Linkage control method, device and control terminal applied to dish washer and range hood
By using a control terminal to achieve coordinated control of the dishwasher and range hood, the problem of stale kitchen air after the user leaves is solved, ensuring improved kitchen air quality and enhanced user experience.
Patent Information
- Application Number
- CN202510360291.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-03-25
AI Technical Summary
When users leave, kitchen appliances cannot automatically achieve effective ventilation, resulting in stale air in the kitchen and affecting the user experience.
The dishwasher and range hood are linked and controlled by a control terminal. After the range hood completes its ventilation, the dishwasher automatically performs its own ventilation operation to ensure improved air quality in the kitchen.
It improves the ventilation effect of the dishwasher, ensures kitchen air quality, and enhances the user experience.
Smart Images

Figure CN119949717B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of electric appliance control, and in particular to a linkage control method and device applied to dishwashers and range hoods and a control terminal. BACKGROUND
[0002] With the improvement of technology, more and more kitchen appliances are applied to kitchens. The kitchen appliances can include dishwashers, range hoods, etc.
[0003] At present, a user can directly operate a kitchen appliance or use a control device connected to the kitchen appliance through a network to control the kitchen appliance.
[0004] However, when the user leaves, how to control the kitchen appliance becomes a problem to be solved. SUMMARY
[0005] Embodiments of the present application provide a linkage control method and device applied to dishwashers and range hoods and a control terminal to improve the linkage ventilation of dishwashers and range hoods and reduce kitchen odors.
[0006] In a first aspect, embodiments of the present application provide a linkage control method applied to dishwashers and range hoods, applied to a control terminal, the control terminal being in communication connection with the dishwashers and the range hoods, and the linkage control method comprising:
[0007] If the range hoods and the dishwashers already bound in the control terminal all meet linkage conditions, a button of a smoke-washing mode is set to a visible and operable state in a display interface of the control terminal.
[0008] In response to a linkage instruction generated when the button of the smoke-washing mode is triggered, the range hoods and the dishwashers are controlled to enter a linkage state, and in the linkage state, the dishwashers perform dishwasher ventilation when the range hoods complete range hood ventilation.
[0009] In a second aspect, embodiments of the present application provide a linkage control device applied to dishwashers and range hoods, applied to a control terminal, the control terminal being in communication connection with the dishwashers and the range hoods, and the linkage control device comprising:
[0010] A display module is configured to set a button of a smoke-washing mode to a visible and operable state in a display interface of the control terminal if the range hoods and the dishwashers already bound in the control terminal all meet linkage conditions.
[0011] A linkage module is configured to control the range hoods and the dishwashers to enter a linkage state in response to a linkage instruction generated when the button of the smoke-washing mode is triggered, and in the linkage state, the dishwashers perform dishwasher ventilation when the range hoods complete range hood ventilation.
[0012] In a third aspect, an embodiment of the present application provides a control terminal, comprising: a memory, a processor;
[0013] In a fourth aspect, an embodiment of the present application provides a computer readable storage medium, characterized in that the computer readable storage medium has computer-executable instructions stored therein, and the computer-executable instructions, when executed by a processor, implement the first aspect and / or various possible implementation manners of the first aspect.
[0014] In a fourth aspect, an embodiment of the present application provides a computer readable storage medium, characterized in that the computer readable storage medium has computer-executable instructions stored therein, and the computer-executable instructions, when executed by a processor, implement the first aspect and / or various possible implementation manners of the first aspect.
[0015] In a fifth aspect, an embodiment of the present application provides a computer program product, comprising a computer program, which, when executed by a processor, implements the first aspect and / or various possible implementation manners of the first aspect.
[0016] The linkage control method, device and control terminal applied to the dishwasher and the range hood provided by the embodiments of the present application can improve the air exchange effect, ensure the air quality when the dishwasher exchanges air, improve the air exchange effect of the dishwasher, and improve the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0017] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0018] Figure 1 The flowchart of the linkage control method applied to the dishwasher and the range hood provided by the present application Figure One
[0019] Figure 2 The example of the linkage control method applied to the dishwasher and the range hood provided by the present application Figure One
[0020] Figure 3 The example of the linkage control method applied to the dishwasher and the range hood provided by the present application Figure Two
[0021] Figure 4 Flowchart of the linkage control method for dishwashers and range hoods provided in this application Figure Two ;
[0022] Figure 5 An example illustration of the linkage control method for dishwashers and range hoods provided in this application. Figure Three ;
[0023] Figure 6 An example illustration of the linkage control method for dishwashers and range hoods provided in this application. Figure Four ;
[0024] Figure 7 A schematic diagram of the linkage control device for dishwashers and range hoods provided in this application;
[0025] Figure 8 A schematic diagram of the control terminal provided in this application.
[0026] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0027] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0028] With advancements in technology, dishwashers are becoming increasingly versatile and intelligent in their operation. Dishwashers with automatic door opening and closing functions can periodically open the door for ventilation, preventing odors. However, when users are away from home for extended periods, closed kitchen doors and windows can lead to a stale kitchen environment, making it impossible for the dishwasher to provide ventilation and negatively impacting the user experience.
