Control method and electronic equipment
By obtaining the current measurement information of task characteristics in electronic devices and controlling the matching of the device form, it solves the problem that users find it difficult to quickly understand the device task information, and achieves a more efficient and convenient user experience.
Patent Information
- Application Number
- CN202510344272.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-06-24
AI Technical Summary
When traditional electronic devices display screen-off status, it is difficult for users to quickly understand the relevant task information of the device, such as charging progress, which is time-consuming and labor-intensive.
When the electronic device performs a target task, the current metric information of the task characteristics is obtained and the device shape is controlled to match the metric information, such as display area transformation or angle adjustment, to intuitively represent the task information.
It enables users to quickly understand the relevant task information of electronic devices without performing cumbersome operations, improving user experience and convenience.
Smart Images

Figure CN120201118A_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of electronic devices, and particularly relates to a control method and an electronic device. Background Art
[0002] In the traditional technology, if a user needs to know the relevant task information of an electronic device such as a mobile phone, the user usually needs to perform certain operations on the electronic device to view the required information. For example, when the mobile phone is charging in the screen-off state, the user needs to wake up the mobile phone screen and view the charging icon percentage to understand the charging progress of the mobile phone. This method is not user-friendly for the user, and there are problems of time-consuming and laborious, making it difficult for the user to quickly understand the relevant task information of the electronic device such as the mobile phone. Summary of the Invention
[0003] For this reason, the present application discloses the following technical solutions:
[0004] A control method includes:
[0005] During the process of an electronic device executing a target task, obtaining current measurement information of a task feature corresponding to the target task;
[0006] Controlling the device form of the electronic device to match the current measurement information;
[0007] Wherein, the target task is a task whose corresponding task feature has a measurement requirement; there is a corresponding relationship between the measurement information of the task feature and the change of the device form, and different measurement information corresponds to different device forms.
[0008] Optionally, the obtaining the current measurement information of the task feature corresponding to the target task during the process of the electronic device executing the target task includes one of the following:
[0009] During the process of the electronic device being in a charging state, obtaining the charged proportion of the power supply device of the electronic device;
[0010] During the process of the electronic device identifying the direction, obtaining the deviation amplitude of the direction of the electronic device relative to the reference direction;
[0011] During the process of the electronic device performing a satellite alignment operation based on satellite communication, obtaining the signal strength of the electronic device.
[0012] Optionally, the controlling the device form of the electronic device to match the current measurement information includes:
[0013] Controlling the area of the display screen of the electronic device that can be used for display output to transform to a target area;
[0014] Among them, the area of the electronic device display screen that can be used for display output can change; the device form matching the current measurement information is the device form when the area of the electronic device display screen that can be used for display output is the target area.
[0015] Optionally, controlling the device form of the electronic device to match the current measurement information includes:
[0016] Controlling the angle between the first part and the second part of the electronic device display screen to change to the target angle;
[0017] Among them, the angle between the first part and the second part of the electronic device display screen can change; the device form matching the current measurement information is the device form when the angle between the first part and the second part of the electronic device display screen is at the target angle.
[0018] Optionally, the current measurement information includes a target parameter for characterizing progress or degree;
[0019] The method further includes:
[0020] Determining the target area that can be used for display output and matches the current measurement information of the display screen according to the target parameter, the maximum area, and the minimum area of the area of the display screen that can be used for display output.
[0021] Optionally, the method further includes:
[0022] Controlling the deformation speed of the electronic device according to the current form of the electronic device and the target form matching the current measurement information.
[0023] An electronic device includes:
[0024] A memory for storing at least one set of computer instruction sets;
[0025] A processor for implementing the following processes by executing the instruction sets stored in the memory:
[0026] During the process of the electronic device executing a target task, obtaining the current measurement information of the task characteristics corresponding to the target task;
[0027] Controlling the device form of the electronic device to match the current measurement information;
[0028] Among them, the target task is a task whose corresponding task characteristics have measurement requirements; there is a corresponding relationship between the measurement information of the task characteristics and the change of the device form, and different measurement information corresponds to different device forms.
[0029] Optionally, the electronic device further includes a display screen;
[0030] The area of the display screen that can be used for display output can change;
[0031] When the processor controls the device form of the electronic device to match the current measurement information, it is used for:
[0032] Control the area of the display screen of the electronic device that can be used for display output to transform to the target area;
[0033] Wherein, the device form matching the current measurement information is the device form when the area of the display screen of the electronic device that can be used for display output is the target area.
[0034] Optionally, the electronic device further includes:
[0035] A fuselage, the fuselage includes a base and a display screen disposed on the surface of the base;
[0036] The display screen can move between the front and back of the base around the first side of the base. During the process of the display screen moving between the front and back of the base around the first side of the base, the length of the display screen on the target surface of the base changes; the area of the display screen that can be used for display output is the area corresponding to the display screen on the target surface of the base; the target surface is one of the front and back of the base;
[0037] When the processor controls the device form of the electronic device to match the current measurement information, it is used for:
[0038] Adjust the length of the display screen on the target surface of the base to the target length.
