CONTROL PROCEDURE AND ELECTRONIC EQUIPMENT

The control method and electronic device enhance user experience by dynamically adjusting the speed of deformable display screens based on configuration parameters, addressing the fixed-speed limitations of conventional methods.

DE102024128128A1Pending Publication Date: 2025-07-03LENOVO (BEIJING) LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
DE102024128128
Authority / Receiving Office
DE · DE
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-29
Filing Date
2024-09-27
Publication Date
2025-07-03

AI Technical Summary

Technical Problem

Conventional methods for controlling the expansion and contraction of deformable display screens, such as rollable and foldable screens, operate at a fixed speed, degrading user experience.

Method used

A control method and electronic device that adjusts the speed of display screen expansion and contraction based on configuration parameters, allowing for flexible switching speeds in response to user needs and environmental conditions.

Benefits of technology

Improves user experience by enabling customizable expansion and contraction speeds, optimizing performance based on ambient noise, energy levels, and specific user interactions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 00000023_0000
    Figure 00000023_0000
  • Figure 00000023_0001
    Figure 00000023_0001
  • Figure 00000023_0002
    Figure 00000023_0002
Patent Text Reader

Abstract

A control method comprises: obtaining a configuration parameter in response to a control instruction; and controlling a driver to be in an operating state corresponding to the control instruction based on the configuration parameter, wherein the driver is configured to drive a display screen to switch between a first state and a second state based on the configuration parameter being in the operating state corresponding to the control instruction;wherein the display screen being in the first state corresponds to a first portion of the display screen, and the display screen being in the second state corresponds to a second portion of the display screen, the second portion comprising the first portion, wherein the speed represented by the configuration parameter is different and a time for the display screen to transition between the first state and the second state is different;
Need to check novelty before this filing date? Find Prior Art