[0029] To address this scenario, this application proposes a linkage control method for dishwashers and range hoods. This application can link the range hood and dishwasher, allowing the dishwasher to perform its own ventilation operation after the range hood completes its ventilation process. This ensures that the dishwasher can open its door for ventilation only after the kitchen environment has been improved, guaranteeing the effectiveness of ventilation and preventing odors. Specifically, the linkage between the dishwasher and range hood in this application can be achieved through a control terminal. This control terminal can be equipped with an application program. This application program can be bound to both the dishwasher and the range hood, enabling their linked control.
[0030] The technical solutions of the present application and how the technical solutions solve the above technical problems will be described in detail below with specific examples. The following specific examples can be combined with each other, and the same or similar concepts or processes can not be described again in some examples. The embodiments of the present application will be described below with reference to the accompanying drawings.
[0031] Figure 1 Flowchart of the linkage control method applied to dishwashers and range hoods provided by the present application Figure One As shown in Figure 1 , the method comprises:
[0032] S101, if the range hood and the dishwasher that have been bound in the control terminal both meet the linkage condition, set the button of the smoke-wash mode to a visible and operable state in the display interface of the control terminal.
[0033] In this embodiment, the range hood and the dishwasher that have been bound in the control terminal can be acquired first. The control terminal can determine whether the range hood and the dishwasher that have been bound both meet the preset linkage condition. If yes, the control terminal can set the button of the smoke-wash mode to a visible and operable state in the display interface. Otherwise, if no, the control terminal can set the button of the smoke-wash mode to an invisible state, or an inoperable state in the display interface. This setting can enable the user to see and operate the button of the smoke-wash mode, and realize the linkage of the range hood and the dishwasher by clicking or touching the button of the smoke-wash mode.
[0034] In an example, the specific process in which the control terminal determines whether the range hood and the dishwasher that have been bound both meet the linkage condition can comprise:
[0035] Step 1, send a control right acquisition request to the range hood and the dishwasher that have been bound in the control terminal, and acquire feedback information. The feedback information indicates that the control right acquisition is successful, or the control right acquisition fails.
[0036] In this embodiment, the control terminal can send a control right acquisition request to the range hood and the dishwasher that have been bound to determine whether these range hoods or dishwashers can be controlled by the control terminal. The control terminal can acquire the feedback information returned by each range hood or dishwasher. The feedback information is used to indicate whether the control right acquisition is successful. If the feedback information shows that the control right acquisition is successful, it means that the control terminal can control the range hood or the dishwasher. Otherwise, if the feedback information shows that the control right acquisition fails, it means that the control terminal cannot control the range hood or the dishwasher.
[0037] Step 2, if there is at least one feedback information of the dish washer indicating that the control right is acquired successfully, and there is at least one feedback information of the range hood indicating that the control right is acquired successfully, and the holiday mode of the range hood is in the open state, then the range hood and the dish washer which have been bound in the control terminal satisfy the linkage condition. The holiday mode indicates that the user is expected to not actively use the range hood in the subsequent period of time.
[0038] In this embodiment, the control terminal determines whether there is at least one dish washer and at least one range hood from the devices whose feedback information indicates that the control right is acquired successfully. If there is at least one dish washer and at least one range hood, it indicates that there are range hoods and dish washers which can be matched in the control terminal. At this time, it can be determined that the range hood and the dish washer which have been bound in the control terminal satisfy the linkage condition.
[0039] In an example, the process in which the control terminal determines whether the range hood and the dish washer which have been bound satisfy the linkage condition can further include:
[0040] Step 3, if the holiday mode exists in the range hood and the holiday mode is in the open state, it is determined that the range hood satisfies the linkage condition. The holiday mode indicates that the user is expected to not actively use the range hood in the subsequent period of time.
[0041] In this embodiment, the holiday mode is used to indicate that the user is expected to not actively use the range hood in the subsequent period of time, and during the period in which the user does not actively use the range hood, the range hood can perform the air exchange operation of the range hood air exchange according to the preset air exchange condition. The control terminal first checks whether the range hood has the function of the holiday mode. If the range hood has the function of the holiday mode, the control terminal can further determine whether the holiday mode of the range hood is in the open state. In the open state of the holiday mode, the control program built in the range hood can control the range hood to perform the air exchange operation of the range hood air exchange according to the preset air exchange condition. Otherwise, if the range hood does not have the holiday mode, or the holiday mode is not in the open state, the range hood can not be able to automatically start the air exchange operation of the range hood air exchange. Therefore, the determination of the open state of the holiday mode is helpful for the control terminal to select the range hood which can automatically perform the range hood air exchange to match with the dish washer.
[0042] In an example, the way of controlling the range hood to open the holiday mode can include any one of the following:
[0043] First, if the range hood has the holiday mode, and the time difference between the last use time of the range hood and the current time is greater than a first threshold, the range hood is controlled to open the holiday mode.
[0044] In this embodiment, if the time difference between the last use time of the range hood and the current time exceeds the preset first threshold, the control terminal can automatically control the range hood to enter the holiday mode. This automated judgment and operation mechanism ensures that the range hood can be automatically controlled according to the scene in the case of long-term non-use by the user, further guarantees the ventilation demand of the kitchen, and improves the user experience.