[0039] Optionally, the electronic device further includes a driving component disposed on the base and connected to the display screen, and a track disposed between the base and the display screen;
[0040] When the processor adjusts the length of the display screen on the target surface of the base to the target length, it is used for:
[0041] Drive the display screen to move on the track around the first side through the driving component, so that the length of the display screen on the target surface of the base is the target length.
[0042] A storage medium, the storage medium carries one or more computer instruction sets, and when the one or more computer instruction sets are executed by an electronic device, the electronic device can be enabled to implement any one of the control methods as described above. Description of the Drawings
[0043] To more clearly illustrate the technical solutions in the embodiments of the present application or the related art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the related art. Obviously, the accompanying drawings in the following description are only the embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained according to the provided accompanying drawings.
[0044] Figure 1 It is a schematic flowchart of a control method provided by the present application;
[0045] Figure 2 It is another schematic flowchart of a control method provided by the present application;
[0046] Figure 3 It is a schematic diagram of a device form of a scroll screen device provided by the present application;
[0047] Figure 4 It is another schematic diagram of a device form of a scroll screen device provided by the present application;
[0048] Figure 5 It is a schematic diagram showing different charging progress characterized by different device forms of an electronic device provided by the present application;
[0049] Figure 6 It is yet another schematic flowchart of a control method provided by the present application;
[0050] Figure 7 It is a composition structure diagram of an electronic device provided by the present application. Detailed implementation manners
[0051] The following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present application.
[0052] The embodiments of the present application provide a control method and an electronic device, which are used to characterize / indicate device-related task information through the form of the electronic device based on the form-variable characteristics of the form-variable electronic device, so as to facilitate the user to quickly and efficiently understand the device-related task information.
[0053] Refer to Figure 1 The flowchart of the control method shown, the control method provided by the embodiments of the present application may include the following steps 101 to 102, and the following will describe these steps in detail respectively.
[0054] Step 101: During the execution of a target task by an electronic device, obtain the current measurement information of the task characteristics corresponding to the target task.
[0055] The electronic device is an electronic device with a variable form, which can specifically be, but is not limited to, a telescopic screen device, a scrolling screen device, a rollable screen device, a folding screen device, etc., such as a folding screen mobile phone, a scrolling screen mobile phone.
[0056] The target task is a task whose corresponding task characteristics have measurement requirements. Specifically, it can be a task that needs to measure its relevant task characteristics during the process of using a corresponding application (such as a device-built-in application or a third-party application) or function of the electronic device.
[0057] Exemplarily, the target task can be, but is not limited to, a charging task for the power supply device of the electronic device (such as a mobile phone battery), a direction recognition task in a compass application, a satellite alignment operation task in satellite communication, etc. The task characteristics of the target task can correspondingly be, but are not limited to, the charging progress corresponding to the charging task, the signal strength of the electronic device during the satellite alignment operation, the deviation amplitude between the direction of the electronic device in the compass application and a reference direction (such as due south). These task characteristics of the target task have measurement requirements, and users often need to view the measurement information (such as the charging progress) of the task characteristics corresponding to the target task to understand the execution situation or task information of the target task.
[0058] In the embodiments of the present application, by associating the measurement information of the task characteristics of the target task with the device form of the electronic device, the measurement information of the task characteristics of the target task has a corresponding relationship with the change of the device form, so as to support representing / indicating the measurement information of the task characteristics of the target task based on the device form of the electronic device. Among them, different measurement information corresponds to different device forms.
[0059] The different device forms of the electronic device depend on the actual variable characteristics of the electronic device form.
[0060] Exemplarily, if the electronic device can change the area of the display output area of its display screen, such as a scrolling screen / rollable screen device or a telescopic screen device, etc., the different device forms of the electronic device can be different device forms respectively formed when the display output area of the electronic device's display screen is at different areas; if the electronic device can change the angle between different parts of its display screen, such as a folding screen device like a folding screen mobile phone, the different device forms of the electronic device can be different device forms respectively formed when the first part and the second part of the electronic device's display screen (such as the two foldable parts of the folding screen mobile phone display screen) are at different angles. In practice, the different device forms of the electronic device are not limited to the above classification methods and can be determined according to the actual situation.
[0061] Among them, the area of the display screen of the electronic device for display output refers to the screen area corresponding to the range on the display screen that can actually be used to output / display interface information content such as images and texts. The sizes of the areas for display output of different display screens may vary due to different types or resolutions of the display screens.
[0062] Based on the above design, for the target task executed by the electronic device, in the process of the electronic device executing the target task, the present application embodiment first obtains the current measurement information of the task characteristics corresponding to the target task, and subsequently characterizes / indicates the current measurement information based on the form of the electronic device.
