Partitioned air supply television wall air conditioner, control method and device for partitioned air supply television wall air conditioner
By setting independently controllable sub-air outlets and processor-controlled zoned air supply in the TV wall air conditioner, the problems of large space occupation and inability to adjust the air supply area are solved, realizing the integration of the air conditioning system with the TV cabinet and/or TV wall, and improving the user experience.
Patent Information
- Application Number
- CN202411352060.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2044-09-26
AI Technical Summary
Existing air conditioners take up a lot of space in the living room and the air delivery area cannot be adjusted, which affects the user experience.
Design a TV wall air conditioner with zoned air supply. The indoor unit is installed in the TV cabinet and/or TV wall, and the air outlet is set above the TV wall. It includes multiple independently controllable sub-air outlets. The processor obtains user information and air blowing needs and controls the target parameters of the indoor unit and the opening of the air outlets.
It integrates the air conditioning system with the TV cabinet and/or TV wall, allowing for adjustment of the air supply area according to user needs and improving user experience.
Smart Images

Figure CN119146488B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, for example to a television wall air conditioner for partitioned air supply, and a control method and device for the television wall air conditioner. BACKGROUND
[0002] A household living room air conditioner such as a cabinet air conditioner needs to occupy the living room space alone, which is a big pain for users whose living rooms are small. For this reason, the user installs a ducted air conditioner, which can be arranged in a suspended ceiling and does not occupy the living room space, but has strict requirements on the height, which cannot be met in ordinary houses. Even if the height requirement is met, the arrangement of the ducted air conditioner makes the living room low, increases the user's sense of oppression, and affects the user experience.
[0003] The related art discloses an air conditioner, comprising: a first shell having a first air duct and a first air inlet communicating with the first air duct; a first fan and a first heat exchanger arranged in the first air duct; a second shell, a first end of the second shell being arranged on the first shell, a second end of the second shell extending in a direction away from the first shell, the second shell having a second air duct communicating with the first air duct, the second shell being provided with a first air outlet communicating with the second air duct.
[0004] In the process of implementing the embodiments of the present disclosure, it is found that at least the following problems exist in the related art:
[0005] The air conditioner of the related art solves the problem of large space occupation of the living room air conditioner, but the air supply area cannot be adjusted.
[0006] It should be noted that the information disclosed in the above background section is only used to strengthen the understanding of the background of the present application, and therefore can include information that does not constitute prior art known to those of ordinary skill in the art. SUMMARY
[0007] To provide a basic understanding of some aspects of the disclosed embodiments, the following brief summary is given. The summary is not a general review, nor is it intended to determine key / important elements or delineate the scope of protection of these embodiments, but as a prelude to the detailed description below.
[0008] The embodiments of the present disclosure provide a television wall air conditioner for partitioned air supply, and a control method and device for the television wall air conditioner for partitioned air supply, to realize partitioned air supply of the air conditioner.
[0009] In some embodiments, the partitioned air supply television wall air conditioner comprises: an outdoor unit; an indoor unit comprising an indoor fan, an indoor heat exchanger, an air duct and an air outlet arranged in a television cabinet and / or a television wall; wherein one end of the air duct is in communication with the air outlet end of the indoor fan, and the other end is connected with the air outlet; the indoor heat exchanger is arranged in the air duct, the air outlet is arranged above the television on the television wall, and the air outlet comprises a plurality of sub-air outlets which can be independently controlled and switched on.
[0010] In some embodiments, the method comprises: in the case that the air conditioner runs in a target mode, obtaining user information and user air blowing demand; determining target parameters of the indoor unit and a target air outlet according to the user information and the user air blowing demand; controlling the indoor unit to execute the target parameters, and controlling the target air outlet to open air supply.
[0011] In some embodiments, the device comprises: a processor and a memory storing program instructions, the processor being configured to execute the control method for the partitioned air supply television wall air conditioner as described above when running the program instructions.
[0012] The partitioned air supply television wall air conditioner, the control method and the device for the partitioned air supply television wall air conditioner provided by the embodiments of the present disclosure can achieve the following technical effects:
[0013] The indoor unit of the air conditioner is arranged in the television cabinet and / or the television wall, thereby realizing the integration of the air conditioner system and the television cabinet and / or the television wall. Meanwhile, the air outlet is arranged above the television on the television wall, and the air outlet comprises a plurality of sub-air outlets which can be independently controlled and switched on. In this way, the matched sub-air outlet can be selected and switched on according to the user demand, thereby realizing the partitioned air supply of the air conditioner, i.e. realizing the air supply of the air conditioner blowing towards or avoiding the area where the user is located.
