WO2016095640A1 - 移动终端的控制方法及移动终端 - Google Patents
移动终端的控制方法及移动终端 Download PDFInfo
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0481—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
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- the present disclosure relates to the field of mobile communications technologies, and in particular, to a mobile terminal control method and a mobile terminal.
- the mobile terminal adds a function of the space operation, and the user can use the space operation function to perform page turning up and down without touching the display screen of the mobile terminal. Simple operation.
- the existing air gap operation mode does not indicate that the current space-storing operation of the user corresponds to the specific location of the display screen, the user cannot determine the currently selected target, and it is inconvenient for the user to operate the mobile terminal in space.
- the embodiment of the present disclosure provides a method for controlling the mobile terminal, including:
- the space-storing operation information includes the orientation information and the target manipulation information
- a target at the target location is manipulated based on the target manipulation information.
- an embodiment of the present disclosure further provides a mobile terminal, including:
- a display module configured to display an indication mark on a display screen of the mobile terminal
- An air gap operation information generating module configured to sense a user's space-to-space operation on the mobile terminal, and generate Interval operation information, the space operation information includes orientation information and target manipulation information;
- An orientation processing module configured to control, according to the orientation information, the indication mark to move to a target position along the corresponding orientation on the display screen;
- a target processing module configured to manipulate the target at the target location according to the target manipulation information.
- the embodiment of the present disclosure controls the indication mark to move to the target position by displaying the indication mark on the display screen of the mobile terminal, and according to the acquired orientation information of the user's space-storing operation, and according to the target operation of the acquired user's space-saving operation
- the information, the operation target indicated by the current indication mark can make the user clear the current operation target, thereby facilitating the user to perform the space operation on the mobile terminal and improving the user experience.
- FIG. 1 is a schematic flow chart of a first embodiment of a method for controlling a mobile terminal according to the present disclosure
- FIG. 2 is a schematic flow chart of a second embodiment of a method for controlling a mobile terminal according to the present disclosure
- FIG. 3 is a schematic flow chart of a third embodiment of a method for controlling a mobile terminal according to the present disclosure
- FIG. 4 is a schematic structural diagram of a first embodiment of a mobile terminal of the present disclosure
- FIG. 5 is a schematic structural diagram of a second embodiment of a mobile terminal of the present disclosure.
- FIG. 6 is a schematic structural diagram of a third embodiment of a mobile terminal of the present disclosure.
- FIG. 1 is a schematic flowchart of a first embodiment of a method for controlling a mobile terminal according to the present disclosure.
- the control method includes:
- step S11 an indication mark is displayed on the display screen of the mobile terminal.
- the indicator mark may be displayed when the mobile terminal is started, or may be inspected. Displayed after entering the air-to-air operation mode.
- the trigger conditions for entering the air-to-space operation mode include, but are not limited to, being triggered by the user through the mobile terminal physical button (for example, the user presses the physical button of the mobile terminal while waving the mobile terminal in a specific trajectory in the air); the user clicks or slides
- the virtual operation button on the display of the mobile terminal is triggered; triggered by the user's gesture.
- the indicator mark may also be displayed on the mobile terminal to sense that a finger or other indicator is suspended above the trigger button and is displayed after a certain time.
- the trigger button may be a floating button that can be moved at a position, or a commonly used button with a fixed position, such as a menu button.
- the trigger button is a floating button, and when the mobile terminal senses that the finger or other indicator stays on the floating button for 2 seconds, an indication mark may appear at the floating button.
- the indicator can be a focus, an arrow pointer, an arbitrary pattern, or an animation.
- the initial position of the indicator mark on the display screen may be a fixed position set in advance, or may be a position that the finger (usually a thumb) is easily accessible on the display screen when the user holds the mobile terminal, for example, is set on the display screen.
- the edge position may be a fixed position set in advance, or may be a position that the finger (usually a thumb) is easily accessible on the display screen when the user holds the mobile terminal, for example, is set on the display screen.
- Step S12 Generate an air gap operation information according to a space-storing operation of the mobile terminal by the user, where the air gap operation information includes the orientation information and the target manipulation information.
- the user's operation on the mobile terminal includes: an air move operation and an air gap target control operation.
- the corresponding air gap operation information is position information and target manipulation information.
- the orientation information refers to movement direction information and movement distance information of an execution body (such as a user's finger or other indicator) of the air gap operation on a plane parallel to the display screen.
- the other indicators described above may be other objects than the user's finger for generating a space-storing operation, such as a finger cot, a touch pen, or any object having at least one end.