Description

REFERENCE TO RELATED APPLICATIONThe present disclosure claims priority to Chinese Patent Application No. CN202311865542.0 filed on December 29, 2023, the entire contents of which are hereby incorporated by reference.TECHNICAL FIELDThe present disclosure relates to the field of computer technology, and more particularly, to a control method and an electronic device.BACKGROUND ARTIn order to expand the display screens of electronic devices such as mobile phones and tablets, deformable display screens such as rollable screens and foldable screens have appeared and are increasingly used. The deformable display screen is generally folded. When it is necessary for the device screen to be expanded, the deformable display screen may be unfolded to expand the display screen area. However, the conventional method of controlling the expansion / retraction of a deformable display screen can only expand / retract at a fixed speed, which affects the user experience.SUMMARY OF THE INVENTIONOne aspect of this disclosure provides a control method. The control method includes obtaining a configuration parameter in response to a control instruction, and controlling a driver to be in a working state corresponding to the control instruction based on the configuration parameter. The driver is configured to drive a display screen to transition between a first state and a second state based on the configuration parameter being in the working state corresponding to the control instruction. The display screen in the first state corresponds to a first portion of the display screen and the display screen in the second state corresponds to a second portion of the display screen, the second portion including the first portion. The speed represented by the configuration parameter is different, and a time for the display screen to switch between the first state and the second state is different.Another aspect of this disclosure provides an electronic device. The electronic device includes a deformable display screen, a driver, and a controller. The first state of the deformable display screen corresponds to a first portion of the deformable display screen and a second state of the deformable display screen corresponds to a second portion of the deformable display screen, the second portion including the first portion. The driver is configured to drive the deformable display screen to transition between the first state and the second state. The controller is configured to respond to a control instruction, the control instruction including a configuration parameter indicating a speed, and control the driver based on the configuration parameter to cause the driver to be in a working state based on the configuration parameter. The driver is in a working state based on different configuration parameters, and the deformable display screen is configured to transition between the first state and the second state at different speeds.BRIEF DESCRIPTION OF THE DRAWINGSThe following drawings are merely examples for illustrative purposes according to various disclosed embodiments and are not intended to limit the scope of the present disclosure. FIG. 1 is a flowchart of a control method according to an embodiment of the present disclosure. FIG. 2 is a schematic structural diagram of a display screen according to an embodiment of the present disclosure. FIG. 3 is a schematic diagram of an extended display screen according to an embodiment of the present disclosure. FIG. 4 is a schematic diagram of the extended display screen according to an embodiment of the present disclosure. FIG. 5 is a schematic diagram of the extended display screen according to an embodiment of the present disclosure. FIG. 6 is a schematic diagram of the extended display screen according to an embodiment of the present disclosure. FIG. 7 is a schematic structural diagram of an electronic device according to an embodiment of the present disclosure. FIG. 8 is a schematic structural diagram of another electronic device according to an embodiment of the present disclosure.DETAILED DESCRIPTIONTechnical solutions of the present disclosure will be described in detail with reference to the drawings. It should be understood that the described embodiments represent some, but not all, embodiments of the present disclosure. Other embodiments devised or derived without inventive effort based on the described embodiments by those skilled in the art are intended to be within the scope of the present disclosure.Since the conventional method of controlling the expansion / retraction of a deformable display screen can only expand / retract at a fixed speed, the user experience is impaired. Therefore, in order to improve the user experience, the present disclosure provides a control method and an electronic device. The electronic device provided by the present disclosure may be a device equipped with a deformable display screen, for example, a cellular phone or a tablet computer. "Deformable display screen" may include rollable screens and foldable screens.The technical solutions of the embodiments of the present disclosure will be described below with reference to the accompanying drawings.FIG. 1 is a flowchart of a control method according to an embodiment of the present disclosure. The method will be described in detail below.101: obtaining a configuration parameter in response to a control instruction.In some embodiments, the control instruction may include a first control instruction and a second control instruction. The first control instruction may correspond to a first working state. The first working state may refer to a state in which the driver drives the display screen to deploy. In response to the first control instruction, the electronic device may control the driver to drive the display screen to unfold. The second control instruction may correspond to a second working state. The second working state may refer to a state in which the driver drives the display screen to contract. In response to the second control instruction, the electronic device may control the driver to drive the display screen to retract.The configuration parameter may include a speed parameter characterizing the movement of the driver driven display screen. In some embodiments, when the electronic device responds to the control instruction, the speed corresponding to the motor of the driver may be set based on the control instruction, and the speed may be determined as the configuration parameter. In some embodiments, when the motor disposed in the electronic device is a conventional non-digital motor, for example, a DC motor, the speed corresponding to the motor of the driver may be configured by adjusting the current and the voltage; when the motor disposed in the electronic device is a digital motor, for example, a stepping motor or a brushless motor, the corresponding speed of the motor may be configured by adjusting the frequency of the digital pulses.102: controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction.The display screen in the first state may correspond to a first portion of the display screen and the display screen in the second state may correspond to a second portion of the display screen, wherein the second portion of the display screen includes the first portion of the display screen.FIG. 2 is a schematic structural diagram of a display screen according to an embodiment of the present disclosure. As shown in FIG. 2, a display screen 201 is disposed on the surface of an electronic device body 200. As shown in FIG. 2A, the display screen 201 may be wound and applied to both sides of the electronic device body 200 without protruding beyond the body 200. As shown in FIG. 2B, the display screen 201 may be unfolded along one side of the electronic device body 200 so that the display screen becomes longer on that side.Take FIG. 2 as an example. When the first state of the display screen is a state in which the display screen is flush with the body of the electronic device, the second state of the display screen may be any state in which the display screen is expanded beyond the body of the electronic device. When the first state of the display screen is a state in which the display screen is retracted to a state smaller than the body of the electronic device, the second state of the display screen may be any state in which the display screen is extended beyond the body of the electronic device, a state in which the display screen is flush with the body of the electronic device, or a state in which the degree of retraction of the display screen is smaller than in the first state. When the first state of the display screen is a state in which the display screen is expanded beyond the body of the electronic device but is not yet fully expanded, the second state of the display screen may be any state in which the degree of expansion is greater than in the first state. In some embodiments, the first portion of the display screen corresponding to a time when the display screen is in the first state may refer to the portion of the display screen corresponding to a target side of the body of the electronic device, and the second portion of the display screen corresponding to a time when the display screen is in the second state may refer to the portion of the display screen corresponding to the target side of the body of the electronic device. The target page may refer to the page from which the display screen may be extended. As shown in FIG. 2, the target side of the electronic device body may be the left side of the body 200.In some embodiments, the display screen may also be two sub-display screens disposed on the same side of the body of the electronic device. Each of the two sub-display screens may be driven by a driver to expand or contract.In some embodiments, the display screen may also be a foldable display screen disposed on both sides of the body of the electronic device. The foldable display screen may be driven by a driver to extend or retract laterally along the body of the electronic device.The speed represented by the configuration parameter may be different, and the time required for the display screen to transition between the first state and the second state may be different. In some embodiments, the configuration parameter may include multiple speed parameters, each speed parameter representing a different speed. In the present disclosure, the configuration parameter obtained from the electronic device in the process of responding to the control instruction may include a plurality of configuration parameters, and each configuration parameter may represent a different speed.According to the control method of the present disclosure, the electronic device may obtain the configuration parameter in response to the control instruction and control the driver to be in a working state