[0014] The general description above and the following description below are exemplary and explanatory only and are not intended to be limiting of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0015] One or more embodiments are illustrated by way of example in the figures that are not intended to be limiting of the present application. Like references numerals in the figures indicate like elements, and one or more embodiments are illustrated in the figures by way of examples while the present application is not limited to the examples illustrated in the figures. The figures are not necessarily drawn to scale and the disclosure is not intended to be limited to the figures as drawn. In the figures:
[0016] Figure 1 is a structural schematic diagram of a partitioned air supply television wall air conditioner provided by the embodiments of the present disclosure;
[0017] Figure 2 is a structural schematic diagram of an indoor unit in a television wall air conditioner provided by the embodiments of the present disclosure;
[0018] Figure 3is another structural schematic diagram of an indoor unit of a television wall air conditioner provided by an embodiment of the present disclosure;
[0019] Figure 4 is another structural schematic diagram of an indoor unit of a television wall air conditioner provided by an embodiment of the present disclosure;
[0020] Figure 5 is a schematic diagram of a control method of a television wall air conditioner for partitioned air supply provided by an embodiment of the present disclosure;
[0021] Figure 6 is another schematic diagram of a control method of a television wall air conditioner for partitioned air supply provided by an embodiment of the present disclosure;
[0022] Figure 7 is a schematic diagram of a control device of a television wall air conditioner for partitioned air supply provided by an embodiment of the present disclosure;
[0023] Figure 8 is another structural schematic diagram of a television wall air conditioner for partitioned air supply provided by an embodiment of the present disclosure.
[0024] Reference signs:
[0025] 100: outdoor unit; 110: compressor; 120: four-way valve; 130: outdoor heat exchanger; 140: outdoor fan;
[0026] 200: indoor unit; 210: indoor fan; 211: first indoor fan; 212: second indoor fan; 220: indoor heat exchanger; 221: first indoor heat exchanger; 222: second indoor heat exchanger; 230: air duct; 231: first air duct; 232: second air duct; 240: air outlet; 250: electromagnetic valve;
[0027] 400: television wall; 500: television cabinet; 600: television;
[0028] 700: control device of a television wall air conditioner for partitioned air supply; 701: processor; 703: communication interface; 702: memory; 704: bus. DETAILED DESCRIPTION
[0029] In order to enable persons skilled in the art to more fully understand the features and technical contents of the embodiments of the present disclosure, the implementation of the embodiments of the present disclosure is described in detail below with reference to the accompanying drawings, which are used only for reference and do not limit the embodiments of the present disclosure. In the following technical description, in order to facilitate explanation, a plurality of details are provided to provide a full understanding of the disclosed embodiments. However, one or more embodiments can still be implemented without these details. In other cases, in order to simplify the drawings, well-known structures and devices can be simplified.
[0030] The terms "first", "second", and the like in the description and in the claims of the embodiments of the present disclosure and the above-described drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present disclosure described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion.
[0031] Unless otherwise specified, the term "a plurality of" means two or more.
[0032] In the embodiments of the present disclosure, the character " / " represents a "or" relationship between the preceding and following objects. For example, A / B represents: A or B.
[0033] The term "and / or" is a description of the association relationship between objects, which means that there can be three relationships. For example, A and / or B, which means: A or B, or, A and B, three relationships.
[0034] The term "corresponding" can refer to an association or binding relationship. A and B correspond to each other means that A and B have an association or binding relationship.
[0035] In combination Figure 1 In combination Figure 1 The television wall air conditioner includes an outdoor unit 100 and an indoor unit 200. The outdoor unit 100 is installed outdoors, and the indoor unit 200 is installed in a television cabinet 500 and / or a television wall 400. The outdoor unit 100 and the indoor unit 200 are connected through a refrigerant pipeline. The outdoor unit 100 includes a compressor 110, a four-way valve 120, an outdoor heat exchanger 130, and an outdoor fan 140. The indoor unit 200 includes an indoor heat exchanger 220, an indoor fan 210, an air duct 230, and an air outlet 240. One end of the air duct 230 is in communication with the air outlet end of the indoor fan 210, and the other end is connected with the air outlet 240. The indoor heat exchanger 220 is arranged in the air duct 230. The air outlet 240 is arranged above the television 600 on the television wall, and the air outlet 240 includes a plurality of sub-air outlets which can be independently controlled by switches.
