Control method of an environmental conditioning system, environmental conditioning system and storage medium

By setting multiple air outlets in the indoor unit of the air conditioner and controlling the air outlet coordination based on the parameters of the last shutdown state, the problem of the air conditioner's air outlet not being able to meet the user's needs in a timely manner is solved, and more efficient air outlet regulation is achieved.

CN120799661BActive Publication Date: 2026-03-27GD MIDEA AIR CONDITIONING EQUIP CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing air outlet design of indoor air conditioners cannot meet user needs in a timely manner, making them inconvenient to use.

Method used

At least two air outlets are installed in the indoor unit of the air conditioner, and the target air outlet coordination state is determined by obtaining the operating status parameters before the last shutdown, so as to control the air outlets of the indoor unit to meet the user's needs.

Benefits of technology

It improves the ease of use of air conditioners, enabling the indoor unit to deliver air in a timely and accurate manner to meet user needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120799661B_ABST
    Figure CN120799661B_ABST
Patent Text Reader

Abstract

The application discloses a control method of an environment adjusting system, the environment adjusting system and a storage medium, relates to the technical field of electrical appliances, and the environment adjusting system comprises an indoor unit, the indoor unit comprises at least two air outlets, the control method of the environment adjusting system comprises the following steps: in response to a start-up instruction, a first state parameter is acquired, the first state parameter represents a storage state of an operating state parameter before the last time the environment adjusting system is turned off; the target air outlet cooperation state of the at least two air outlets is determined according to the first state parameter; and the indoor unit is controlled to operate according to the target air outlet cooperation state. The application aims to improve the convenience of system use, so that the indoor unit air outlet can timely and accurately meet the user demand.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical appliances, in particular to a control method of an environment adjusting system, the environment adjusting system and a storage medium. BACKGROUND

[0002] The indoor unit in the environment adjusting system such as an air conditioner can drive indoor air into the indoor air duct to exchange heat with the indoor heat exchanger through the indoor fan, and the air after heat exchange can be sent back to the indoor environment from the air outlet to realize the adjustment of the indoor air.

[0003] In the related art, different air outlets are arranged in the indoor unit to realize different air outlet effects. Currently, different air outlets generally only cooperate with air outlet according to the user setting parameters. However, such a mode has the problems of inconvenient use and difficulty of air conditioner air outlet to meet the user demand in time. SUMMARY

[0004] The main purpose of the present application is to provide a control method of an environment adjusting system, the environment adjusting system and a storage medium, which aims to improve the system use convenience, so that the indoor unit air outlet can meet the user demand in time and accurately.

[0005] To achieve the above purpose, the present application provides a control method of an environment adjusting system, the environment adjusting system comprising an indoor unit, the indoor unit comprising at least two air outlets, the control method of the environment adjusting system comprising:

[0006] In response to a start-up instruction, a first state parameter is obtained, the first state parameter representing a storage state of the running state parameter before the last time the environment adjusting system is turned off;

[0007] The target air outlet cooperation state of the at least two air outlets is determined according to the first state parameter;

[0008] The indoor unit is controlled to run according to the target air outlet cooperation state.

[0009] In an embodiment, the step of determining the target air outlet cooperation state of the at least two air outlets according to the first state parameter comprises:

[0010] The target air outlet cooperation state is determined according to the first state parameter and a second state parameter;

[0011] The second state parameter represents the current user setting state of the running parameter of the environment adjusting system.

[0012] In an embodiment, the step of determining the target air outlet cooperation state according to the first state parameter and the second state parameter comprises:

[0013] determining a target operation mode of the environment regulation system according to the first state parameter and the second state parameter;

[0014] determining the target air outlet matching state according to the target operation mode.

[0015] In an embodiment, the step of determining the target air outlet matching state according to the target operation mode comprises:

[0016] In a case that the target operation mode is a preset mode, determining the target air outlet matching state according to a first storage state in the first state parameter;

[0017] wherein the first storage state is a storage state of historical air outlet matching states corresponding to at least two air outlets before the last shutdown of the environment regulation system.

[0018] In an embodiment, the step of determining the target air outlet matching state according to the first storage state in the first state parameter comprises:

[0019] In a case that the first storage state is that the historical air outlet matching states corresponding to at least two air outlets before the last shutdown of the environment regulation system have been stored, determining the historical air outlet matching states as the target air outlet matching state;

[0020] In a case that the first storage state is that the historical air outlet matching states are not stored, determining a preset air outlet matching state corresponding to the target operation mode as the target air outlet matching state.

[0021] In an embodiment, the indoor unit comprises a first air outlet and a second air outlet, the first air outlet is arranged on a side plate of the indoor unit, the second air outlet is arranged on a bottom plate of the indoor unit, the preset mode comprises a cooling mode or a blowing mode or a heating mode, and the step of determining the preset air outlet matching state corresponding to the target operation mode as the target air outlet matching state comprises:

[0022] In a case that the target operation mode is the cooling mode or the blowing mode, determining a first preset air outlet matching state as the target air outlet matching state;

[0023] In a case that the target operation mode is the heating mode, determining a second preset air outlet matching state as the target air outlet matching state;

[0024] wherein the first preset air outlet matching state comprises that the first air outlet is opened and the second air outlet is closed, or the first preset air outlet matching state comprises that the first air outlet and the second air outlet are both opened, and the second preset air outlet matching state comprises that the first air outlet is closed and the second air outlet is opened.

[0025] In an embodiment, the indoor unit comprises a first air outlet and a second air outlet, the first air outlet is arranged on a side panel of the indoor unit, and the second air outlet is arranged on a bottom panel of the indoor unit, and the step of determining the target air outlet matching state according to the target operation mode comprises:

[0026] In a case where the target operation mode is a dehumidification mode, a third preset air outlet matching state is determined as the target air outlet matching state.

[0027] The third preset air outlet matching state comprises that the first air outlet is opened and the second air outlet is closed.

[0028] In an embodiment, the step of determining the target operation mode of the environment regulation system according to the first state parameter and the second state parameter comprises:

[0029] In a case where the second state parameter comprises a user setting mode, the user setting mode is determined as the target operation mode.

[0030] In a case where the second state parameter does not comprise a user setting mode, the target operation mode is determined according to the first state parameter.

[0031] In an embodiment, the step of determining the target operation mode according to the first state parameter comprises:

[0032] In a case where the first state parameter comprises a historical operation mode of the environment regulation system stored before the last shutdown, the historical operation mode is determined as the target operation mode.

[0033] In a case where the first state parameter does not comprise a historical operation mode of the environment regulation system stored before the last shutdown, the target operation mode is determined according to a preset determination rule.

[0034] In addition, to achieve the above-mentioned purpose, the present application further provides an environment regulation system, which comprises a control device and an indoor unit, the indoor unit comprises at least two air outlets, the indoor unit is in communication connection with the control device, and the control device comprises a memory, a processor, and a computer program stored in the memory and executable on the processor, the computer program is configured to implement the steps of the control method of the environment regulation system as described above.

