Kitchen appliance control method, kitchen appliance, and storage medium
By setting up a special-shaped spring and threshold comparison system on the touch display panel of kitchen appliances, the problem of users needing to apply greater pressure to accurately trigger the function is solved, and the user experience is improved.
Patent Information
- Application Number
- CN202510104150.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2045-01-22
AI Technical Summary
In the case of improving the error response, existing kitchen appliances require users to put greater pressure on the function trigger area, resulting in a low user experience.
By setting a special-shaped spring on the touch display panel, each function triggering area includes a first spring area and a second spring area sequentially arranged in the target direction. The number of turns of the first spring area is less than the number of turns of the second spring area. The main controller controls the corresponding function to perform component operations by comparing the induction amount with the set threshold value.
It realizes that the user's operation intentions are accurately executed without reducing the user's operation pressure, and improves the user experience.
Smart Images

Figure CN119556629B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of kitchen appliances, and particularly to a control method for kitchen appliances, a kitchen appliance, and a storage medium. Background Art
[0002] With the development of technology, kitchen appliances (such as range hoods, refrigerators, etc.) are becoming more and more intelligent. For example, a kitchen appliance is provided with a touch display panel, and the touch display panel includes a plurality of function trigger areas. When a user triggers one of the function trigger areas, the kitchen appliance can perform the operation corresponding to the function trigger area, and the user's operation experience is good.
[0003] Generally, the distance between two adjacent function trigger areas is small. When a user wants to touch function trigger area 1, it is easy to accidentally touch function trigger area 2 adjacent to function trigger area 1, resulting in the kitchen appliance performing the function corresponding to function trigger area 2 that the user does not need.
[0004] Currently, by setting the sensitivity of each function trigger area to be relatively low, the problem of accidentally executing the function corresponding to the adjacent function trigger area can be improved. However, since the sensitivity of each function trigger area is set to be relatively low, it is necessary for the user to apply a relatively large pressure to the function trigger area to trigger the kitchen appliance to perform the function corresponding to the pressed function trigger area, and the user experience is low. Summary of the Invention
[0005] This application provides a control method for kitchen appliances, a kitchen appliance, and a storage medium, which are used to solve the problem in the prior art that in order to improve the situation of misresponse, it is necessary for the user to apply a relatively large pressure to the function trigger area to trigger the kitchen appliance to perform the function corresponding to the pressed function trigger area, and the user experience is low.
[0006] In a first aspect, this application provides a control method for a kitchen appliance, which is applied to a kitchen appliance. The kitchen appliance includes a touch display panel, a main controller, and a plurality of function execution components. The touch display panel includes a plurality of function trigger areas arranged at intervals along a target direction. Each function trigger area includes a touch surface area and a special-shaped spring arranged in sequence from the outside to the inside. Each special-shaped spring includes a first spring area and a second spring area arranged in sequence along the target direction, and each first spring area is located on a first side of the second spring area, and the number of turns of the first spring area is less than the number of turns of the second spring area. The method provided by this application includes:
[0007] When the touch display panel receives a triggering operation from a user, the deformed spring of the first function triggering area among multiple function triggering areas is coupled with an external medium, enabling the main controller to obtain a first induction quantity, and the deformed spring of the second function triggering area among multiple function triggering areas is coupled with the external medium, enabling the main controller to obtain a second induction quantity, where the first function triggering area is located on the first side of the second function triggering area in the target direction;
[0008] The main controller compares the first induction quantity with a set first induction threshold value, and compares the second induction quantity with a set second induction threshold value;
[0009] According to the comparison result, control the function execution component corresponding to the first function triggering area to work, and / or control the function execution component corresponding to the first function triggering area to work.
[0010] In a possible implementation manner, according to the comparison result, controlling the function execution component corresponding to the first function triggering area to work, and / or controlling the function execution component corresponding to the second function triggering area includes:
[0011] When the comparison result is that the first induction quantity is greater than or equal to the set first induction threshold value and the second induction quantity is less than the set second induction threshold value, control the function execution component corresponding to the first function triggering area to work.
[0012] In a possible implementation manner, according to the comparison result, controlling the function execution component corresponding to the first function triggering area to work, and / or controlling the function execution component corresponding to the second function triggering area includes:
[0013] When the comparison result is that the first induction quantity is greater than or equal to the set first induction threshold value and the second induction quantity is greater than or equal to the set second induction threshold value, control the function execution component corresponding to the first function triggering area to work, and control the function execution component corresponding to the second function triggering area to work.
