Laundry equipment control method and device, electronic equipment and storage medium
By adjusting the cooling mode of the laundry equipment in real time according to the temperature and water level conditions in the drum, the problem of inflexible cooling in the existing technology is solved, efficient preparation for drum door opening is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202410333674.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-22
- Publication Date
- 2025-09-23
AI Technical Summary
When the user needs to open the drum door of existing laundry equipment, the cooling mode is not flexible enough, which easily leads to waste of resources or too slow cooling speed, affecting the user experience.
The appropriate cooling mode is determined in real time based on the temperature and water level in the drum of the laundry equipment, including the use of the fan gear and the water spray device, until the temperature and water level in the drum meet the conditions for opening the drum door.
The cooling efficiency of laundry equipment is improved, resource waste and slow cooling speed are avoided, and user experience is improved.
Smart Images

Figure CN120683680A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of intelligent electrical appliances, and in particular to a laundry appliance control method, device, electronic device, and storage medium. Background Art
[0002] With the continuous advancement of technology, washing machines have become an essential household appliance in every household. Today's smart washing machines can use different water temperatures to process different types of clothing. For example, in a drum washing machine with a high-temperature wash cycle, the user typically needs to meet certain conditions for the drum temperature and water level before the door can be opened. Therefore, before the user can open the door, the washing machine may need to cool the drum and drain the water. Only when the temperature and water level meet the required conditions will the door be opened.
[0003] Most existing laundry machines use a fixed cooling mode to cool the inner drum. This approach is inflexible and can lead to situations where all components are fully cooled when the temperature is not very high, resulting in wasted resources. Alternatively, when the temperature is very high, the cooling is too slow, causing users to wait for extended periods, impacting the user experience.
[0004] Application Contents
[0005] The embodiments of the present application provide a laundry appliance control method, device, electronic device, and storage medium. When a user needs to open the drum door, a suitable cooling mode is flexibly adopted to cool the drum so that the temperature inside the drum reaches a temperature at which the drum door can be opened, thereby avoiding waste of resources or too slow a cooling speed, improving the cooling efficiency of the laundry appliance, and further satisfying the user experience.
[0006] In a first aspect, the present application provides a laundry appliance control method, the method comprising:
[0007] receiving a door opening instruction sent by a user, and adjusting the laundry device from a running state to a pause state in response to the door opening instruction;
[0008] acquiring the temperature of the drum of the laundry device in real time, and when the temperature of the drum is greater than a first preset temperature, determining a target cooling mode based on the temperature of the drum;
[0009] Cooling the drum of the laundry appliance according to the target cooling mode until the temperature in the drum is no greater than the first preset temperature;
[0010] The water level in the drum of the laundry device is obtained in real time, and when the water level in the drum is not greater than a preset water level, the drum door of the laundry device is opened.
[0011] In a second aspect, the present application provides a laundry appliance control device, the device comprising:
[0012] a state adjustment module, configured to receive a door opening instruction sent by a user, and adjust the laundry device from a running state to a pause state in response to the door opening instruction;
[0013] a mode determination module, configured to obtain the temperature in the drum of the laundry device in real time, and determine a target cooling mode based on the temperature in the drum when the temperature in the drum is greater than a first preset temperature;
[0014] a drum cooling module, configured to cool the drum of the laundry device according to the target cooling mode until the drum temperature is no greater than the first preset temperature;
[0015] The drum door opening module is used to obtain the water level in the drum of the laundry device in real time, and open the drum door of the laundry device when the water level in the drum is not greater than a preset water level.
[0016] In a third aspect, the present application also provides an electronic device, which includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, a laundry device control method as described in any one of the present applications is implemented.
[0017] In a fourth aspect, the present application further provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the laundry appliance control method as described in any one of the present applications.
[0018] In this application, a door-opening command sent by a user is received, and in response to the door-opening command, the laundry device is adjusted from a running state to a paused state; the temperature inside the drum of the laundry device is obtained in real time, and when the temperature inside the drum is greater than a first preset temperature, a target cooling mode is determined based on the temperature inside the drum; the drum of the laundry device is cooled according to the target cooling mode until the temperature inside the drum is no greater than the first preset temperature; the water level inside the drum of the laundry device is obtained in real time, and when the water level inside the drum is no greater than the preset water level, the drum door of the laundry device is opened. In other words, in the solution of this application, when the user needs to open the drum door, the appropriate cooling mode can be adopted in real time based on the drum temperature of the laundry device to cool the drum, so that the drum temperature reaches a temperature at which the drum door can be opened, thereby avoiding resource waste or slow cooling, improving the cooling efficiency of the laundry device, and further satisfying the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0020] Figure 1 A schematic diagram of a first flow chart of the laundry appliance control method provided in this application;
[0021] Figure 2 A second flow chart of the laundry appliance control method provided in this application;
[0022] Figure 3 A schematic diagram of the structure of the laundry equipment control device provided in this application;
[0023] Figure 4 This is a schematic diagram of the structure of the electronic device provided in this application. DETAILED DESCRIPTION
[0024] The present application will be further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are intended only to illustrate the present application and are not intended to limit the present application. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions of the present application, not all of the structures.