[0035] In addition, to achieve the above-mentioned purpose, the present application further provides a storage medium, which is a computer readable storage medium, the storage medium stores a computer program, and the computer program is executed by a processor to implement the steps of the control method of the environment regulation system as described above.

[0036] The one or more technical solutions provided in the application have at least the following technical effects: on the basis of the indoor unit being provided with at least two air outlets, the target air outlet cooperation state of the at least two air outlets of the indoor unit is controlled according to the storage state of the operation state parameter before the last shutdown of the system when the indoor unit is started, so that even if the user does not set the operation parameter of the indoor unit by himself / herself, the air outlet cooperation state of the indoor unit can accurately meet the user demand, thereby effectively improving the system use convenience, so that the air outlet of the indoor unit can timely and accurately meet the user demand. BRIEF DESCRIPTION OF DRAWINGS

[0037] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the application and serve to explain the principles of the application together with the specification.

[0038] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, for those skilled in the field, the other drawings can also be obtained based on these drawings without any creative work.

[0039] Figure 1 FIG. 1 is a structural schematic diagram of an embodiment of an indoor unit in an environmental regulation system of the application and a schematic diagram of different air outlet cooperation states;

[0040] Figure 2 FIG. 2 is a structural schematic diagram of the installation of the indoor unit in the environmental regulation system of the application in an indoor space;

[0041] Figure 3 FIG. 3 is a structural schematic diagram of a device of a hardware running environment related to the control method of the environmental regulation system in the embodiment of the application;

[0042] Figure 4 FIG. 4 is a flow schematic diagram provided by an embodiment one of the control method of the environmental regulation system of the application;

[0043] Figure 5 FIG. 5 is a flow schematic diagram provided by an embodiment two of the control method of the environmental regulation system of the application.

[0044] The purpose implementation, functional features and advantages of the application will be further explained with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0045] It should be understood that the specific embodiments described herein are only used to explain the technical solutions of the application, and are not used to limit the application.

[0046] In order to better understand the technical solutions of the application, the following will be described in detail with reference to the accompanying drawings and specific embodiments.

[0047] The main solution of the embodiment of the application is that a control method is proposed based on an environment adjusting system, the environment adjusting system comprises an indoor unit, the indoor unit comprises at least two air outlets, and the control method of the environment adjusting system comprises the following steps: in response to a start-up instruction, a first state parameter is acquired, the first state parameter represents a storage state of an operating state parameter before the last shutdown of the environment adjusting system; a target air outlet cooperation state of the at least two air outlets is determined according to the first state parameter; and the indoor unit is controlled to operate according to the target air outlet cooperation state.

[0048] In the embodiment, for the convenience of description, the following is described taking the environment adjusting system as the execution subject.

[0049] In the related art, different air outlets are arranged in the indoor unit to achieve different air outlet effects, and at present, different air outlets generally only cooperate with air outlet according to the user setting parameter, however, such a mode has the problems of inconvenient use and difficulty of the air conditioner in air outlet to timely meet the user demand.

[0050] The application provides the above-mentioned solution, on the basis that the indoor unit is provided with at least two air outlets, the target air outlet cooperation state of the at least two air outlets in the indoor unit is controlled to adapt to the storage state of the operating state parameter before the last shutdown of the system when starting up, so that even if the user does not set the operating parameter of the indoor unit by himself / herself, the air outlet cooperation state of the indoor unit can also accurately meet the user demand, thereby effectively improving the system use convenience, so that the air outlet of the indoor unit can timely and accurately meet the user demand.

[0051] The embodiment of the application proposes an environment adjusting system, which is arranged to adjust the air in the indoor environment. The environment adjusting system can comprise an air conditioner and the like.

[0052] In the embodiment, reference is made to Figure 1 and Figure 2 , the environment adjusting system comprises an indoor unit 200, and the indoor unit 200 comprises at least two air outlets. In the embodiment, the orientations of different air outlets are different, and the air resistance of different air outlets is different.

[0053] In the embodiment, the indoor unit 200 is a ducted type air conditioner. The installation height of the indoor unit 200 is higher than the height of a human body.

[0054] The indoor unit 200 is provided with an indoor air duct, the at least two air outlets are in communication with the indoor air duct, an indoor heat exchanger 21 and an indoor fan 22 are arranged in the indoor air duct, and the indoor fan 22 can drive indoor air to enter the indoor air duct, exchange heat with the indoor heat exchanger 21, and then be sent into the indoor environment from the at least one air outlet.

[0055] In the embodiment, the at least two air outlets include side air outlets 201 arranged on the side surface and lower air outlets 202 arranged on the bottom surface. The indoor unit 200 includes a housing including a bottom plate and a side plate connected to the bottom plate, the bottom plate is provided with the lower air outlets 202, and the side plate is provided with the side air outlets 201. The lower air outlets 202 and the side air outlets 201 are in communication with the indoor air duct.

[0056] The bottom plate is a plate body at the bottom of the housing when the indoor unit 200 is installed in the indoor space, and the side plate is a plate body adjacent to the bottom plate on the housing. When the indoor unit 200 is installed in the indoor space, the included angle between the side plate and the wall of the indoor space (for example, 0 degrees) is less than the included angle between the bottom plate and the wall of the indoor space (for example, 90 degrees).

[0057] The air outlet surface where the lower air outlet 202 is located intersects the air outlet surface where the side air outlet 201 is located. Without the air guiding effect of the air guiding assembly, the air outlet direction of the lower air outlet 202 is downward (vertically downward or an included angle with the vertical direction less than or equal to 45°), and the air outlet direction of the side air outlet 201 is horizontal (along the horizontal direction or an included angle with the horizontal direction less than or equal to 45°). In the embodiment, the air outlet surface where the lower air outlet 202 is located is perpendicular to the air outlet surface where the side air outlet 201 is located.

[0058] Without the air guiding effect of the air guiding assembly during the operation of the indoor fan 22, the air resistance of the air in the indoor air duct when the air is discharged from the lower air outlet 202 is greater than the air resistance of the air in the indoor air duct when the air is discharged from the side air outlet 201, that is, the air outlet amount of the lower air outlet 202 is less than the air outlet amount of the side air outlet 201 when the rotation speed of the indoor fan 22 is the same. In the embodiment, the area of the lower air outlet 202 is less than the area of the side air outlet 201, the included angle between the air outlet direction of the indoor fan 22 and the air outlet surface where the side air outlet 201 is located is greater than the included angle between the air outlet direction and the air outlet surface where the lower air outlet 202 is located, that is, the air outlet direction of the indoor fan 22 is toward the side air outlet 201 and not toward the lower air outlet 202.