[0063] Among them, in the process of the electronic device executing the target task, obtaining the current measurement information of the task characteristics corresponding to the target task can be, but is not limited to, implemented as one of the following 11)-13):
[0064] 11) In the process of the electronic device being in a charging state, obtain the charged proportion of the power supply device of the electronic device.
[0065] Specifically, in the process of the electronic device being in a charging state and the display screen not being lit, obtain the charged proportion of the power supply device of the electronic device.
[0066] The target task for this implementation manner 11) is the charging task of the power supply device of the electronic device, such as the charging task of a mobile phone battery.
[0067] In practical applications, for the charging task of the electronic device, the user can, according to application requirements, through configuration operations, configure to obtain the charged proportion of the power supply device (such as a mobile phone battery) of the electronic device only when the display screen is not lit, so as to realize that for the charging task, based on the form of the electronic device, the charging progress of the power supply device can be intuitively indicated when the display screen is off (usually, when the display screen of the electronic device is lit, the user can directly view the charging progress conveniently through the task status bar of the electronic device); or, configure to obtain the charged proportion of the power supply device of the electronic device regardless of whether the display screen is lit or not, so as to realize that for the charging task, based on the form of the electronic device, the charging progress of the power supply device can be intuitively indicated whether the display screen is lit or not.
[0068] 12) In the process of the electronic device identifying the direction, obtain the deviation amplitude of the direction of the electronic device relative to the reference direction.
[0069] During the process of identifying the direction, the deviation amplitude of the direction of the electronic device relative to the reference direction can be characterized, but not limited to, based on the deviation angle of the direction of the electronic device (such as the direction pointed by the top of the electronic device) relative to the reference direction. The larger the deviation angle, the higher the deviation amplitude. Conversely, the smaller the deviation angle, the lower the deviation amplitude.
[0070] The target task of this embodiment 12) is a direction identification task, which can be specifically, but not limited to, the task for identifying the direction initiated in the compass application.
[0071] Taking the compass application as an example, optionally, the due south direction can be set as the reference direction. When the user rotates the electronic device, the deviation amplitude of the direction of the electronic device relative to the reference direction will change. Accordingly, the deviation amplitude (such as the deviation angle) of the direction of the electronic device (such as the direction of the top of the mobile phone) relative to the due south reference direction can be obtained, and used as the task information / direction identification result of the direction identification task for the user to understand.
[0072] 13) During the process of the electronic device performing the satellite alignment operation based on satellite communication, the signal strength of the electronic device is obtained.
[0073] The target task of this embodiment 13) is the satellite alignment operation task in satellite communication. When performing satellite communication, it is necessary to execute the satellite alignment operation task to ensure that the signal can be transmitted and received accurately and to guarantee the communication quality. During the satellite alignment operation process, it is necessary to know the signal strength of the electronic device. Based on this, in this embodiment, during the process of the electronic device performing the satellite alignment operation based on satellite communication, the signal strength of the electronic device is obtained, and subsequently, the device signal strength during the satellite alignment operation will be intuitively characterized / indicated based on the device form of the electronic device.
[0074] Step 102: Control the device form of the electronic device to match the current metric information.
[0075] After obtaining the current metric information of the task characteristics corresponding to the target task, the embodiments of the present application control the device form of the electronic device to match the current metric information, so as to achieve the effect of intuitively characterizing / indicating the current metric information based on the device form of the electronic device.
[0076] Among them, the device form of the electronic device can be controlled to match the current metric information by transforming the current form of the electronic device to a target form that matches the current metric information.
[0077] More specifically, the form transformation of the electronic device can be achieved, but not limited to, by changing the area of the region of the electronic device display screen for display output, or by changing the included angle size between different parts of the electronic device display screen.
[0078] It is easy to understand that if the current form of the electronic device matches the current measurement information, there is no need to transform the form of the electronic device.
[0079] In summary, the control method provided by the embodiments of the present application obtains the current measurement information of the task characteristics corresponding to the target task during the execution of the target task by the electronic device, and controls the device form of the electronic device to match the current measurement information, thereby proposing and implementing the technical concept of characterizing / indicating relevant task information through the device form of the morphologically variable electronic device. The user can intuitively understand the relevant task information of the target task of the electronic device through the device form presented by the electronic device, without having to perform cumbersome operations to view the task information. Therefore, the present application effectively improves the convenience and efficiency of the user to understand the relevant task information of the electronic device, reduces the time consumption, and improves the user experience.
[0080] In an optional embodiment, referring to Figure 2 the flowchart of the control method shown, step 102 can be further implemented as:
[0081] Step 201, control the area of the electronic device display screen that can be used for display output to be transformed to the target area.