corresponding to the control instruction based on the configuration parameter. The driver may drive the display screen to switch between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction. By controlling the driver to drive the display screen to switch between the first state and the second state based on the configuration parameter in the working state corresponding to the control instruction, the extension / retraction speed of the display screen can be adjusted to the configuration parameter. When the user wants to rapidly expand / contract the display screen, the user can flexibly adjust the switching speed between the first state and the second state by setting the configuration parameter such that the display screen can be rapidly expanded / contracted. When the user wants to slow the extension / retraction speed of the display screen, the user can also change the extension / retraction speed of the display screen by setting the configuration parameter. In this way, the user experience is significantly improved.In some embodiments, obtaining the configuration parameter may include a process A 1 including obtaining multiple configuration parameters, each configuration parameter characterizing different speeds. Subsequently, controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter may include: controlling the driver to be in a working state corresponding to the control instruction based on the plurality of configuration parameters, wherein the driver drives the display screen to change speed between the first state and the second state based on the plurality of configuration parameters being in a working state corresponding to the control instruction.In the present disclosure, the plurality of configuration parameters corresponding to a plurality of predetermined speeds may be set in advance. The speed corresponding to each configuration parameter may be different, so that the driver may flexibly set the switching speed based on the plurality of configuration parameters when the driver drives the display screen to switch between the first and second states. For example, the first state of the display screen may be a state flush with the body of the electronic device, and the second state of the display screen may be a state fully extended along the target side of the electronic device. In this way, the pre-configuration may be that, when the display screen starts to expand from the first state until the display screen is expanded to a first predetermined portion of the full size of the display screen, the expansion speed may be set to a first target speed; after the display screen expands to the first predetermined portion of the full size of the display screen, the expansion speed may be set to a second target speed. The first predetermined proportion may be 50%, 60%, etc., and the first target speed may be set to 50% or 60% of the reference speed of the driver. The first target speed may be set to the reference speed of the driver or the maximum speed of the driver.FIG. 3 is a schematic diagram of an extended display screen according to an embodiment of the present disclosure. As shown in FIG. 3, the electronic device may also set a plurality of configuration parameters corresponding to two predetermined speeds. The speed corresponding to the first configuration parameter may be 30% of the full engine speed and the speed corresponding to the second configuration parameter may be 60% of the full engine speed. That is, the speed corresponding to the second configuration parameter may be twice the speed corresponding to the first configuration parameter. In FIG. 3A, the display screen is flush with the body of the electronic device, and the configuration may be that, before the display screen expands from the state shown in FIG. 3A to the first predetermined portion of the full size of the display screen shown in FIG. 3B, the expansion speed may be set to 30% of the full engine speed; after the display screen expands to the first predetermined portion of the full size of the display screen, the expansion speed may be set to 60% of the full engine speed. In this way, the driver may drive the display screen to expand at 60% of the full motor speed from the state shown in FIG. 3B to the state shown in FIG. 3C.In the present disclosure, in the process of responding to the control instruction, the electronic device may also determine a plurality of configuration parameters in real time based on the environmental volume and the energy of the electronic device, and each configuration parameter may correspond to a different speed. In this way, the switching speed of the driver driving the display screen to switch between the first state and the second state can be set flexibly based on the plurality of configuration parameters.In some embodiments, obtaining the configuration parameter in response to the control instruction may include one of the processes B 1 and B 2.B 1: obtaining, by a target detector, a target parameter in response to the control instruction; and determining the configuration parameter corresponding to the target parameter based on the target parameter.B 2: obtaining, by the target detector, a first target parameter in response to the control instruction; determining a first configuration parameter corresponding to the first target parameter based on the first target parameter satisfying a first margin; obtaining, by the target detector, a second target parameter satisfying a second margin when the driver is controlled to be in a working state corresponding to the control instruction based on the first configuration parameter; and determining a second configuration parameter corresponding to a second target parameter, wherein the second configuration parameter is used to replace the first configuration parameter.In the present disclosure, the target sensing device may be a microphone or an energy meter. The environment volume of the environment in which the electronic device is located or the energy of the electronic device may be monitored by the target detecting means, and the monitored parameters representing the environment volume or energy may be used as the target parameters. The electronic device may set the configuration parameters in real time based on the changes in the target parameters and determine the configuration parameters corresponding to the target parameters. Different configuration parameters may represent different driving speeds, and the driver may be controlled to be in a working state corresponding to the control instruction based on the configuration parameters corresponding to the target parameters. In this way, the driving speed of the driver can be set flexibly based on the ambient volume or energy.In some embodiments, if the target parameter indicates that the ambient volume is greater than a target decibels value, the configuration parameter may represent a first speed; if the target parameter indicates that the ambient volume is not greater than the target decibels value, the configuration parameter may represent a second speed, where the first speed is greater than the second speed. In some embodiments, controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter may include processes C 1 and C 2.C 1: controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter when the target parameter indicates that the ambient volume is greater than the target decibels value, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction.C 2: controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter when the target parameter indicates that the ambient volume is not greater than the target decibels value, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction.The target decibels value may be set based on the actual application scenario. For example, the target decibels value may be set to 35 decibels, the first speed may be set to the maximum speed of the driver or to 80% of the maximum speed of the driver, etc., and the second speed may be set to 40% or 50% of the maximum speed of the driver.In the present disclosure, since the display screen is driven by the motor of the driver, noise occurs when the motor operates, and the greater the speed of the motor, the louder the noise. If the user is in a quiet environment, excessive drive speed will cause the motor to generate louder noise, which will affect the mood of the user. Therefore, when the user is in a quiet environment, it is necessary that the driving speed be reduced to reduce the noise of the motor. In contrast, the noise of the engine in a noisy environment does not have an excessive influence on the user. Therefore, when the user is in a noisy environment, the driving speed can be increased and the display screen can be rapidly expanded / retracted. In some embodiments, if the ambient volume is less than the predetermined decibels value (the predetermined decibels value may refer to the corresponding ambient volume when the environment is extremely quiet and the user may be swabbing), the operation of the driver may be stopped so as not to interfere with the user with the noise of the operation of the engine. In some embodiments, the predetermined decibels value may be set to 25 decibels or 20 decibels.In some embodiments, if the target parameter indicates that the energy of the device is greater than a target energy level, the configuration parameter may represent a third speed; if the target parameter indicates that the energy of the device is not greater than the target energy level, the configuration parameter may represent a fourth speed or a fifth speed, wherein the third speed is greater than the fourth speed and the fifth speed is greater than the fourth speed. In some embodiments, controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter may also include at least one of the processes D 1 and D 2.D 1: controlling the driver to be in a working state corresponding to a first control instruction based on the configuration parameter when the target parameter indicates that the energy of the device is greater than the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction.D 2: controlling the driver to be in a working state corresponding to the first control instruction based on the configuration parameter when the target parameter indicates that the energy of the device is not greater than the target energy level, wherein the driver is configured to drive the display screen to transition between the first and second states based on the configuration parameter being in a working state corresponding to the first control instruction; or controlling the driver to be in a working state corresponding to a second control instruction based on the configuration parameter when the target parameter indicates that the power of the device is not greater than the target power level, wherein the driver