[0025] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.
[0026] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in a sequence other than those illustrated or described herein. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device comprising a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0027] Figure 1 This is a first flow chart of the laundry appliance control method provided by the present application. The method of the present application is applicable to smart appliance control scenarios. When the user needs to open the drum door, the method flexibly adopts a suitable cooling mode to cool down the drum so that the temperature inside the drum reaches a temperature at which the drum door can be opened, thereby avoiding waste of resources or too slow cooling speed, improving the cooling efficiency of the laundry appliance, and further satisfying the user experience. In a specific embodiment, the device can be integrated into an electronic device, such as a controller for a laundry appliance. The following embodiments will be described using the device integrated into an electronic device as an example, with reference to FIG. Figure 1 , the method may specifically include the following steps:
[0028] S101. Receive a door opening instruction sent by a user, and in response to the door opening instruction, adjust the laundry device from a running state to a pause state.
[0029] The door-opening command is a command sent by the user to the laundry appliance, instructing it to open the drum door. In one optional embodiment, if the laundry appliance is stopped, the user does not need to send the door-opening command and can directly open the drum door. If the laundry appliance is running, the inner drum may be rotating or vibrating, in which case the user cannot open the drum door. The user can send the door-opening command to the laundry appliance using a button on the laundry appliance or through voice interaction. Upon receiving the door-opening command, the laundry appliance automatically switches from the running state to the pause state, stopping the drum rotation to avoid affecting the user's ability to open the drum door.
[0030] S102: Acquire the temperature in the drum of the laundry device in real time. When the temperature in the drum is greater than a first preset temperature, determine a target cooling mode based on the temperature in the drum.
[0031] The first preset temperature is predetermined based on domain big data, and is used to determine whether the drum door can be opened. The target cooling mode is a cooling mode corresponding to the current drum temperature. Specifically, a temperature sensor is provided in the drum of the laundry device, and the laundry device can obtain the drum temperature in real time through the temperature sensor. When the drum temperature is greater than the first preset temperature, it indicates that the drum temperature is too high and the drum door cannot be opened for the user. In this solution, different drum temperatures correspond to different cooling modes. After obtaining the drum temperature, the laundry device adopts a cooling mode suitable for the current drum temperature based on the drum temperature, and determines this cooling mode as the target cooling mode.
[0032] For example, the inner drum of the laundry machine is provided with components for cooling the inner drum, such as a fan and a water spray device. If the laundry machine obtains a drum temperature of 39 degrees Celsius and the first preset temperature is 35 degrees Celsius, the laundry machine determines that the inner drum needs to be cooled. Since the drum temperature is only 4 degrees Celsius higher than the first preset temperature, the laundry machine only needs to turn on the fan and control the inner drum to rotate at a constant speed to quickly reduce the inner drum temperature to the first preset temperature. If the laundry machine obtains a drum temperature of 80 degrees Celsius and the first preset temperature is 35 degrees Celsius, the laundry machine determines that the inner drum needs to be cooled. Since the drum temperature is much higher than the first preset temperature, the fan needs to be turned on and the fan gear is adjusted to the maximum. While controlling the inner drum to rotate at a constant speed, the water spray device needs to be turned on to spray cool water on the clothes in the drum, so that the drum temperature quickly drops to the first preset temperature.
[0033] In an optional embodiment, when the temperature inside the drum is greater than a first preset temperature and less than or equal to a second preset temperature, the recommended mode is determined to be the first recommended mode: controlling the inner drum to rotate at a preset speed, and controlling the fan to perform air exchange at the first air exchange gear. The second preset temperature is greater than the first preset temperature; when the temperature inside the drum is greater than the second preset temperature and less than or equal to a third preset temperature, the recommended mode is determined to be the second recommended mode: controlling the inner drum to rotate at a preset speed, and controlling the fan to perform air exchange at the second air exchange gear; the wind force corresponding to the second air exchange gear is greater than the wind force corresponding to the first air exchange gear. The third preset temperature is greater than the second preset temperature; when the temperature inside the drum is greater than the third preset temperature, the recommended mode is determined to be the third recommended mode: controlling the inner drum to rotate at a preset speed, and controlling the fan to perform air exchange at the second air exchange gear, and adjusting the water spray device from the off state to the on state.