[0082] In this embodiment, the area of the electronic device display screen that can be used for display output can change. For example, the electronic device is specifically a scroll screen device / a roll screen device, or a telescopic screen device, etc. Based on this morphologically variable characteristic of the electronic device, in this embodiment, the area of the electronic device display screen that can be used for display output is transformed, specifically from the current area to the target area, so that the device form of the electronic device matches the current measurement information of the task characteristics of the target task.
[0083] It is easy to understand that in this embodiment, the device form that matches the current measurement information is the device form when the area of the electronic device display screen that can be used for display output is the target area.
[0084] The current measurement information includes target parameters for characterizing progress or degree, such as the charged proportion of the power supply device of the electronic device, the deviation amplitude of the direction of the electronic device relative to the reference direction, or the signal strength of the electronic device during the satellite alignment operation, etc.
[0085] In an optional implementation manner, before controlling the area of the electronic device display screen that can be used for display output to be transformed to the target area, the target area area where the area of the display screen that can be used for display output matches the current measurement information can be determined first according to the target parameter and the maximum area and minimum area of the area of the electronic device display screen that can be used for display output.
[0086] The following provides an exemplary calculation formula for the area of the target region:
[0087] R = (Rmax – Rmin) * P.
[0088] Wherein, R represents the area of the target region, Rmax and Rmin respectively represent the maximum area and the minimum area of the region on the display screen of the electronic device that can be used for display output, and P represents the target parameter, such as the charged proportion of the mobile phone battery.
[0089] After obtaining the area of the target region, the control required in step 201 can be achieved by adjusting the area of the region on the display screen of the electronic device that can be used for display output from the current area to the area of the target region, that is, controlling the region on the display screen of the electronic device that can be used for display output to transform to the target region, and correspondingly achieving the control of the device form of the electronic device to match the current measurement information, so as to indicate the current measurement information (such as the charged proportion of the battery) through the device form of the electronic device.
[0090] However, it is not limited to the above embodiments. In another embodiment, before controlling the region on the display screen of the electronic device that can be used for display output to transform to the target region, the target length / width of the display screen on the target surface of the substrate that matches the current measurement information can be determined first according to the target parameter and the maximum extension length / width and the minimum extension length / width of the display screen of the electronic device on the target surface of the substrate. The region on the display screen that can be used for display output is the region corresponding to the target surface of the substrate of the display screen.
[0091] After obtaining the target length / width, the control required in step 201 can be achieved by adjusting the length / width of the region on the target surface of the substrate of the display screen of the electronic device that can be used for display output to the target length / width, that is, controlling the region on the display screen of the electronic device that can be used for display output to transform to the target region, and correspondingly achieving the control of the device form of the electronic device to match the current measurement information, so as to indicate the current measurement information (such as the charged proportion of the battery) through the device form of the electronic device.
[0092] The following provides an exemplary calculation formula for the target length / width:
[0093] L = (Lmax – Lmin) * P;
[0094] W = (Wmax – Wmin) * P.
[0095] Wherein, L / W respectively represent the target length / width, Lmax / Wmax respectively represent the maximum extended length / width of the electronic device display screen on the target surface of the substrate, and Lmin / Wmin respectively represent the minimum extended length / width of the electronic device display screen on the target surface of the substrate.
[0096] In the above embodiments, optionally, the body of the electronic device includes a substrate and a display screen disposed on the surface of the substrate. The display screen of the electronic device can move between the front and back of the substrate around the first side of the substrate. For example, a rollable screen device or a scroll screen device. During the process of the display screen moving between the front and back of the substrate around the first side of the substrate, the length or width of the display screen on the target surface of the substrate changes; the target surface is one of the front and back of the substrate, and the first side can be the top surface or the bottom surface of the substrate of the electronic device, or can also be any side of the substrate of the electronic device, depending on the actual design requirements. Alternatively, the display screen of the electronic device is made of an elastic material and can be extended or contracted on the substrate according to requirements, such as a telescopic screen device.
[0097] When adjusting the area or the length / width of the area of the electronic device display screen that can be used for display output to control the area of the electronic device display screen that can be used for display output to be transformed into a target area so as to realize the form control of the electronic device, for the case where the electronic device is a rollable screen device or a scroll screen device, the area or the length / width of the display screen can be adjusted by moving the display screen of the electronic device around a corresponding axis (such as the top edge, the bottom surface or the corresponding side edge of the electronic device); for the case where the electronic device is a telescopic screen device, the area or the length / width of the display screen can be adjusted by stretching or contracting the display screen of the electronic device. Of course, for other possible product forms of the electronic device, there can also be corresponding other form adjustment methods, which are not limited hereby, and specifically depend on the actual variable characteristics of the form of the electronic device.