[0036] It can be understood that the television position in the living room is generally provided with a television wall and / or a television cabinet. The air conditioner is installed in the television wall and / or the television cabinet, which can save the space in the living room. When the living room is provided with only a television wall or a television cabinet, the indoor unit is installed in the internal space of the television wall or the television cabinet. When the living room is provided with a television wall and a television cabinet, the indoor fan can be arranged in a certain internal space in the television cabinet. The air duct is arranged in the television wall, and one end of the air duct is in communication with the air outlet arranged on the television wall. The other end is in communication with the air outlet of the indoor fan. The indoor heat exchanger is arranged in the air duct.
[0037] The air outlet is arranged above the television. If the indoor unit is unique, the air duct is also unique. If the indoor unit is two, the air ducts can be arranged on the left and right sides of the television respectively. The two air ducts are connected to the air outlet together, or a plurality of sub-air outlets are divided into two groups, and each group of sub-air outlets corresponds to an air duct. In this way, the air supply area can be adjusted by controlling the state of the sub-air outlet to realize air supply in different areas.
[0038] The television wall air conditioner provided by the embodiment of the present disclosure is arranged in the television cabinet and / or the television wall, realizing the integration of the air conditioner system and the television cabinet and / or the television wall. Meanwhile, the air outlet is arranged above the television on the television wall, and the air outlet includes a plurality of sub-air outlets which can be independently controlled and switched on. In this way, the user can select the matched sub-air outlet to be switched on according to the air outlet demand, so as to realize the air supply area adjustment of the air conditioner and improve the user experience.
[0039] Optionally, the indoor unit includes a first indoor unit and a second indoor unit. The first indoor unit includes a first indoor fan 211, a first air duct 231 and a first indoor heat exchanger 221. The second indoor unit includes a second indoor fan 212, a second air duct 232 and a second indoor heat exchanger 222. The first indoor unit and the second indoor unit share the air outlet 240, and the first air duct 231 and the second air duct 232 are arranged on the two sides of the television 600.
[0040] Here, the indoor unit includes the first indoor unit and the second indoor unit in parallel, the two indoor units are independently controlled, but the two indoor units share the air outlet. When only one of the indoor units works, the air outlet area is relatively large, so the target air outlet can be determined based on the user position and the number of users, so that the air outlet meets the user demand. When both of the indoor units work, the corresponding target air outlet can also be determined based on the user demand (or based on the user position and the number of users).
[0041] Optionally, the first indoor unit and the second indoor unit are connected in parallel and connected with the outdoor unit through the refrigerant pipeline. A three-way valve is arranged at the intersection of the refrigerant pipelines of the outdoor unit, the first indoor unit and the second indoor unit. Alternatively, an electromagnetic valve 250 is arranged on the refrigerant pipeline of the first indoor unit and / or the second indoor unit.
[0042] Here, a three-way valve is arranged on the refrigerant pipeline connecting the first indoor unit, the second indoor unit and the outdoor unit, so that the first indoor unit or the second indoor unit can be controlled to work based on the demand. Alternatively, an electromagnetic valve is arranged on the refrigerant pipeline of the first indoor unit and / or the second indoor unit. When only one indoor unit is provided with an electromagnetic valve, if the electromagnetic valve is closed, the corresponding pipeline refrigerant does not flow, and the corresponding indoor unit does not work, and the other indoor unit works. When the electromagnetic valve is opened, both of the indoor units work. As an example, the first indoor unit is provided with an electromagnetic valve, and the second indoor unit is not provided with an electromagnetic valve. Figure 1An electromagnetic valve is arranged on the refrigerant pipeline leading to the second indoor unit after the refrigerant pipelines of the outdoor unit, the first indoor unit and the second indoor unit meet. In the case where the indoor ambient temperature and the target temperature are close to each other, the electromagnetic valve can be controlled to be closed. In this way, only the first indoor unit operates. In the case where the indoor ambient temperature and the target temperature are far from each other, the electromagnetic valve can be controlled to be opened. In this way, the two indoor units operate to quickly adjust the indoor ambient temperature. In addition, the indoor unit operating can be selected based on the air outlet requirement.
[0043] Optionally, the electromagnetic valve 250 comprises a first electromagnetic valve and a second electromagnetic valve, the first electromagnetic valve is arranged on the refrigerant inlet pipeline of the first indoor unit / second indoor unit, and the second electromagnetic valve is arranged on the refrigerant outlet pipeline of the first indoor unit / second indoor unit.