- the types of the airspace target control operations include the target function execution type, the target drag type, the target selected type, and the target zoom type.
- the target manipulation information includes the following four types: target function execution information, target drag information, target selection information, and target zoom information.
- the target function execution type includes a double-clicking empty target control operation, and the corresponding target function execution information is: entering or starting information indicating a target at a target location where the marker is currently located;
- the target drag type includes an empty target control operation for maintaining a click gesture, and the corresponding target drag information is: sliding or dragging the information indicating the target at the target position where the mark is currently located;
- the target selection type includes the clicked target control operation of the click, and the corresponding target selection letter Information: select or activate the information indicating the target at the target location where the marker is currently located;
- the target zoom type includes an air separation target control operation in which a plurality of fingers are separated or merged, and the corresponding target zoom information is: the zoom indicating the target at the target position where the mark is currently located.
- Step S13 according to the orientation information, the control indication mark is moved to the target position along the corresponding orientation on the display screen. If the current mobile terminal detects the user's finger or other indicator to move on a plane parallel to the display screen, the control indication mark moves the corresponding distance in a direction consistent with the moving direction of the user's finger or other indicator until Reach the user's target location.
- Step S14 according to the target manipulation information, the target at the target position is manipulated.
- the target may be an application icon, a picture, a text, a multimedia file, a menu button, a control button or a plug-in, etc., and the manner of manipulating the target includes clicking, dragging, opening, activating or selecting, and the like.
- a threshold distance may be defined. After performing step S11, the distance between the user's finger or other indicator and the mobile terminal is measured in real time by the sensor. When the measured distance is greater than the threshold distance, the mobile terminal does not respond to the gap operation; when the measured distance is less than the threshold distance, the mobile terminal responds to the gap operation, and step S12 is performed.
- the threshold distance may be the longest distance that the signal sent by the sensor sends out (such as the 13.56 MHz wireless signal used by the near field communication technology, the maximum distance is 20 cm), or may be a user-defined distance.
- the embodiment of the present disclosure controls the indication mark to move to the target position by displaying the indication mark on the display screen of the mobile terminal, and according to the acquired orientation information of the user's space-storing operation, and according to the target operation of the acquired user's space-saving operation
- the information, the operation target indicated by the current indication mark can make the user clear the current operation target, thereby facilitating the user to perform the space operation on the mobile terminal and improving the user experience.
- control method includes:
- step S21 an indication mark is displayed on the display screen of the mobile terminal.
- This step is the same as the corresponding steps in the first embodiment, and details are not described herein again.
- Step S22 acquiring a projection displacement of the user's space movement operation on the plane of the display screen.
- the mobile terminal records the projection position of the finger or other indicator on the display plane before the movement operation as the initial position, and records the projection position of the finger or other indicator on the display plane after the movement operation as the end position, and according to The initial position and the end position generate a projection displacement.
- the above-mentioned space-moving operation refers to an operation of relatively moving a user's finger or other indicator that operates in a continuous time with the mobile terminal, taking a single finger as an example, when the user's finger is from a position.
- the projection position of the finger from the initial position to the end position corresponding to the projection position of the display plane is generated.
- Step S23 generating orientation information according to the projection displacement, the orientation information including a projection direction and a projection distance information of the projection displacement.
- the projection direction may be a direction from an initial position to an end position
- the projection distance may be a linear distance from the initial position to the end position
- Step S24 generating target manipulation information according to the air separation target control operation.
- the types of the airspace target control operations include the target function execution type, the target drag type, the target selected type, and the target zoom type.
- the target manipulation information includes the following four types: target function execution information, target drag information, target selection information, and target zoom information.
- the target function execution type includes a double-clicking empty target control operation, and the corresponding target function execution information is: entering or starting information indicating a target at a target location where the marker is currently located;
- the target drag type includes an empty target control operation for maintaining a click gesture, and the corresponding target drag information is: sliding or dragging the information indicating the target at the target position where the mark is currently located;
- the target selection type includes a clicked target control operation, and the corresponding target selection information is: selecting or activating the information of the target at the target location where the indication mark is currently located;
- the target zoom type includes an air separation target control operation in which a plurality of fingers are separated or merged, and the corresponding target zoom information is: the zoom indicating the target at the target position where the mark is currently located.
- Step S25 controlling the indication mark to move in a direction that coincides with the projection direction.
- the control indication mark moves the corresponding distance in a direction consistent with the projection direction of the movement of the user's finger or other indicator until the user arrives target location.