[0045] Secondly, if the range hood has a holiday mode, the range hood is started in the holiday mode in response to a control instruction of starting the holiday mode by the user.
[0046] In this embodiment, the control terminal can also start the holiday mode in response to a control instruction of starting the holiday mode by the user. When the user sends an instruction to start the holiday mode through the control terminal or other interfaces, the control terminal will immediately control the range hood to enter the holiday mode. This user-driven operation mode provides flexibility for users, allowing them to manually adjust the operating state of the equipment according to their personal plans and needs.
[0047] In an implementation manner, as shown in Figure 2 The specific process of matching the range hood and the dishwasher by the control terminal can include:
[0048] The control terminal first acquires the model information of the bound devices to determine whether the currently connected devices include the dishwasher and the range hood. Further, the control terminal can detect whether these dishwashers and range hoods support linkage to ensure that coordinated operation can be achieved. After confirming the support of linkage, the control terminal attempts to acquire the control right of these devices for further operation management. For the range hood device, the control terminal also checks whether it has a holiday mode. The existence of this holiday mode can automatically manage the kitchen air when the range hood is not used for a long time by the user. If the control terminal determines that there are dishwashers and range hoods that support linkage and can acquire the control right, and that there is a holiday mode in the range hood, the control terminal can set the "smoke-washing mode" button to be visible on the user interface. In the visible state, the "smoke-washing mode" button can be operated. Otherwise, the control terminal can set the "smoke-washing mode" button to be invisible on the user interface, or not operable to avoid user triggering. This setting can intelligently manage and coordinate the operation of the dishwasher and the range hood by the control terminal, realize the linkage of the range hood and the dishwasher, and optimize the user experience and equipment efficiency.
[0049] S102, in response to the linkage instruction generated when the smoke-washing mode button is triggered, the range hood and the dishwasher enter a linkage state. In the linkage state, the dishwasher performs dishwasher ventilation when the range hood completes range hood ventilation.
[0050] In this embodiment, when the user triggers the button of the "smoke washing mode", the control terminal generates a linkage instruction to indicate the hood and the dishwasher to enter the linkage state. In this linkage state, the dishwasher will automatically perform the dishwasher air exchange after the hood completes the hood air exchange. The setting of this air exchange sequence can ensure that the dishwasher can perform air exchange in the case of good air quality in the kitchen, thereby ensuring the air exchange effect of the dishwasher.
[0051] In an example, when the control terminal includes multiple dishwashers or multiple hoods, the control terminal can enter a selection interface when the user triggers the button of the "smoke washing mode". In this selection interface, the user can sequentially select the dishwasher and the hood.
[0052] Optionally, in this selection interface, the hood selection interface can be displayed first, and after the user completes the hood selection, the dishwasher selection page is jumped to. Optionally, after the user completes the hood selection, the dishwasher selection page jumped to can include dishwashers having an associated relationship with the hood. For example, when multiple hoods set in different rooms are included, the dishwasher selection page can display dishwashers existing in the same room as the hood.
[0053] Alternatively, in the selection interface, the dishwasher selection page can be displayed first, and after the user completes the dishwasher selection, the hood selection page is jumped to. Optionally, after the user completes the dishwasher selection, the hood selection page jumped to can include dishwashers having an associated relationship with the dishwasher. For example, when multiple dishwashers set in different rooms are included, the hood selection page can display dishwashers existing in the same room as the dishwasher.
[0054] Alternatively, in the selection interface, the dishwasher and the hood to be selected can be displayed at the same time for the user to select.
[0055] In an example, in the linkage state, the air exchange process of the dishwasher and the hood can include:
[0056] Step 1, monitor the first running state of the dishwasher and the second running state of the hood linked with the dishwasher.
[0057] In this embodiment, the control terminal can continuously monitor the first running state of the dishwasher and the second running state of the hood linked with the dishwasher. Optionally, the first running state is the running state of the dishwasher, which is used to indicate whether the dishwasher is currently working. The second running state is the running state of the hood, which is used to reflect the current operation of the hood. In particular, the second running state can be used to indicate the progress of the hood air exchange process.
[0058] Step 2, when the second running state of the range hood indicates that the range hood ends the range hood air exchange and the first running state of the dishwasher is not working, the dishwasher is controlled to perform the dishwasher air exchange.
[0059] In this embodiment, the control terminal can first determine whether the range hood ends the range hood air exchange according to the second running state of the range hood which is continuously changing. If the second running state of the range hood indicates that the range hood air exchange process has ended, the control terminal can further determine whether the dishwasher is in the working state according to the first running state which is continuously changing. If the first running state of the dishwasher shows that it is not currently in the working state, the control terminal will automatically control the dishwasher to perform the dishwasher air exchange. Controlling the dishwasher to perform the air exchange after the range hood completes the air exchange can make the dishwasher complete the air exchange in the case that the air quality in the kitchen is good, thereby ensuring the air quality inside the dishwasher.
[0060] In another example, if the first running state of the dishwasher is working when the second running state of the range hood indicates that the range hood ends the range hood air exchange, the method further includes:
[0061] Step 3, when the second running state of the range hood indicates that the range hood ends the range hood air exchange and the first running state of the dishwasher is working, the next air exchange execution time of the range hood is acquired.
