33: Determine whether the heating equipment is in the on state; if yes, proceed to step S34; if no, proceed to step S35.
[0113] Step S34: Increase the set heating temperature of the heating equipment;
[0114] Step S35, start the heating equipment; and
[0115] Step S36: Start the air conditioner in heating mode and control the air conditioner to blow the heat-exchanged hot air toward the wooden floor.
[0116] In some embodiments, the smart device further includes an electric heating device. In these embodiments, step S30, which controls the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions, further includes:
[0117] If the current time is outside the heating season, the electric heating equipment will be turned on to directly or indirectly increase the temperature of the wooden floor.
[0118] Outside of the heating season, the anti-mildew and anti-corrosion measures of this invention can also activate electric heating equipment. The electric heating equipment can directly heat the wood flooring, or it can raise the temperature of the wood flooring by increasing the temperature of the indoor environment, thereby promoting the evaporation of moisture near the wood flooring and effectively dehumidifying the wood flooring.
[0119] Specifically, Figure 6 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a sixth embodiment of the present invention. See also... Figure 6 The interconnection control method of the present invention includes:
[0120] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0121] Step S20: Selectively generate anti-mold and anti-corrosion instructions for dehumidifying the wood flooring based on its humidity.
[0122] Step S31: Obtain the current time;
[0123] Step S32: Determine whether the current time is within the heating season; if yes, proceed to step S33; if no, proceed to step S37.
[0124] Step S33: Determine whether the heating equipment is in the on state; if yes, proceed to step S34; if no, proceed to step S35.
[0125] Step S34: Increase the set heating temperature of the heating equipment;
[0126] Step S35, start the heating equipment; and
[0127] Step S37: Start the electric heating device to directly or indirectly increase the temperature of the wood floor.
[0128] It is understood that in some alternative embodiments, the air conditioner and the electric heating device can participate in the dehumidification of the wood floor at the same time. That is, the step of controlling the air conditioner and / or the smart device to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions can simultaneously include the above steps S31, S32, S33, S34, S35, S36 and S37.
[0129] In some embodiments, after controlling the air conditioner and / or smart devices to perform anti-mildew and anti-corrosion measures according to the anti-mildew and anti-corrosion instructions, the interconnection control method of the present invention further includes:
[0130] The humidity of the wooden floor in the indoor environment was measured again; and
[0131] If the humidity of the wood flooring is found to be lower than the preset humidity threshold again, the air conditioner and / or smart devices will be restored to the state before the anti-mold and anti-corrosion measures were implemented.
[0132] In other words, once the humidity of the wood flooring decreases to a certain level, the air conditioner and / or smart devices will be restored to their state before the anti-mold and anti-corrosion measures were implemented, in order to avoid providing users with a poor user experience.
[0133] Specifically, Figure 7 This is a schematic flowchart of an interconnection control method between an air conditioner and a smart device according to a seventh embodiment of the present invention. See also... Figure 7 The interconnection control method of the present invention includes:
[0134] Step S10: Obtain the humidity of the wooden floor in the indoor environment;
[0135] Step S20: Selectively generate anti-mold and anti-corrosion instructions for dehumidifying the wood flooring based on its humidity.
[0136] Step S30: Control the air conditioner and / or smart devices to perform anti-mold and anti-corrosion measures according to the anti-mold and anti-corrosion instructions;
[0137] Step S40: Obtain the humidity of the wooden floor in the indoor environment again;
[0138] Step S50: Determine whether the humidity of the wood flooring obtained again is lower than the preset humidity threshold. If yes, proceed to step S60; otherwise, return to step S40.
[0139] Step S60: Control the air conditioner and / or smart device to return to the state before the implementation of anti-mold and anti-corrosion measures.
[0140] The present invention also provides an interconnection control device for an air conditioner and a smart device, wherein the smart device and the air conditioner are located in the same indoor environment space.
[0141] Figure 8 This is a schematic structural block diagram of an interconnect control device according to an embodiment of the present invention. The interconnect control device 20 of the present invention includes a processor 21 and a memory 22. The memory 22 stores a machine-executable program 23, and when the machine-executable program 23 is executed by the processor 21, it is used to implement the interconnect control method described in any of the above embodiments.
[0142] Specifically, processor 21 can be a central processing unit (CPU) or a digital processing unit, etc. Processor 21 sends and receives data via a communication interface. Memory 22 is used to store the program executed by processor 21. Memory 22 can be any medium capable of carrying or storing desired program code in the form of instructions or data structures, and accessible by a computer; it can also be a combination of multiple memories. The aforementioned machine-executable program 23 can be downloaded from a computer-readable storage medium to the corresponding computing / processing device or via a network (e.g., the Internet, local area network, wide area network, and / or wireless network) to a computer or external storage device.
[0143] As mentioned above, the interconnection control method between the air conditioner and the smart device in any of the above embodiments is described from the perspective of the interconnection control device 20, that is, the interconnection control device 20 performs the relevant steps. In a specific embodiment, the interconnection control device 20 is data-connected to the air conditioner and the smart device. It can be equipped with network-side devices such as servers and cloud devices to obtain various data of the set space through the network and realize relevant adjustments by remotely sending commands to the air conditioner and the smart device.
[0144] The interconnected control device 20 can also be various types of centralized control equipment, arranged in a designated space, to control air conditioners and smart devices. Data connection methods between the interconnected control device 20 and air conditioners and smart devices include, but are not limited to, wireless transmission, infrared transmission, and ultrasonic transmission.