[0044] In this way, the electromagnetic valves are arranged on the refrigerant inlet pipeline and the refrigerant outlet pipeline of one of the indoor units to avoid that part of the refrigerant remains in the indoor unit when the indoor unit operates. Figure 1 As shown in the figure, the electromagnetic valve is arranged on the refrigerant pipeline of the right indoor unit (i.e., the second indoor unit). In the case where the first electromagnetic valve and the second electromagnetic valve are both opened, the refrigerant of the outdoor unit flows through the first indoor unit and the second indoor unit when the air conditioner operates.
[0045] Optionally, the first indoor unit and the second indoor unit are symmetrically arranged.
[0046] Here, the first indoor unit and the second indoor unit are symmetrically arranged, and in particular, the first air outlet and the second air outlet are symmetrically arranged. In this way, the appearance of the living room is not affected.
[0047] Optionally, the plurality of sub-air outlets are arranged in sequence in the horizontal direction.
[0048] Here, the plurality of sub-air outlets are arranged in sequence from left to right or from right to left in the horizontal direction. The sub-air outlets can be arranged with or without intervals. When the plurality of sub-air outlets are arranged with intervals, the air supply area of the sub-air outlet in the vertical space is relatively larger. This scheme is suitable for the case where the number of sub-air outlets is small. When the number of sub-air outlets is large, the sub-air outlets can be arranged without intervals.
[0049] Optionally, the number of sub-air outlets is 4 or more, and each sub-air outlet is a louvered air outlet.
[0050] Here, the number of sub-air outlets is 6 or more. In this way, the air supply area can be adjusted, and the influence on the air volume is small. When the number of sub-air outlets is small, the sub-air outlets are arranged in sequence from left to right in the horizontal direction, and the intervals between adjacent air outlets are small. Alternatively, the sub-air outlets are arranged without intervals. In addition, the louvered air outlet helps to improve the appearance of the living room.
[0051] In combination withFigure 5 As shown, the embodiment of the present disclosure provides a control method of a television wall air conditioner for partitioned air supply, comprising:
[0052] In S101, the processor acquires user information and user air blowing demand in the case that the air conditioner runs in a target mode.
[0053] In S102, the processor determines target parameters of indoor units and target air outlets according to the user information and the user air blowing demand.
[0054] In S103, the processor controls the indoor units to execute the target parameters and controls the target air outlets to open air supply.
[0055] Here, the target mode of the air conditioner includes a double-side cooling / heating mode and a single-side cooling / heating mode. The double-side cooling / heating mode refers to a case that both indoor units are in a working state. The single-side cooling / heating mode refers to a case that there are two indoor units and only one indoor unit is in a working state. In the case that the air conditioner runs in the target mode, the user information and the user air blowing demand are acquired. The user information includes user position information, and the user air blowing demand includes a demand for air blowing away from people. Based on the user information and the user air blowing demand, the target parameters of the indoor units and the target air outlets are determined. The target parameters of the indoor units include the rotating speed of indoor fans corresponding to the target mode, and the target air outlets refer to sub-air outlets that open air supply.
[0056] As an example, the air conditioner runs in a double-side heating mode, the user information indicates that the user is located at the left side of the television, i.e., the first side, and the user air blowing demand is air blowing away from people. Then, the rotating speed of the first indoor unit is determined as a first rotating speed, the rotating speed of the second indoor unit is determined as a second rotating speed, and the target air outlet is determined as a sub-air outlet corresponding to the first side. Based on the determined information, the air conditioner is controlled to run. Here, the first rotating speed is greater than the second rotating speed. As another example, the air conditioner runs in a single-side cooling mode, the user information indicates that the user is located at the first side of the television, and the user air blowing demand is air blowing away from people. Then, the rotating speed of the first indoor unit is determined as a third rotating speed, the rotating speed of the second indoor unit is determined as a fourth rotating speed, and the target air outlet is determined as a sub-air outlet corresponding to the second side. Here, the third rotating speed is less than the fourth rotating speed. In this way, the air supply to different areas is realized by adjusting the opened air outlets, and the rotating speed of the fan is adjusted to compensate for the air speed. The air outlet speed and the air outlet are corresponding, i.e., the rotating speed of the indoor fan close to the air outlet is relatively high.
