Air conditioner and control method thereof
By connecting the air conditioner to the smart mosquito net and adjusting the air supply mode and fan speed, the problem of the air conditioner's air supply affecting the mosquito net's unfolding is solved, enabling the mosquito net to unfold normally and providing users with a comfortable cooling experience.
Patent Information
- Application Number
- CN202310407941.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-17
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2043-04-17
AI Technical Summary
The cold air blown out by the air conditioner can easily blow up the smart mosquito net, causing it to be difficult to unfold or to form an effective mosquito-proof safety zone, thus affecting the user's cooling experience.
The air conditioner communicates with the smart mosquito net. After receiving the unfolding signal, it switches to the anti-direct-blow mode. By adjusting the air supply mode, air guide structure and fan speed, it avoids cold air blowing directly onto the mosquito net, ensuring that the mosquito net unfolds normally and forms a closed mosquito-proof safety zone.
This effectively avoids the adverse effects of air conditioning on smart mosquito nets, ensuring that the nets can be deployed normally and improving the user's cooling experience and mosquito prevention effect.
Smart Images

Figure CN116608559B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to air conditioning technology, in particular to an air conditioner and a control method thereof. BACKGROUND
[0002] In summer, mosquitoes are rampant, not only causing people to suffer from being bitten, affecting users' sleep, but also possibly transmitting various diseases, such as dengue fever, malaria, etc. Therefore, many users use mosquito nets in daily life to physically isolate mosquitoes from the area where the user is located, without any chemical hazards. Mosquito nets are divided into manually opened and closed ordinary mosquito nets and automatically opened and closed intelligent mosquito nets, which automatically unfold or automatically fold according to the instructions received.
[0003] In summer, the temperature is usually high, so air conditioners are mostly installed in rooms, and the air conditioners blow cold air into the indoor room during operation. However, the mosquito net material is very light, and the cold air blown out by the air conditioner may blow up the mosquito net, causing the mosquito net to unfold poorly or not form a relatively closed space after unfolding, thereby bringing the risk that mosquitoes may enter the inside of the mosquito net. SUMMARY
[0004] One object of the first aspect of the present application is to overcome at least one defect of the prior art, and to provide an air conditioner control method that avoids adversely affecting the normal unfolding of an intelligent mosquito net.
[0005] A further object of the first aspect of the present application is to avoid affecting the cooling use experience of the air conditioner.
[0006] An object of the second aspect of the present application is to provide an air conditioner that avoids adversely affecting the normal unfolding of an intelligent mosquito net.
[0007] According to the first aspect of the present application, the present application provides a control method of an air conditioner, the air conditioner being in communication connection with an intelligent mosquito net in the same environmental space; the control method comprising:
[0008] receiving an unfolding action signal sent by the intelligent mosquito net; the unfolding action signal being generated when the intelligent mosquito net performs an unfolding action in response to an unfolding start instruction received thereby; and
[0009] adjusting the operating parameters of the air conditioner, so that the air conditioner is switched from a set operating mode to a direct-blow-avoiding mode in which the air conditioner avoids blowing air from the intelligent mosquito net.
[0010] Optionally, the air conditioner has a direct air supply mode for air flow to be blown out directly from an air outlet thereof, and a windless air supply mode for air flow blown out from the air outlet to be dispersed; and
[0011] The step of adjusting the operating parameters of the air conditioner comprises:
[0012] adjusting the air supply mode of the air conditioner to the windless air supply mode.
[0013] Optionally, the air conditioner has a first air guide structure with a plurality of air holes for air flow to pass through; the first air guide structure is movably arranged at the air outlet and has a first state in the air flow path of the air outlet and a second state avoiding the air flow path of the air outlet; and
[0014] The step of adjusting the air supply mode of the air conditioner to the windless air supply mode comprises:
[0015] adjusting the first air guide structure to the first state.