[0034] S103: Cooling the drum of the laundry device according to the target cooling mode until the temperature in the drum is no greater than a first preset temperature.
[0035] The target cooling mode is a cooling mode corresponding to the current temperature in the drum. Specifically, after the laundry device determines the target cooling mode, it executes the target cooling mode based on the parameters of the various components in the target cooling mode. Simultaneously, the temperature in the drum continues to be acquired in real time until the temperature in the drum is no greater than a first preset temperature. For example, the laundry device determines the target cooling mode based on the temperature in the drum, and the parameters of the various components in the target cooling mode include: fan: second gear, water spray device: on, drum speed: preset speed. The laundry device then turns on the fan and adjusts it to the second gear, allowing the inner drum to rotate at the preset speed, while turning on the water spray device to spray water. The fan and water spray device are turned off until the temperature in the drum is no greater than the first preset temperature.
[0036] S104: Acquire the water level in the drum of the laundry device in real time, and when the water level in the drum is not greater than a preset water level, open the drum door of the laundry device.
[0037] The preset water level is predetermined based on domain big data and is used to determine whether the drum door can be opened. Specifically, a water level detector is installed at the preset water level in the laundry drum. The laundry device can use this water level detector to determine in real time whether the water level in the drum is greater than the preset water level. When the water level in the drum is greater than the preset water level, it indicates that opening the drum door at this time may cause the water in the drum to flow out. Therefore, when the water level in the drum is greater than the preset water level, the laundry device can open the drainage device and drain the water through the drainage device until the laundry device determines that the water level in the drum is no greater than the preset water level, at which point the drum door of the laundry device can be opened.
[0038] In this solution, the washing machine may activate the water sprayer while cooling the inner drum, causing the water level in the drum to fluctuate. Therefore, after confirming that the inner drum temperature is no greater than a first preset temperature, the washing machine will then obtain the water level in the drum in real time to determine whether the water level is no greater than the preset level. This avoids the need for repeated measurements of the water level in the drum, improving the operating efficiency of the washing machine.
[0039] In the solution of this embodiment, a door-opening command sent by a user is received, and in response to the door-opening command, the laundry appliance is adjusted from an operating state to a paused state; the temperature inside the drum of the laundry appliance is obtained in real time, and when the temperature inside the drum is greater than a first preset temperature, a target cooling mode is determined based on the temperature inside the drum; the laundry appliance is cooled in accordance with the target cooling mode until the temperature inside the drum is no greater than the first preset temperature; the water level inside the drum of the laundry appliance is obtained in real time, and when the water level inside the drum is no greater than the preset water level, the drum door of the laundry appliance is opened. The technical solution of this embodiment can, when the user needs to open the drum door, adopt an appropriate cooling mode in real time based on the temperature inside the drum of the laundry appliance to cool the drum, so that the temperature inside the drum reaches a temperature at which the drum door can be opened, thereby avoiding resource waste or slow cooling, improving the cooling efficiency of the laundry appliance, and further satisfying the user experience.
[0040] Figure 2 This is a second flow chart of the laundry equipment control method provided by this application. The specific method can be as follows: Figure 2 As shown, the method may include the following steps:
[0041] S201. Receive a door opening instruction sent by a user, and in response to the door opening instruction, adjust the laundry device from a running state to a pause state.
[0042] S202: Acquire the temperature of the drum of the laundry device in real time. When the temperature of the drum is greater than a first preset temperature, determine a recommended mode corresponding to the temperature of the drum based on various pre-determined recommended modes.
[0043] Specifically, when the temperature inside the drum is greater than the first preset temperature, it indicates that the temperature inside the drum is too high and the drum door cannot be opened for the user. In this solution, different drum temperatures correspond to different cooling modes. Based on the predetermined recommended modes, determining the recommended mode corresponding to the drum temperature includes the following steps A1 to A3:
[0044] Step A1: When the temperature inside the drum is greater than the first preset temperature and less than or equal to the second preset temperature, the recommended mode is determined to be the first recommended mode. The first recommended mode is: controlling the inner drum to rotate at a preset speed and controlling the fan to change air at the first air change gear.