[0057] In combination with Figures 2 to 4As shown, the air outlets from left to right are sub-air outlet A1, sub-air outlet A2, …, sub-air outlet A6. Then the air outlets corresponding to the first side are sub-air outlet A1 and sub-air outlet A2, or the air outlets corresponding to the first side are sub-air outlet A1, sub-air outlet A2 and sub-air outlet A3. Similarly, the air outlets corresponding to the second side are sub-air outlet A5 and sub-air outlet A6, or the air outlets corresponding to the second side are sub-air outlet A4, sub-air outlet A5 and sub-air outlet A6. When the air outlets corresponding to the first side are sub-air outlet A1 and sub-air outlet A2, and the air outlets corresponding to the second side are sub-air outlet A5 and sub-air outlet A6, sub-air outlet A4 and sub-air outlet A5 (hereinafter collectively referred to as intermediate air outlets) are opened when all air outlets are opened or when air is supplied to multiple areas at the same time. When the air outlets corresponding to the first side or the second side are opened, sub-air outlet A4 and sub-air outlet A5 are not opened. The user position corresponding to the intermediate air outlets is the side directly opposite the TV, i.e., the side directly in front of the TV.
[0058] The control method for the television wall air conditioner for partitioned air supply provided by the embodiments of the present disclosure is based on an air conditioner indoor unit arranged in a TV cabinet and / or a TV wall. When the air conditioner operates in a target mode, target parameters and target air outlets of the indoor unit are determined based on user information and user air blowing demand, and the indoor unit is controlled to execute. In this way, air supply to different areas is achieved by adjusting the opened air outlets.
[0059] Optionally, the user information includes a user position and / or a user quantity, and the user air blowing demand includes following people blowing and avoiding people blowing.
[0060] Here, the user information includes not only a user position but also a user quantity. It can be understood that when the user quantity is large, the user position can not be unique and can be in multiple air supply areas. Therefore, in this case, if the user air blowing demand is following people blowing, all air outlets need to be opened. If the user air blowing demand is avoiding people blowing, the air outlets corresponding to the air supply area with the least user quantity need to be opened based on the user quantity in each air supply area.
[0061] In addition, the user air blowing demand includes following people blowing and avoiding people blowing. Following people blowing mainly refers to air blowing towards the user, while avoiding people blowing refers to air avoiding the user. The user air blowing demand can also include a soft wind mode or a strong wind mode, etc. It can be understood that under the same air volume, the more the number of opened air outlets, the softer the air blowing. Conversely, the fewer the number of opened air outlets, the stronger the air blowing. As an example, the air outlets corresponding to the first side are sub-air outlet A1, sub-air outlet A2 and sub-air outlet A3. The user demand is following people blowing and strong wind mode, and then it is determined to open part of the air outlets corresponding to the first side, such as opening sub-air outlet A1 and sub-air outlet A2.
[0062] Optionally, in the case that the user blowing demand is blowing to people, in step S102, the processor determines the target parameters of the indoor unit and the target air outlet according to the user information and the user blowing demand, including:
[0063] In the case that the number of users is greater than or equal to the preset number, the processor determines to increase the target rotating speed of the first indoor fan and the second indoor fan by the first amplitude, and determines that the target air outlet is all the sub-air outlets. Alternatively,
[0064] In the case that the number of users is less than the preset number, the processor determines to increase the rotating speed of the indoor fan corresponding to the user position and to decrease the rotating speed of the indoor fan not matching the user position according to the user position, and determines that the sub-air outlet corresponding to the user position is the target air outlet.
[0065] Here, the preset number can be 3 to 5 people, such as 3 people. When the user blowing demand is blowing to people, if the number of users in the living room is greater than or equal to the preset number, all the sub-air outlets are opened. At the same time, the rotating speed of the first indoor fan and the second indoor fan is increased, so that the air volume and the number of opened air outlets are matched, that is, the air volume is satisfied. The rotating speed of the first indoor fan and the second indoor fan is increased by the first amplitude on the basis of the target rotating speed of the first indoor fan and the second indoor fan. The target rotating speed is determined based on the heating / cooling demand, and the first amplitude has a value range of 30 revolutions / minute to 80 revolutions / minute. Optionally, the first amplitude can be determined based on the indoor environment temperature and the target temperature. The greater the difference between the indoor environment temperature and the target temperature, the greater the first amplitude, that is, they are positively correlated.