[0016] Optionally, the air conditioner has a second air guide structure rotatably arranged at the air outlet of the air conditioner for adjusting the air outlet direction of the air outlet in the up-down direction; and
[0017] The step of adjusting the operation parameter of the air conditioner comprises:
[0018] adjusting the second air guide structure to a posture of blowing air towards the top.
[0019] Optionally, the step of adjusting the operation parameter of the air conditioner further comprises:
[0020] reducing the rotating speed of the indoor fan of the air conditioner.
[0021] Optionally, after adjusting the operation parameter of the air conditioner to switch the air conditioner from the set operation mode to the anti-direct blowing mode avoiding the air supply of the smart mosquito net, the control method further comprises:
[0022] receiving a deployment stop signal sent by the smart mosquito net; the deployment stop signal is generated after the smart mosquito net completes the deployment action according to the deployment start instruction; and
[0023] resuming the air conditioner to the set operation mode so that the air conditioner continues to operate according to the set operation mode.
[0024] Optionally, after adjusting the operation parameter of the air conditioner to switch the air conditioner from the set operation mode to the anti-direct blowing mode avoiding the air supply of the smart mosquito net, the control method further comprises:
[0025] receiving a deployment stop signal sent by the smart mosquito net; the deployment stop signal is generated after the smart mosquito net completes the deployment action according to the deployment start instruction; and
[0026] On the basis of the set operation mode, the rotation speed of the indoor fan of the air conditioner is reduced.
[0027] Optionally, the step of reducing the rotation speed of the indoor fan of the air conditioner comprises:
[0028] The rotation speed of the indoor fan is reduced by one gear.
[0029] Optionally, after receiving the unfolding action signal, the control method further comprises:
[0030] determining whether there are mosquitoes in the internal region of the smart mosquito net; and
[0031] if yes, sending a pause action signal to the smart mosquito net for instructing the smart mosquito net to pause the unfolding action, and sending prompt information indicating that there are mosquitoes in the internal region of the smart mosquito net.
[0032] According to a second aspect of the present application, the present application further provides an air conditioner, which is communicatively connected with a smart mosquito net in the same environment space as the air conditioner; and the air conditioner comprises:
[0033] a control device, which comprises a processor and a memory, the memory storing a machine executable program, and the machine executable program is used to implement the control method according to any one of the above-mentioned schemes when executed by the processor.
[0034] The air conditioner of the present application is particularly communicatively connected with a smart mosquito net in the same environment space as the air conditioner, so that the air conditioner can obtain the unfolding action signal of the smart mosquito net at any time, thereby detecting the state of the smart mosquito net. The inventor realizes that when the smart mosquito net performs the unfolding action, the mosquito net gradually encloses the entire bed region from top to bottom or from one side of the bed to the other side, and if the cold wind blown by the air conditioner blows onto the mosquito net in this process, the mosquito net is easily blown up, resulting in that the mosquito net cannot normally enclose the entire bed region or form a gap, so that the anti-mosquito safety zone cannot be formed in the bed region. Therefore, when the air conditioner receives the unfolding action signal sent by the smart mosquito net, the air conditioner of the present application switches from the current set operation mode to the anti-direct-blowing mode by adjusting the operation parameters, so as to avoid the air supply of the smart mosquito net, that is, the cold wind will not directly blow to the smart mosquito net, and almost no unexpected deformation will occur in the unfolding process of the smart mosquito net, so that the smart mosquito net normally and completely encloses the entire bed region to form a closed anti-mosquito safety zone, and the anti-mosquito effect of the smart mosquito net is avoided from being reduced due to the air blowing of the air conditioner.
[0035] Further, the air conditioner receives the unfolding stop signal sent by the smart mosquito net, and it is indicated that the smart mosquito net has completed the unfolding action according to the unfolding start instruction and is in a static state. The cold wind blown by the air conditioner will not have an adverse effect on the state of the smart mosquito net even if the cold wind is blown to the smart mosquito net. Therefore, the air conditioner is restored to the set operation mode after receiving the unfolding stop signal, which not only does not have an adverse effect on the smart mosquito net, but also can restore the set operation mode set by the user as soon as possible, avoiding the influence on the user's cooling use experience.