[0062] In this embodiment, when the second running state of the range hood indicates that the range hood ends the range hood air exchange and the first running state of the dishwasher is working, the control terminal will not immediately perform the air exchange operation of the dishwasher. The control terminal will acquire the next air exchange execution time of the range hood, so as to make a more reasonable arrangement for the air exchange operation of the dishwasher.
[0063] Step 4, if the time difference between the next air exchange execution time of the range hood and the current time is greater than a second threshold value, the air exchange time of the dishwasher is determined according to the next air exchange execution time and the current time.
[0064] In this embodiment, the control terminal first needs to calculate the time difference between the next air exchange execution time of the range hood and the current time. The control terminal can compare the time difference with the second threshold value. If the time difference is greater than the preset second threshold value, it indicates that the time of the next air exchange is far from the current time, in order to better ensure the air exchange demand of the dishwasher, the air exchange time of the dishwasher can be determined according to the next air exchange execution time and the current time, so that the dishwasher can perform the dishwasher air exchange before the next range hood air exchange, thereby ensuring the air exchange demand of the dishwasher.
[0065] Optionally, if the time difference is less than or equal to the preset second threshold value, it indicates that the time of the next air exchange is short from the current time, and the next range hood air exchange can be directly waited.
[0066] Optionally, the control terminal can take the middle time between the next air exchange execution time and the current time as the air exchange time of the dishwasher. On the one hand, when the dishwasher has just finished work, the air inside the dishwasher is not turbid and does not need to be exchanged. Therefore, by selecting this middle time point, it can be ensured that the dishwasher does not immediately perform air exchange after completing the work, resulting in unnecessary waste. On the other hand, by selecting this middle time point, it can be avoided that the dishwasher performs air exchange again shortly after the air exchange of the range hood, resulting in unnecessary waste. Therefore, by selecting this middle time point, the control terminal can effectively balance the work load and air exchange demand of the dishwasher, and ensure that the air exchange operation of the dishwasher is optimized without affecting the normal work of the dishwasher.
[0067] In an implementation manner, as shown in Figure 3 the specific process of the control terminal to complete the air exchange of the dishwasher can include:
[0068] Firstly, the user can trigger the button of the "smoke washing mode" on the display interface of the control terminal. Secondly, the user can select the device model that needs to be linked by viewing the range hood and dishwasher displayed on the display interface of the control terminal, so that the control terminal generates the linkage state of the selected range hood and dishwasher. After the holiday model of the range hood is turned on, the range hood can perform corresponding operations according to the preset working logic of the holiday mode. Optionally, based on the holiday mode, the range hood can perform air exchange according to the preset strategy. The control terminal can obtain the running parameters of the range hood in the holiday mode in real time. The control terminal can determine the second running state of the range hood according to the running parameters. Optionally, the running parameters can include air exchange frequency, duration, etc. The control terminal can determine whether to start the air exchange function of the dishwasher according to the second running state of the range hood. The implementation of the linkage can ensure that the dishwasher can perform dishwasher air exchange in time after the range hood completes the range hood air exchange, so as to efficiently manage and coordinate the air exchange functions of the range hood and the dishwasher, improve the air exchange effect of the dishwasher, and improve the user experience.
[0069] The linkage control method applied to the dishwasher and the range hood provided in the application embodiment can determine whether the range hood and the dishwasher that have been bound both satisfy the preset linkage condition. If yes, the control terminal can set the button of the "smoke washing mode" to a visible and operable state in the display interface. When the user triggers the button of the "smoke washing mode", the control terminal generates a linkage instruction to indicate the range hood and the dishwasher to enter a linkage state. In the linkage state, the dishwasher performs the dishwasher air exchange when the range hood completes the range hood air exchange. By displaying the "smoke washing mode" button in the case that the bound range hood and dishwasher satisfy the preset linkage condition, and controlling the range hood and the dishwasher to enter the linkage state after the "smoke washing mode" button is triggered, the process that the dishwasher automatically performs the air exchange after the range hood completes the air exchange is realized, the linkage air exchange of the range hood and the dishwasher is realized, the air exchange effect is improved, the air quality during the dishwasher air exchange is ensured, the air exchange effect of the dishwasher is improved, and the user experience is improved.
[0070] Figure 4 The flowchart of the linkage control method applied to the dishwasher and the range hood provided in the application Figure Two , on the basis of the embodiment shown in Figures 1 to 3 , as shown in the embodiment shown in Figure 4 , the method comprises:
[0071] S201, if the range hood and the dishwasher that have been bound in the control terminal both satisfy the linkage condition, set the button of the "smoke washing mode" to a visible and operable state in the display interface of the control terminal.
[0072] S202, in response to the linkage instruction generated when the button of the "smoke washing mode" is triggered, control the range hood and the dishwasher to enter a linkage state. In the linkage state, the dishwasher performs the dishwasher air exchange when the range hood completes the range hood air exchange.
[0073] The execution of steps S201 and S202 is similar to steps S101 and S102 in the embodiment shown in Figure 1 , and details are not repeated here.