is configured to drive the display screen to transition between the first and second states based on the configuration parameter being in a working state corresponding to the second control instruction based on the fifth speed.In this embodiment, the first control instruction may correspond to a first working state, the working state in which the driver drives the display screen to expand, and the second control instruction may correspond to a second working state, the working state in which the driver drives the display screen to contract. The target energy level may be set to 60% or 70% of the maximum energy of the battery of the electronic device, the third speed may be set to the maximum driving speed or to 95% of the maximum driving speed, the fourth speed may be set to 75% or 60% of the maximum driving speed, and the fifth speed may be set to the maximum driving speed or to 95% of the maximum driving speed.The drive speed has effects on the efficiency of the engine system. Generally, the greater the drive speed, the lower the efficiency of the engine system. Lower efficiency means that expanding the display screen consumes more power, resulting in greater resource consumption.To save resources, when the driver drives the display screen to expand, the corresponding driving speed may be adjusted based on the battery power of the electronic device. When the battery level is low, the driving speed of the driver may be reduced to save power consumed in expanding the display screen. When the battery level is high, the resources are sufficient and the driving speed of the driver can be increased, making it possible to rapidly expand the display screen. For example, when the target energy level is set to 60% of the maximum energy of the battery of the electronic device, the battery energy is relatively sufficient, and the driver may drive the display screen at the maximum driving speed when the battery energy of the electronic device is greater than 60% of the maximum energy. When the battery energy of the electronic device is less than or equal to 60% of the maximum energy, the battery energy is relatively low. To save power, the display screen's extension speed may be slowed and the driver may extend the display screen at 75% of the maximum drive speed. In some embodiments, when the battery energy of the electronic device is less than or equal to 60% of the maximum energy, the driver may expand the display screen with 75% of the maximum driving speed when the current energy of the battery is greater than 30% of the maximum energy of the battery and less than 60% of the maximum energy of the battery; the driver may expand the display screen with 50% of the maximum driving speed when the current energy of the battery is greater than 10% of the maximum energy of the battery and less than or equal to 30% of the maximum energy of the battery; When the current power of the battery is less than or equal to 10% of the maximum power of the battery, this means that the current power is extremely low and it is necessary that the driving speed of the driver is further decelerated to save power for other important functions of the electronic device, and the driver may expand the display screen with 10% of the maximum driving speed, or the motor of the driver may be directly stopped to save power.Since the display screen exposed outside the body of the electronic device is easily damaged by impacts, in order to ensure the safety of the display screen, regardless of whether the battery power of the electronic device is high or low, the driver is required to quickly contract the display screen to prevent the display screen exposed outside the body of the electronic device from being damaged due to a delay in pulling back the display screen in time during the retraction process. For example, when the target energy level is set to 60% of the maximum energy of the battery of the electronic device, the battery energy is relatively sufficient, and the driver may drive the display screen to contract based on the maximum driving speed when the battery energy of the electronic device is greater than 60% of the maximum energy. When the battery energy of the electronic device is less than or equal to 60% of the maximum energy, the battery energy is relatively low. In order to promptly retract the display screen exposed outside the body of the electronic device and prevent the display screen from being damaged due to an suppressed retraction of the display screen, it is still necessary for the motor of the driver to rotate at high speed in advance. That is, the driver may drive the display screen to contract at the maximum driving speed or 95% of the maximum driving speed.In some embodiments, obtaining the configuration parameter in response to the control instruction may include obtaining at least one configuration parameter included in the control instruction in response to the control instruction. In the present disclosure, the control instruction may include parameters characterizing the driving speed, and the parameters characterizing the driving speed in the control instruction may be used as configuration parameters. The control instruction may include one or more configuration parameters that characterize the drive speed.In some embodiments, the control instruction may be a call accept instruction, a content display instruction, etc. For example, if the electronic device is a mobile phone and there is an incoming call that the user receives, this means that the electronic device has received the call accept instruction. When the mobile phone recognizes that it is necessary for the application software to display text or image contents on the display screen, this means that the electronic device has received the content display instruction.In some embodiments, the control instruction may be a call accept instruction. The call acceptance instruction may include a destination configuration parameter, and the destination configuration parameter may represent a speed that is higher than a reference speed. Subsequently, controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter may include the process E 1.E 1: controlling the driver to be in a working state corresponding to the call acceptance instruction based on the target configuration parameter, wherein the driver is configured to drive the display screen from the first state corresponding to the first portion of the display screen to extend the display screen along the long edge of the display screen in the second state corresponding to the second portion of the display screen based on the target configuration parameter being in the first working state corresponding to the call acceptance instruction.In some embodiments, the reference speed may be set based on usage of the electronic device. For example, the reference speed may be set to 80% or 90% of the maximum driving speed. The motor generally drives the display screen to expand / contract based on the reference speed. The maximum drive speed may refer to the corresponding drive speed when the motor is running at full power.When the electronic device receives a notification of an incoming call, the user may select whether to accept the call. For example, the user may accept the call by clicking on the call accept prompt on the display screen or by pressing a button. The user may also choose to accept the call by performing a predetermined call acceptance hint action. The choice to accept an incoming call indicates that the call accept instruction has been triggered. The call acceptance instruction may include a destination configuration parameter and the destination configuration parameter may include a drive speed.In the present disclosure, a display screen that expands / retracts vertically along both sides of the body of the electronic device as shown in FIG. 2 is in portrait format after expansion. The size of the electronic device can be expanded by expanding the display screen, which makes it easier for the user to accept calls. Therefore, for this type of display screen, the electronic device may determine the target configuration parameters based on the call acceptance instruction after receiving the call acceptance instruction. That is, the driving speed of the driver may be determined based on the target configuration parameters. The drive speed may be higher than the reference speed so that the display screen may be quickly expanded to facilitate the user receiving a call. For example, the driving speed may be the maximum driving speed, and the electronic device may control the driver to drive the display screen to expand based on the maximum driving speed and cause the display screen to expand from the first portion corresponding to the first state to the long edge of the display screen of the second portion corresponding to the second state. The first state of the display screen may refer to a state in which the display screen is not expanded or is not fully expanded, and the second state of the display screen may refer to a state in which more screens are expanded than in the first state. As shown in FIG. 2, the display screen is attached to both sides of the body of the electronic device 200. In FIGS. 2A and 2B, the portion of the display screen on the left side of the electronic device is the long side of the display screen. For this type of display screen, since the long edge is easier to expand, the display screen can be rapidly expanded along the long edge to the second portion of the display screen corresponding to the second state upon accepting a call notification. That is, the exposed size of the display screen can be quickly extended, so that the extended display size is convenient for users to accept calls and hold the electronic device upon accepting calls, thereby improving the user experience upon accepting calls. FIG. 4 is a schematic diagram of the extended display screen according to an embodiment of the present disclosure. As shown in FIG. 4, when the electronic device receives notification of an incoming call, the display screen without extension remains in its original state when the user selects "reject incoming call". Alternatively, when the user dials to accept the call, the display screen may be quickly expanded from the state shown on the left side of FIG. 4 to the state shown on the right side of FIG. 4 to facilitate the user receiving the call.In the present disclosure, a display screen that expands / retracts laterally along both sides of the body of the electronic device after the extension is in landscape format. The landscape format is not suitable for users to hold the electronic device when receiving calls, so an extension may compromise the user experience when receiving calls. For the landscape mode, the first state of the display screen may refer to a state in which the display