[0036] The above and other objects, advantages and features of the present application will become more apparent from the following detailed description of some embodiments thereof, when taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0037] Some specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. The same reference numbers in the drawings indicate the same or similar components or parts. Those skilled in the art should understand that the drawings are not necessarily drawn to scale. In the drawings:
[0038] Figure 1 is a schematic flow chart of a control method of an air conditioner according to a first embodiment of the present application;
[0039] Figure 2 is a schematic flow chart of a control method of an air conditioner according to a second embodiment of the present application;
[0040] Figure 3 and Figure 4 are schematic structural diagrams of an indoor unit of an air conditioner according to an embodiment of the present application in different states, respectively;
[0041] Figure 5 is a schematic structural diagram of an indoor unit of an air conditioner according to another embodiment of the present application;
[0042] Figure 6 is a schematic flow chart of a control method of an air conditioner according to a third embodiment of the present application;
[0043] Figure 7 is a schematic flow chart of a control method of an air conditioner according to a fourth embodiment of the present application;
[0044] Figure 8 is a schematic flow chart of a control method of an air conditioner according to a fifth embodiment of the present application;
[0045] Figure 9 is a schematic structural block diagram of an air conditioner according to an embodiment of the present application. DETAILED DESCRIPTION
[0046] The present application provides a control method of an air conditioner, which is communicatively connected with a smart mosquito net in a same environment space as the air conditioner, so as to transmit signals between the air conditioner and the smart mosquito net.
[0047] It can be understood that the air conditioner and the smart mosquito net are in the same environment space, for example, the air conditioner and the smart mosquito net are both in a same master bedroom space, or both in a same secondary bedroom space, and the like.
[0048] The control method of the air conditioner of the present application is based on the above-mentioned air conditioner.
[0049] Figure 1 is a schematic flow chart of the control method of the air conditioner according to the first embodiment of the present application. Referring to Figure 1 The control method of the air conditioner of the present application comprises:
[0050] Step S10, receiving an unfolding action signal sent by the smart mosquito net; the unfolding action signal is generated when the smart mosquito net performs an unfolding action in response to an unfolding start instruction received by the smart mosquito net; and
[0051] Step S20, adjusting the operating parameter of the air conditioner, so as to switch the air conditioner from a set operating mode to a direct-blow-avoiding mode in which the air conditioner avoids blowing air to the smart mosquito net.
[0052] That is, when the smart mosquito net receives an unfolding start instruction, the smart mosquito net starts to perform an unfolding action, at this time, an unfolding action signal can be generated and sent to the air conditioner. It can be understood that the unfolding start instruction can be an instruction issued by a user by triggering a button.
[0053] The air conditioner of the present application is particularly communicatively connected with a smart mosquito net in a same environment space as the air conditioner, so that the air conditioner can obtain the unfolding action signal of the smart mosquito net at any time, thereby detecting the state of the smart mosquito net.
[0054] The inventor realizes that when the smart mosquito net performs an unfolding action, the mosquito net gradually encloses the entire bed area from top to bottom or gradually encloses the entire bed area from one side of the bed to the other side, and if the cold wind blown by the air conditioner blows on the mosquito net in this process, the mosquito net is easily blown up, resulting in that the mosquito net cannot normally enclose the entire bed area or form a gap, thereby failing to form an effective anti-mosquito safety zone in the bed area.
[0055] To this end, the air conditioner of the present application switches its current set operation mode to a direct-blow-avoiding mode by adjusting its operation parameters upon receiving the unfolding action signal sent by the smart mosquito net, so as to avoid the air flow blown by the air conditioner directly blowing on the smart mosquito net, that is, the cold air blown by the air conditioner will not directly blow on the smart mosquito net, and the smart mosquito net will hardly be deformed unexpectedly during its unfolding process, thus ensuring that the smart mosquito net normally and completely encloses the whole bed area to form a closed and effective anti-mosquito safety zone, and avoiding the anti-mosquito effect of the smart mosquito net being reduced or lost due to the air flow blown by the air conditioner.