[0045] The second preset temperature is greater than the first preset temperature. When the temperature inside the drum is greater than the first preset temperature and less than or equal to the second preset temperature, it indicates that the temperature inside the drum is slightly higher than the first preset temperature. At this time, simply controlling the inner drum to rotate at a preset speed and adjusting the fan to a lower gear to exchange air inside the drum can quickly reduce the temperature inside the drum to less than or equal to the second preset temperature.
[0046] For example, the first preset temperature is 45 degrees Celsius and the second preset temperature is 60 degrees Celsius. The laundry appliance detects that the current temperature in the drum is 55 degrees Celsius. The laundry appliance determines that the temperature in the drum is greater than the first preset temperature and less than or equal to the second preset temperature, i.e., the temperature in the drum is slightly higher than the first preset temperature. Furthermore, the inner drum is controlled to rotate at a constant speed of a, and the fan is adjusted to level 1, enabling the air exchange function to exchange air in the drum.
[0047] Step A2: When the temperature inside the drum is greater than the second preset temperature and less than or equal to the third preset temperature, the recommended mode is determined to be the second recommended mode. The second recommended mode is: controlling the inner drum to rotate at a preset speed and controlling the fan to change air at the second air change gear.
[0048] The third preset temperature is greater than the second preset temperature, and the wind speed corresponding to the second air change gear is greater than the wind speed corresponding to the first air change gear. When the temperature inside the drum is greater than the second preset temperature and less than or equal to the third preset temperature, it indicates that the temperature inside the drum is high and a more aggressive cooling mode is required. In this case, the inner drum is controlled to rotate at a preset speed and the fan is controlled to change air at the second air change gear to reduce the temperature inside the drum to less than or equal to the third preset temperature.
[0049] For example, the second preset temperature is 60 degrees Celsius and the third preset temperature is 80 degrees Celsius. The laundry appliance detects that the current temperature inside the drum is 70 degrees Celsius. The laundry appliance determines that the temperature inside the drum is greater than the second preset temperature and less than or equal to the third preset temperature, indicating that the temperature inside the drum is high and needs to be cooled as soon as possible. Furthermore, the inner drum is controlled to rotate at a constant speed of a and the fan is adjusted to gear 2, so that the fan outputs a higher wind speed to exchange air inside the drum.
[0050] Step A3: When the temperature inside the drum is greater than the third preset temperature, the recommended mode is determined to be the third recommended mode. The third recommended mode is: controlling the inner drum to rotate at a preset speed, and controlling the fan to change the air according to the second air change gear, and adjusting the water spray device from the closed state to the open state.
[0051] Among them, the water spray device can be set on the top or side of the washing drum to ensure that the water flow can evenly cover the surface of the clothes. The water spray device of this solution includes multiple nozzles, so that the water flow covers the entire surface of the clothes in the form of jet or spray, ensuring that every area can be cleaned and cooled. When the temperature inside the drum is greater than the third preset temperature, it means that the temperature inside the drum is very high and it is necessary to fully cool the clothes in the drum. At this time, it is necessary to control the inner drum to rotate at a preset speed, and at the same time control the fan to change the air according to the second air change gear, and at the same time adjust the water spray device from the closed state to the open state.
[0052] For example, the third preset temperature is 80 degrees Celsius. The laundry appliance detects that the current temperature inside the drum is 90 degrees Celsius. The laundry appliance determines that the temperature inside the drum is greater than the third preset temperature. Furthermore, the inner drum is controlled to rotate at a constant speed of a, the fan is adjusted to gear 2, the air exchange function is activated to exchange air inside the drum, and the water spray device is turned on so that water sprays or sprays over the entire surface of the clothes, accelerating the cooling of the inner drum.
[0053] In this embodiment, the water spray device can include multiple water spray gears. When the temperature in the drum is greater than a third preset temperature, the laundry appliance can adaptively adjust the water spray device gear according to the temperature in the drum. For example, when the temperature in the drum is above 80 degrees Celsius but below 90 degrees Celsius, the laundry appliance can adjust the water spray device to the lower gear 1. When the temperature in the drum exceeds 90 degrees Celsius, the water spray device can be adjusted to the higher gear 2.
[0054] In the above steps, the laundry machine can accurately determine the appropriate cooling mode according to different drum temperatures, laying the foundation for subsequently improving the drum cooling efficiency.
[0055] S203: Display the recommended mode and the predetermined normal mode corresponding to the temperature in the drum to the user, receive the cooling mode selected by the user, and determine the target cooling mode based on the cooling mode selected by the user.