[0074] S203, if the air pollution index in the kitchen is greater than a first threshold value, or the air exchange time indicated by the holiday mode of the range hood is reached, control the range hood to perform the range hood air exchange.
[0075] In the embodiment, the control terminal can also monitor the air quality in the kitchen and obtain the air pollution index in the kitchen. When it is detected that the air pollution index exceeds the preset first threshold value, the control terminal can immediately control the range hood to perform the air exchange operation to improve the air quality in the kitchen. The air quality monitoring and the automatic air exchange control mechanism ensure that the range hood can intervene in time when the air quality decreases, so that the kitchen environment is kept fresh and the user experience is improved.
[0076] In addition, the control terminal can also obtain the control logic of the holiday mode of the range hood, and determine whether the ventilation time indicated by the control logic of the holiday mode of the range hood is reached. If the ventilation time is reached, the control terminal can trigger the range hood to perform the ventilation operation. The holiday mode is usually used to periodically perform ventilation to maintain basic air circulation when the user does not use the range hood for a long time.
[0077] By starting the range hood ventilation in the two cases, the control terminal can flexibly cope with different environmental needs and ensure that the kitchen always maintains good air quality.
[0078] In an example, the specific process of the range hood ventilation performed by the range hood in the above two cases can include:
[0079] First, if the air pollution index in the kitchen is greater than the first threshold value, the range hood is controlled to perform the range hood ventilation until the ventilation time reaches the first time length, or the air pollution index in the kitchen is less than or equal to the second threshold value.
[0080] In this embodiment, after the control terminal detects that the air pollution index exceeds the preset first threshold value and starts the range hood to perform the range hood ventilation, the control terminal can continue to monitor the air pollution index in the kitchen. If the air pollution index in the kitchen decreases to be less than or equal to the second threshold value, the control terminal can end the execution of the range hood ventilation. Alternatively, after the execution time of the range hood ventilation reaches the first time length, the control terminal can control the range hood to end the execution of the range hood ventilation. In this way, the air in the kitchen can be optimized in real time based on the air pollution index in the kitchen, and the air quality can be effectively improved to ensure that air purification is quickly performed when the pollution is high.
[0081] Second, if the ventilation time indicated by the holiday mode of the range hood is reached, the range hood is controlled to perform the range hood ventilation until the ventilation time reaches the second time length preset by the holiday mode.
[0082] In this embodiment, when the ventilation time indicated by the holiday mode of the range hood is reached, the control terminal controls the range hood to start performing the ventilation operation. In this case, the range hood will continue to ventilate according to the setting of the holiday mode until the preset second time length is reached. The purpose of the holiday mode is to periodically perform ventilation to maintain basic air circulation and environmental health when the user does not use the range hood for a long time. This timed ventilation strategy ensures that the air quality in the kitchen can be effectively maintained even without active operation.
[0083] Alternatively, in this case, the control terminal can also obtain the air pollution quality in the kitchen in real time after starting the ventilation. The control terminal can end the ventilation when the air pollution index in the kitchen decreases to be less than or equal to the second threshold value.
[0084] S204, if the current time is a common working period of the range hood, waiting for the common working time to end, and then controlling the range hood to perform range hood ventilation. The common working period of the range hood is a period in which the use frequency of the range hood is greater than a third threshold value, which is determined according to the use habit of the user.
[0085] In this embodiment, the control terminal can also obtain the common working period of the range hood, and determine whether the current time is in the common working period of the range hood. If the current time is in the common working period of the range hood, the control terminal will not immediately perform the ventilation operation of the range hood, but will wait until the common working period ends, and then the range hood can perform range hood ventilation. Alternatively, the waiting operation is used to avoid the situation that after the range hood starts automatic ventilation, the user needs to use the range hood, so the user needs to close the ventilation first, and then start the function that the user needs, which reduces the user experience.
[0086] Alternatively, the common working period can be determined according to the use habit of the user. Specifically, the control terminal can count the number of times that the user uses the range hood in each time period within a preset time length. Then, according to the preset time length, the use frequency of the range hood in each time period is calculated. If the use frequency of the range hood in a time period exceeds a preset third threshold value, it can be determined that the time period is a common working period. Alternatively, if the use proportion of the range hood in a time period is greater than a preset proportion, it can be determined that the range hood is used in the time period. For example, the time period can be from 5:00 to 6:00 in the afternoon. If the use time of the range hood in the time period is greater than half an hour, it can be determined that the range hood is used in the time period.
[0087] Alternatively, the avoidance of the common working period can avoid ventilation in a period in which the user may frequently use the range hood, thereby reducing the interference with the normal operation of the user. At the same time, this strategy can also ensure that the range hood can perform ventilation in time after the user use peak period, so as to maintain good air quality and equipment state.
[0088] The linkage control method applied to the dishwasher and the range hood provided in the embodiments of the present application can also be used to monitor the air quality in the kitchen and obtain the air pollution index in the kitchen. When it is detected that the air pollution index exceeds a preset first threshold, the range hood is controlled to perform range hood ventilation until the ventilation time length reaches a first time length, or the air pollution index in the kitchen is less than or equal to a second threshold. The control terminal can also control the range hood to perform range hood ventilation until the ventilation time length reaches a second time length preset in the holiday mode of the range hood when the ventilation time indicated by the control logic of the range hood holiday mode is reached. The control terminal can also obtain the common working period of the range hood, and perform range hood ventilation after the common working period ends when the ventilation time is in the common working period of the range hood. Through the control of the ventilation time of the range hood, the optimization of the air quality in the kitchen by the range hood is further improved, and the user experience is improved.