[0056] In some embodiments, the air conditioner has a direct air supply mode for air flow directly blowing out of its air outlet, and a windless air supply mode for dispersing the air flow blown out of the air outlet.
[0057] It can be understood that the direct air supply mode and the windless air supply mode are two different air supply modes of the air conditioner. In the direct air supply mode, the air flow directly blows out of the air outlet, and the wind speed is fast, which is suitable for a fast cooling mode or a fast heating mode. In the windless air supply mode, the air flow blown out of the air outlet is dispersed, so the air supply is softer, and the user hardly feels the wind, which is more comfortable.
[0058] In these embodiments, the step of adjusting the operation parameters of the air conditioner to switch the air conditioner from the set operation mode to the direct-blow-avoiding mode of the smart mosquito net air supply can specifically include:
[0059] Adjusting the air supply mode of the air conditioner to the windless air supply mode.
[0060] That is, for the air conditioner having the windless air supply mode, the direct-blow-avoiding mode can be that the air supply mode of the air conditioner is changed to the windless air supply mode.
[0061] Since the air supply mode of the air conditioner has been fundamentally changed, the air flow blown by the air conditioner has no regular directionality and will not generate a large force on the smart mosquito net, thus avoiding the smart mosquito net being deformed due to the wind force during its unfolding process, and ensuring that the smart mosquito net normally and completely encloses the whole bed area to form a closed and effective anti-mosquito safety zone.
[0062] Specifically, Figure 2 is a schematic flow chart of the control method of the air conditioner according to the second embodiment of the present application. Referring to Figure 2 , the control method of the air conditioner of the present application includes:
[0063] Step S10, receiving the unfolding action signal sent by the smart mosquito net; the unfolding action signal is generated when the smart mosquito net performs the unfolding action in response to the unfolding start instruction received by the smart mosquito net; and
[0064] Step S21, adjusting the air supply mode of the air conditioner to the windless air supply mode.
[0065] Figure 3 and Figure 4 are schematic structural diagrams of the indoor unit of the air conditioner in different states according to an embodiment of the present application. In some embodiments, referring to Figure 3 and Figure 4 , the air conditioner has a first air guide structure 10, and a plurality of air holes 11 for air flow to pass through are formed in the first air guide structure 10; the first air guide structure 10 is movably arranged at an air outlet 40, and has a first state (see Figure 3 ) in which the first air guide structure 10 is in the air flow path of the air outlet 40 and a second state (see Figure 4 ) in which the first air guide structure 10 avoids the air flow path of the air outlet 40.
[0066] In these embodiments, the step of adjusting the air supply mode of the air conditioner to the windless air supply mode can specifically include:
[0067] adjusting the first air guide structure 10 to the first state.
[0068] When the first air guide structure 10 is in the first state, the air flow from the air outlet 40 passes through the plurality of air holes 11 on the first air guide structure 10 when encountering the first air guide structure 10, which disperses the air flow and reduces the wind speed, achieving the purpose of windless.
[0069] When the first air guide structure 10 is in the second state, the air flow from the air outlet 40 can directly blow out, and at this time, the air conditioner is in the direct air supply mode.
[0070] Figure 5 is a schematic structural diagram of the indoor unit of the air conditioner according to another embodiment of the present application. In some embodiments, referring to Figure 5 , the air conditioner has a second air guide structure 30, and the second air guide structure 30 is rotatably arranged at the air outlet 40 of the air conditioner to adjust the air outlet direction of the air outlet 40 in the up-down direction.
[0071] In these embodiments, the step of adjusting the operating parameter of the air conditioner to switch the air conditioner from the set operating mode to the direct-blow-avoiding mode of the smart mosquito net air supply can specifically include:
[0072] adjusting the second air guide structure 30 to a posture of blowing air towards the top.