[0098] In implementation, optionally, a track for supporting the movement of the display screen can be provided on the surface of the substrate of the body of the electronic device, and a driving component connected to the display screen can be provided on the substrate of the body. The provided driving component is used to drive the display screen to move along the track on the surface of the substrate to realize the adjustment of the area or the length / width of the area of the electronic device display screen that can be used for display output.
[0099] For example, for Figure 3 the shown rollable screen device, specifically, the driving component can be used to drive the display screen to move on the track on the surface of the substrate around the first side (such as the top edge or the bottom surface of the rollable screen device) to realize the adjustment of the area or the length / width of the area of the rollable screen device display screen that can be used for display output, so as to control the area of the rollable screen device display screen that can be used for display output to be transformed into the target area.
[0100] Further, optionally, the body base of the electronic device may have a fixed length or a variable length on the second side, where the second side is the side on the base perpendicular to the first side. For example, if the first side is the top or bottom side of the electronic device, the second side is the side of the electronic device; if the first side is the side of the electronic device, the second side is the top or bottom side of the electronic device.
[0101] Among them, if the base has a variable length on the second side, optionally, it is also possible to control the length of the base on the second side to change synchronously with the length of the display screen in the direction of the second side on the corresponding surface of the base, so that the length of the base on the second side is consistent with the length of the display screen in the direction of the second side on the corresponding surface of the base. The corresponding surface is the surface with a high proportion of the display screen on the upper and lower surfaces of the base. For example, referring to Figure 4 , when the length of the display screen on the front of the rollable screen device extends beyond the existing length of the base due to extension requirements (such as the charging progress being greater than a certain proportion or the signal strength exceeding a certain intensity, thus requiring the display screen to be extended), the display screen (such as a flexible screen) may not be able to support it. Therefore, the base of the rollable screen device can be designed to have a variable length, and when the length of the display screen on the corresponding surface of the base, such as the front of the device, exceeds the existing length of the base, the length of the base is controlled to change synchronously with the length of the display screen on the corresponding surface of the base, so as to effectively support the part of the display screen that exceeds the existing base.
[0102] In this embodiment, by adjusting the area or length / width of the area of the electronic device's display screen that can be used for display output, the form control of the electronic device is realized, so that the device form of the electronic device matches the current measurement information of the task characteristics corresponding to the target task. On this basis, the current measurement information can be characterized / indicated based on the device form of the electronic device. For example, referring to Figure 5As shown, the charging progress of the charging device of the electronic device is characterized based on the length of the display screen on the target surface of the substrate. Among them, the larger the length of the display screen on the target surface of the substrate, the higher the charged proportion, and the smaller the length, the lower the charged proportion. For another example, the deviation amplitude between the device direction and the reference direction (such as due south) of the electronic device in the compass application is characterized based on the length of the display screen on the target surface of the substrate. When the user rotates the electronic device, the length of the display screen on the target surface of the substrate will change. Optionally, when the direction of the electronic device (such as the direction pointed by the top of the electronic device) is due north, the length of the display screen on the target surface of the substrate is the longest, indicating the largest deviation amplitude, and when it is due south, the length of the display screen on the target surface of the substrate is the shortest, indicating the smallest deviation amplitude. For another example, the signal strength of the electronic device in the satellite alignment operation is characterized based on the length of the display screen on the target surface of the substrate. Specifically, the length of the display screen on the target surface of the substrate can be adjusted according to the signal strength percentage. When the device points to the strongest satellite signal, the length of the display screen on the target surface of the substrate is the longest.
[0103] It is easy to understand that if the target area to which the displayable output area of the display screen of the electronic device is to be transformed is the same as the area before transformation, that is, the device form of the area before transformation matches the current measurement information, then there is no need to perform the corresponding form transformation on the electronic device.
[0104] In summary, for the situation where the displayable output area of the display screen of the electronic device can change, such as a telescopic screen device, a scrolling screen device / a roll screen device, in this embodiment, by controlling the transformation of the displayable output area of the display screen of the electronic device to the target area, the form adjustment of the electronic device is realized, so that the device form of the electronic device matches the current measurement information of the task characteristics corresponding to the target task, and supports the user to intuitively understand the relevant task information of the target task of the electronic device through the device form characterized by the size of the displayable output area of the display screen of the electronic device, without having to perform cumbersome operations to view the task information, thereby improving the convenience and efficiency for the user to understand the relevant task information of the electronic device and improving the user experience.
[0105] In an alternative embodiment, referring to Figure 6 the flowchart of the control method shown, step 102 can also be implemented as:
[0106] Step 601, control the angle between the first part and the second part of the display screen of the electronic device to be transformed to the target angle.
[0107] In this embodiment, the included angle between the first part and the second part of the display screen of the electronic device can change. For example, the electronic device is a folding screen device, such as a folding screen mobile phone. The device form matching the current measurement information is the device form when the included angle between the first part and the second part of the display screen of the electronic device is at the target included angle.