screen is fully expanded or not fully expanded, and the second state of the display screen may refer to a state in which the display screen is flush with or lower than the body of the electronic device. Based thereon, for this type of laterally extended / retracted display screen, the electronic device, after receiving the call accept instruction, may maintain the current state when the display screen is in a retracted state and determine the target configuration parameter based on the call accept instruction when the display screen is in an extended state. That is, the driving speed of the driver may be determined based on the target configuration parameter. The drive speed may be higher than the reference speed to cause the display screen to retract rapidly to facilitate the user receiving the call. For example, the driving speed may be the maximum driving speed, and the electronic device may control the driver to retract the display screen along the short edge of the display screen based on the maximum driving speed. In this way, the size of the retracted display screen makes users easier to accept calls and hold the electronic device on accepting calls, thereby improving the user experience on accepting calls.FIG. 5 is a schematic diagram of the extended display screen according to an embodiment of the present disclosure. As shown in FIG. 5, when the electronic device receives an instruction to increase the display screen size, that is, when the control instruction is a display screen enlargement instruction, the display screen enlargement instruction may include the target configuration parameter, and the speed represented by the target configuration parameter may be lower than the reference speed. Subsequently, controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter may include: controlling the driver to be in a working state corresponding to the display screen enlargement instruction based on the target configuration parameter. The driver may drive the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen extending with the long edge of the display screen based on the target configuration parameter being in the first working state corresponding to the display screen enlargement instruction. When the electronic device receives an instruction to increase the display screen size, the target configuration parameter may be determined based on the instruction to increase the display screen size. That is, the driving speed of the driver may be determined based on the target configuration parameter, and the driving speed may be lower than the reference speed to extend the display screen slowly. In this way, the display screen can be enlarged to the maximum size for video reproduction to allow smooth transition of the displayed contents. As shown in FIG. 5, the slow expansion of the display screen based on the driving speed may uniformly expand the contents of the rectangular area displayed on the left side of FIG. 5 to the contents shown on the right side of FIG. 5. In some embodiments, the drive speed may be 50% or 60% of the maximum drive speed.In some embodiments, the control instruction may be a content display instruction. The content display instruction may include the target configuration parameter, and the target configuration parameter may be determined based on the data size of the contents. Subsequently, controlling the driver to be in a working state corresponding to the control instruction based on the configuration parameter may include the process F 1.F 1: controlling the driver to be in a working state corresponding to the content display instruction based on the target configuration parameter, wherein the driver is configured to drive, based on the target configuration parameter being in the first working state corresponding to the content display instruction, the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen extending with the long edge of the display screen.In some embodiments, the change time from when the display screen is in the first state corresponding to the first portion of the display screen to when the display screen is in the second state corresponding to the second portion of the display screen may be the same, and different amounts of data may correspond to target configuration parameters representing different speeds.In some embodiments, the display content may be text, images, etc. The amount of display contents to be displayed can be obtained. The content display time may be fixed; then, the amount of contents to be displayed per unit time may be determined based on the amount of displayed contents and the display time. Subsequently, the target size corresponding to the amount of contents to be displayed per unit time may be determined, thereby determining that the size of the display screen expanded within the unit time is not less than the target size to ensure that the displayed contents may be continuously displayed on the display screen. The target configuration parameters corresponding to the display contents of different amounts of data may represent different driving speeds. The larger the amount of data, the larger the driving speed, so that the display contents can be continuously displayed on the display screen.In some embodiments, it is necessary that as the amount of displayed data increases during the display process, the driving speed is set in real time to ensure that the displayed contents can be continuously displayed on the display screen.FIG. 6 is a schematic diagram of the extended display screen according to an embodiment of the present disclosure. As shown in FIG. 6, FIG. 6A shows the first state of the display screen, FIG. 6B shows that when the amount of contents is "New contents 1", the driver drives the display screen to expand from the first state to the corresponding second state within a predetermined time t, and FIG. 6C shows that the second state corresponding to the display screen has expanded from the first state within the predetermined time t when the amount of contents was "New contents 2". The amount of contents of "New Contents 2" is twice as large as the amount of contents of "New Contents 1". When the extension time is equal to t, the driver in FIG. 6C is required to drive the display screen at twice the speed when "New Contents 2" is to be displayed on the extended display screen.In some embodiments, the displayed content may also be a dialog box pop-up by chat software. For this scenario, the first state of the display screen corresponding to the boundary of the first portion of the display screen may not be fixed, but may be updated in real time. Each time a chat window pops up, the boundary of the currently displayed display screen may be determined as the boundary of the first portion of the display screen. In this way, the electronic device can adjust the driving speed in real time based on the first portion and the second portion of the display screen and the contents included in the chat window, thereby ensuring that each pop-up chat window can be displayed on the display screen.In some embodiments, the configuration parameters may be determined based on the number of target input operations obtained per unit time by the input device before the control instruction is generated. In some embodiments, the greater the number of target inputs, the greater the speed represented by the configuration parameters.In some embodiments, the corresponding configuration parameter may be determined based on the frequency of user input operations on the electronic device. The user input operations on the electronic device may include typing and pressing buttons on an e-book. The greater the frequency of user input operations on the electronic device, the greater the speed represented by the configuration parameter. For example, when the number of words typed by the user per unit time reaches a first predetermined number, the maximum driving speed may be set as the driving speed in the configuration parameter, and the driver may be controlled to expand / contract the display screen based on the maximum driving speed. When the number of words typed by the user per unit time reaches a second predetermined number, the driving speed in the configuration parameter may be set to 80% of the maximum driving speed, and the driver may be controlled to expand / contract the display screen with 80% of the maximum driving speed. In some embodiments, the first predetermined number may be set to 200 or 250, the second predetermined number may be set to 150 or 180, and the unit time may be set to one minute. In another example, when the user clicks the "enter" button at a speed that reaches a first predetermined speed, the maximum driving speed may be set as the driving speed in the configuration parameter, and the driver may be controlled to expand / contract the display screen based on the maximum driving speed. When the user clicks the "enter" button at a speed that reaches a second preset speed, 80% of the maximum drive speed may be set as the drive speed in the configuration parameter, and the driver may be controlled to expand / contract the display screen at 80% of the maximum drive speed. The first predetermined speed and the second predetermined speed may be set based on the actual application scenario, and the first predetermined speed may be greater than the second predetermined speed.In some embodiments, the display screen of the electronic device may include a speed setting area. The user may click the speed setting area to set the desired driving speed as the configuration parameter, so that the electronic device may control the driver to expand / contract the display screen based on the driving speed. In other embodiments, the electronic device settings may include speed setting buttons. Different buttons may represent different drive speeds. The user may set the desired driving speed as a configuration parameter by clicking the button, so that the electronic device may control the driver to expand / contract the display screen based on the driving speed.Another aspect of the present disclosure also provides an electronic device. FIG. 7 is a schematic structural diagram of an electronic device according to an embodiment of the present disclosure. As shown in FIG. 7, the electronic device includes a deformable display screen 701, a driver 702, and a controller 703. The first state of the deformable display screen may correspond to the first portion of the deformable display screen and the second state of the deformable display screen may correspond to the second portion of the deformable display screen, wherein the second portion of the deformable display screen includes the first portion of the deformable display screen. The driver 702 may be configured to drive the deformable display screen to transition between the first state and the