[0073] That is to say, for the air conditioner with the second air guide structure 30, the direct-blow-avoiding mode of the air conditioner can be blowing air towards the top by the second air guide structure 30.
[0074] Since the second air guide structure 30 is in the posture of blowing air towards the top, the air flow blown out of the air outlet 40 is guided upwards to blow towards the top, and will not blow towards the smart mosquito net to generate a large force on the smart mosquito net. Therefore, the smart mosquito net can be prevented from being deformed due to the wind force during the unfolding process, and the smart mosquito net can be ensured to normally and completely surround the entire bed area to form a closed and effective anti-mosquito safety zone.
[0075] Further, the step of adjusting the operating parameter of the air conditioner further comprises:
[0076] reducing the rotating speed of the indoor fan of the air conditioner.
[0077] Although the second air guide structure 30 guides the wind upwards, if the flow rate of the air flow blown out of the air outlet 40 is too large, some air flow will inevitably blow towards the top of the smart mosquito net, thereby affecting the normal unfolding of the smart mosquito net.
[0078] Therefore, the rotating speed of the indoor fan is further reduced, the wind blowing towards the smart mosquito net can be further avoided, and the normal and complete surrounding of the smart mosquito net around the entire bed area to form a closed and effective anti-mosquito safety zone can be further ensured.
[0079] Specifically, Figure 6 is a schematic flow chart of the control method of the air conditioner according to the third embodiment of the present application. Referring to Figure 6 , the control method of the air conditioner of the present application comprises:
[0080] Step S10, receiving the unfolding action signal sent by the smart mosquito net; the unfolding action signal is generated when the smart mosquito net performs the unfolding action in response to the unfolding start instruction received by the smart mosquito net;
[0081] Step S22, adjusting the second air guide structure 30 to the posture of blowing air towards the top; and
[0082] Step S23, reducing the rotating speed of the indoor fan of the air conditioner.
[0083] Figure 7 is a schematic flow chart of the control method of the air conditioner according to the fourth embodiment of the present application. In some embodiments, referring to Figure 7 , after adjusting the operating parameter of the air conditioner to switch the air conditioner from the set operating mode to the anti-direct-blowing mode of avoiding the air supply of the smart mosquito net, the control method of the present application further comprises:
[0084] Step S30, receiving the unfolding stop signal sent by the smart mosquito net; the unfolding stop signal is generated after the smart mosquito net completes the unfolding action according to the unfolding start instruction; and
[0085] Step S40, restoring the air conditioner to the set operating mode, so that the air conditioner continues to operate according to the set operating mode.
[0086] That is, when the smart mosquito net completes the unfolding action, the unfolding action is stopped, at this time, an unfolding stop signal is generated and sent to the air conditioner.
[0087] After the air conditioner receives the unfolding stop signal sent by the smart mosquito net, it is indicated that the smart mosquito net has completed the unfolding action according to the unfolding start instruction and is in a static state. At this time, the cold wind blown by the air conditioner will not have an adverse effect on the state of the smart mosquito net even if it blows to the smart mosquito net.
[0088] Therefore, after receiving the unfolding stop signal, the air conditioner of the present application restores the air conditioner to the set running mode, which not only does not have an adverse effect on the smart mosquito net, but also restores the set running mode set by the user as soon as possible, avoiding affecting the user's cooling use experience.
[0089] Figure 8 is a schematic flow chart of the control method of the air conditioner according to the fifth embodiment of the present application. In some embodiments, referring to Figure 8 After adjusting the operating parameters of the air conditioner to switch the air conditioner from the set running mode to the anti-direct-blowing mode to avoid blowing air to the smart mosquito net, the control method further comprises:
[0090] Step S30, receiving the unfolding stop signal sent by the smart mosquito net; the unfolding stop signal is generated after the smart mosquito net completes the unfolding action according to the unfolding start instruction; and
[0091] Step S40', on the basis of the set running mode, reducing the speed of the indoor fan of the air conditioner.