[0108] The first part and the second part of the display screen of the electronic device can be two different parts of the same display screen (such as a flexible screen) of the electronic device that can fold and unfold with each other, or can also be two independent display screens of the electronic device. The two independent display screens are connected into one body based on a connecting member and can fold and unfold with each other.
[0109] In this embodiment, the current measurement information also includes a target parameter for characterizing progress or degree. For example, the charged proportion of the power supply device of the electronic device. For the case where the included angle between the first part and the second part of the display screen of the electronic device can change, before controlling the included angle between the first part and the second part of the display screen of the electronic device to change to the target included angle, the target included angle matching the current measurement information between the first part and the second part can be determined first according to the target parameter and the maximum included angle and the minimum included angle between the first part and the second part.
[0110] An exemplary calculation formula for the target included angle is as follows:
[0111] A = (Amax – Amin) * P.
[0112] Wherein, A represents the target included angle, Amax and Amin respectively represent the maximum included angle and the minimum included angle between the first part and the second part, and P represents the target parameter.
[0113] After obtaining the target included angle, the control required in step 601 can be achieved by adjusting the included angle between the first part and the second part of the display screen of the electronic device to the target included angle, so as to indicate the current measurement information through the included angle between the first part and the second part of the display screen of the electronic device.
[0114] For example, the charging progress of the power supply device of the electronic device is indicated by the included angle between the first part and the second part of the display screen of the electronic device. Optionally, the larger the included angle, the higher the charged proportion of the power supply device. For example, when starting to charge, the first part and the second part of the display screen are folded, when the charging is completed, the first part and the second part are fully unfolded, and during the charging process, it is in an intermediate state between folding and full unfolding.
[0115] In summary, for the case where the angle between the first part and the second part of the display screen of the electronic device can change, in this embodiment, by controlling the angle between the first part and the second part of the display screen of the electronic device to be transformed into the target angle, the form adjustment of the electronic device is realized, so that the device form of the electronic device matches the current measurement information of the task characteristics corresponding to the target task. The user can intuitively understand the relevant task information of the target task of the electronic device through the device form characterized by the angle between the first part and the second part of the display screen of the electronic device, without having to perform cumbersome operations to view the task information, thereby improving the convenience and efficiency for the user to understand the relevant task information of the electronic device and enhancing the user experience.
[0116] In an alternative embodiment, the control method provided by the present application may further include the following processing:
[0117] According to the current form of the electronic device and the target form matching the current measurement information, control the deformation speed of the electronic device, so as to control the device form of the electronic device to match the current measurement information of the task characteristics corresponding to the target task based on the corresponding deformation speed.
[0118] The current form refers to the device form corresponding to the electronic device when it obtains the current measurement information but has not performed form transformation on the electronic device based on the current measurement information.
[0119] In this embodiment, the deformation speed of the electronic device is specifically controlled based on a certain form transformation strategy.
[0120] Optionally, the form transformation strategy may be to perform form transformation on the electronic device within a fixed time duration. Based on this form transformation strategy, the deformation speed of the electronic device can be determined according to the current form of the electronic device, the target form matching the current measurement information, and the fixed time duration. For example, the area change speed of the area of the display screen of the electronic device that can be used for display output, or the change speed of the angle between the first part and the second part of the display screen of the electronic device, etc. Among them, the greater the degree of form transformation between the current form and the target form, the faster the corresponding deformation speed.
[0121] However, it is not limited thereto. In other embodiments, the form transformation strategy may also be: the form transformation speed is uniform. Based on this form transformation strategy, the electronic device can be directly transformed from the current form to the target form matching the current measurement information according to a pre-specified fixed deformation speed. For example, based on the fixed deformation speed, the angle between the first part and the second part of the display screen of the electronic device is transformed to the target angle, or the area of the display screen of the electronic device that can be used for display output is transformed from the current area to the target area, etc.
[0122] In summary, in this embodiment, by controlling the deformation speed of the electronic device according to the current form of the electronic device and the target form matching the current measurement information, it is possible to control the device form of the electronic device to match the current measurement information of the task characteristics corresponding to the target task based on the corresponding deformation speed, enabling the user to intuitively understand the relevant task information of the target task of the electronic device through the device form of the electronic device, rather than having to perform cumbersome operations to view the task information, thereby improving the convenience and efficiency for the user to understand the relevant task information of the electronic device and enhancing the user experience.
[0123] See Figure 7 , which shows the composition structure diagram of the electronic device in this application. The electronic device includes:
[0124] A memory 10 for storing at least one set of computer instruction sets;
[0125] A processor 20 for implementing the following processing by executing the instruction sets stored in the memory:
[0126] During the process of the electronic device executing a target task, obtaining the current measurement information of the task characteristics corresponding to the target task;
[0127] Controlling the device form of the electronic device to match the current measurement information;
[0128] Wherein, the target task is a task with measurement requirements for the corresponding task characteristics; there is a corresponding relationship between the measurement information of the task characteristics and the change of the device form, and different measurement information corresponds to different device forms.