[0014] In a possible implementation manner, according to the comparison result, controlling the function execution component corresponding to the first function triggering area to work, and / or controlling the function execution component corresponding to the second function triggering area includes:
[0015] When the comparison result is that the first induction quantity is less than the set first induction threshold value and the second induction quantity is greater than or equal to the set second induction threshold value, control the function execution component corresponding to the second function triggering area to work.
[0016] In a possible implementation manner, the target direction is the up-down direction, each first spring area is located above the second spring area, and the first function triggering area is located above the second function triggering area in the up-down direction.
[0017] In a possible implementation, the target direction is the left - right direction. Each first spring region is located on the left side of the second spring region, and the first function trigger region is located on the left side of the second function trigger region in the left - right direction.
[0018] Alternatively, each first spring region is located on the right side of the second spring region, and the first function trigger region is located on the right side of the second function trigger region in the left - right direction.
[0019] In a possible implementation, before the touch - display panel receives a trigger operation from the user, the method provided in this application further includes:
[0020] After the special - shaped spring in the first function trigger region is coupled with the external medium, the main controller obtains multiple first historical induction amounts when the user triggers the first function trigger region multiple times, and sets the minimum induction amount among the multiple first historical induction amounts as the first induction threshold.
[0021] After the special - shaped spring in the second function trigger region is coupled with the external medium, the main controller obtains multiple second historical induction amounts when the user triggers the first function trigger region at the maximum tilt angle. Here, the maximum tilt angle is the maximum angle between the direction of the user's finger and the horizontal direction.
[0022] According to the formula , determine the second induction threshold, where Y is the second induction threshold, is the maximum induction amount among the multiple second historical induction amounts, k is an adjustment factor, and .
[0023] In a second aspect, this application provides a kitchen appliance, including a touch - display panel, a main controller, and multiple function execution components. The touch - display panel includes multiple function trigger regions arranged at intervals along the target direction. Each function trigger region includes a touch - surface region and a special - shaped spring arranged in sequence from the outside to the inside. Each special - shaped spring includes a first spring region and a second spring region arranged in sequence along the target direction. Each first spring region is located on the first side of the second spring region, and the number of turns of the first spring region is less than that of the second spring region. The kitchen appliance is used to execute the method provided in the first aspect of this application.
[0024] In a third aspect, this application further provides a storage medium, on which a computer program is stored. When the computer program is executed by a processor, it implements the method provided in the first aspect of this application.
[0025] In a fourth aspect, this application further provides a computer program product, including a computer program. When the computer program is run, it causes the kitchen appliance to execute the method provided in the first aspect of this application.
[0026] A kitchen appliance control method, a kitchen appliance, and a storage medium provided by the present application. When a touch display panel receives a trigger operation from a user, the special-shaped spring in the first function trigger area among multiple function trigger areas is coupled with an external medium, enabling the main controller to obtain a first induction quantity. Also, the special-shaped spring in the second function trigger area among multiple function trigger areas is coupled with the external medium, enabling the main controller to obtain a second induction quantity. Since each function trigger area of the touch display panel includes a touch surface area and a special-shaped spring arranged in sequence from outside to inside, each special-shaped spring includes a first spring area and a second spring area arranged in sequence along a target direction, and each first spring area is located on the first side of the second spring area, and the number of turns of the first spring area is less than that of the second spring area. Since the first function trigger area is located on the first side of the second function trigger area in the target direction, the second spring area of the first function trigger area is adjacent to the first spring area of the second function trigger area. And because the number of turns of the second spring area of the first function trigger area is higher than that of the first spring area of the second function trigger area, when the user's finger presses on the junction position between the second spring area of the first function trigger area and the first spring area of the second function trigger area, when the force transitions from the second spring area of the first function trigger area to the first spring area of the second function trigger area, a jump from large to small will occur. Thus, it can be obtained that the first induction quantity of the second spring area of the first function trigger area is larger, while the second induction quantity of the first spring area of the second function trigger area is smaller. Furthermore, the main controller can compare the first induction quantity with a set first induction threshold, and compare the second induction quantity with a set second induction threshold; according to the comparison results, control the function execution component corresponding to the first function trigger area to work, and / or control the function execution component corresponding to the second function trigger area to work. In this way, the functions executed by the kitchen appliance can accurately meet the user's needs, and the user experience is high. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0028] Figure 1 It is a circuit module block diagram of the kitchen appliance provided by the embodiment of the present application;