[0056] Among them, the normal mode is the basic cooling mode set when the laundry appliance is manufactured. The normal mode generally involves natural cooling or cooling by shaking the inner drum. In an optional embodiment, after determining the recommended mode, the laundry appliance can display the recommended mode and the normal mode to the user through a display screen or voice announcer. If the user does not accept the recommended mode recommended by the laundry appliance, he or she can directly select the normal mode. For example, the user can select the recommended mode or the normal mode by clicking the mode selection button on the laundry appliance or through voice interaction. Furthermore, the cooling mode selected by the user is determined as the target cooling mode.
[0057] S204: Display the parameters of each component corresponding to the target cooling mode to the user.
[0058] The target cooling mode is either the recommended mode or the normal mode. Parameters for the normal mode include the inner drum vibration duration. The recommended modes include the first, second, and third recommended modes. When the target cooling mode is the first or second recommended mode, component parameters include the inner drum speed and fan position. When the target cooling mode is the third recommended mode, component parameters include the inner drum speed, fan position, and water spray status.
[0059] In an optional embodiment, after the laundry appliance determines the target cooling mode, it displays the parameters of each component of the target cooling mode to the user. The user can modify the parameters of the component of the target cooling mode according to their own needs.
[0060] For example, the current drum temperature is 75 degrees Celsius. Based on this temperature, the laundry appliance recommends the second recommended mode. The appliance displays the second recommended mode and the normal mode to the user. After the user selects the second recommended mode, the appliance displays the following parameters: "Drum speed: a, Fan level: 2." However, the user simply wants to cool the drum faster. The user can modify the displayed parameters for the various components of the laundry appliance, for example, to: "Drum speed: a, Fan level: 2, Water spray: On." For example, based on the drum temperature, the laundry appliance recommends the third recommended mode. The user accepts this mode. However, because the fan at level 2 may be noisy, the user can choose to turn it off. This modifies the target recommended mode to "Drum speed: a, Fan: Off, Water spray: On."
[0061] S205: If a modification instruction sent by the user is received within a preset time period, the target cooling mode is updated based on the modification instruction.
[0062] Specifically, after the laundry appliance displays the parameters of the various components in the target cooling mode to the user, if the user needs to modify them, they can send a modification instruction to the laundry appliance within a preset time period via the display screen, modification button, or voice interaction. After receiving the modification instruction sent by the user, the laundry appliance updates the component parameters in the target cooling mode based on the various component parameters in the modification instruction. If the laundry appliance does not receive the modification instruction sent by the user for an extended period (exceeding the preset time period), it assumes that the user does not need to modify the target cooling mode. Furthermore, the laundry appliance cools the drum according to the target cooling mode until the drum temperature is no greater than the first preset temperature.
[0063] S206: Cooling the drum of the laundry device according to the target cooling mode until the temperature inside the drum is no greater than a first preset temperature.
[0064] S207: Acquire the water level in the drum of the laundry device in real time, and when the water level in the drum is not greater than a preset water level, open the drum door of the laundry device.
[0065] In this embodiment, a door-opening command from a user is received and, in response to the door-opening command, the laundry appliance is switched from an operating state to a paused state. The temperature inside the laundry drum is obtained in real time. When the temperature inside the drum is greater than a first preset temperature, a recommended mode corresponding to the drum temperature is determined based on predetermined recommended modes. The recommended mode corresponding to the drum temperature and a predetermined normal mode are displayed to the user, and a cooling mode selected by the user is received. Component parameters corresponding to the target cooling mode are displayed to the user. If a modification command from the user is received within a preset time period, the target cooling mode is updated based on the modification command. The laundry appliance cools the drum according to the target cooling mode until the drum temperature is no greater than the first preset temperature. The water level inside the laundry drum is obtained in real time. When the water level is no greater than the preset level, the door of the laundry appliance is opened. The technical solution of this embodiment allows the laundry appliance to cool the drum according to the drum temperature in real time, so that the drum temperature reaches a temperature sufficient to open the door. This avoids wasting resources or slow cooling, and improves the cooling efficiency of the laundry appliance. When users have different needs, they can modify the cooling mode according to their own needs to obtain a cooling mode that meets their needs and improve the user experience.
[0066] Figure 3 This is a schematic diagram of the structure of the laundry equipment control device provided in this application, which is suitable for executing the laundry equipment control method provided in this application. Figure 3 As shown, the device may specifically include:
[0067] The state adjustment module 301 is configured to receive a door opening instruction sent by a user and adjust the laundry device from a running state to a pause state in response to the door opening instruction;
[0068] A mode determination module 302 is configured to obtain the temperature of the drum of the laundry device in real time, and when the temperature of the drum is greater than a first preset temperature, determine a target cooling mode based on the temperature of the drum;
[0069] a drum cooling module 303 for cooling the drum of the laundry device according to the target cooling mode until the drum temperature is no greater than the first preset temperature;
[0070] The drum door opening module 304 is used to obtain the water level in the drum of the laundry device in real time, and open the drum door of the laundry device when the water level in the drum is not greater than a preset water level.