[0066] If the number of users in the living room is less than the preset number, the target air outlet is determined to be the sub-air outlet corresponding to the area where the user is located based on the user position. Moreover, a compensation scheme for the air volume of the indoor fan is determined based on the user position. Specifically, the air volume compensation scheme is to increase the rotation speed of the indoor fan corresponding to the user position and to decrease the rotation speed of the indoor fan not matching the user position. Alternatively, the increase amplitude of the indoor fan is consistent with the decrease amplitude of another indoor fan. That is, if the rotation speed of one indoor fan is increased by 50 rotations per minute, the rotation speed of another indoor fan is decreased by 50 rotations per minute. In this way, the air volume of the air outlet is not affected by the number and position of the opened air outlets, and the air volume and the indoor environment temperature requirement are consistent, so that the indoor environment temperature can reach the target temperature. In addition, the air volume compensation adjustment can ensure that the air volume is sent out from the target air outlet. As an example, the number of users is 2, and the two users are located at the first side and the opposite side of the TV, respectively. The target air outlet is determined to include the sub-air outlet corresponding to the first side, and when the air outlet also includes the middle air outlet, the target air outlet is also determined to include the middle air outlet. At the same time, the rotation speed of the first indoor fan is increased and the rotation speed of the second indoor fan is decreased. As another example, the number of users is 2, and the two users are located at the first side and the second side of the TV, respectively. The target air outlet is determined to include the sub-air outlet corresponding to the first side and the sub-air outlet corresponding to the second side (the middle air outlet is closed), or the target air outlet is determined to be all the sub-air outlets. At this time, the rotation speeds of the first indoor fan and the second indoor fan remain unchanged.
[0067] Alternatively, in the case that the user air blowing requirement is to avoid air blowing, in step S102, the processor determines the target parameter of the indoor unit and the target air outlet according to the user information and the user air blowing requirement, including:
[0068] The processor determines to decrease the rotation speed of the indoor fan corresponding to the user position and to increase the rotation speed of the indoor fan not matching the user position according to the user position, and determines the sub-air outlet not matching the user position as the target air outlet.
[0069] Here, in the case that the user air blowing requirement is to avoid air blowing, the rotation speed of the fan is compensated and adjusted according to the user position. Specifically, the rotation speed of the indoor fan corresponding to the user position is decreased and the rotation speed of the indoor fan not matching the user position is increased. Alternatively, the increase amplitude of the indoor fan is consistent with the decrease amplitude of another indoor fan. For example: the rotation speed of one indoor fan is increased by 50 rotations per minute, and the rotation speed of another indoor fan is decreased by 50 rotations per minute. In this way, the air volume of the air outlet is not affected by the number and position of the opened air outlets, and the air volume and the indoor environment temperature requirement are consistent, so that the indoor environment temperature can reach the target temperature. In addition, the air volume compensation adjustment can ensure that the air volume is sent out from the target air outlet. As an example, the number of users is 2, and the two users are located at the first side and the opposite side of the TV, respectively. The target air outlet is determined to include the sub-air outlet corresponding to the first side, and when the air outlet also includes the middle air outlet, the target air outlet is also determined to include the middle air outlet. At the same time, the rotation speed of the first indoor fan is increased and the rotation speed of the second indoor fan is decreased. As another example, the number of users is 2, and the two users are located at the first side and the second side of the TV, respectively. The target air outlet is determined to include the sub-air outlet corresponding to the first side and the sub-air outlet corresponding to the second side (the middle air outlet is closed), or the target air outlet is determined to be all the sub-air outlets. At this time, the rotation speeds of the first indoor fan and the second indoor fan remain unchanged.
[0070] As an example, the user position is located at the first side and the opposite side of the television. Then the target air outlet is determined to include the sub-air outlet corresponding to the second side. Meanwhile, the rotation speed of the second indoor fan is increased and the rotation speed of the first indoor fan is decreased. As another example, the user position is located at the first side of the television. Then the target air outlet is determined to include the sub-air outlet corresponding to the second side, and when the air outlet further includes the middle air outlet, the target air outlet is further determined to include the middle air outlet. Meanwhile, the rotation speed of the second indoor fan is increased and the rotation speed of the first indoor fan is decreased.
[0071] In addition, in some embodiments, the air outlet further includes the middle air outlet. When the air-avoiding demand is met, when the user is at the first side or the second side, if the target mode is the double-side cooling / heating mode, the middle air outlet is the target air outlet; if the target mode is the single-side cooling / heating mode, the middle air outlet is closed. In this way, the air volume is ensured while meeting the user's air blowing demand.