[0029] Figure 2 It is a schematic diagram of the interface of the touch display panel 101 provided by the embodiment of the present application;
[0030] Figure 3The three - view drawings of the special - shaped spring provided by the embodiment of the present application;
[0031] Figure 4 One of the flowcharts of the kitchen appliance control method provided by the embodiment of the present application;
[0032] Figure 5 The layout schematic diagram of the first spring area and the second spring area on the touch display panel when the target direction is the up - down direction provided by the embodiment of the present application;
[0033] Figure 6 One of the layout schematic diagrams of the first spring area and the second spring area on the touch display panel when the target direction is the left - right direction provided by the embodiment of the present application;
[0034] Figure 7 Another layout schematic diagram of the first spring area and the second spring area on the touch display panel when the target direction is the left - right direction provided by the embodiment of the present application;
[0035] Figure 8 Another flowchart of the kitchen appliance control method provided by the embodiment of the present application. Detailed implementation manners
[0036] Hereinafter, embodiments of the present disclosure will be described with reference to the accompanying drawings. However, it should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present disclosure. In addition, in the following description, descriptions of well - known structures and technologies are omitted to avoid unnecessarily obscuring the concepts of the present disclosure.
[0037] Various structural schematic diagrams according to embodiments of the present disclosure are shown in the drawings. These figures are not drawn to scale, where for the purpose of clear expression, some details are enlarged and some details may be omitted. The shapes of various regions and layers shown in the figures, as well as their relative sizes and positional relationships, are merely exemplary. In practice, there may be deviations due to manufacturing tolerances or technical limitations, and those skilled in the art can design regions / layers with different shapes, sizes, and relative positions according to actual needs.
[0038] In the context of the present disclosure, when a layer / component is referred to as being "on" another layer / component, the layer / component can be directly on the other layer / component, or there can be an intermediate layer / component between them. Additionally, if a layer / component is "on" another layer / component in one orientation, then when the orientation is reversed, the layer / component can be "under" the other layer / component.
[0039] Next, specific embodiments will be used to elaborate in detail on the technical solutions of the present application and how the technical solutions of the present application solve the above technical problems. These several specific embodiments below can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. Next, embodiments of the present application will be described in conjunction with the accompanying drawings.
[0040] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments made by those of ordinary skill in the art under the inspiration of this embodiment belong to the scope protected by the present application.
[0041] The terms "first", "second", "third", "fourth", etc. (if any) in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily need to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present application described here can be implemented in an order other than those illustrated or described here. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products, or devices.
[0042] The embodiments of the present application provide a method for controlling kitchen appliances, which is applied to kitchen appliances. Exemplarily, the kitchen appliances can be, but are not limited to, air conditioners or range hoods. As Figure 1 shown, the kitchen appliance includes a touch display panel 101, a main controller 102, and a plurality of function execution components 103. As Figure 2 shown, the touch display panel 101 includes a plurality of function trigger areas 104 arranged at intervals along the target direction, and each function trigger area 104 includes a touch surface area and a special-shaped spring 105 arranged in sequence from the outside to the inside.
[0043] When the touch display panel 101 is in the lit state, multiple touch surface areas are used to display different function identifiers. For example, when the kitchen appliance is a range hood, the function identifiers may include function identifiers representing power on / off, identifiers representing lighting up the light, identifiers representing starting the function of sucking fume, etc., which are not limited herein. Each shaped spring 105 includes a first spring area 106 and a second spring area 107 arranged in sequence along the target direction, and each first spring area 106 is located on the first side of the second spring area 107, and the number of turns of the first spring area 106 is less than the number of turns of the second spring area 107. Among them, the three views of the shaped spring 105 can be as Figure 3 shown, where Figure 3 in (a) is the front view of the shaped spring 105, Figure 3 in (b) is the top view of the shaped spring 105, Figure 3 in (c) is the left view of the shaped spring 105. In Figure 3 , the number of turns of the first spring area 106 is 3 turns, and the number of turns of the second spring area 107 is 6 turns; in addition, the number of turns of the first spring area 106 can also be 4 turns, and correspondingly, the number of turns of the second spring area 107 is 8 turns, etc., which are not limited herein.