[0059] When the indoor unit 200 discharges air through the lower air outlet 202, the discharged air can not only adjust the air temperature of the indoor space but also adjust the temperature of the envelope structure of the indoor space.

[0060] In other embodiments, the at least two air outlets can also be arranged on the side surface of the indoor unit 200, or the air outlet directions corresponding to the at least two air outlets can be the same.

[0061] In the embodiment, the indoor unit 200 further includes an air outlet assembly 23 arranged to adjust the air outlet state of the at least two air outlets, and the air outlet assembly 23 can adjust the opening and / or closing of each air outlet and / or adjust the air outlet amount.

[0062] The air outlet assembly 23 can be an integral structure or composed of more than one switch door. When the air outlet assembly 23 comprises more than one switch door, the air outlets can correspond to the switch doors one by one, and each switch door can adjust the air outlet state of the corresponding air outlet; or some switch doors can simultaneously adjust the air outlet states of different air outlets.

[0063] In the embodiment, the air outlet assembly 23 is arranged in the indoor air duct, and the position change of the air outlet assembly 23 can realize that the lower air outlet 202 and the side air outlet 201 can be matched in different air outlet states:

[0064] Referring to Figure 1 (a), the dashed line is the air flow direction, when the air outlet assembly 23 is in the first position state, the lower air outlet 202 is opened and the side air outlet 201 is closed;

[0065] Referring to Figure 1 (b), the dashed line is the air flow direction, when the air outlet assembly 23 is in the second position state, the lower air outlet 202 is closed and the side air outlet 201 is opened;

[0066] Referring to Figure 1 (c) and Figure 1 (d), the dashed line is the air flow direction, when the air outlet assembly 23 is in the third position state, the lower air outlet 202 and the side air outlet 201 are both opened.

[0067] In the embodiment, the air outlet assembly 23 comprises a first switch door 231 and a second switch door 232, the side air outlet 201 comprises a first air outlet area and a second air outlet area, the first switch door 231 is arranged to adjust the air outlet amount of the first air outlet area, and the second switch door 232 is arranged to adjust the air outlet amount of the second air outlet area and the lower air outlet 202.

[0068] In the embodiment, the first air outlet area is an upper air outlet area away from the lower air outlet 202, the second air outlet area is a lower air outlet area close to the lower air outlet 202, the first switch door 231 is rotatably arranged on the upper side of the side air outlet 201 and can adjust the air outlet amount of the upper air outlet area, and the second switch door 232 is rotatably arranged at the abutting position between the lower air outlet 202 and the side air outlet 201, and the second switch door 232 can simultaneously adjust the air outlet amount of the lower air outlet area and the lower air outlet 202 when rotating.

[0069] Referring to Figure 1(a), the first position state includes that the first switch door 231 is in the first position and the second switch door 232 is in the second position, the first switch door 231 and the second switch door 232 are both in the wind blocking position, the first switch door 231 blocks the first air outlet area, the second switch door 232 blocks the second air outlet area, that is, the included angle between the panel of the two switch doors and the air outlet direction of the indoor fan 22 is greater than the preset angle, the first switch door 231 and the second switch door 232 cooperate to block the side air outlet 201 and open the lower air outlet 202, the air outlet of the indoor fan 22 is blown into the indoor from the lower air outlet 202 under the cooperative guiding action of the first switch door 231 and the second switch door 232 and stops being blown into the indoor from the side air outlet 201.

[0070] With reference to Figure 1 (b), the second position state includes that the first switch door 231 is in the third position and the second switch door 232 is in the fourth position, in the third position, the included angle between the panel of the first switch door 231 and the air outlet direction of the indoor fan 22 is less than or equal to the preset angle (for example, the panel of the first switch door 231 is parallel to the air outlet direction of the indoor fan 22), the first switch door 231 opens the first air outlet area; in the fourth position, the included angle between the panel of the second switch door 232 and the air outlet direction of the indoor fan 22 is less than or equal to the preset angle, in the fourth position, the second switch door 232 blocks the lower air outlet 202 and opens the second air outlet area; the first switch door 231 and the second switch door 232 cooperate to open the side air outlet 201, the air outlet of the indoor fan 22 is blown into the indoor from the side air outlet 201 under the cooperative guiding action of the first switch door 231 and the second switch door 232 and stops being blown into the indoor from the lower air outlet 202. In other implementations, the third position can also be a position for blocking the first air outlet area.

[0071] With reference to Figure 1 (d), the third position state includes that the first switch door 231 is in the third position and the second switch door 232 is in the fifth position, the fifth position is between the second position and the fourth position, in the fifth position, the second switch door 232 simultaneously opens the second air outlet area and the lower air outlet 202, at this time, the side air outlet 201 is fully opened. Alternatively, with reference to Figure 1 (c) the third position state can include that the first switch door 231 is in the third position and the second switch door 232 is in the second position, at this time, the side air outlet 201 is partially opened and partially blocked. The first switch door 231 and the second switch door 232 cooperate to open the lower air outlet 202 and the side air outlet 201, the air outlet of the indoor fan 22 is blown into the indoor from the lower air outlet 202 and the side air outlet 201 under the cooperative guiding action of the first switch door 231 and the second switch door 232.

[0072] In other embodiments, the air outlet assembly 23 can also include a third air deflector rotatably installed between the lower air outlet 202 and the side air outlet 201, and the third air deflector can be switched between a first operating position, a second operating position and a third operating position, the first operating position being a position in which the lower air outlet 202 is closed and the side air outlet 201 is opened, the second operating position being a position in which the side air outlet 201 is closed and the lower air outlet 202 is opened, and the third operating position being a position in which the lower air outlet 202 and the side air outlet 201 are both opened.

[0073] In an embodiment, referring to Figure 2 , the indoor unit 200 can further include a first panel arranged outside the housing, and the first panel can be provided with a first air deflector assembly 24 corresponding to the lower air outlet 202. The first air deflector assembly 24 can include an air deflector grille or an air deflector plate, etc. The first panel can be provided with a first avoiding hole corresponding to the lower air outlet 202, and the first avoiding hole can be provided with the first air deflector assembly 24, and the first air deflector assembly 24 can be located outside the indoor air duct.

[0074] The first air deflector assembly 24 can adjust the air outlet state of the lower air outlet 202.

[0075] In some implementations, the first air deflector assembly 24 can be an electrically controlled assembly, and the first air deflector assembly 24 can open or close the lower air outlet 202 and adjust the air outlet direction of the lower air outlet 202 in response to a control instruction.

[0076] In other implementations, the first air deflector assembly 24 can also be a fixed air deflector assembly, and the air deflector state of the first air deflector assembly 24 can be fixed and not changeable under external control.