[0089] On the basis of the above-mentioned embodiments, an example can be as shown in the following table: Figure 5 The specific process in which the control terminal determines whether the "smoke and wash mode" button is visible can include:
[0090] The control terminal can obtain the bound device model and determine the device type according to the device model. The device type can be a dishwasher or a range hood. If the dishwasher is included, it can be determined whether the range hood is included. If there is no dishwasher or no range hood, it can be determined that the "smoke and wash mode" button is invisible.
[0091] If the range hood and the dishwasher exist, the control authority acquisition instruction operation can be issued. When the range hood and the dishwasher receive the control authority instruction, the information pre-stored in the device end is determined. If it is supported, the device end responds and replies. If it is not supported, it does not respond and reply. The control terminal can determine whether the bound device supports the linkage function according to the reply information. If it does not support, it can be determined that the "smoke and wash mode" button is invisible.
[0092] If it is supported, the control terminal can continue to determine whether the range hood model is provided with a holiday mode. If the range hood model is provided with a holiday mode function, the control terminal can control the "smoke and wash mode" button to be visible. Otherwise, if the range hood model is not provided with a holiday mode function, the control terminal can control the "smoke and wash mode" button to be invisible.
[0093] If the "smoke and wash mode" button is invisible, the linkage mode function is not responded. Alternatively, when the "smoke and wash mode" button is invisible, the user cannot perform linkage-related operations. When the "smoke and wash mode" button is visible, it indicates that the linkage operation can be performed.
[0094] On the basis of the above-mentioned embodiments, in an example, based on the "smoke and wash mode" button that has been displayed, the execution process of the control terminal can include Figure 6As shown, including:
[0095] The control terminal can click the "smoke washing mode" button after the "smoke washing mode" button is displayed to trigger the "smoke washing mode". Triggering the "smoke washing mode" is to start the combination of the range hood and the dishwasher. The control terminal can add a selection list or a pop-up window to prompt the user to further select the range hood or the dishwasher that needs to be combined after the "smoke washing mode" button is triggered. The control terminal can determine whether the holiday mode of the range hood is started. If the holiday mode of the range hood is not started, the combination mode cannot be started. That is, even if the range hood performs range hood ventilation, the dishwasher will not perform ventilation after the range hood ventilation. If the holiday mode of the range hood is started, the control terminal can obtain the operating parameters of the range hood in the holiday mode. Based on the operating parameters, the control terminal can determine the second operating state of the range hood. If the second operating state indicates that the range hood ventilation has not ended, the control terminal continues to wait until the range hood ventilation ends. After the range hood ventilation ends, the control terminal can detect the first operating state of the dishwasher. The first operating state represents whether the dishwasher is in a working state. If the dishwasher is in the working state, the control terminal does not start the ventilation function of the dishwasher. Otherwise, if the dishwasher is not in the working state, the control terminal can control the dishwasher to start the ventilation function. The control terminal can obtain the end information of the dishwasher after the ventilation function of the dishwasher ends or the working ends.
[0096] Figure 7 The structure diagram of the combination control device for the dishwasher and the range hood provided in the application is as shown in Figure 7 As shown, the combination control device for the dishwasher and the range hood is applied to a control terminal, and the control terminal is in communication connection with the dishwasher and the range hood. The combination control device 300 for the dishwasher and the range hood provided in the embodiment includes:
[0097] The display module 301 is configured to set the button of the smoke washing mode to a visible and operable state in the display interface of the control terminal if the range hood and the dishwasher that have been bound in the control terminal both meet the combination condition.
[0098] The combination module 302 is configured to control the range hood and the dishwasher to enter a combination state in response to a combination instruction generated when the button of the smoke washing mode is triggered. In the combination state, the dishwasher performs dishwasher ventilation when the range hood completes range hood ventilation.
[0099] Optionally, the display module 301 is configured to:
[0100] send a control right acquisition request to the range hood and the dishwasher that have been bound in the control terminal, and obtain feedback information. The feedback information indicates that the control right acquisition is successful, or the control right acquisition fails.
[0101] If there is at least one feedback information of the dish washer being control right acquisition success, and there is at least one feedback information of the range hood being control right acquisition success, and the holiday mode of the range hood is in an open state, the range hood and the dish washer which have been bound in the control terminal satisfy the linkage condition.
[0102] The holiday mode represents that the user is expected to not actively use the range hood in the subsequent period of time.
[0103] Optionally, the display module 301 is configured to:
[0104] If the range hood has the holiday mode, and the time difference between the last use time of the range hood and the current time is greater than the first threshold value, the range hood is controlled to start the holiday mode.
[0105] Alternatively,
[0106] If the range hood has the holiday mode, the range hood is controlled to start the holiday mode in response to the control instruction of the user starting the holiday mode.