[0071] Optionally, the mode determination module 302 is specifically configured to: determine a recommended mode corresponding to the barrel temperature based on predetermined recommended modes;
[0072] presenting a recommended mode and a predetermined normal mode corresponding to the temperature in the drum to the user, and receiving a cooling mode selected by the user;
[0073] The target cooling mode is determined based on the cooling mode selected by the user.
[0074] Optionally, the mode determination module 302 is further configured to: determine that the recommended mode is the first recommended mode when the temperature in the drum is greater than the first preset temperature and less than or equal to a second preset temperature; and the second preset temperature is greater than the first preset temperature;
[0075] When the temperature in the drum is greater than the second preset temperature and less than or equal to the third preset temperature, determining that the recommended mode is the second recommended mode; the third preset temperature is greater than the second preset temperature;
[0076] When the temperature in the barrel is greater than the third preset temperature, the recommended mode is determined to be the third recommended mode.
[0077] Optionally, the mode determination module 302 is also used to: when the temperature inside the drum is greater than the first preset temperature and less than or equal to the second preset temperature, determine that the recommended mode is the first recommended mode: control the inner drum to rotate at a preset speed, and at the same time control the fan to change the air according to the first air change gear.
[0078] Optionally, the mode determination module 302 is also used to: when the temperature inside the drum is greater than the second preset temperature and less than or equal to the third preset temperature, determine that the recommended mode is the second recommended mode: control the inner drum to rotate at a preset speed, and at the same time control the fan to change the air according to the second air change gear; the wind force corresponding to the second air change gear is greater than the wind force corresponding to the first air change gear.
[0079] Optionally, the mode determination module 302 is also used to: when the temperature inside the barrel is greater than the third preset temperature, determine that the recommended mode is the third recommended mode: control the inner barrel to rotate at a preset speed, and at the same time control the fan to change the air according to the second air change gear, and at the same time adjust the water spray device from the closed state to the open state.
[0080] Optionally, the mode determination module 302 is further configured to: display parameters of each component corresponding to the target cooling mode to the user;
[0081] If a modification instruction sent by the user is received within a preset time period, the target cooling mode is updated based on the modification instruction.
[0082] The state control device for laundry appliances provided in this application can execute the laundry appliance control method provided in any embodiment of this application, and has the corresponding functional modules and beneficial effects of the execution method. For details not fully described in this embodiment, please refer to the description of any method embodiment of this application.
[0083] Figure 4 This is a schematic diagram of the structure of the electronic device provided in this application. Figure 4 The structure of an electronic device 10 that can be used to implement an embodiment of the present application is shown. The electronic device is intended to represent various forms of digital computers, such as laptop computers, desktop computers, workstations, personal digital assistants, servers, blade servers, mainframe computers, and other suitable computers. The electronic device can also represent various forms of mobile devices, such as personal digital processing, cellular phones, smart phones, wearable devices (such as helmets, glasses, watches, etc.) and other similar computing devices. The components shown herein, their connections and relationships, and their functions are merely examples and are not intended to limit the implementation of the present application described and / or required herein.
[0084] like Figure 4 As shown, the electronic device 10 includes at least one processor 11 and a memory, such as a read-only memory (ROM) 12, a random access memory (RAM) 13, etc., which is communicatively connected to the at least one processor 11. The memory stores a computer program that can be executed by the at least one processor. The processor 11 can perform various appropriate actions and processes according to the computer program stored in the read-only memory (ROM) 12 or the computer program loaded from the storage unit 18 into the random access memory (RAM) 13. Various programs and data required for the operation of the electronic device 10 can also be stored in the RAM 13. The processor 11, ROM 12, and RAM 13 are connected to each other via a bus 14. An input / output (I / O) interface 15 is also connected to the bus 14.
[0085] Multiple components in the electronic device 10 are connected to the I / O interface 15, including an input unit 16, such as a keyboard, a mouse, etc.; an output unit 17, such as various types of displays, speakers, etc.; a storage unit 18, such as a magnetic disk, an optical disk, etc.; and a communication unit 19, such as a network card, a modem, a wireless communication transceiver, etc. The communication unit 19 allows the electronic device 10 to exchange information / data with other devices via a computer network such as the Internet and / or various telecommunication networks.