[0044] Specifically, as Figure 4 shown, the method provided by the embodiment of the present application includes:
[0045] S401: When the touch display panel 101 receives a trigger operation from a user, after the shaped spring 105 of the first function trigger area among the multiple function trigger areas 104 is coupled with an external medium, the main controller 102 obtains a first induction quantity, and after the shaped spring 105 of the second function trigger area among the multiple function trigger areas 104 is coupled with the external medium 102, the main controller obtains a second induction quantity. Among them, the first function trigger area is located on the first side of the second function trigger area in the target direction.
[0046] Among them, the external medium includes a conductor, such as the external medium may include but is not limited to a user's finger or metal. It should be noted that, as Figure 5 shown, when the target direction is the up-down direction, each first spring area 106 is located above the second spring area 107; the first function trigger area is located above the second function trigger area in the up-down direction; for another example, as Figure 6 shown, when the target direction is the left-right direction, each first spring area 106 is located on the left side of the second spring area 107; the first function trigger area is located on the left side of the second function trigger area in the left-right direction; for another example, as Figure 7As shown, when the target direction is the left - right direction, each first spring region 106 is located on the right side of the second spring region 107, and the first function trigger region is located on the right side of the second function trigger region in the left - right direction.
[0047] Since the first function trigger region is located on the first side of the second function trigger region in the target direction, the second spring region 107 of the first function trigger region is adjacent to the first spring region 106 of the second function trigger region. And because the number of turns of the second spring region 107 of the first function trigger region is higher than that of the first spring region 106 of the second function trigger region, when the user's finger presses on the junction position between the second spring region 107 of the first function trigger region and the first spring region 106 of the second function trigger region, when the force transitions from the second spring region 107 of the first function trigger region to the first spring region 106 of the second function trigger region, a jump from large to small will occur. Thus, it can be obtained that the first induction quantity of the second spring region 107 of the first function trigger region is larger, while the second induction quantity of the first spring region 106 of the second function trigger region is smaller.
[0048] S402: The main controller 102 compares the first induction quantity with the set first induction threshold, and compares the second induction quantity with the set second induction threshold.
[0049] Exemplarily, the way of setting the first induction threshold and the second induction threshold can be set before leaving the factory. Specifically, after the special - shaped spring 105 of the first function trigger region is coupled with the external medium, the main controller 102 obtains multiple first historical induction quantities when the user triggers the first function trigger region multiple times, and sets the minimum induction quantity among the multiple first historical induction quantities as the first induction threshold.
[0050] After the special - shaped spring 105 of the second function trigger region is coupled with the external medium, the main controller 102 obtains multiple second historical induction quantities when the user triggers the first function trigger region multiple times at the maximum tilt angle A. The maximum tilt angle is the maximum angle between the user's finger direction and the horizontal direction. Among them, the maximum angle can be the maximum value of the angles at which the user triggers the touch - display panel 101 multiple times (such as 100 times) in history. Then, according to the formula , the second induction threshold is determined. Where Y is the second induction threshold, is the maximum induction quantity among the multiple second historical induction quantities, k is an adjustment factor, and . For example, k can be 0.75, 0.80 or 0.85, etc., which is not limited here.
[0051] S403: According to the comparison result, control the function execution component 103 corresponding to the first function trigger area to work, and / or control the function execution component 103 corresponding to the second function trigger area to work.
[0052] Exemplarily, as Figure 8 shown, S403 can be specifically implemented as:
[0053] S8A: When the comparison result is that the first sensed quantity is greater than or equal to the set first sensing threshold and the second sensed quantity is less than the set second sensing threshold, control the function execution component 103 corresponding to the first function trigger area to work.
[0054] It can be understood that when the comparison result is that the first sensed quantity is greater than or equal to the set first sensing threshold and the second sensed quantity is less than the set second sensing threshold, it indicates that the user is more inclined to trigger the function corresponding to the first function trigger area. Therefore, control the function execution component 103 corresponding to the first function trigger area to work.
[0055] Exemplarily, when the first function trigger area is used to trigger the function of starting to extract fumes and the second function trigger area is used to trigger the function of lighting up the light, control the fume extraction component to work to start extracting fumes.