[0145] In some embodiments, the interconnected control device 20 may also be part of the air conditioner, located inside the air conditioner, and connected to the air conditioner's own controller. For example, the air conditioner may have a dedicated interconnected control device inside, which works in conjunction with a controller dedicated to performing component control.
[0146] The present invention also provides an air conditioner. Figure 9This is a schematic structural block diagram of an air conditioner according to an embodiment of the present invention. The air conditioner 1 has the interconnection control device 20 described in the above embodiment. That is, the interconnection control device 20 may not be disposed outside the air conditioner 1, but may be disposed on the air conditioner 1. The interconnection control device 20 and the controller of the air conditioner 1 itself may be the same component, that is, the interconnection control device 20 is used both to control the operation of the air conditioner 1 itself and to receive signals from smart devices and send signals to smart devices.
[0147] Alternatively, the interconnected control device 20 and the air conditioner's own controller can be different components; that is, the controller is used to control the operation of the air conditioner itself, and the interconnected control device 20 is used to receive signals from the smart device and send signals to the smart device. However, the interconnected control device 20 also communicates with the controller to receive signals from the air conditioner's own controller and send signals to the controller.
[0148] In the description of this embodiment, the terms "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0149] It should be noted that, in the description of this invention, each functional module can be a physical module composed of multiple structures, components, or electronic devices, or a virtual module composed of multiple programs; each functional module can be an independent module or a module divided from a whole module according to its function. Those skilled in the art should understand that, provided the technical solution described in this invention can be implemented, any changes in the configuration, implementation, or positional relationship of the functional modules will not deviate from the technical principles of this invention, and therefore should all fall within the protection scope of this invention.
[0150] Therefore, those skilled in the art should recognize that although numerous exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications conforming to the principles of the present invention can be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the invention. Thus, the scope of the present invention should be understood and construed as covering all such other variations or modifications.
Claims
1. An air conditioner and intelligent device interconnection control method, the intelligent device and the air conditioner being in the same indoor environment space. and The interconnection control method comprises: acquiring humidity of a wooden floor in the indoor environment space; selectively generating a mildew-proof and rot-proof instruction for indicating dehumidification of the wooden floor according to the humidity of the wooden floor; and controlling the air conditioner and / or the intelligent device to perform a mildew-proof and rot-proof measure according to the mildew-proof and rot-proof instruction; the air conditioner is in communication connection with a humidity detection device arranged at the lower side of the wooden floor; and the step of acquiring the humidity of the wooden floor in the indoor environment space comprises: acquiring a humidity value of the position at the lower side of the wooden floor measured by the humidity detection device; the intelligent device comprises a heating device; and the step of controlling the air conditioner and / or the intelligent device to perform the mildew-proof and rot-proof measure according to the mildew-proof and rot-proof instruction comprises: acquiring a current time; judging whether the current time is in a heating period; if the current time is in the heating period, judging whether the heating device is in an open state; if the heating device is in the open state, increasing a set heating temperature of the heating device; and if the heating device is in a closed state, starting the heating device; the step of controlling the air conditioner and / or the intelligent device to perform the mildew-proof and rot-proof measure according to the mildew-proof and rot-proof instruction further comprises: if the current time is out of the heating period, starting the air conditioner in a heating mode, and controlling the air conditioner to blow the heat air after heat exchange towards the wooden floor.
2. The interconnection control method according to claim 1, wherein the step of selectively generating the mildew-proof and rot-proof instruction for indicating dehumidification of the wooden floor according to the humidity of the wooden floor comprises: automatically generating the mildew-proof and rot-proof instruction when the humidity of the wooden floor is higher than a preset humidity threshold.
3. The interconnection control method according to claim 1, wherein the step of selectively generating the mildew-proof and rot-proof instruction for indicating dehumidification of the wooden floor according to the humidity of the wooden floor comprises: when the humidity of the wooden floor is higher than a preset humidity threshold, sending inquiry information to a terminal device interconnected with the air conditioner, the inquiry information being used to indicate whether the wooden floor needs to be treated for mildew-proof and rot-proof; and generating the mildew-proof and rot-proof instruction when a positive feedback signal sent by the terminal device is received, the positive feedback signal being used to indicate that the wooden floor needs to be treated for mildew-proof and rot-proof.
4. The interconnection control method according to claim 2 or 3, wherein after controlling the air conditioner and / or the intelligent device to perform the mildew-proof and rot-proof measure according to the mildew-proof and rot-proof instruction, the interconnection control method further comprises: again acquiring the humidity of the wooden floor in the indoor environment space; and if the humidity of the wooden floor acquired again is lower than the preset humidity threshold, controlling the air conditioner and / or the intelligent device to return to a state before the mildew-proof and rot-proof measure is performed.
5. The interconnection control method according to claim 1, wherein the intelligent device further comprises an electric heating device; and the step of controlling the air conditioner and / or the intelligent device to perform the mildew-proof and rot-proof measure according to the mildew-proof and rot-proof instruction further comprises: If the current time is outside the heating period, the electric heating device is started to directly or indirectly increase the temperature of the wood floor. 6.An interconnected control device of an air conditioner and a smart device, wherein the smart device and the air conditioner are in the same indoor environment space; and The interconnected control device comprises a processor and a memory, the memory stores a machine executable program, and the machine executable program is executed by the processor to implement the interconnected control method according to any one of claims 1-5. 7.An air conditioner comprising the interconnected control device according to claim 6.
Citation Information
Patent Citations
Ventilation and heat preservation module heating and cooling floor and energy-saving ventilation and air conditioning system
CN104763087A
Floor condensation prevention method and device for air conditioner and air conditioner
CN111706965A