[0129] In an alternative embodiment, when obtaining the current measurement information of the task characteristics corresponding to the target task during the process of the electronic device executing the target task, the processor is configured to:
[0130] During the process of the electronic device being in a charging state, obtaining the charged proportion of the power supply device of the electronic device;
[0131] During the process of the electronic device identifying the direction, obtaining the deviation amplitude of the direction of the electronic device relative to the reference direction;
[0132] During the process of the electronic device performing a satellite communication alignment operation, obtaining the signal strength of the electronic device.
[0133] In an alternative embodiment, the electronic device further includes a display screen, and the area capable of being used for displaying output of the display screen can change;
[0134] When controlling the device form of the electronic device to match the current measurement information, the processor is configured to:
[0135] Control the area of the display screen of the electronic device that can be used for display output to be transformed to the target area;
[0136] Wherein, the device form matching the current measurement information is the device form when the area of the display screen of the electronic device that can be used for display output is the target area.
[0137] In an alternative embodiment, the current measurement information includes a target parameter for characterizing progress or degree; the processor is further configured to: determine, according to the target parameter and the maximum area and the minimum area of the area of the display screen that can be used for display output, the target area of the display screen that can be used for display output and matches the current measurement information.
[0138] In an alternative embodiment, the electronic device further includes a fuselage, and the fuselage includes a base and a display screen disposed on the surface of the base;
[0139] The display screen can move between the front and back of the base around the first side of the base, and during the process of the display screen moving between the front and back of the base around the first side of the base, the length or width of the display screen on the target surface of the base changes; or, the display screen of the electronic device is made of an elastic material and can be extended or contracted on the base (such as a telescopic screen device); the area of the display screen that can be used for display output is the area corresponding to the target surface of the display screen on the base.
[0140] In an alternative embodiment, before controlling the device form of the electronic device to match the current measurement information, the processor is further configured to: determine the target length of the display screen on the target surface of the base that matches the current measurement information;
[0141] When controlling the device form of the electronic device to match the current measurement information, the processor is configured to:
[0142] Adjust the length of the display screen on the target surface of the base to the target length; the target surface is one of the front and back of the base.
[0143] In an alternative embodiment, the electronic device further includes a driving component disposed on the base and connected to the display screen, and a track disposed between the base and the display screen;
[0144] When adjusting the length of the display screen on the target surface of the base to the target length, the processor is configured to:
[0145] Drive the display screen to move on the track around the first side through the driving component, so that the length of the display screen on the target surface of the base is the target length.
[0146] In an alternative embodiment, the body base of the electronic device has a fixed length or a variable length on the second side, and the second side is the side on the base perpendicular to the first side.
[0147] If the base has a variable length on the second side, the processor is further configured to:
[0148] Control the length of the base on the second side to change synchronously with the length of the display screen on the second side direction of the corresponding surface of the base, so that the length of the base on the second side is consistent with the length of the display screen on the second side direction of the corresponding surface of the base.
[0149] The corresponding surface is the surface with a high proportion of the display screen on the upper and lower surfaces of the base.
[0150] In an alternative embodiment, the angle between the first part and the second part of the display screen of the electronic device can change. For example, the electronic device is a folding screen device, such as a folding screen mobile phone.
[0151] Exemplarily, the electronic device is divided into two bodies. The two parts of the display screen, namely the first part and the second part, correspond to the two bodies one by one, and respectively cover the same side surfaces of the two bodies. The two bodies can rotate, and when the two bodies rotate, they drive the two parts of the display screen to rotate synchronously, so that the angle between the two parts of the display screen changes.
[0152] Before controlling the device form of the electronic device to match the current measurement information, the processor is further configured to: determine the target angle between the first part and the second part of the display screen that matches the current measurement information;
[0153] When controlling the device form of the electronic device to match the current measurement information, the processor is configured to: control the angle between the first part and the second part of the display screen of the electronic device to change to the target angle.
[0154] Wherein, the device form matching the current measurement information is the device form when the angle between the first part and the second part of the display screen of the electronic device is at the target angle.
[0155] In an alternative embodiment, the processor is further configured to:
[0156] Control the deformation speed of the electronic device according to the current form of the electronic device and the target form matching the current measurement information.
[0157] The electronic device provided in this embodiment corresponds to the control method provided in each of the above method embodiments. For a more detailed implementation process of the electronic device in this embodiment and the control process it can execute, reference may be made to the relevant descriptions of the control method and the applicable electronic device in each of the above method embodiments, which will not be elaborated here.
[0158] An embodiment of the present application also provides a storage medium, which carries one or more sets of computer instructions. When the one or more sets of computer instructions are executed by an electronic device, the electronic device can be enabled to implement the control method provided in any of the above method embodiments.