[0056] S8B: When the comparison result is that the first sensed quantity is greater than or equal to the set first sensing threshold and the second sensed quantity is greater than or equal to the set second sensing threshold, control the function execution component 103 corresponding to the first function trigger area to work, and control the function execution component 103 corresponding to the second function trigger area to work, with high accuracy.
[0057] It can be understood that when the comparison result is that the first sensed quantity is greater than or equal to the set first sensing threshold and the second sensed quantity is greater than or equal to the set second sensing threshold, it indicates that the user's demand is to trigger the function corresponding to the first function trigger area and the function corresponding to the second function trigger area, with high accuracy.
[0058] Exemplarily, when the first function trigger area is used to trigger the function of starting to extract fumes and the second function trigger area is used to trigger the function of lighting up the light, control the fume extraction component to work to start extracting fumes, and at the same time control the light component to work to turn on the light, with high accuracy.
[0059] S8C: When the comparison result is that the first sensed quantity is less than the set first sensing threshold and the second sensed quantity is greater than or equal to the set second sensing threshold, control the function execution component 103 corresponding to the second function trigger area to work.
[0060] Understandably, when the first sensed quantity is less than the set first sensing threshold and the second sensed quantity is greater than or equal to the set second sensing threshold, it indicates that the user is more inclined to trigger the function corresponding to the second function trigger area. Therefore, the function execution component 103 corresponding to the second function trigger area is controlled to operate.
[0061] Exemplarily, when the first function trigger area is used to trigger the function of starting to extract fumes and the second function trigger area is used to trigger the function of lighting the lights, the lighting component is controlled to operate to turn on the lights, with high accuracy.
[0062] It should be noted that there is no order of precedence among S8A - S8C described above.
[0063] In summary, for a kitchen appliance control method provided by an embodiment of the present application, when the touch display panel 101 receives a trigger operation from a user, the deformed spring 105 in the first function trigger area among multiple function trigger areas 104 is coupled with an external medium, enabling the main controller 102 to obtain a first induction quantity. Also, the deformed spring 105 in the second function trigger area among multiple function trigger areas 104 is coupled with an external medium, enabling the main controller 102 to obtain a second induction quantity. Since each function trigger area 104 of the touch display panel 101 includes a touch surface area and a deformed spring 105 arranged in sequence from outside to inside, each deformed spring 105 includes a first spring area 106 and a second spring area 107 arranged in sequence along a target direction. Moreover, each first spring area 106 is located on a first side of the second spring area 107, and the number of turns of the first spring area 106 is less than that of the second spring area 107. Since the first function trigger area is located on a first side of the second function trigger area in the target direction, the second spring area 107 of the first function trigger area is adjacent to the first spring area 106 of the second function trigger area. Also, since the number of turns of the second spring area 107 of the first function trigger area is higher than that of the first spring area 106 of the second function trigger area, when a user's finger presses on the junction position between the second spring area 107 of the first function trigger area and the first spring area 106 of the second function trigger area, when the force transitions from the second spring area 107 of the first function trigger area to the first spring area 106 of the second function trigger area, a jump from large to small will occur. Thus, it can be obtained that the first induction quantity of the second spring area 107 of the first function trigger area is relatively large, while the second induction quantity of the first spring area 106 of the second function trigger area is relatively small. Furthermore, the main controller 102 can compare the first induction quantity with a set first induction threshold, and compare the second induction quantity with a set second induction threshold; according to the comparison results, control the function execution component 103 corresponding to the first function trigger area to operate, and / or control the function execution component 103 corresponding to the first function trigger area to operate. In this way, the functions performed by the kitchen appliance can accurately meet the user's needs, providing a high user experience.
[0064] In addition, an embodiment of the present application further provides a kitchen appliance, including a touch display panel 101, a main controller 102, and multiple function execution components 103. The touch display panel 101 includes multiple function trigger regions 104 arranged at intervals in a target direction. Each function trigger region 104 includes a touch surface region and a special-shaped spring 105 arranged in sequence from outside to inside. Each special-shaped spring 105 includes a first spring region 106 and a second spring region 107 arranged in sequence in the target direction. And each first spring region 106 is located on a first side of the second spring region 107, and the number of turns of the first spring region 106 is less than that of the second spring region 107. The kitchen appliance is used to execute the method provided in the above embodiment of the present application.