[0107] Optionally, the linkage module 302 is configured to:
[0108] The first running state of the dish washer and the second running state of the range hood linked with the dish washer are monitored.
[0109] When the second running state of the range hood indicates that the range hood ends the range hood ventilation, and the first running state of the dish washer is not working, the dish washer is controlled to perform the dish washer ventilation.
[0110] Optionally, the linkage module 302 is configured to:
[0111] When the second running state of the range hood indicates that the range hood ends the range hood ventilation, and the first running state of the dish washer is working, the next ventilation execution time of the range hood is acquired.
[0112] If the time difference between the next ventilation execution time of the range hood and the current time is greater than the second threshold value, the ventilation time of the dish washer is determined according to the next ventilation execution time and the current time.
[0113] Optionally, the linkage module 302 is configured to:
[0114] The middle time between the next ventilation execution time and the current time is taken as the ventilation time of the dish washer.
[0115] Optionally, the linkage module 302 is configured to:
[0116] If the air pollution index in the kitchen is greater than the first threshold value, or the ventilation time indicated by the holiday mode of the range hood is reached, the range hood is controlled to perform the range hood ventilation.
[0117] Optionally, the linkage module 302 is configured to:
[0118] If the air pollution index in the kitchen is greater than the first threshold value, the range hood is controlled to perform range hood ventilation until the ventilation duration reaches the first duration, or the air pollution index in the kitchen is less than or equal to the second threshold value.
[0119] Or,
[0120] If the ventilation time indicated by the holiday mode of the range hood is reached, the range hood is controlled to perform range hood ventilation until the ventilation duration reaches the second duration preset by the holiday mode.
[0121] Optionally, the linkage module 302 is configured to:
[0122] If the current time is a common working period of the range hood, the range hood is controlled to perform range hood ventilation after the common working time ends.
[0123] The common working period of the range hood is a period in which the frequency of use of the range hood is greater than a third threshold value, which is determined according to the use habit of the user.
[0124] The linkage control device for the dishwasher and the range hood provided in the embodiment can execute the method provided in the method embodiment, and has similar implementation principles and technical effects, which will not be described here.
[0125] Figure 8 The structure of the control terminal provided in the present application is shown in FIG. 4. As shown in FIG. 4, the control terminal 400 provided in the embodiment includes at least one processor 401 and a memory 402. Optionally, the device 40 also includes a communication component 403. The processor 401, the memory 402, and the communication component 403 are connected through a bus 404. Figure 8
[0126] In the specific implementation process, the at least one processor 401 executes the computer execution instructions stored in the memory 402, so that the at least one processor 401 executes the method described above.
[0127] The specific implementation process of the processor 401 can refer to the method embodiment described above, and has similar implementation principles and technical effects, which will not be described here.
[0128] In the above embodiments, it should be understood that the processor can be a central processing unit (CPU), and can also be other general-purpose processors, digital signal processors (DSP), application specific integrated circuits (ASIC), etc. The general-purpose processor can be a microprocessor or the processor can also be any conventional processor and the like. The steps of the method disclosed in combination with the application can be directly embodied as hardware processor execution, or executed by a combination of hardware and software modules in the processor.
[0129] The memory can include a random access memory (RAM), and can also include a non-volatile memory (NVM), such as at least one disk memory.
[0130] The bus can be an industry standard architecture (ISA) bus, a peripheral component (PCI) bus, or an extended industry standard architecture (EISA) bus, etc. The bus can be divided into an address bus, a data bus, a control bus, etc. For ease of representation, the bus in the drawings of the present application does not limit to only one bus or one type of bus.
[0131] The present application also provides a computer program product, comprising a computer program, which is executed by a processor to implement the above method.
[0132] The present application also provides a computer readable storage medium, which stores computer execution instructions, and when the processor executes the computer execution instructions, the above method is implemented.
[0133] The above readable storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk. The readable storage medium can be any available medium that can be accessed by a general-purpose or special-purpose computer.
[0134] An example readable storage medium is coupled to the processor such that the processor can read information from the readable storage medium and can write information to the readable storage medium. Of course, the readable storage medium can also be a part of the processor. The processor and the readable storage medium can be located in an application specific integrated circuit (ASIC). Of course, the processor and the readable storage medium can also exist as discrete components in the device.
[0135] The division of units is only a logical functional division, and in actual implementation, there can be another division manner, for example, multiple 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 interfaces, devices or units, and can be electrical, mechanical or other forms.
[0136] The units described as separate components can or can not be physically separated, and the components shown as units can or can not be physical units, that is, can be located in one place, or can be distributed on multiple network units. Part or all of the units can be selected according to actual needs to achieve the purpose of the embodiment scheme.
[0137] In addition, the functional units in each embodiment of the present application can be integrated in one processing unit, or each unit can be physically present separately, or two or more units can be integrated in one unit.
[0138] If the functions are realized in the form of software function units and sold or used as independent products, they can be stored in a computer readable storage medium. Based on this understanding, the technical solutions of the present application or the essential part or part of the technical solutions that make contributions to the prior art can be embodied in the form of a software product. The computer software product is stored in a storage medium, and includes a plurality of 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 of each embodiment of the present application. The foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various program code storage media.