- Step S26 controlling the indication mark to move a preset distance to a target position, where the preset distance corresponds to the projection distance information.
- the preset distance indicating the movement of the mark is greater than the projection distance, and the preset distance indicating the movement of the mark may be in a linear proportional relationship with the projection distance.
- Step S27 according to the target manipulation information, manipulating the target at the target position.
- the step numbers are not used to limit the implementation steps of the method of the present invention, and the steps after the serial number do not necessarily depend on the implementation of the previous step.
- the feedback of the air separation target control operation and the feedback to the space movement operation may be performed sequentially, or may be performed simultaneously, for example, when the user operates the space, when The user keeps a finger click gesture and moves the finger, and can drag the object at the target position where the marker is located when the click is made.
- the embodiment of the present disclosure linearly enlarges the distance of the space-moving operation in the user's air-vacuum operation, so that the user can move the indicator mark to any position on the display screen of the mobile terminal with one hand, so that the user can take a heavy object or hold the railing in one hand.
- the target manipulation information is generated by the user's empty target control operation, and the target where the indication mark is located is controlled, which is simple and convenient to use, and improves the user experience.
- the control method includes.
- step S31 an indication mark is displayed on the display screen of the mobile terminal.
- This step is the same as the corresponding steps in the first embodiment, and details are not described herein again.
- Step S32 acquiring a projection displacement of the user's space movement operation on the plane of the display screen.
- This step is the same as the corresponding step in the second embodiment, and details are not described herein again.
- Step S33 generating orientation information according to the projection displacement, the orientation information including a projection direction and a projection distance information of the projection displacement.
- This step is the same as the corresponding step in the second embodiment, and details are not described herein again.
- Step S34 according to the target control operation of the user, in the preset target control operation library, query the target control operation type corresponding to the target control operation.
- the mobile terminal can provide a unified target control operation library for all applications and operation interfaces, and can also provide an independent target control operation library for each application and operation interface, so that the user can implement different functions in different applications through the same target control operation. Meet the individual needs of users.
- Step S35 Generate target manipulation information corresponding to the target control operation type according to the target control operation type.
- the above target control operation type is any one of a target function execution type, a target drag type, a target selected type, and a target zoom type.
- Step S36 controlling the indication mark to move in a direction that coincides with the projection direction.
- Step S37 controlling the indicator mark to move the preset distance to the target position, the preset distance and The projection distance information corresponds.
- This step is the same as the corresponding step in the second embodiment, and details are not described herein again.
- Step S38 according to the target manipulation information, the target at the target position is manipulated.
- the step numbers are not used to limit the implementation steps of the method of the present invention, and the steps after the serial number do not necessarily depend on the implementation of the previous step.
- the feedback of the air separation target control operation and the feedback to the space movement operation may be performed sequentially, or may be performed simultaneously, for example, when the user operates the space, when The user keeps a finger click gesture and moves the finger, and can drag the object at the target position where the marker is located when the click is made.
- the embodiment of the present disclosure provides a target control operation library corresponding to the target control operation by querying a target control operation library corresponding to the target control operation in the target control operation library, and generates target manipulation information corresponding to the target control operation type.
- the user can control the mobile terminal by using a plurality of different target control operations, so that the control mode of the space-storing operation can be more abundant, and is not limited to the existing page turning function, thereby improving the ease of use and the level of intelligence of the mobile terminal.
- the embodiments of the control method of the mobile terminal of the present disclosure have been described in detail above.
- the apparatus corresponding to the above method i.e., mobile terminal
- the mobile terminal may be a mobile phone, a tablet computer, an MP3, an MP4, or a notebook computer.
- FIG. 5 is a schematic structural diagram of a first embodiment of a mobile terminal according to the present disclosure.
- the mobile terminal 100 includes a display module 110, an air gap operation information generating module 120, an orientation processing module 130, and a target processing module 140.
- the display module 110 is coupled to the orientation processing module 130 and the target processing module 140 for displaying an indication mark on a display screen of the mobile terminal 100.
- the guidance mark may be displayed when the mobile terminal is activated, or displayed after detecting the entry into the space-save operation mode.
- the trigger conditions for entering the air-to-space operation mode include, but are not limited to, being triggered by the user through the mobile terminal physical button (for example, the user presses the physical button of the mobile terminal while waving the mobile terminal in a specific trajectory in the air); the user clicks or slides The virtual operation button on the display of the mobile terminal is triggered; triggered by the user's gesture.