[0065] Wherein, when the touch display panel 101 receives a trigger operation of a user, the special-shaped spring 105 of the first function trigger region among the multiple function trigger regions 104 is coupled with an external medium, so that the main controller 102 obtains a first induction quantity, and the special-shaped spring 105 of the second function trigger region among the multiple function trigger regions 104 is coupled with the external medium, so that the main controller 102 obtains a second induction quantity. Wherein, the first function trigger region is located on a first side of the second function trigger region in the target direction.
[0066] The kitchen appliance further includes an internal bus, a network interface, and a memory. The memory may include an internal memory, such as a high-speed random access memory (Random-Access Memory, RAM), and may also include a non-volatile memory. Of course, the kitchen appliance may also include other hardware required for other services. The processor, network interface, and memory can be interconnected through an internal bus. The bus can be divided into an address bus, a data bus, a control bus, etc. The memory is used to store a program. Specifically, the program may include program code, and the program code includes computer operation instructions. The memory may include an internal memory and a non-volatile memory, and provide instructions and data to the processor.
[0067] The processor reads the corresponding computer program from the non-volatile memory into the internal memory and then runs. The processor executes the program stored in the memory and is specifically used to perform the following operations: comparing the first induction quantity with a set first induction threshold, and comparing the second induction quantity with a set second induction threshold; according to the comparison result, controlling the function execution component corresponding to the first function trigger region to work, and / or controlling the function execution component corresponding to the first function trigger region to work.
[0068] A processor may be an integrated circuit chip with the ability to process signals. In the implementation process, each step of the above method can be completed by the integrated logic circuit in the hardware of the processor or instructions in the form of software. The above-mentioned processor may be a general-purpose processor, including a central processing unit (CPU), an application specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, and discrete hardware components. It can implement or execute the various methods, steps, and logic block diagrams disclosed in this application. The general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc. The steps of the method disclosed in combination with this application can be directly embodied as being executed and completed by the hardware decoding processor, or executed and completed by a combination of the hardware and software modules in the decoding processor. The software module may be located in a mature storage medium in the art such as a random access memory, a flash memory, a read-only memory, a programmable read-only memory, or an electrically erasable programmable memory, a register, etc. This storage medium is located in the memory, and the processor reads the information in the memory and combines its hardware to complete the steps of the above method.
[0069] Of course, in addition to the software implementation method, the kitchen appliances in the embodiments of this application do not exclude other implementation methods, such as logic devices or a combination of software and hardware, etc. That is to say, the execution subject of the following processing flow is not limited to each logic unit, and may also be hardware or a logic device.
[0070] In addition, the embodiments of this application also propose a computer-readable storage medium. The computer-readable storage medium stores one or more programs. The one or more programs include instructions that, when executed by a kitchen appliance including multiple application programs, can enable the kitchen appliance to execute the kitchen appliance control method.
[0071] Computer-readable media include both permanent and non-permanent, removable and non-removable media and can store information by any method or technology. The information can be computer-readable instructions, data structures, program modules, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory, or other memory technologies.
[0072] In addition, an embodiment of the present application further provides a computer program product, including a computer program, which, when run, causes the kitchen appliance to execute the kitchen appliance control method provided in the above embodiment.
[0073] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not intended to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
[0074] In the above description, no detailed description has been made on technical details such as the composition of each layer. However, those skilled in the art should understand that various technical means can be used to form layers, regions, etc. of the required shape. In addition, in order to form the same structure, those skilled in the art can also design methods that are not exactly the same as the methods described above. In addition, although the above embodiments have been described separately, this does not mean that the measures in each embodiment cannot be used in combination advantageously.
[0075] Although the preferred embodiments of the present application have been described, those skilled in the art can make additional changes and modifications once they know the basic creative concept. Therefore, the appended claims are intended to be construed as including the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0076] Obviously, those skilled in the art can make various changes and modifications to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalent technologies, the present application is also intended to include these modifications and variations.