[0092] That is, in some other embodiments, after receiving the unfolding stop signal, the air conditioner does not completely restore the air conditioner to the set running mode, but reduces the speed of the indoor fan on the basis of the set running mode, thereby reducing the air blowing speed of the air outlet.
[0093] This is because the inventor realizes that the user usually unfolds the smart mosquito net at the time of sleep, and during the sleep process, the user's activity decreases, the requirement for room temperature increases slightly, and the requirement for noise is lower.
[0094] Therefore, at this time, the present application reduces the speed of the indoor fan, which not only can approach the set running mode set by the user as soon as possible, avoiding affecting the user's cooling use experience, but also more intelligently reduces the air blowing speed and operating noise of the air conditioner, so that the operation of the air conditioner is more in line with the user's needs in the sleep state.
[0095] In some embodiments, the step of reducing the speed of the indoor fan of the air conditioner comprises:
[0096] The speed of the indoor fan is reduced by one gear.
[0097] The rotation speed of the indoor fan is only reduced by one gear, so that the air outlet speed of the air outlet 40 is not suddenly reduced, and the temperature regulation requirement of the environment space is not affected.
[0098] In some embodiments, after receiving the unfolding action signal, the control method of the present application further comprises:
[0099] determining whether there are mosquitoes in the internal area of the intelligent mosquito net; and
[0100] If yes, a pause action signal for instructing the intelligent mosquito net to pause the unfolding action is sent to the intelligent mosquito net, and prompt information indicating that there are mosquitoes in the internal area of the intelligent mosquito net is sent.
[0101] When the air conditioner identifies that there are mosquitoes in the internal area of the intelligent mosquito net, the air conditioner sends a pause action signal to the intelligent mosquito net to prompt the intelligent mosquito net to pause the unfolding action, thereby avoiding the problem that mosquitoes are trapped in the internal area of the intelligent mosquito net and the user is bitten.
[0102] At the same time, the air conditioner also sends prompt information to prompt the user that there are mosquitoes in the internal area of the intelligent mosquito net, so that the user can timely kill the mosquitoes.
[0103] The present application also provides an air conditioner, which is in communication connection with an intelligent mosquito net in the same environment space. Figure 9 is a schematic structural block diagram of the air conditioner according to an embodiment of the present application, referring to Figure 9 The air conditioner 1 comprises a control device 20, the control device 20 comprises a processor 21 and a memory 22, the memory 22 stores a machine executable program 23, and the machine executable program 23 is used to implement the control method described in any of the above embodiments when executed by the processor 21.
[0104] Specifically, the processor 21 can be a central processing unit (CPU) or a digital processing unit, etc. The processor 21 transmits and receives data through a communication interface. The memory 22 is used to store the program executed by the processor 21. The memory 22 is any medium that can carry or store desired program codes in the form of instructions or data structures and can be accessed by a computer, and can also be a combination of multiple memories. The above machine executable program 23 can be downloaded from a computer readable storage medium to a corresponding computing / processing device or downloaded to a computer or an external storage device via a network (such as the Internet, a local area network, a wide area network and / or a wireless network).
[0105] Those skilled in the art should understand that the above-described embodiments are only a part of the embodiments of the present application, and are intended to explain the technical principles of the present application, but not to limit the protection scope of the present application. Based on the embodiments provided by the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the protection scope of the present application.
[0106] It should be noted that, in the description of the present application, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0107] In addition, it should be further noted that, in the description of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood in a broad sense, for example, can be fixed connection, can also be detachable connection, or integral connection; can be mechanical connection, can also be electrical connection; can be direct connection, can also be indirect connection through an intermediate medium, or can be the communication between two elements. Those skilled in the art can understand the specific meaning of the above terms in the present application according to the specific circumstances.
[0108] Further, it should be further noted that, in the description of the present application, each functional module can be a physical module composed of multiple structures, components or electronic elements, or a virtual module composed of multiple programs; each functional module can be a module existing independently, or a module divided by a whole module according to function. Those skilled in the art should understand that, as long as the technical solutions described in the present application can be realized, the constituting manner, the implementation manner and the positional relationship of each functional module can be changed without departing from the technical principles of the present application, and therefore should fall within the protection scope of the present application.