[0077] In an embodiment, referring to Figure 2 , the indoor unit 200 can further include a second panel arranged outside the housing, and the second panel can be provided with a second air deflector assembly 27 corresponding to the side air outlet 201. The second air deflector assembly 27 can include an air deflector grille or an air deflector plate, etc. The second panel can be provided with a second avoiding hole corresponding to the side air outlet 201, and the second avoiding hole can be provided with the second air deflector assembly 27, and the second air deflector assembly 27 can be located outside the indoor air duct.

[0078] The second air deflector assembly 24 can adjust the air outlet state of the side air outlet 201.

[0079] In some implementations, the second air deflector assembly 27 can be an electrically controlled assembly, and the second air deflector assembly 27 can open or close the side air outlet 201 and adjust the air outlet direction of the side air outlet 201 in response to a control instruction.

[0080] In other implementations, the second air deflector assembly 27 can also be a fixed air deflector assembly, and the air deflector state of the second air deflector assembly 27 can be fixed and not changeable under external control.

[0081] In an embodiment, referring to Figure 2 , the housing of the indoor unit 200 can further be provided with a return air inlet 203, and indoor air can enter the indoor air duct in the indoor unit 200 from the return air inlet 203 under the driving of the indoor fan 22. The indoor unit 200 can further include a third panel provided outside the housing, and the third panel can be provided with a third avoiding hole corresponding to the return air inlet 203, and indoor air can enter the return air inlet 203 through the third avoiding hole.

[0082] In an embodiment, the environment conditioning system can include more than one indoor unit 200, and different indoor units 200 are respectively arranged in different indoor spaces. For example, the environment conditioning system can be a multi-split air conditioner.

[0083] In an embodiment, the environment conditioning system includes a refrigerant circulation loop, which includes the above-mentioned indoor unit 200, a throttling device, an outdoor heat exchanger, a reversing assembly, and a compressor connected with the indoor unit 200.

[0084] The discharge port of the compressor, the return air port of the compressor, the outdoor heat exchanger, and the indoor heat exchanger 21 are all connected with the reversing assembly, and the reversing assembly has a first operating state and a second operating state. When the reversing assembly operates in the first operating state, the discharge port is in communication with the outdoor heat exchanger and the return air port is in communication with the indoor heat exchanger 21. When the reversing assembly operates in the second operating state, the discharge port is in communication with the indoor heat exchanger 21 and the return air port is in communication with the outdoor heat exchanger.

[0085] Referring to Figure 3 , the environment conditioning system further includes a control device 100, and the above-mentioned indoor unit 200 is in communication connection with the control device 100.

[0086] The control device 100 includes at least one processor 1001, and a memory 1002 and a timer 1003 in communication connection with the at least one processor 1001. The memory 1002 stores instructions executable by the at least one processor 1001, and the instructions are executed by the at least one processor 1001 to enable the at least one processor 1001 to perform the control method of the environment conditioning system in the following embodiments.

[0087] The following refers to Figure 3 , which shows a structural schematic diagram of the control device 100 suitable for being used to implement the embodiments of the present application. The control device 100 in the embodiments of the present application can include but is not limited to mobile terminals such as mobile phones, notebook computers, PADs (Portable Application Description: tablet computers), vehicle-mounted terminals (for example, vehicle-mounted navigation terminals), and the like, and fixed terminals such as digital TVs, desktop computers, and the like. Figure 3The control device 100 shown is merely an example and should not limit the functions and use range of the embodiments of the present application.

[0088] As shown in Figure 3 The control device 100 can include a processor 1001 (for example, a central processor, a graphics processor, etc.) that can perform various appropriate actions and processes according to programs stored in a memory 1002, which can be programs in a read-only memory (ROM) or programs loaded from a storage device into a random access memory (RAM). In the RAM, various programs and data required for the operation of the control device 100 are also stored. The processor 1001, the memory 1002 (ROM and RAM), and an input / output (I / O) interface are connected to each other through a bus. Generally, the following systems can be connected to the I / O interface: input devices including, for example, a touch screen, a touch pad, a keyboard, a mouse, an image sensor, a microphone, an accelerometer, a gyroscope, etc.; output devices including, for example, a liquid crystal display (LCD), a speaker, a vibrator, etc.; storage devices including, for example, a magnetic tape, a hard disk, etc.; and communication devices. The communication devices can allow the control device 100 to communicate with other devices wirelessly or by wire to exchange data. Although the control device 100 with various systems is shown in the figure, it should be understood that it is not required to implement or have all the systems shown. More or fewer systems can be implemented or provided instead.

[0089] In particular, according to the embodiments disclosed in the present application, the method flow described in the following embodiments can be implemented as a computer software program. For example, the embodiments disclosed in the present application include a computer program product comprising a computer program carried on a computer readable medium, which contains program codes for executing the methods shown in the flowcharts. In such embodiments, the computer program can be downloaded and installed from a network through the communication device, or installed from the memory 1002. When the computer program is executed by the processor 1001, the above-mentioned functions defined in the control method of the environmental regulation system of the embodiments disclosed in the present application are performed.

[0090] The environmental regulation system provided in the present application adopts the control method of the environmental regulation system in the following embodiments, which can solve the technical problem of how to improve the convenience of the system to make the indoor unit air outlet timely and accurately meet the user's needs. Compared with the prior art, the environmental regulation system provided in the present application has the same beneficial effects as the control method of the environmental regulation system provided in the following embodiments, and other technical features in the environmental regulation system are the same as the features disclosed in the following embodiments, which are not described here.

[0091] It should be noted that the execution subject of the embodiment can be a computing service device with data processing, network communication and program running functions, such as a tablet computer, a personal computer, a mobile phone, etc., or an electronic device, an environmental regulation system, etc. capable of realizing the above functions. The following takes the environmental regulation system as an example to describe the embodiment and the following embodiments.

[0092] Based on this, the embodiment of the present application provides a control method of an environmental regulation system, referring to Figure 4 , Figure 4 is a flowchart of a first embodiment of the control method of the environmental regulation system of the present application.

[0093] In the embodiment, the environmental regulation system includes an indoor unit, and the indoor unit includes at least two air outlets. In the embodiment, the at least two air outlets include the side air outlet and the lower air outlet. In other implementations, the at least two air outlets can also be arranged on the side plate of the indoor unit, etc. The control method of the environmental regulation system includes steps S10-S30:

[0094] Step S10, in response to a start-up instruction, obtaining a first state parameter, the first state parameter indicating a storage state of an operating state parameter before the last shutdown of the environmental regulation system;

[0095] The start-up instruction can include starting the indoor unit or starting the environmental regulation system (such as an air conditioner, etc.).

[0096] The last shutdown can include the last shutdown of the environmental regulation system or the last shutdown of the indoor unit corresponding to the current start-up instruction. The shutdown can include temperature reaching stop, shutdown in response to a user instruction, protection stop, etc.

[0097] The operating state parameter before the last shutdown can include at least one of the following: a historical operating mode (at least one of a cooling mode, a dehumidification mode, a heating mode, a supply air mode, a sterilization mode, a self-cleaning mode, etc.), a historical air outlet cooperation state of the at least two air outlets, a historical rotating speed of the indoor fan, etc.