- the indicator mark may also be displayed on the mobile terminal to sense that a finger or other indicator is suspended above the trigger button and is displayed after a certain time.
- the trigger button may be a floating button that can be moved at a position, or a commonly used button with a fixed position, such as a menu button.
- the trigger button is a floating button, when the mobile terminal senses that a finger or other indicator is suspended on the floating button. After 2s, an indicator can appear at the hover button.
- the indicator can be a focus, an arrow pointer, an arbitrary pattern, or an animation.
- the initial position of the indicator mark on the display screen may be a fixed position set in advance, or may be a position that the finger (usually a thumb) is easily accessible on the display screen when the user holds the mobile terminal, for example, is set on the display screen.
- the edge position may be a fixed position set in advance, or may be a position that the finger (usually a thumb) is easily accessible on the display screen when the user holds the mobile terminal, for example, is set on the display screen.
- the air gap operation information generating module 120 is connected to the azimuth processing module 130 and the target processing module 140, and is configured to sense a user's space-storing operation on the mobile terminal 100 to generate an air gap operation information, where the air gap operation information includes the position information and the target. Manipulate the information.
- the orientation information refers to movement direction information and movement distance information of an execution body (such as a user's finger or other indicator) of the air gap operation on a plane parallel to the display screen.
- the other indicators described above may be other objects than the user's finger for generating a space-storing operation, such as a finger cot, a touch pen, or any object having at least one end.
- the types of the airspace target control operations include the target function execution type, the target drag type, the target selected type, and the target zoom type.
- the target manipulation information includes the following four types: target function execution information, target drag information, target selection information, and target zoom information.
- the target function execution type includes a double-clicking empty target control operation, and the corresponding target function execution information is: entering or starting information indicating a target at a target location where the marker is currently located;
- the target drag type includes an empty target control operation for maintaining a click gesture, and the corresponding target drag information is: sliding or dragging the information indicating the target at the target position where the mark is currently located;
- the target selection type includes a clicked target control operation, and the corresponding target selection information is: selecting or activating the information of the target at the target location where the indication mark is currently located;
- the target zoom type includes an air separation target control operation in which a plurality of fingers are separated or merged, and the corresponding target zoom information is: the zoom indicating the target at the target position where the mark is currently located.
- the orientation processing module 130 is configured to control the indication mark to move to the target position along the corresponding orientation on the display screen according to the orientation information. If the current gap information generating module 120 detects a user's finger or other pointer to move on a plane parallel to the display screen, the orientation processing module 130 controls the indication mark to follow the direction of movement of the user's finger or other pointer. Move the corresponding distance in a consistent direction until the user's target position is reached.
- a target processing module 140 configured to control, at the target location, according to the target manipulation information aims.
- the target may be an application icon, a picture, a text, a multimedia file, a menu button, a control button or a plug-in, etc., and the manner of manipulating the target includes clicking, dragging, opening, activating or selecting, and the like.
- a threshold distance may be defined, and the distance between the user's finger or other indicator and the mobile terminal is measured in real time by the sensor, when the measured distance is When the distance is greater than the threshold distance, the mobile terminal does not respond to the air gap operation; when the measured distance is less than the threshold distance, the mobile terminal responds to the air gap operation.
- the threshold distance may be the longest distance that the signal sent by the sensor sends out (such as the 13.56 MHz wireless signal used by the near field communication technology, the maximum distance is 20 cm), or may be a user-defined distance.
- the embodiment of the present disclosure controls the indication mark to move to the target position by displaying the indication mark on the display screen of the mobile terminal, and according to the acquired orientation information of the user's space-storing operation, and according to the target operation of the acquired user's space-saving operation
- the information, the operation target indicated by the current indication mark can make the user clear the current operation target, thereby facilitating the user to perform the space operation on the mobile terminal and improving the user experience.
- FIG. 6 is a schematic structural diagram of a second embodiment of a mobile terminal of the present disclosure.
- the mobile terminal 200 includes a display module 210, an air gap operation information generating module 220, an orientation processing module 230, and a target processing module 240.
- the display module 210 is configured to display an indication mark on a display screen of the mobile terminal.
- This module is the same as the corresponding module in the first embodiment, and details are not described herein again.
- the air gap operation information generating module 220 includes a projection displacement acquiring unit 221, an orientation information generating unit 222, and a manipulation information generating unit 223, and the air gap operation includes an air gap moving operation and an air gap target control operation.