second state. The controller 703 may be configured to respond to a control instruction, the control instruction comprising a configuration parameter characterizing the speed; and control the driver based on the configuration parameter such that the driver is in a working state based on the configuration parameter. In some embodiments, the driver may be in a working state based on different configuration parameters, and the deformable display screen may transition between the first state and the second state at different speeds.According to the present disclosure, the electronic device may obtain the configuration parameter in response to the control instruction and control the driver to be in a working state corresponding to the control instruction based on the configuration parameter. The driver may drive the display screen to switch between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction. By controlling the driver to drive the display screen to switch between the first state and the second state based on the configuration parameter in the working state corresponding to the control instruction, the extension / retraction speed of the display screen can be adjusted to the configuration parameter. When the user wants to rapidly expand / contract the display screen, the user can flexibly adjust the switching speed between the first state and the second state by setting the configuration parameter such that the display screen can be rapidly expanded / contracted. When the user wants to slow the extension / retraction speed of the display screen, the user can also change the extension / retraction speed of the display screen by setting the configuration parameter. In this way, the user experience is significantly improved.In some embodiments, the electronic device may also include a body. The first state of the deformable display screen may correspond to the first portion of the deformable display screen lying within a first surface of the body; the second state of the deformable display screen may correspond to the second portion of the deformable display screen lying on the first surface of the body and beyond the first surface. The driver may be used to drive the deformable display screen to move relative to the body and transition between the first state and the second state.Alternatively, the electronic device may also include a first body and a second body. When the first body and the second body are at a first relative position, the deformable display screen may be in the first state; when the first body and the second body are at a second relative position, the deformable display screen may be in the second state. The driver may be used to drive the first body and the second body to transition between the first relative position and the second relative position such that the deformable display screen may transition between the first state and the second state.In some embodiments, the electronic device may include only a single body. The body of the electronic device may refer to the main structure of the electronic device that may support a deformable display screen. The body of the electronic device generally includes components such as a display bottom plate, a flexible display layer, a protective layer, and a support structure.In some embodiments, the electronic device may also include the first body and the second body. When the first body and the second body are at the first relative position, the deformable display screen may be in the first state of being flush with the body or retracted into the body. When the first body and the second body are at the second relative position, the deformable display screen may be in a fully expanded or partially expanded second state.In some embodiments, the controller 703 may be further configured to respond to the control instruction. The control instruction may include a plurality of configuration parameters, and each of the plurality of configuration parameters may represent a different speed. The controller 703 may be further configured to control the driver to be in the working state corresponding to the control instruction based on the plurality of configuration parameters. The driver may drive the display screen to transition between the first state and the second state based on the plurality of configuration parameters being in a working state corresponding to the control instruction.In some embodiments, the controller 703 may be further configured to obtain the target parameter by the target detector in response to the control instruction and obtain the configuration parameter corresponding to the target parameter based on the target parameter; or obtain the first target parameter by the target detector in response to the control instruction and determine the first configuration parameter corresponding to the first target parameter based on the first target parameter satisfying the first margin. The target detector may obtain the second target parameter satisfying the second margin when the driver is controlled to be in a working state corresponding to the control instruction based on the first configuration parameter; and determine the second configuration parameter corresponding to the second target parameter, the second configuration parameter being used to replace the first configuration parameter.In some embodiments, if the target parameter indicates that the ambient volume is greater than a target decibels value, the configuration parameter may represent a first speed; if the target parameter indicates that the ambient volume is not greater than the target decibels value, the configuration parameter may represent a second speed, where the first speed is greater than the second speed. The controller 703 may be further configured to control the driver to be in a working state corresponding to the control instruction based on the configuration parameter when the target parameter indicates that the ambient volume is greater than the target decibels value, the driver configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction based on the first speed.In some embodiments, the controller may be further configured to control the driver to be in a working state corresponding to the control instruction based on the configuration parameter when the target parameter indicates that the ambient volume is not greater than the target decibels value, the driver being configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction based on the second speed.In some embodiments, if the target parameter indicates that the energy of the device is greater than a target energy level, the configuration parameter may represent a third speed; if the target parameter indicates that the energy of the device is not greater than the target energy level, the configuration parameter may represent a fourth speed or a fifth speed, wherein the third speed is greater than the fourth speed and the fifth speed is greater than the fourth speed.In some embodiments, the controller 703 may be further configured to control the driver to be in a working state corresponding to the first control instruction based on the configuration parameter when the target parameter indicates that the energy of the device is greater than the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in a working state corresponding to the control instruction based on the third speed.In some embodiments, the controller 703 may be further configured to control the driver to be in a working state corresponding to the first control instruction based on the configuration parameter when the target parameter indicates that the energy of the device is not greater than the target energy level, wherein the driver is configured to drive the display screen to transition between the first and second states based on the configuration parameter being in a working state corresponding to the first control instruction based on the fourth speed; or controlling the driver to be in a working state corresponding to the second control instruction based on the configuration parameter when the target parameter indicates that the power of the device is not greater than the target power level, wherein the driver is configured to drive the display screen to transition between the first and second states based on the configuration parameter being in a working state corresponding to the second control instruction based on the fifth speed.In some embodiments, the controller 703 may be further configured to obtain at least one configuration parameter included in the control instruction based on the control instruction.In some embodiments, the control instruction may be a call accept instruction. The call acceptance instruction may include a destination configuration parameter, and the destination configuration parameter may represent a speed that is higher than the reference speed.In some embodiments, the controller 703 may be further configured to control the driver to be in a working state corresponding to the call acceptance instruction based on the target configuration parameter, wherein the driver is configured to drive the display screen from the first state corresponding to the first portion of the display screen so that the display screen extends along the long edge of the display screen in the second state corresponding to the second portion of the display screen based on the target configuration parameter.In some embodiments, the control instruction may be a content display instruction. The content display instruction may include the target configuration parameter, and the target configuration parameter may be determined based on the data size of the contents.In some embodiments, the controller 703 may be further configured to control the driver to be in a working state corresponding to the content display instruction based on the target configuration parameter, wherein the driver is configured to drive the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen extending with the long edge of the display screen based on the target configuration parameter.In some embodiments, the change time from when the display screen is in the first state corresponding to the first portion of the display screen to when the display screen is in the second state corresponding to the second portion of the display screen may be the same, and different amounts of data may correspond to target configuration parameters representing different speeds.In some embodiments, the configuration parameters may be determined based on the number of target input operations obtained per unit time by the input device before the control instruction is generated. In some embodiments, the greater the number of target inputs, the greater the speed represented by the configuration parameters.According to the embodiments of the present disclosure, the present disclosure