[0098] The storage state can include at least one of the following: whether the historical running state parameters (at least one of historical running mode, historical air outlet matching state, historical fan rotating speed, historical set temperature, etc.) before the last shutdown are stored, storage duration of the last running state parameters (interval duration between storage time and current time), stored historical running state parameters (at least one of historical running mode, historical air outlet matching state, historical fan rotating speed, historical set temperature, etc.) before the last shutdown, parameter type of the stored running state parameters, etc. Wherein, the environment regulation system is considered not to store the running state parameters before the last shutdown in the case of first start or default of the preset storage position parameters corresponding to the running state parameters.

[0099] In the embodiment, the environment regulation system can be provided with a memory function, and the memory function can be started or stopped in response to a user instruction. Wherein, the environment regulation system stores the last running state parameters before shutdown when the memory function is started, and acquires the first state parameters in response to the start instruction when the memory function is started; the environment regulation system does not store the last running state parameters before shutdown when the memory function is stopped, and the stored historical running state parameters are cleared when the environment regulation system is shutdown when the memory function is stopped.

[0100] Step S20, determining the target air outlet matching state of the at least two air outlets according to the first state parameters;

[0101] The target air outlet matching state includes at least one of the following: opening and closing matching state of the at least two air outlets, air outlet angle matching state corresponding to the at least two air outlets, air outlet area matching state of the at least two air outlets, and distribution position of the opened air outlets, etc.

[0102] In the embodiment, the at least two air outlets include the side air outlet and the lower air outlet, and the target air outlet matching state can include one of the following states:

[0103] The first matching state: the side air outlet is opened, and the lower air outlet is closed;

[0104] The second matching state: the side air outlet is opened, and the lower air outlet is opened;

[0105] The third matching state: the side air outlet is closed, and the lower air outlet is opened.

[0106] Different first state parameters correspond to different target air outlet matching states.

[0107] In an implementation, when the first state parameter comprises a historical running state parameter (a historical running mode and / or a historical air-outfitting state, etc.) stored before the last shutdown, the target air-outfitting state is determined according to the historical running state parameter; when the first state parameter does not comprise the historical running state parameter stored before the last shutdown, the target air-outfitting state is determined according to the preset air-outfitting state.

[0108] In another implementation, when the first state parameter comprises a historical running mode in the historical running state parameter before the last shutdown and the current running mode of the indoor unit is consistent, the target air-outfitting state is determined according to the historical running state parameter; when the first state parameter comprises the historical running mode in the historical running state parameter before the last shutdown and the current running mode of the indoor unit is inconsistent, the target air-outfitting state is determined according to the preset air-outfitting state corresponding to the current running mode.

[0109] In yet another implementation, when the first state parameter comprises a storage duration of the historical running state parameter before the last shutdown and the storage duration is less than or equal to a set duration, the target air-outfitting state is determined according to the historical running state parameter; when the first state parameter comprises the storage duration of the historical running state parameter before the last shutdown and the storage duration is greater than the set duration, the target air-outfitting state is determined according to the preset air-outfitting state.

[0110] In still another implementation, the target running mode is determined according to the first state parameter, and the target air-outfitting state is determined according to the target running mode. Wherein, the target running mode is determined according to a second storage state in the first state parameter, and the target air-outfitting state is determined according to the target running mode and a first storage state in the first state parameter, the first storage state is a storage state of historical air-outfitting states of at least two air outlets before the last shutdown of the environment regulation system, and the second storage state is a storage state of a historical running mode before the last shutdown of the environment regulation system.

[0111] In step S30, the indoor unit is controlled to operate according to the target air-outfitting state.

[0112] When the target air-outfitting state comprises a target opening-closing air-outfitting state of at least two air outlets, the air-outfitting components in the indoor unit are controlled to operate to make the opening-closing air-outfitting state of the at least two air outlets reach the target opening-closing air-outfitting state.

[0113] When the target air-outfitting state comprises a target air-out angle air-outfitting state of at least two air outlets, the air-outfitting components in the indoor unit and the air guide components on the panel are controlled to operate to make the air-out angle air-outfitting state of the at least two air outlets reach the target air-out angle air-outfitting state.

[0114] When the target air outlet matching state includes a target air outlet area matching state of at least two air outlets, the air outlet assembly in the indoor unit is controlled to operate so that the air outlet area matching state of the at least two air outlets reaches the target air outlet area matching state.

[0115] The embodiment provides an environmental regulation system method. On the basis that the indoor unit is provided with at least two air outlets, the target air outlet matching state of the at least two air outlets in the indoor unit is controlled according to the stored state of the operation state parameter before the last shutdown of the system when the indoor unit is started. The air outlet matching state of the indoor unit can accurately meet the user demand, so that the system use convenience is effectively improved, and the air outlet of the indoor unit can timely and accurately meet the user demand.

[0116] Based on any of the above embodiments, in the second embodiment of the present application, the same or similar contents as the above embodiments can be referred to the above description, and will not be described in detail. On this basis, please refer to Figure 5 , step S20 includes:

[0117] Step S21, determining the target air outlet matching state according to the first state parameter and the second state parameter, wherein the second state parameter represents a current user setting state of the operation parameter of the environmental regulation system.

[0118] The second state parameter can include at least one of the following: whether there is a user-set operation parameter (at least one of the operation mode, the air outlet matching state of each air outlet, the air outlet speed, the air outlet angle, etc.) of the environmental regulation system, the user-set operation parameter (at least one of the air outlet matching state of the at least two air outlets, the indoor fan speed, the air outlet angle, the operation mode, etc.), the interval time length between the setting time of the user-set parameter and the current time, etc.

[0119] The different first state parameters and the different second state parameters correspond to different target air outlet matching states.

[0120] In one implementation, when the second state parameter includes the user-set operation parameter of the environmental regulation system, the target air outlet matching state is determined according to the user-set operation parameter (such as the user-set mode and / or the user-set air outlet matching state, etc.) of the environmental regulation system; when the second state parameter does not include the user-set operation parameter of the environmental regulation system, the target air outlet matching state is determined according to the first state parameter.

[0121] In another implementation, when the first state parameter comprises a historical running parameter stored before the last shutdown and the second state parameter comprises a running parameter of the environment adjusting system with user setting, the target air-out matching state is determined according to the air-out matching state corresponding to the historical running parameter and the air-out matching state corresponding to the running parameter with user setting; when the first state parameter comprises a historical running parameter stored before the last shutdown and the second state parameter comprises a running parameter of the environment adjusting system without user setting, the target air-out matching state is determined according to the air-out matching state corresponding to the historical running parameter; when the first state parameter comprises a historical running parameter not stored before the last shutdown and the second state parameter comprises a running parameter of the environment adjusting system without user setting, the preset air-out matching state is determined as the target air-out matching state; when the first state parameter comprises a historical running parameter not stored before the last shutdown and the second state parameter comprises a running parameter of the environment adjusting system with user setting, the target air-out matching state is determined according to the running parameter of the indoor unit with user setting.