[0109] At this point, those skilled in the art should recognize that, although the present application has been shown and described in detail in this paper, many other variants or modifications conforming to the principles of the present application can be directly determined or deduced based on the content disclosed in the present application without departing from the spirit and scope of the present application. Therefore, the scope of the present application should be understood and recognized as covering all these other variants or modifications.
Claims
1.A control method of an air conditioner, the air conditioner being communicatively connected with a smart mosquito net in a same environment space as the air conditioner; the control method comprising: receiving an unfolding action signal sent by the smart mosquito net; the unfolding action signal being generated when the smart mosquito net performs an unfolding action in response to an unfolding start instruction received by the smart mosquito net; and adjusting an operating parameter of the air conditioner, so that the air conditioner is switched from a set operating mode to a direct-blow-avoiding mode in which air supply of the smart mosquito net is avoided; wherein after the adjusting of the operating parameter of the air conditioner, so that the air conditioner is switched from the set operating mode to the direct-blow-avoiding mode in which air supply of the smart mosquito net is avoided, the control method further comprises: receiving an unfolding stop signal sent by the smart mosquito net; the unfolding stop signal being generated after the smart mosquito net completes the unfolding action according to the unfolding start instruction; and restoring the air conditioner to the set operating mode, so that the air conditioner continues to operate according to the set operating mode. 2.The control method according to claim 1, wherein the air conditioner has a direct air supply mode in which air flow is directly blown out from an air outlet of the air conditioner, and a windless air supply mode in which air flow blown out from the air outlet is dispersed; and the adjusting of the operating parameter of the air conditioner comprises: adjusting an air supply mode of the air conditioner to the windless air supply mode. 3.The control method according to claim 2, wherein the air conditioner has a first air guide structure having a plurality of air holes for air flow to pass through, the first air guide structure being movably arranged at the air outlet and having a first state in which the first air guide structure is in an air flow path of the air outlet, and a second state in which the first air guide structure avoids the air flow path of the air outlet; and the adjusting of the air supply mode of the air conditioner to the windless air supply mode comprises: adjusting the first air guide structure to the first state. 4.The control method according to claim 1, wherein the air conditioner has a second air guide structure rotatably arranged at the air outlet of the air conditioner, for adjusting a blowing direction of the air outlet in a vertical direction; and the adjusting of the operating parameter of the air conditioner comprises: adjusting the second air guide structure to a posture in which air is blown towards a top. 5.The control method according to claim 4, wherein the adjusting of the operating parameter of the air conditioner further comprises: reducing a rotating speed of an indoor fan of the air conditioner. 6.The control method according to claim 1, wherein after the adjusting of the operating parameter of the air conditioner, so that the air conditioner is switched from the set operating mode to the direct-blow-avoiding mode in which air supply of the smart mosquito net is avoided, the control method further comprises: receiving an unfolding stop signal sent by the smart mosquito net; the unfolding stop signal being generated after the smart mosquito net completes the unfolding action according to the unfolding start instruction; and reducing a rotating speed of an indoor fan of the air conditioner on the basis of the set operating mode. 7.The control method according to claim 5 or 6, wherein the reducing of the rotating speed of the indoor fan of the air conditioner comprises: reducing the rotating speed of the indoor fan of the air conditioner by a first amount. decrease the rotation speed of the indoor fan by one gear. 8.The control method of claim 1, wherein after receiving the unfolding action signal, the control method further comprises: judging whether there are mosquitoes in the internal region of the smart mosquito net; and if yes, sending a pause action signal to the smart mosquito net for instructing it to pause the unfolding action, and sending prompt information for indicating that there are mosquitoes in the internal region of the smart mosquito net. 9.An air conditioner, which is communicatively connected with a smart mosquito net in the same environment space as the air conditioner; and the air conditioner comprises: a control device, which 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 control method according to any one of claims 1-8.
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