also provides an electronic device and a computer readable storage medium.FIG. 8 is a schematic structural diagram of an electronic device 800 according to an embodiment of the present disclosure. The electronic device is intended to represent various forms of digital computers, such as laptop computers, desktop computers, workstations, personal digital assistants, servers, blade servers, mainframe computers, and other suitable computers. The electronic device may also represent various forms of mobile devices, such as personal digital processing, cellular phones, smart phones, wearable devices, and other similar computing devices. The components shown herein, their connections and relationships, and their functions are merely exemplary and are not intended to limit the implementations of the present disclosure described and / or claimed herein.As shown in FIG. 8, the electronic device 800 includes a computing unit 801 that can perform various appropriate actions and processing according to a computer program stored in a read only memory (ROM) 802, or a computer program loaded from a storage unit 808 to a random access memory (RAM) 803. The RAM 803 may further store various programs and data required for the operation of the electronic device 800. The arithmetic unit 801, the ROM 802, and the RAM 803 are connected to each other via a bus 804. An input / output (I / O) interface 805 is also connected to bus 804.A plurality of components in the electronic device 800 are connected to the I / O interface 805, and include an input unit 806, an output unit 807, the storage unit 808, and a communication unit 809. The input unit 806 may be any device capable of inputting information to the electronic device 800. The input unit 806 may receive input digit or character information and generate a key signal input related to user settings and / or a function controller of the electronic device, and may include, but is not limited to, a mouse, a keyboard, a touch screen, a touchpad, a trackball, a joystick, a microphone, and / or a remote control. The output unit 807 may be any device capable of presenting information and may include, among other things, a display, a speaker, a video / audio output terminal, a shaker, and / or a printer. The storage unit 808 may include, among other things, a magnetic disk and an optical disk. The communication unit 809 allows the electronic device 800 to exchange information / data with other devices via a computer network such as the Internet and / or various telecommunications networks, and may include, but is not limited to, a modem, a network interface card, an infrared communication device, a wireless communication transceiver, and / or a chipset, e.g., a Bluetooth™ device, an 802.11 device, a WLAN device, a WiMAX device, a cellular communication device, and / or the like.The computing unit 801 may be various general purpose and / or special purpose processing components with processing and computing capabilities. Some examples of the computing unit 801 include, but are not limited to, a central processing unit (CPU), a graphics processing unit (GPU), various dedicated artificial intelligence (AI) computing chips, various computing units running machine learning model algorithms, a digital signal processor (DSP), and any suitable processor, controller, microcontroller, etc. The computing unit 801 performs the various methods and processes described above, for example, the control method. For example, in some embodiments, the control method may be implemented as computer program software tangibly embodied in a machine readable medium such as the storage unit 808. In some embodiments, the computer program may be fully or partially loaded and / or installed on the electronic device 800 via the ROM 802 and / or the communication unit 809. When the computer program is loaded into the RAM 803 and executed by the arithmetic unit 801, one or more steps of the control method may be performed. Alternatively, in other embodiments, the computing unit 801 may be configured to perform the control method by any other suitable means (e.g., firmware).Various implementations of the systems and techniques described above may be implemented in a digital electronic circuit system, an integrated circuit system, a field programmable gate array (FPGA), an application specific integrated circuit (ASIC), a standard application specific product (ASSP), a system-on-chip system (SOC system), a complex programmable logic device (CPLD), computer hardware, firmware, software, and / or a combination thereof. These various implementations may include: the systems and techniques are implemented in one or more computer programs, wherein the one or more computer programs may be executed and / or interpreted on a programmable system having at least one programmable processor. The programmable processor may be a special or general purpose programmable processor that can receive data and instructions from a storage system, at least one input device, and at least one output device, and can transmit data and instructions to the storage system, the at least one input device, and the at least one output device.Program codes used to implement the method of the present disclosure may be composed in any combination of one or more programming languages. These program codes may be provided to a processor or controller of a general purpose computer, special purpose computer, or other programmable data processing apparatus such that when the program codes are executed by the processor or controller, the functions / acts specified in the flowcharts and / or block diagrams are implemented. The program codes may execute entirely on a machine or execute partly on a machine, or they may execute as an independent software package partly on a machine and partly on a remote machine or execute entirely on a remote machine or a server.In the context of the present disclosure, the machine-readable medium may be a tangible medium that can contain or store a program for use by an instruction execution system, apparatus, or device, or for use in combination with the instruction execution system, apparatus, or device. The machine readable medium may be a machine readable signal medium or a machine readable storage medium. The machine-readable medium may include, but is not limited to, one(s) electronic(s), magnetic(s), optical(s), electromagnetic(s), infrared or semiconductor system, apparatus, or apparatus, or any suitable combination thereof. More specific examples of the machine readable storage medium may include an electrical connection based on one or more wires, a portable computer medium, a hard disk, a random access memory (RAM), a read only memory (ROM), an erasable programmable read only memory (EPROM or Flash memory), an optical fiber, a portable CD-ROM, an optical storage device, a magnetic storage device, or any suitable combination thereof.To provide for interaction with a user, the systems and techniques described herein may be implemented on a computer, including: a display device (e.g., a cathode ray tube (CRT) or a liquid crystal display (LCD) monitor) configured to display information to the user; and a keyboard and a pointing device (e.g., a mouse or trackball) through which the user may provide input to the computer. Other types of devices may also be used to enable interaction with the user; for example, the feedback provided to the user may be any form of sensory feedback (e.g., visual feedback, audible feedback, or tactile feedback) and input from the user may be received in any form (including as audible input, voice input, or tactile input).The systems and techniques described herein may be implemented on a computer system (e.g., as a data server) having a backend component, or a computer system (e.g., an application server) having a middleware component, or a computer system (e.g., a user computer having a graphical user interface or a web browser through which the user may interact with the implementation of the systems and techniques described herein) having a frontend component, or on a computer system having any combination of the backend component, the middleware component, or the frontend component. The components of the system may be connected to one another via digital data communication (for example a communication network) in any desired form or by means of any desired medium. Examples of the communication network include: a local area network (LAN), a wide area network (WAN), and the Internet.A computer system may include a client and a server. The client and server are generally far from each other and normally interact over a communication network. A relationship between the client and the server is generated by computer programs running on respective computers and having a client-server relationship with each other. The server may be a cloud server, a server in a distributed system, or a server combined with a blockchain.It should be appreciated that steps may be rearranged, added, or omitted based on the various forms of the approaches shown above. For example, the steps documented in the present disclosure may be performed in parallel, in order, or in another order, provided that the desired result of the technical solutions disclosed in the present disclosure may be achieved; this is not limited here.Moreover, the terms "first(r / s)" and "second(r / s)" are used for description purposes only and are not intended to be taken as indicating or impacting relative importance or as implicitly indicating the number of technical features. Thus, a feature described with "first(r / s)" or "second(r / s)" may explicitly or implicitly comprise one or more of these features. In the description of the present disclosure, unless otherwise stated, "plural... " means two or more.Various embodiments have been described to illustrate the operating principles and implementation examples. Those skilled in the art will understand that the present disclosure is not limited to the specific embodiments described herein, and that various other obvious alterations, rearrangements, and substitutions are possible, which do not depart from the scope of the disclosure. Thus, although the present disclosure has been described in detail with reference to the above-described embodiments, the present disclosure is not limited to the above-described embodiments, but may be embodied in other equivalent forms without departing from the scope of the present disclosure.References included in the specificationThis list of documents cited by the applicant has been produced in an automated manner and is only included for the better information of the reader. The list is not part of the German patent application or utility model application. The DPMA does not take any adhesion for any faults or omissions.Patent Literature citedCN 202311865542.0