[0072] In combination Figure 6 As shown in the drawings, the embodiments of the present disclosure provide another control method of a television wall air conditioner for partition air supply, which comprises:
[0073] In S101, the processor acquires user information and user air blowing demand in the case that the air conditioner runs in a target mode.
[0074] In S102, the processor determines target parameters of the indoor unit and a target air outlet according to the user information and the user air blowing demand.
[0075] In S103, the processor controls the indoor unit to execute the target parameters, and controls the target air outlet to open air supply.
[0076] In S204, the sensor detects an indoor environment temperature in the case that the target mode is the double-side cooling / heating mode.
[0077] In S205, the processor switches the current running mode to the single-side cooling / heating mode in the case that the difference between the indoor environment temperature and the target temperature is less than a temperature threshold value; and adjusts the target air outlet based on the user air blowing demand and the user position.
[0078] Here, when the running mode of the air conditioner is the double-side cooling mode (or the double-side heating mode), the indoor environment temperature gradually decreases (or increases) with the continuous running of the air conditioner. When the indoor environment temperature approaches the target temperature (i.e., the difference between the two is less than the temperature threshold value), the double-side cooling mode of the air conditioner is switched to the single-side cooling mode (or the double-side heating mode is switched to the single-side heating mode). At the same time, the number of the target air outlet is adjusted so that the air supply is more concentrated, and the air supply effect is more in line with the user's demand.
[0079] Optionally, at step S205, the processor adjusts the target air outlet based on the user blowing demand and the user position, including:
[0080] In the case that the user blowing demand is to blow away from people, the processor adjusts the target air outlet close to the user position. Alternatively, in the case that the user blowing demand is to blow towards people, the processor adjusts the target air outlet to close to the user position.
[0081] Here, closing the target air outlet only closes part of the target air outlet, i.e. still retains the opening state of part of the air outlet. It can be understood that if the user blowing demand is to blow away from people, and the current target air outlet is opened on the first side, one of the sub-air outlets close to the user position on the first side is closed; or in the case that the current target air outlet only includes one position air outlet, the state of the current target air outlet is maintained. As an example, in the case that the user blowing demand is to blow away from people, if the target air outlet is determined to be the air outlet corresponding to the second side and the middle side based on the user position, the target air outlet of the middle side is closed after the running mode is switched. In this way, the effect of blowing away from people is further improved after the running mode is switched, and the air outlet is ensured. Alternatively, if the target air outlet is determined to be the air outlet corresponding to the second side based on the user position, the state of the current target air outlet is maintained after the running mode is switched. In this way, after the indoor temperature is quickly adjusted, only one side of the indoor unit is opened, which can also maintain the indoor temperature and help save energy.
[0082] Optionally, at step S205, the processor switches the current running mode to a single-side cooling / heating mode, including:
[0083] The processor controls the electromagnetic valve to close, and controls the second indoor fan to run for a preset time length and then close.
[0084] Here, the electromagnetic valve is arranged in the second indoor unit. After the electromagnetic valve is controlled to close when switching from double sides to single side, the second indoor fan is still maintained to run for a preset time length, so as to dissipate the residual cold or heat of the second heat exchanger. Then the second indoor fan is controlled to close. The preset time length can be 1 min to 3 min. In this way, the accumulation of cold / heat in the TV wall or TV cabinet is avoided, which affects the service life of furniture.
[0085] In combination with Figure 7As shown, the control device 700 for the television wall air conditioner for zoned air supply provided by the embodiments of the present disclosure includes a processor 701 and a memory 702. Optionally, the device can also include a communication interface 703 and a bus 704. The processor 701, the communication interface 703, and the memory 702 can complete communication with each other through the bus 704. The communication interface 703 can be used for information transmission. The processor 701 can invoke the logic instructions in the memory 702 to execute the control method of the television wall air conditioner for zoned air supply in the above embodiments.
[0086] In addition, the logic instructions in the memory 702 described above can be implemented in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer readable storage medium.
[0087] The memory 702 as a computer readable storage medium can be used to store software programs, computer executable programs, such as program instructions / modules corresponding to the method in the embodiments of the present disclosure. The processor 701 executes the function application and data processing by running the program instructions / modules stored in the memory 702, that is, implements the control method of the television wall air conditioner for zoned air supply in the above embodiments.
[0088] The memory 702 can include a program storage area and a data storage area. The program storage area can store an operating system and at least one application required by a function; the data storage area can store data created according to the use of the terminal device, etc. In addition, the memory 702 can include a high-speed random access memory and can also include a non-volatile memory.