- the projection displacement acquiring unit 221 is connected to the orientation information generating unit 222, and is configured to acquire a projection displacement of the space-moving movement operation on a plane of the display screen.
- the projection displacement acquiring unit 221 records the projection position of the finger or other indicator on the display plane before the air movement operation as the initial position, and records the projection position of the finger or other indicator on the display plane after the air movement operation as the last position. And generate a projection displacement based on the initial position and the end position.
- the above-mentioned space-moving operation refers to an operation of moving the position of a user's finger or other indicator that operates in a continuous time, taking a single finger as an example, when the user's finger is from When one position is moved to another position, the projection position of the finger from the initial position to the last position corresponding to the projection position of the display plane is generated.
- the orientation information generating unit 222 is configured to generate orientation information according to the projection displacement, where the orientation information includes a projection direction and a projection distance of the projection displacement.
- the projection direction may be a direction from an initial position to an end position
- the projection distance may be a linear distance from the initial position to the end position
- the manipulation information generating unit 223 is configured to generate target manipulation information according to the air separation target control operation.
- the types of the airspace target control operations include the target function execution type, the target drag type, the target selected type, and the target zoom type.
- the target manipulation information includes the following four types: target function execution information, target drag information, target selection information, and target zoom information.
- the target function execution type includes a double-clicking empty target control operation, and the corresponding target function execution information is: entering or starting information indicating a target at a target location where the marker is currently located;
- the target drag type includes an empty target control operation for maintaining a click gesture, and the corresponding target drag information is: sliding or dragging the information indicating the target at the target position where the mark is currently located;
- the target selection type includes a clicked target control operation, and the corresponding target selection information is: selecting or activating the information of the target at the target location where the indication mark is currently located;
- the target zoom type includes an air separation target control operation in which a plurality of fingers are separated or merged, and the corresponding target zoom information is: the zoom indicating the target at the target position where the mark is currently located.
- the orientation processing module 230 includes a first control unit 231 and a second control unit 232.
- the first control unit 231 is configured to control the indication mark to move in a direction that is consistent with the projection direction.
- the second control unit 232 is configured to control the indication mark to move the preset distance to the target position, where the preset distance corresponds to the projection distance information.
- the target processing module 240 is configured to manipulate the target at the target location according to the target manipulation information.
- the feedback to the air separation target control operation and the feedback to the space movement operation may be performed sequentially, or may be performed simultaneously, exemplary, in the user.
- the object at the target position where the marker is indicated when the click is clicked may be dragged.
- the embodiment of the present disclosure linearly enlarges the distance of the space-moving operation in the user's air-vacuum operation, so that the user can move the indicator mark to any position on the display screen of the mobile terminal with one hand, so that the user can take a heavy object or hold the railing in one hand.
- the target manipulation information is generated by the user's empty target control operation, and the target where the indication mark is located is controlled, which is simple and convenient to use, and improves the user experience.
- FIG. 6 is a schematic structural diagram of a third embodiment of a mobile terminal according to the present disclosure.
- the mobile terminal 300 includes a display module 310, an air gap operation information generating module 320, an orientation processing module 330, and a target processing module 340.
- the display module 310 is configured to display an indication mark on a display screen of the mobile terminal.
- This module is the same as the corresponding module in the first embodiment, and details are not described herein again.
- the air gap operation information generating module 320 includes a projection displacement acquiring unit 321, an orientation information generating unit 322, and a manipulation information generating unit 323, and the air gap operation includes an air gap moving operation and an air gap target control operation.
- the projection displacement acquiring unit 321 is connected to the orientation information generating unit 322, and is configured to acquire a projection displacement of the space-moving movement operation on a plane of the display screen.
- This unit is the same as the corresponding unit of the second embodiment, and details are not described herein again.
- the orientation information generating unit 322 is configured to generate orientation information according to the projection displacement, where the orientation information includes a projection direction and a projection distance of the projection displacement.
- This unit is the same as the corresponding unit of the second embodiment, and details are not described herein again.
- the manipulation information generating unit 323 includes a query subunit 323a and a generation subunit 323b.
- the query subunit 323a is configured to query a target control operation type corresponding to the target control operation in a preset target control operation library according to a target control operation of the user.
- the mobile terminal can provide a unified target control operation library for all applications and operation interfaces, and can also provide an independent customized target control operation library for each application and operation interface, so that the user can control operations in different applications through the same target. Achieve different functions to meet the individual needs of users.
- the generating subunit 323b is configured to generate target manipulation information corresponding to the target control operation type according to the target control operation type.