[0122] In the embodiment, the target air-out matching state is determined according to the first state parameter and the second state parameter, which can ensure that the air-out state of the indoor unit can meet the user demand timely and accurately whether the user sets the running parameter of the indoor unit or not.

[0123] In an implementation, the step of determining the target air-out matching state according to the first state parameter and the second state parameter comprises: determining a target running mode of the environment adjusting system according to the first state parameter and the second state parameter; and determining the target air-out matching state according to the target running mode.

[0124] The target running mode can comprise one of the following modes: a refrigeration mode, a heating mode, a blowing mode, a dehumidification mode, etc.

[0125] In the embodiment, the second state parameter can comprise whether there is a user setting mode, and when the second state parameter comprises a user setting mode, the user setting mode is determined as the target running mode; when the second state parameter comprises no user setting mode, the target running mode is determined according to the first state parameter.

[0126] In the embodiment, the first state parameter can include a second storage state, the second storage state being a storage state of a historical operation mode before the last shutdown of the environment conditioning system (whether the historical operation mode is stored or a storage duration, etc.). The second storage state can include whether the historical operation mode before the last shutdown of the environment conditioning system is stored. In a case where the second state parameter does not include a user setting mode, the target operation mode can be determined according to the second storage state in the first state parameter. In a case where the first state parameter includes the historical operation mode before the last shutdown of the environment conditioning system, the historical operation mode is determined as the target operation mode. In a case where the first state parameter does not include the historical operation mode before the last shutdown of the environment conditioning system, the target operation mode is determined according to a preset determination rule.

[0127] The preset determination rule is a rule for automatically selecting the target operation mode. The preset determination rule can include a corresponding relationship between a detection parameter related to mode selection and the target operation mode. The detection parameter can include at least one of the following: an environment state parameter of an environment where the environment conditioning system is located (an indoor environment state parameter and / or an outdoor environment state parameter, etc.), a mode of an operation of other indoor units that are turned on except for the indoor unit corresponding to the start-up instruction in the environment conditioning system, an equipment operation state in an indoor space where the indoor unit is located, etc. The target operation mode can be determined based on the current detection parameter based on the preset determination rule. For example, in a case where an indoor temperature is greater than an outdoor temperature and a temperature deviation between the indoor temperature and the outdoor temperature is greater than a preset deviation, a cooling mode is the target operation mode; in a case where the indoor temperature is less than the outdoor temperature and the temperature deviation between the outdoor temperature and the indoor temperature is greater than the preset deviation, a heating mode is the target operation mode; in a case where the temperature deviation between the indoor temperature and the outdoor temperature is less than or equal to the preset deviation, a ventilation mode is the target operation mode; in a case where an indoor humidity is greater than a preset humidity, a dehumidification mode is the target operation mode, etc.

[0128] In the process of determining the target air outlet matching state based on the target operation mode, the preset air outlet matching state of at least two air outlets corresponding to the target operation mode can be determined as the target air outlet matching state, or the target air outlet matching state is determined according to the target operation mode and a storage state of a historical air outlet matching state in the first state parameter.

[0129] In the embodiment, in the process of controlling the indoor unit to operate according to the target air outlet matching state, the environment conditioning system is further controlled to operate according to the target operation mode.

[0130] In the embodiment, by the above manner, the air outlet state of the indoor unit can timely and accurately meet the user demand regardless of whether the user sets the operation mode. In the case that the user sets the mode, the user set mode is preferentially taken as the target operation mode, which is beneficial to further improve the matching degree of the air outlet state of the indoor unit and the user demand. In the case that the user does not set the mode, the target operation mode is further determined based on the first state parameter, so that the target operation mode meeting the user demand can be selected based on the first state parameter when the user does not set the operation mode, to ensure that the air outlet of the indoor unit can accurately and timely meet the user demand. In the case that the historical operation mode is stored, the historical operation mode is taken as the target operation mode, and in the case that the historical operation mode is not stored, the target operation mode is automatically selected based on the preset determination rule, which is beneficial to effectively improve the matching degree of the air outlet state of the indoor unit and the user demand.

[0131] In other embodiments, in the case that the second state parameter does not exist the user set mode, the target operation mode can also be determined according to the first state parameter and the preset determination rule. For example, in the case that the first state parameter includes the historical operation mode stored before the last shutdown of the environment regulation system, the target operation mode is determined according to the historical operation mode and the reference operation mode corresponding to the preset determination rule. In the case that the historical operation mode is consistent with the reference operation mode, the historical operation mode is determined as the target operation mode. In the case that the historical operation mode is not consistent with the reference operation mode, the reference operation mode is determined as the target operation mode. In the case that the first state parameter does not include the stored historical operation mode, the preset operation mode is determined as the target operation mode, or a prompt information is output to prompt the user to set the operation mode, or the target operation mode is determined according to the preset determination rule.

[0132] In other embodiments, the step of determining the target air outlet cooperation state according to the first state parameter and the second state parameter can include: in the case that the second state parameter includes the user set air outlet cooperation state of at least two air outlets, the user set air outlet cooperation state is determined as the target air outlet cooperation state; in the case that the second state parameter does not include the user set air outlet cooperation state, the target air outlet cooperation state can be determined according to the first state parameter, for example, the historical air outlet cooperation state is determined as the target air outlet cooperation state or the preset air outlet cooperation state corresponding to the historical operation mode is determined as the target air outlet cooperation state.

[0133] In other embodiments, in the case that the second state parameter comprises the air outlet matching state of the at least two air outlets without user settings and the first state parameter comprises the historical air outlet matching state, the historical air outlet matching state can be determined as the target air outlet matching state; in the case that the second state parameter comprises the air outlet matching state of the at least two air outlets without user settings and the first state parameter does not comprise the historical air outlet matching state, the preset air outlet matching state corresponding to the target operation mode can be determined as the target air outlet matching state.

[0134] In an available implementation, the step of determining the target air outlet matching state according to the target operation mode comprises:

[0135] In the case that the target operation mode is a preset mode, the target air outlet matching state is determined according to a first storage state in the first state parameter; wherein the first storage state is a storage state of the historical air outlet matching state of the at least two air outlets before the last shutdown of the environment conditioning system.

[0136] In this embodiment, the preset mode comprises one of the following: a refrigeration mode, a heating mode, and a ventilation mode.

[0137] The first state parameter can comprise a second storage state of the historical operation mode (for example, whether the historical operation mode has been stored as mentioned in the above embodiments) and the first storage state, and the first storage state can comprise whether the historical air outlet matching state of the at least two air outlets before the last shutdown of the environment conditioning system has been stored.