[0001]

Claims

A control method, comprising: obtaining a configuration parameter in response to a control instruction; and controlling a driver to be in a working state corresponding to the control instruction based on the configuration parameter, wherein the driver is configured to drive a display screen to transition between a first state and a second state based on the configuration parameter being in the working state corresponding to the control instruction; wherein that the display screen is in the first state corresponds to a first portion of the display screen, and that the display screen is in the second state corresponds to a second portion of the display screen, wherein the second portion comprises the first portion, wherein the speed represented by the configuration parameter is different and a time for the display screen to transition between the first state and the second state is different.The control method according to claim 1, wherein the obtaining the configuration parameter comprises: obtaining a plurality of configuration parameters, each of the plurality of configuration parameters representing different speeds; and the controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter comprises: controlling the driver to be in the working state corresponding to the control instruction based on the plurality of configuration parameters, wherein the driver is configured to drive the display screen to switch between the first state and the second state based on the plurality of configuration parameters being in the working state corresponding to the control instruction.The control method according to claim 1, wherein the obtaining the configuration parameter in response to the control instruction comprises: obtaining, by a target detector, a target parameter in response to the control instruction; and determining the configuration parameter corresponding to the target parameter based on the target parameter; or obtaining, by the target detector, a first target parameter in response to the control instruction; determining a first configuration parameter corresponding to the first target parameter based on the first target parameter satisfying a first margin; and obtaining, by the target detector, a second target parameter satisfying a second margin, and determining a second configuration parameter corresponding to the second target parameter, wherein the second configuration parameter is used to replace the first configuration parameter.The control method of claim 3, wherein: the configuration parameter represents a first speed when the target parameter indicates that an ambient volume is greater than a target decibels value; the configuration parameter represents a second speed when the target parameter indicates that the ambient volume is less than or equal to the target decibels value, the first speed being greater than the second speed; and controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter comprises: controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter when the target parameter indicates that the ambient volume is greater than the target decibels value, wherein the driver is configured to drive the display screen based on the configuration parameter being in the working state corresponding to the control instruction to transition between the first state and the second state based on the first speed; controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter when the configuration parameter indicates that the ambient volume is less than or equal to the target decibels value, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the control instruction based on the second speed.The control method of claim 3, wherein: the configuration parameter represents a third speed when the target parameter indicates that a device energy is greater than a target energy level; the configuration parameter represents a fourth speed or a fifth speed when the target parameter indicates that the device energy is less than or equal to the target energy level, wherein the third speed is greater than the fourth speed and the fifth speed is greater than the fourth speed; and controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter comprises: controlling the driver to be in the working state corresponding to a first control instruction based on the configuration parameter when the target parameter indicates that the device energy is greater than the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the first control instruction; controlling the driver to be in the working state corresponding to the first control instruction based on the configuration parameter when the target parameter indicates that the device energy is less than or equal to the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the first control instruction; or controlling the driver to be in the working state corresponding to a second control instruction based on the configuration parameter when the target parameter indicates that the device energy is less than or equal to the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the second control instruction based on the fifth speed.The control method according to claim 1, wherein the obtaining the configuration parameter in response to the control instruction comprises: obtaining at least one configuration parameter included in the control instruction in response to the control instruction.The control method according to claim 6, wherein: the control instruction is a call acceptance instruction, the call acceptance instruction comprises a target configuration parameter, and the speed represented by the target configuration parameter is higher than a reference speed; controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter comprises: controlling the driver to be in the working state corresponding to the call acceptance instruction based on the target configuration parameter, wherein the driver is configured to drive, based on the target configuration parameter being in a first working state corresponding to the call acceptance instruction, the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen to extend along a long edge of the display screen; or the control instruction is a content display instruction, the content display instruction includes the target configuration parameter, and the target configuration parameter is determined based on a content data amount; controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter comprises: controlling the driver to be in the working state corresponding to the content display instruction based on the target configuration parameter, wherein the driver is configured to drive the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen based on the target configuration parameter being in a first working state corresponding to the content display instruction, so as to extend along a long edge of the display screen, wherein: a switching time between when the display screen is in the first state corresponding to the first portion of the display screen and when the display screen is in the second state corresponding to the second portion of the display screen is the same, and different content data sets correspond to target configuration parameters representing different speeds.The control method according to claim 1, further comprising: determining the configuration parameter based on a number of target input operations obtained per unit time by an input device before the control instruction is generated, wherein: the larger the number of target input operations, the greater the speed represented by the configuration parameter.An electronic device, comprising: a deformable display screen, wherein a first state of the deformable display screen corresponds to a first portion of the deformable display screen, a second state of the deformable display screen corresponds to a second portion of the deformable display screen, and the second portion comprises the first portion; a driver, wherein the driver is configured to drive the deformable display screen to transition between the first state and the second state; and a controller, wherein the controller is configured to: respond to a control instruction, wherein the control instruction comprises a configuration parameter indicative of a speed; and controlling the driver based on the configuration parameter to cause the driver to be in a working state based on the configuration parameter, wherein: the driver is in a working state based on different configuration parameters, and the deformable display screen is configured to transition between the first state and the second state at different speeds.The electronic device of claim 9, further comprising: a body, wherein the first state of the deformable display screen corresponds to the first portion of the deformable display screen lying within a first surface of the body, the second state of the deformable display screen corresponds to the second portion of the deformable display screen lying on the first surface of the body and beyond the first surface, the driver is configured to drive the deformable display screen to move relative to the hub and transition between the first state and the configuration parameter; or a first body; and a second body, wherein the deformable display screen is in the first state when the first body and the second body are at a first relative position; the deformable display screen is in the second state when the first body and the second body are at a second relative position; the driver is configured to drive the first body and the second body to transition between the first relative position and the second relative position to cause the deformable display screen to transition between the first state and the second state.The electronic device of claim 9, wherein the controller is further configured to: respond to the control instruction, the control instruction representing a plurality of configuration parameters and each of the plurality of configuration parameters representing different speeds; and control the driver to be in the working state corresponding to the control instruction based on the plurality of configuration parameters, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the plurality of configuration parameters being in the working state corresponding to the control instruction.The electronic device of claim 9, wherein the controller is further configured to: obtain, by a target detector, a target parameter in response to the control instruction; and determine, based on the target parameter, the configuration parameter corresponding to the target parameter; or obtain, by the target detector, a first target parameter in response to the control instruction; determine, based on the first target parameter satisfying a first margin, a first configuration parameter corresponding to the first target parameter; and obtain, by the target detector, a second target parameter satisfying a second margin and determine a second configuration parameter corresponding to the second target parameter, wherein the second configuration parameter is used to replace the first configuration parameter.The electronic device of claim 12, wherein: the configuration parameter represents a first speed when the target parameter indicates that an ambient volume is greater than a target decibels value; the configuration parameter represents a second speed when the target parameter indicates that the ambient volume is less than or equal to the target decibels value, the first speed being greater than the second speed; and the controller is further configured to: control the driver to be in the working state corresponding to the control instruction based on the configuration parameter when the target parameter indicates that the ambient volume is greater than the target decibels value, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the control instruction based on the first speed; controlling the driver to be in the working state corresponding to the control instruction based on the configuration parameter when the configuration parameter indicates that the ambient volume is less than or equal to the target decibels value, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the control instruction.The electronic device of claim 12, wherein: the configuration parameter represents a third speed when the target parameter indicates that a device energy is greater than a target energy level; the configuration parameter represents a fourth speed or a fifth speed when the target parameter indicates that the device energy is less than or equal to the target energy level, wherein the third speed is greater than the fourth speed and the fifth speed is greater than the fourth speed; and the controller is further configured to: control the driver to be in the working state corresponding to a first control instruction based on the configuration parameter when the target parameter indicates that the device energy is greater than the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the first control instruction based on the third speed; controlling the driver to be in the working state corresponding to the first control instruction based on the configuration parameter when the target parameter indicates that the device energy is less than or equal to the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the first control instruction; or controlling the driver to be in the working state corresponding to a second control instruction based on the configuration parameter when the target parameter indicates that the device energy is less than or equal to the target energy level, wherein the driver is configured to drive the display screen to transition between the first state and the second state based on the configuration parameter being in the working state corresponding to the second control instruction based on the fifth speed.The electronic device of claim 9, wherein the controller is further configured to: obtain at least one configuration parameter included in the control instruction in response to the control instruction.The electronic device of claim 15, wherein: the control instruction is a call acceptance instruction, the call acceptance instruction comprises a target configuration parameter, and the speed represented by the target configuration parameter is higher than a reference speed; and the control device is further configured to: control the driver to be in the working state corresponding to the call acceptance instruction based on the target configuration parameter, wherein the driver is configured to drive, based on the target configuration parameter being in a first working state corresponding to the call acceptance instruction, the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen to extend along a long edge of the display screen; or the control instruction is a content display instruction, the content display instruction includes the target configuration parameter, and the target configuration parameter is determined based on a content data amount; and the controller is further configured to: control the driver to be in the working state corresponding to the content display instruction based on the target configuration parameter, wherein the driver is configured to, based on the target configuration parameter being in a first working state corresponding to the content display instruction, drive the display screen in the first state corresponding to the first portion of the display screen to the display screen in the second state corresponding to the second portion of the display screen to extend along a long edge of the display screen, wherein: a switching time between the time the display screen is in the first state, which corresponds to the first portion of the display screen and the time when the display screen is in the second state corresponding to the second portion of the display screen is the same, and different content data sets correspond to target configuration parameters representing different speeds.The electronic device according to claim 9, wherein: the configuration parameter is determined based on a number of target input operations obtained per unit time by an input device before the control instruction is generated, wherein the larger the number of target input operations, the larger the speed represented by the configuration parameter.

Citation Information

Patent Citations

  • Control method and electronic equipment

    CN117873578A