Claims
1. A kitchen appliance control method, characterized in that: Applied to a kitchen appliance, the kitchen appliance comprises a touch display panel, a main controller and a plurality of function execution components, the touch display panel comprises a plurality of function triggering areas arranged at intervals along a target direction, each function triggering area comprises a touch surface area and a special-shaped spring arranged sequentially from the outside to the inside, each of the special-shaped springs comprises a first spring area and a second spring area arranged sequentially along the target direction, and each of the first spring areas is located on a first side of the second spring area, and the number of turns of the first spring area is less than the number of turns of the second spring area, the method comprises: When the touch display panel receives a trigger operation from the user, the special-shaped spring of a first function trigger area among the multiple function trigger areas is coupled with an external medium so that the main controller obtains a first sensing amount, and the special-shaped spring of a second function trigger area among the multiple function trigger areas is coupled with an external medium so that the main controller obtains a second sensing amount, wherein the first function trigger area is located on a first side of the second function trigger area in a target direction; The main controller compares the first sensing quantity with a set first sensing threshold, and compares the second sensing quantity with a set second sensing threshold; According to the comparison result, controlling the function execution component corresponding to the first function triggering area to work, and / or controlling the function execution component corresponding to the second function triggering area to work; Before the touch display panel receives a trigger operation from the user, the method further includes: after the special-shaped spring of the first function triggering area is coupled with an external medium, the main controller obtains a plurality of first historical sensing quantities of the first function triggering area triggered by the user for multiple times, and sets the minimum sensing quantity among the plurality of first historical sensing quantities as the first sensing threshold; After the special-shaped spring of the second function triggering area is coupled with the external medium, the main controller obtains a plurality of second historical sensing quantities of the user triggering the first function triggering area multiple times at a maximum tilt angle, wherein the maximum tilt angle is the maximum angle between the user's finger direction and the horizontal direction; According to the formula , determine the second sensing threshold, where Y is the second sensing threshold, is the maximum induction value among the plurality of second historical induction values, k is the adjustment factor, and .
2. The method according to claim 1, characterized in that: The controlling, according to the comparison result, the function execution component corresponding to the first function triggering area to work, and / or the function execution component corresponding to the second function triggering area to work, comprises: When the comparison result is that the first sensing amount is greater than or equal to a set first sensing threshold, and the second sensing amount is less than a set second sensing threshold, the function execution component corresponding to the first function triggering area is controlled to operate.
3. The method according to claim 1, characterized in that The controlling, according to the comparison result, the function execution component corresponding to the first function triggering area to work, and / or the function execution component corresponding to the second function triggering area to work, comprises: When the comparison result is that the first sensing amount is greater than or equal to the set first sensing threshold, and the second sensing amount is greater than or equal to the set second sensing threshold, the function execution component corresponding to the first function trigger area is controlled to work, and the function execution component corresponding to the second function trigger area is controlled to work.
4. The method according to claim 1, characterized in that: The controlling, according to the comparison result, the function execution component corresponding to the first function triggering area to work, and / or the function execution component corresponding to the second function triggering area to work, comprises: When the comparison result is that the first sensing amount is less than a set first sensing threshold and the second sensing amount is greater than or equal to a set second sensing threshold, the function execution component corresponding to the second function triggering area is controlled to operate.
5. The method according to claim 1, characterized in that The target direction is the up-down direction, each of the first spring regions is located on the upper side of the second spring region, and the first function trigger region is located on the upper side of the second function trigger region in the up-down direction.
6. The method according to claim 1, characterized in that The target direction is a left-right direction, each of the first spring areas is located on the left side of the second spring area, and the first function triggering area is located on the left side of the second function triggering area in the left-right direction; Alternatively, each of the first spring regions is located on the right side of the second spring region, and the first function triggering region is located on the right side of the second function triggering region in the left-right direction.
7. A kitchen appliance, characterized in that: The kitchen appliance comprises a touch display panel, a main controller and a plurality of function execution components, wherein the touch display panel comprises a plurality of function trigger areas arranged at intervals along a target direction, each function trigger area comprises a touch surface area and a special-shaped spring arranged sequentially from the outside to the inside, each of the special-shaped springs comprises a first spring area and a second spring area arranged sequentially along the target direction, and each of the first spring areas is located on a first side of the second spring area, and the number of turns of the first spring area is less than the number of turns of the second spring area, and the kitchen appliance is used to execute any of the methods described in claims 1-6.
8. A storage medium storing a computer program, characterized in that: When the computer program is executed, the kitchen appliance executes the method executed by the main controller in any one of claims 1 to 6.
9. A computer program product, comprising a computer program, which, when executed, causes a kitchen appliance to execute the method executed by the main controller as claimed in any one of claims 1 to 6.
Citation Information
Patent Citations
Mistaken touch prevention method and device and household appliance
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