[0089] In combination Figure 8 As shown, the control device 700 for the television wall air conditioner for zoned air supply provided by the embodiments of the present disclosure includes a processor 701 and a memory 702. Optionally, the device can also include a communication interface 703 and a bus 704. The processor 701, the communication interface 703, and the memory 702 can complete communication with each other through the bus 704. The communication interface 703 can be used for information transmission. The processor 701 can invoke the logic instructions in the memory 702 to execute the control method of the television wall air conditioner for zoned air supply in the above embodiments.
[0090] The embodiments of the present disclosure provide a computer readable storage medium, which stores computer executable instructions, and the computer executable instructions are configured to execute the control method of the television wall air conditioner for zoned air supply.
[0091] The technical solutions of the embodiments of the present disclosure can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes one or more instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method disclosed in the embodiments of the present disclosure. The aforementioned storage medium can be a non-transitory storage medium, such as a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes.
[0092] The above description and drawings sufficiently illustrate the embodiments of the present disclosure to enable one skilled in the art to practice them. Other embodiments can include structural, logical, electrical, process, and other changes. The embodiments represent only a few of the possible variations. Individual components and functions are optional unless explicitly required, and the order of operations can be changed. Parts and features of some embodiments can be included or replaced by parts and features of other embodiments. Also, the words used in this application are only used to describe the embodiments and are not intended to limit the claims. As used in the description of the embodiments and the claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. Similarly, the term "and / or" as used in this application means to include one or more associated listed items in any and all possible combinations. In addition, when used in this application, the term "comprise" and its variants "comprises" and / or "comprising" and the like mean the presence of the stated features, integers, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. Without more limitations, the element defined by the phrase "comprising a" does not exclude the presence of additional identical elements in the process, method, or device that includes the stated element. In this document, each embodiment focuses on the differences from other embodiments, and the same or similar parts between embodiments can be referred to each other. For the method, product, etc. disclosed in the embodiments, if it corresponds to the method part disclosed in the embodiments, the relevant part can be referred to the description of the method part.
[0093] Those skilled in the art can understand that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be realized by electronic hardware or a combination of computer software and electronic hardware. Whether the functions are realized in hardware or software depends on the specific application and design constraints of the technical solution. The skilled person can use different methods for each specific application to realize the described functions, but such implementation should not be considered beyond the scope of the embodiments of the present disclosure. The skilled person can clearly understand that, for the convenience and brevity of description, the specific working processes of the above-described system, device and unit can refer to the corresponding processes in the foregoing method embodiments, which will not be repeated here.
[0094] In the embodiments disclosed herein, the disclosed methods, products (including but not limited to devices, equipment, etc.) can be implemented in other ways. For example, the above-described device embodiments are only schematic, for example, the division of the units can only be a logical function division, and actual implementation can have another division manner, for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the units shown or discussed can be indirect coupling or communication connection through some interface, device or unit, and can be electrical, mechanical or other forms. The units described as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, that is, they can be located in one place, or can be distributed on a plurality of network units. Part or all of the units can be selected according to actual needs to implement the embodiments. In addition, each functional unit in the embodiments of the present disclosure can be integrated in one processing unit, or each unit can be a physically independent unit, or two or more units can be integrated in one unit.
[0095] The computer program instructions can also be loaded onto a computer, other programmable data processing apparatus, or other processing device to cause a series of operational steps to be performed on the computer, other programmable apparatus or other processing device to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide processes for implementing the functions / acts specified in the flowchart and / or block diagram block or blocks.
Claims
1. A television wall air conditioner of the zoned air supply type, characterized in that, The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner.
2. The television wall air conditioner of claim 1, wherein, The application relates to a television wall air conditioner.
3. The television wall air conditioner of claim 1, wherein, The application relates to a television wall air conditioner.
4. A control method of a television wall air conditioner for zoned air supply, characterized by, The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner.
5. The method of claim 4, wherein, The application relates to a television wall air conditioner.
6. The method of claim 5, wherein, The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner.
7. The method of claim 5, wherein, The application relates to a television wall air conditioner. The application relates to a television wall air conditioner.
8. A control device for a television wall air conditioner for zoned air supply, comprising a processor and a memory having stored program instructions, characterized in that, The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. The application relates to a television wall air conditioner. 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Citation Information
Patent Citations
Air conditioner
CN105805834A
Air conditioner TV bench
CN206347671U