[0086] The processor 11 can be any general-purpose and / or specialized processing component with processing and computing capabilities. Some examples of the processor 11 include, but are not limited to, a central processing unit (CPU), a graphics processing unit (GPU), various specialized artificial intelligence (AI) computing chips, various processors that run machine learning model algorithms, a digital signal processor (DSP), and any suitable processor, controller, microcontroller, etc. The processor 11 executes the various methods and processes described above, such as the laundry appliance control method.
[0087] In some embodiments, the laundry appliance control method can be implemented as a computer program tangibly embodied in a computer-readable storage medium, such as storage unit 18. In some embodiments, part or all of the computer program can be loaded and / or installed on electronic device 10 via ROM 12 and / or communication unit 19. When the computer program is loaded into RAM 13 and executed by processor 11, one or more steps of the laundry appliance control method described above can be performed. Alternatively, in other embodiments, processor 11 can be configured to execute the laundry appliance control method in any other suitable manner (e.g., via firmware).
[0088] Various embodiments of the systems and techniques described herein can be implemented in digital electronic circuit systems, integrated circuit systems, field programmable gate arrays (FPGAs), application specific integrated circuits (ASICs), application specific standard products (ASSPs), system-on-chip systems (SOCs), programmable logic devices (CPLDs), computer hardware, firmware, software, and / or combinations thereof. These various embodiments can include being implemented in one or more computer programs that are executable and / or interpreted on a programmable system that includes at least one programmable processor, which can be a special purpose or general purpose programmable processor that can receive data and instructions from a storage system, at least one input device, and at least one output device, and transmit data and instructions to the storage system, the at least one input device, and the at least one output device.
[0089] Computer programs for implementing the methods of the present application may be written in any combination of one or more programming languages. These computer programs may be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing device, such that when the computer program is executed by the processor, the functions / operations specified in the flowcharts and / or block diagrams are implemented. The computer program may be executed entirely on the machine, partially on the machine, as a stand-alone software package, partially on the machine and partially on a remote machine, or entirely on a remote machine or server.
[0090] In the context of the present application, a computer-readable storage medium can be a tangible medium that can contain or store a computer program for use by an instruction execution system, device or equipment or used in combination with an instruction execution system, device or equipment. A computer-readable storage medium can include, but is not limited to, electronic, magnetic, optical, electromagnetic, infrared or semiconductor systems, devices or equipment, or any suitable combination of the foregoing. Alternatively, a computer-readable storage medium can be a machine-readable signal medium. A more specific example of a machine-readable storage medium can include an electrical connection based on one or more lines, 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 foregoing.
[0091] To provide interaction with a user, the systems and techniques described herein can be implemented on an electronic device having: a display device (e.g., a CRT (cathode ray tube) or LCD (liquid crystal display) monitor) for displaying information to the user; and a keyboard and pointing device (e.g., a mouse or trackball) through which the user can provide input to the electronic device. Other types of devices can also be used to provide interaction with the user; for example, the feedback provided to the user can be any form of sensory feedback (e.g., visual feedback, auditory feedback, or tactile feedback); and input from the user can be received in any form (including acoustic input, voice input, or tactile input).
[0092] The systems and techniques described herein can be implemented in a computing system that includes back-end components (e.g., as a data server), or a computing system that includes middleware components (e.g., an application server), or a computing system that includes front-end components (e.g., a user computer with a graphical user interface or web browser through which a user can interact with implementations of the systems and techniques described herein), or a computing system that includes any combination of such back-end components, middleware components, or front-end components. The components of the system can be interconnected by any form or medium of digital data communication (e.g., a communication network). Examples of communication networks include: a local area network (LAN), a wide area network (WAN), a blockchain network, and the Internet.
[0093] A computing system may include clients and servers. The clients and servers are typically remote from each other and typically interact via a communication network. This client-server relationship arises through computer programs running on the respective computers, creating a client-server relationship. The server may be a cloud server, also known as a cloud computing server or cloud host. This server is a hosting product within the cloud computing service ecosystem that addresses the management difficulties and limited scalability of traditional physical hosting and VPS services.
[0094] It should be understood that the various forms of the processes shown above can be used to reorder, add, or delete steps. For example, the steps described in this application can be performed in parallel, sequentially, or in a different order, as long as the desired results of the technical solution of this application can be achieved. This is not limited herein.
[0095] The above specific embodiments do not constitute a limitation on the scope of protection of this application. Those skilled in the art will appreciate that various modifications, combinations, sub-combinations, and substitutions may be made based on design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application shall be included within the scope of protection of this application.