[0138] In this embodiment, in the case that the first storage state is that the historical air outlet matching state has been stored, the historical air outlet matching state is determined as the target air outlet matching state; in the case that the first storage state is that the historical air outlet matching state has not been stored, the preset air outlet matching state corresponding to the target operation mode is determined as the target air outlet matching state. Here, different target operation modes correspond to different preset air outlet matching states. When the preset mode is a heat exchange mode (such as a refrigeration mode or a heating mode), the temperature regulation efficiency corresponding to the preset air outlet matching state is higher than the temperature regulation efficiency corresponding to other air outlet matching states of the at least two air outlets, wherein in the refrigeration mode, the air outlet of the side air outlet is beneficial to increase the cold quantity in the upper part of the space to improve the overall refrigeration comfort in the room, and in the heating mode, the air outlet of the lower air outlet is beneficial to heat sinking to improve the overall heating comfort in the room; when the preset mode is a ventilation mode, the wind feeling intensity corresponding to the preset air outlet matching state is higher than the wind feeling intensity corresponding to other air outlet matching states of the at least two air outlets.

[0139] In an implementation mode, the first storage state can include whether the historical air-out matching state corresponding to the current target operation mode has been stored, wherein the historical air-out matching states corresponding to different target operation modes can be the same or different, and in the case that the first storage state is that the historical air-out matching state corresponding to the current target operation mode has been stored, the historical air-out matching state corresponding to the current target operation mode is determined as the target air-out matching state; in the case that the first storage state is that the historical air-out matching state corresponding to the current target operation mode has not been stored (including the case that no historical air-out matching state has been stored or the case that the stored historical air-out matching state corresponds to a historical operation mode inconsistent with the current target operation mode), the preset air-out matching state corresponding to the target operation mode can be determined as the target air-out matching state. Based on this, the indoor user comfort can be further improved.

[0140] In the embodiment, the indoor unit includes a first air outlet and a second air outlet, the first air outlet is arranged on a side plate of the indoor unit, and the second air outlet is arranged on a bottom plate of the indoor unit. The first air outlet is the side air outlet, and the second air outlet is the lower air outlet. Based on this, in the case that the target operation mode is the cooling mode or the air supply mode, the first preset air-out matching state is determined as the target air-out matching state; in the case that the target operation mode is the heating mode, the second preset air-out matching state is determined as the target air-out matching state; wherein the first preset air-out matching state includes that the first air outlet is opened and the second air outlet is closed (for example, as shown in (b)), or the first preset air-out matching state includes that the first air outlet and the second air outlet are both opened (for example, as shown in (c) or (d)), and the second preset air-out matching state includes that the first air outlet is closed and the second air outlet is opened (for example, as shown in (a)). Based on this, the indoor temperature regulation efficiency or the wind feeling comfort in different preset modes can be effectively improved, so that the matching degree of the air-out state of the indoor unit and the user comfort demand is further improved. Figure 1 Figure 1 Figure 1 Figure 1

[0141] In the embodiment, in the case that the target operation mode is the preset mode, the target air-out matching state is determined according to whether the historical air-out matching state has been stored, wherein in the case that the historical air-out matching state has been stored, the historical air-out matching state is taken as the target air-out matching state, and in the case that the historical air-out matching state has not been stored, the preset air-out matching state associated with the target operation mode is taken as the target air-out matching state, which is beneficial to further improve the matching degree of the air-out state of the indoor unit and the user comfort demand in the preset mode.

[0142] ​​​​In other embodiments, in a case where the first state parameter comprises a stored historical air-out matching state, the target air-out matching state can be determined according to the historical air-out matching state and a preset air-out matching state corresponding to the target operation mode.

[0143] In other embodiments, in a case where the first state parameter comprises a stored historical air-out matching state, the target air-out matching state can be determined according to the historical air-out matching state and a preset air-out matching state corresponding to the target operation mode.

[0144] In other embodiments, in a case where the target operation mode is the cooling mode, the fourth preset air-out matching state is determined as the target air-out matching state; in a case where the target operation mode is the heating mode, the fifth preset air-out matching state is determined as the target air-out matching state; wherein the fourth preset air-out matching state comprises that the first air outlet is opened and the second air outlet is closed, and the fifth preset air-out matching state comprises that the first air outlet and the second air outlet are both opened.

[0145] In a possible implementation, the indoor unit comprises a first air outlet and a second air outlet, the first air outlet is arranged on a side plate of the indoor unit, and the second air outlet is arranged on a bottom plate of the indoor unit. The first air outlet is the side air outlet, and the second air outlet is the bottom air outlet. The step of determining the target air-out matching state according to the target operation mode comprises: in a case where the target operation mode is the dehumidification mode, determining a third preset air-out matching state as the target air-out matching state; wherein the third preset air-out matching state comprises that the first air outlet is opened and the second air outlet is closed (for example, as shown in (b)). Figure 1

[0146] The preset mode and the dehumidification mode are different modes. In the dehumidification mode, the temperature and the humidity of the indoor air are both reduced after the indoor air exchanges heat with the indoor heat exchanger.

[0147] In the present embodiment, in the dehumidification mode, the third preset air-out matching state is used for air supply regardless of whether the historical air-out matching state is stored or not, which is beneficial to avoid that the dehumidification cold air blows to the user, and further improves the user comfort in the dehumidification mode.

[0148] In other embodiments, the third preset air-out matching state can also comprise that the upper region of the first air outlet is opened, the lower region of the first air outlet is closed, and the second air outlet is closed.

[0149] In other embodiments, in a case where the target operation mode is the dehumidification mode, the historical air-out matching state is determined as the target air-out matching state when the historical air-out matching state is stored, and the third preset air-out matching state is determined as the target air-out matching state when the historical air-out matching state is not stored.​

[0150] It should be noted that the above examples are only used for understanding the present application and do not constitute a limitation on the control method of the environment adjusting system of the present application, and more forms of simple transformation based on the technical concept are within the protection scope of the present application.

[0151] The present application provides a computer readable storage medium having computer readable program instructions (i.e. computer programs) stored thereon, the computer readable program instructions being used to execute the control method of the environment adjusting system in the above embodiment.

[0152] The computer readable storage medium provided by the present application may, for example, be a U disk, but is not limited to an electric, magnetic, optical, electromagnetic, infrared, or semiconductor system, system or device, or any combination of the above. More specific examples of the computer readable storage medium can include, but are not limited to, an electric connection with one or more conductive wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In the present embodiment, the computer readable storage medium can be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, system or device. The program code contained on the computer readable storage medium can be transmitted by any suitable medium, including but not limited to an electric wire, an optical cable, an RF (Radio Frequency), etc., or any suitable combination of the above.

[0153] The above computer readable storage medium can be contained in the environment adjusting system; or can exist separately without being assembled into the environment adjusting system.