[0139] Those skilled in the art can understand that all or part of the steps of the foregoing method embodiments can be completed by relevant hardware of program instructions. The foregoing program can be stored in a computer readable storage medium. When the program is executed, the steps of the foregoing method embodiments are executed; and the foregoing storage medium includes various media capable of storing program codes, such as ROM, RAM, magnetic disks, or optical disks.
[0140] Finally, it should be noted that other embodiments of the present application will become readily apparent to those skilled in the art from the disclosure herein, wherein the present application is intended to be limited only by the scope of the appended claims, rather than the foregoing description.
Claims
1. A linkage control method applied to a dishwasher and a range hood, characterized in that, The method is applied to a control terminal, the control terminal is in communication connection with the dish washer and the range hood respectively, and the method comprises: If the dish washer and the range hood bound in the control terminal both satisfy the linkage condition, the button of the smoke washing mode is set to be visible and operable in the display interface of the control terminal; In response to the linkage instruction generated when the button of the smoke washing mode is triggered, the dish washer and the range hood are controlled to enter the linkage state; wherein the dish washer performs dish washer air exchange when the range hood completes range hood air exchange in the linkage state; The dish washer and the range hood bound in the control terminal both satisfy the linkage condition, comprising: sending a control right acquisition request to the dish washer and the range hood bound in the control terminal, and acquiring feedback information; the feedback information indicates that the control right acquisition is successful, or the control right acquisition fails; If the feedback information of at least one dish washer is that the control right acquisition is successful, and the feedback information of at least one range hood is that the control right acquisition is successful, and the holiday mode of the range hood is in the open state, it is determined that the dish washer and the range hood bound in the control terminal satisfy the linkage condition; Wherein, the holiday mode represents that the user is expected not to actively use the range hood in the subsequent period of time.
2. The method of claim 1, wherein, The dish washer performs dish washer air exchange when the range hood completes range hood air exchange, comprising: Monitoring the first running state of the dish washer and the second running state of the range hood linked with the dish washer; When the second running state of the range hood indicates that the range hood air exchange is completed, and the first running state of the dish washer is not working, the dish washer is controlled to perform dish washer air exchange.
3. The method of claim 2, wherein, The method further comprises: When the second running state of the range hood indicates that the range hood air exchange is completed, and the first running state of the dish washer is working, the next air exchange execution time of the range hood is acquired; If the time difference between the next air exchange execution time of the range hood and the current time is greater than a second threshold value, the air exchange time of the dish washer is determined according to the next air exchange execution time and the current time.
4. The method of claim 3, wherein, According to the next air exchange execution time and the current time, the air exchange time of the dish washer is determined, comprising: The middle time between the next air exchange execution time and the current time is taken as the air exchange time of the dish washer.
5. The method according to any one of claims 1-4, characterized in that, The method further comprises: If the air pollution index in the kitchen is greater than a first threshold value, or the air exchange time indicated by the holiday mode of the range hood is reached, the range hood is controlled to perform range hood air exchange.
6. The method of claim 5, wherein, The method further comprises: If the air pollution index in the kitchen is greater than a first threshold value, the range hood is controlled to perform range hood air exchange until the air exchange time reaches a first time length, or the air pollution index in the kitchen is less than or equal to a second threshold value; Or, If the air exchange time indicated by the holiday mode of the range hood is reached, the range hood is controlled to perform range hood air exchange until the air exchange time reaches a second time length preset by the holiday mode.
7. The method of claim 5, wherein, The method further comprises: If the current time is a commonly used working period of the range hood, the range hood is controlled to perform range hood air exchange after the commonly used working period ends; The common working period of the range hood is a period in which the use frequency of the range hood determined according to the use habit of a user is greater than a third threshold.
8. A linkage control device applied to a dishwasher and a range hood, characterized by, The device is applied to a control terminal, and the control terminal is in communication connection with the dish washer and the range hood. The display module is configured to set the button of the smoke washing mode to a visible and operable state in the display interface of the control terminal if the range hood and the dish washer bound in the control terminal both satisfy the linkage condition. The linkage module is configured to control the range hood and the dish washer to enter a linkage state in response to a linkage instruction generated when the button of the smoke washing mode is triggered. The display module is specifically configured to: control the range hood and the dish washer bound in the control terminal to satisfy the linkage condition, including: sending a control right acquisition request to the range hood and the dish washer bound in the control terminal and acquiring feedback information; the feedback information indicates that the control right acquisition is successful or the control right acquisition fails; if the feedback information of at least one dish washer is that the control right acquisition is successful, and the feedback information of at least one range hood is that the control right acquisition is successful, and the holiday mode in the range hood is in an open state, it is determined that the range hood and the dish washer bound in the control terminal satisfy the linkage condition.
9. A control terminal, characterized by comprising: including: a memory and a processor; the memory stores computer execution instructions; the processor executes the computer execution instructions stored in the memory, so that the processor executes the method in any one of claims 1-7.
10. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer execution instructions, and the computer execution instructions are executed by the processor to implement the method in any one of claims 1-7.
11. A computer program product, comprising a computer program, which, when executed by a processor, implements the method in any one of claims 1-7.
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