[0096] Note that the above are only preferred embodiments of the present application and the technical principles employed. Those skilled in the art will understand that the present application is not limited to the specific embodiments herein, and that various obvious changes, readjustments, and substitutions can be made by those skilled in the art without departing from the scope of protection of the present application. Therefore, although the present application has been described in more detail through the above embodiments, the present application is not limited to the above embodiments and may include many other equivalent embodiments without departing from the scope of the present application. The scope of the present application is determined by the scope of the appended claims.
Claims
1. A laundry equipment control method, characterized in that: The method comprises: receiving a door opening instruction sent by a user, and adjusting the laundry device from a running state to a pause state in response to the door opening instruction; acquiring the temperature of the drum of the laundry device in real time, and when the temperature of the drum is greater than a first preset temperature, determining a target cooling mode based on the temperature of the drum; Cooling the drum of the laundry appliance according to the target cooling mode until the temperature in the drum is no greater than the first preset temperature; The water level in the drum of the laundry device is obtained in real time, and when the water level in the drum is not greater than a preset water level, the drum door of the laundry device is opened.
2. The method according to claim 1, characterized in that Determining a target cooling mode based on the temperature in the cylinder includes: Determining a recommended mode corresponding to the temperature in the barrel based on each predetermined recommended mode; presenting a recommended mode and a predetermined normal mode corresponding to the temperature in the drum to the user, and receiving a cooling mode selected by the user; The target cooling mode is determined based on the cooling mode selected by the user.
3. The method according to claim 2, characterized in that Determining a recommended mode corresponding to the temperature in the barrel based on each predetermined recommended mode includes: When the temperature in the drum is greater than the first preset temperature and less than or equal to the second preset temperature, determining that the recommended mode is the first recommended mode; the second preset temperature is greater than the first preset temperature; When the temperature in the drum is greater than the second preset temperature and less than or equal to the third preset temperature, determining that the recommended mode is the second recommended mode; the third preset temperature is greater than the second preset temperature; When the temperature in the barrel is greater than the third preset temperature, the recommended mode is determined to be the third recommended mode.
4. The method according to claim 3, characterized in that When the temperature in the drum is greater than the first preset temperature and less than or equal to the second preset temperature, determining the recommended mode to be the first recommended mode; comprising: When the temperature inside the drum is greater than the first preset temperature and less than or equal to the second preset temperature, the recommended mode is determined to be the first recommended mode: controlling the inner drum to rotate at a preset speed and controlling the fan to perform air exchange at the first air exchange gear.
5. The method according to claim 3, characterized in that When the temperature in the drum is greater than the second preset temperature and less than or equal to the third preset temperature, determining the recommended mode as the second recommended mode includes: When the temperature inside the drum is greater than the second preset temperature and less than or equal to the third preset temperature, the recommended mode is determined to be the second recommended mode: controlling the inner drum to rotate at a preset speed, and at the same time controlling the fan to change the air according to the second air change gear; the wind force corresponding to the second air change gear is greater than the wind force corresponding to the first air change gear.
6. The method according to claim 3, characterized in that When the temperature in the drum is greater than the third preset temperature, determining that the recommended mode is the third recommended mode includes: When the temperature inside the drum is greater than the third preset temperature, the recommended mode is determined to be the third recommended mode: controlling the inner drum to rotate at a preset speed, controlling the fan to change the air at the second air change gear, and adjusting the water spray device from the closed state to the open state.
7. The method according to claim 2, characterized in that The method further comprises: Displaying the parameters of each component corresponding to the target cooling mode to the user; If a modification instruction sent by the user is received within a preset time period, the target cooling mode is updated based on the modification instruction.
8. A laundry equipment control device, characterized in that: The device comprises: a state adjustment module, configured to receive a door opening instruction sent by a user, and adjust the laundry device from a running state to a pause state in response to the door opening instruction; a mode determination module, configured to obtain the temperature in the drum of the laundry device in real time, and determine a target cooling mode based on the temperature in the drum when the temperature in the drum is greater than a first preset temperature; a drum cooling module, configured to cool the drum of the laundry device according to the target cooling mode until the drum temperature is no greater than the first preset temperature; The drum door opening module is used to obtain the water level in the drum of the laundry device in real time, and open the drum door of the laundry device when the water level in the drum is not greater than a preset water level.
9. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the laundry device control method according to any one of claims 1 to 7 is implemented.
10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the laundry appliance control method according to any one of claims 1 to 7 is implemented.