[0154] The above computer readable storage medium carries one or more programs, when the one or more programs are executed by the environment adjusting system, the environment adjusting system is caused to execute the following flow: in response to a start-up instruction, acquiring a first state parameter, the first state parameter indicating a storage state of a running state parameter before the last time the environment adjusting system is shut down; determining a target air outlet cooperation state of the at least two air outlets according to the first state parameter; and controlling the indoor unit to operate according to the target air outlet cooperation state.

[0155] Computer program code for carrying out operations of the present application can be written in any combination of one or more programming languages, including an object oriented programming language such as Java, Smalltalk, C++ or the like and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code can execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer and partly on a remote computer or entirely on the remote computer or server. In the latter scenario, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or the connection can be made to an external computer (for example, through the Internet using an Internet Service Provider).

[0156] The readable storage medium provided by the present application is a computer readable storage medium, which stores computer readable program instructions (i.e. computer programs) for executing the control method of the environment adjusting system, and can solve the technical problem of how to improve the convenience of the system to make the indoor unit air outlet timely and accurately meet the user's demand. Compared with the prior art, the computer readable storage medium provided by the present application has the same beneficial effects as the control method of the environment adjusting system provided by the above-mentioned embodiments, which will not be repeated here.

[0157] The flowcharts and block diagrams in the drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods and computer program products according to various embodiments of the present application. In this regard, each block in the flowcharts and block diagrams can represent a module, segment, or portion of code, which comprises one or more executable instructions for implementing the specified logical functions. It should also be noted that in some alternative implementations, the functions noted in the blocks can occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently or the blocks can sometimes be executed in the reverse order, depending upon the functionality involved. It will also be noted that each block of the block diagrams and / or flowchart illustrations, and combinations thereof, can be implemented by a dedicated hardware-based system that performs the specified functions or operations, or combinations of hardware and software.

[0158] It should be understood that each part of the present application can be realized by hardware, software, firmware or a combination thereof. The modules described in the embodiments of the present application can be realized by software or hardware. In some cases, the name of the module does not constitute a limitation on the unit itself. In the description of the above embodiments, specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.

[0159] The above only describes some embodiments of the present application, and does not limit the patent scope of the present application. Any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A control method of an environmental conditioning system, characterized by, The environment adjusting system comprises an indoor unit, the indoor unit comprises a first air outlet and a second air outlet, the first air outlet is arranged on a side plate of the indoor unit, the second air outlet is arranged on a bottom plate of the indoor unit, an air outlet surface where the second air outlet is arranged is arranged perpendicularly to an air outlet surface where the first air outlet is arranged, and a control method of the environment adjusting system comprises: In response to a start-up instruction, a first state parameter is acquired, the first state parameter comprises a first storage state and a second storage state, the first storage state comprises whether a historical air outlet cooperation state corresponding to the first air outlet and the second air outlet before the environment adjusting system was last turned off has been stored, and the second storage state comprises whether a historical operation mode before the environment adjusting system was last turned off has been stored; A target operation mode of the environment adjusting system is determined according to the second storage state and a second state parameter; wherein the second state parameter comprises whether a user setting mode exists; A target air outlet cooperation state is determined according to the target operation mode and the first storage state; The indoor unit is controlled to operate according to the target air outlet cooperation state.

2. The control method of an environmental conditioning system according to claim 1, wherein, The step of determining the target air outlet cooperation state according to the target operation mode and the first storage state comprises: In a case where the target operation mode is a preset mode, the target air outlet cooperation state is determined according to the first storage state in the first state parameter.

3. The control method of the environment adjusting system according to claim 2, wherein, The step of determining the target air outlet cooperation state according to the first storage state in the first state parameter comprises: In a case where the first storage state is a stored historical air outlet cooperation state, the historical air outlet cooperation state is determined to be the target air outlet cooperation state; In a case where the first storage state is an un-stored historical air outlet cooperation state, a preset air outlet cooperation state corresponding to the target operation mode is determined to be the target air outlet cooperation state.

4. The control method of an environmental conditioning system according to claim 3, wherein, The preset mode comprises a refrigeration mode or a supply air mode or a heating mode, and the step of determining the preset air outlet cooperation state corresponding to the target operation mode to be the target air outlet cooperation state comprises: In a case where the target operation mode is the refrigeration mode or the supply air mode, a first preset air outlet cooperation state is determined to be the target air outlet cooperation state; In a case where the target operation mode is the heating mode, a second preset air outlet cooperation state is determined to be the target air outlet cooperation state; Wherein the first preset air outlet cooperation state comprises that the first air outlet is opened and the second air outlet is closed, or the first preset air outlet cooperation state comprises that the first air outlet and the second air outlet are both opened, and the second preset air outlet cooperation state comprises that the first air outlet is closed and the second air outlet is opened.

5. The control method of an environmental conditioning system according to claim 1, wherein, The step of determining the target air outlet cooperation state according to the second storage state and the second state parameter further comprises: In a case where the target operation mode is a dehumidification mode, a third preset air outlet cooperation state is determined to be the target air outlet cooperation state; Wherein the third preset air outlet cooperation state comprises that the first air outlet is opened and the second air outlet is closed.

6. The control method of an environmental conditioning system according to any one of claims 1 to 5, wherein, The step of controlling the operation of the indoor unit according to the target air outlet matching state further comprises: controlling the operation of the environment conditioning system according to the target operation mode; The step of determining the target operation mode of the environment conditioning system according to the second storage state and the second state parameter comprises: In the case that the second state parameter comprises a user setting mode, determining the user setting mode as the target operation mode; In the case that the second state parameter does not comprise a user setting mode, determining the target operation mode according to the second storage state of the first state parameter.

7. The control method of an environmental conditioning system according to claim 6, wherein, The step of determining the target operation mode according to the second storage state of the first state parameter comprises: In the case that the second storage state of the first state parameter is that the historical operation mode before the last shutdown of the environment conditioning system has been stored, determining the historical operation mode as the target operation mode; In the case that the second storage state of the first state parameter is that the historical operation mode before the last shutdown of the environment conditioning system has not been stored, determining the target operation mode according to a preset determination rule.

8. An environmental conditioning system characterized by, The environment conditioning system comprises a control device and an indoor unit, the indoor unit comprises at least two air outlets, the indoor unit is in communication connection with the control device, and the control device comprises a memory, a processor and a computer program stored in the memory and executable on the processor, the computer program is configured to implement the steps of the control method of the environment conditioning system according to any one of claims 1 to 7.

9. A storage medium, characterized by The storage medium is a computer readable storage medium, the storage medium stores a computer program, and the computer program is executed by the processor to implement the steps of the control method of the environment conditioning system according to any one of claims 1 to 7.

Citation Information

Patent Citations

  • Self-adaptive control method and device for multiple air outlets

    CN119123606A

  • Control method of air conditioner

    CN119178190A