[0159] It should be noted that the embodiments in this specification are all described in a progressive manner. Each embodiment focuses on the differences from other embodiments. For the same or similar parts among the embodiments, reference can be made to each other.
[0160] For the convenience of description, when describing the above system or device, various modules or units are described separately according to functions. Of course, when implementing the present application, the functions of each unit can be realized in the same or multiple software and / or hardware.
[0161] From the description of the above embodiments, those skilled in the art can clearly understand that the present application can be implemented by means of software plus a necessary general hardware platform. Based on this understanding, the technical solution of the present application, in essence or the part that makes a creative contribution, can be embodied in the form of a software product. The computer software product can be stored in a storage medium, such as ROM / RAM, magnetic disk, optical disc, etc., and includes several instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments of the present application.
[0162] Finally, it should also be noted that in this article, relational terms such as first, second, third, and fourth are used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the element.
[0163] The above are only the preferred embodiments of the present application. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present application, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present application.
Claims
1. A control method, comprising: During the process of the electronic device performing the target task, obtaining current measurement information of the task feature corresponding to the target task; Controlling the device form of the electronic device to match the current measurement information; Among them, the target task is a task whose corresponding task characteristics have measurement requirements; the measurement information of the task characteristics has a corresponding relationship with the change of the device form, and different measurement information corresponds to different device forms.
2. The control method according to claim 1, wherein during the process of the electronic device executing the target task, obtaining the current measurement information of the task feature corresponding to the target task comprises one of the following: When the electronic device is in a charging state, obtaining a charging ratio of a power supply device of the electronic device; In the process of the electronic device identifying the direction, obtaining a deviation of the direction of the electronic device relative to a reference direction; During the process of the electronic device performing a satellite alignment operation based on satellite communication, the signal strength of the electronic device is obtained.
3. The control method according to claim 1, wherein the controlling the device form of the electronic device to match the current measurement information comprises: Controlling the area of the electronic device display screen that can be used for displaying output to be transformed to a target area; Among them, the area that the electronic device display screen can use to display output can change; the device form that matches the current measurement information is the device form when the area that the electronic device display screen can use to display output is the target area.
4. The control method according to claim 1, wherein the controlling the device form of the electronic device to match the current measurement information comprises: Controlling the angle between the first part and the second part of the display screen of the electronic device to change to a target angle; Among them, the angle between the first part and the second part of the electronic device display screen can change; the device form matching the current measurement information is the device form when the angle between the first part and the second part of the electronic device display screen is at the target angle.
5. The control method according to claim 3, wherein the current measurement information includes a target parameter for characterizing progress or degree; The method further comprises: According to the target parameters and the maximum area and the minimum area of the area on the display screen that can be used for displaying output, a target area on the display screen that can be used for displaying output and that matches the current measurement information is determined.
6. The control method according to claim 1, further comprising: The deformation speed of the electronic device is controlled according to the current shape of the electronic device and the target shape matching the current measurement information.
7. An electronic device comprising: A memory for storing at least one set of computer instructions; A processor, configured to implement the following processing by executing the instruction set stored in the memory: During the process of the electronic device performing the target task, obtaining current measurement information of the task feature corresponding to the target task; Controlling the device form of the electronic device to match the current measurement information; Among them, the target task is a task whose corresponding task characteristics have measurement requirements; the measurement information of the task characteristics has a corresponding relationship with the change of the device form, and different measurement information corresponds to different device forms.
8. The electronic device according to claim 7, further comprising a display screen; The area of the display screen that can be used to display output can be changed; When controlling the device form of the electronic device to match the current measurement information, the processor is used to: Controlling the area of the electronic device display screen that can be used for displaying output to be transformed to a target area; in, The device form that matches the current measurement information is the device form in which the area of the electronic device display screen that can be used to display output is the target area.
9. The electronic device according to claim 8, further comprising: A body, the body comprising a substrate and a display screen arranged on a surface of the substrate; The display screen can move around the first edge of the substrate between the front side and the back side of the substrate, and in the process of the display screen moving around the first edge of the substrate between the front side and the back side of the substrate, the length of the display screen on the target surface of the substrate changes; the area of the display screen that can be used for display output is the area of the display screen corresponding to the target surface of the substrate; the target surface is one of the front side and the back side of the substrate; When controlling the device form of the electronic device to match the current measurement information, the processor is used to: The length of the display screen on the target surface of the substrate is adjusted to a target length.
10. The electronic device according to claim 9, further comprising a driving component disposed on the substrate and connected to the display screen, and a track disposed between the substrate and the display screen; When the processor adjusts the length of the display screen on the target surface of the substrate to the target length, the processor is used to: The display screen is driven by the driving component to move around the first side on the track, so that the length of the display screen on the target surface of the substrate is the target length.