- the above target control operation type is target function execution type, target drag type, target selected class Any of the type and target scaling types.
- the orientation processing module 330 includes a first control unit 331 and a second control unit 332.
- the first control unit 331 is configured to control the indication mark to move in a direction that is consistent with the projection direction.
- the second control unit 332 is configured to control the indication mark to move the preset distance to the target position, where the preset distance corresponds to the projection distance information.
- This unit is the same as the corresponding unit of the second embodiment, and details are not described herein again.
- the target processing module 340 is configured to manipulate the target at the target location according to the target manipulation information.
- the feedback of the air separation target control operation and the feedback to the air gap movement operation may be performed sequentially, or may be performed simultaneously, for example, when the user operates in the air.
- the object at the target position where the marker is indicated may be dragged when the click is clicked.
- the embodiment of the present disclosure provides a target control operation library corresponding to the target control operation by querying a target control operation library corresponding to the target control operation in the target control operation library, and generates target manipulation information corresponding to the target control operation type.
- the user can control the mobile terminal by using a plurality of different target control operations, so that the control mode of the space-storing operation can be more abundant, and is not limited to the existing page turning function, thereby improving the ease of use and the level of intelligence of the mobile terminal.
- the disclosed mobile terminal and the control method may be implemented in other manners.
- the mobile terminal embodiments described above are merely illustrative.
- the division of the modules or units is only a logical function division. In actual implementation, there may be another division manner, for example, multiple units or components may be combined. Or it can be integrated into another system, or some features can be ignored or not executed.
- the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit. It can be electrical, mechanical or other form.
- the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
- each functional unit in various embodiments of the present disclosure may be integrated into one chip unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
- the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
- the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
- the technical solution of the present disclosure may contribute to the prior art or all or part of the technical solution may be embodied in the form of a software product stored in a storage medium.
- a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the methods described in various embodiments of the present disclosure.
- the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .
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Abstract
本公开涉及移动通信技术领域,提供了一种移动终端的控制方法,包括:在移动终端的显示屏上显示指示标记;获取用户隔空操作数据,所述隔空操作数据包括方位信息和目标操控信息;根据所述方位信息,控制所述指示标记在所述显示屏上沿相应方位移动到目标位置;根据所述目标操控信息,操作所述目标位置处的目标。本公开还提供了一种移动终端,按上述方法进行控制。
Description
相关申请的交叉引用
本申请主张在2014年12月16日在中国提交的中国专利申请号No.201410779386.0的优先权,其全部内容通过引用包含于此。
本公开涉及移动通信技术领域,尤其涉及一种移动终端的控制方法及移动终端。
为了便于用户操控移动终端,提升用户的使用体验,移动终端上添加了隔空操作的功能,用户可通过该隔空操作功能,实现在不触碰移动终端显示屏的前提下进行上下翻页等简单的操作。
然而,由于现有的隔空操作方式不会指示用户当前的隔空操作对应于显示屏的具体位置,使得用户无法确定当前选择的目标,不方便用户隔空操作移动终端。
发明内容
为克服现有技术中的用户无法确定当前隔空操作的目标的问题,本公开实施例一方面提供了一种移动终端的控制方法,包括:
在所述移动终端的显示屏上显示指示标记;
根据用户对所述移动终端的隔空操作,生成隔空操作信息,所述隔空操作信息包括方位信息和目标操控信息;
根据所述方位信息,控制所述指示标记在所述显示屏上沿相应方位移动到目标位置;以及
根据所述目标操控信息,操控所述目标位置处的目标。
另一方面,本公开实施例还提供了一种移动终端,包括:
显示模块,用于在所述移动终端的显示屏上显示指示标记;
隔空操作信息生成模块,用于感应用户对所述移动终端的隔空操作,生成
隔空操作信息,所述隔空操作信息包括方位信息和目标操控信息;
方位处理模块,用于根据所述方位信息,控制所述指示标记在所述显示屏上沿相应方位移动到目标位置;以及
目标处理模块,用于根据所述目标操控信息,操控所述目标位置处的目标。
本公开实施例通过在移动终端的显示屏上显示指示标记,并根据获取的用户的隔空操作的方位信息,控制该指示标记移动至目标位置,以及根据获取的用户的隔空操作的目标操作信息,操作当前指示标记所指示的目标,可以使用户明确当前的操作目标,从而方便了用户对移动终端进行隔空操作,提高了用户体验。
为了更清楚地说明本公开实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本公开的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本公开的移动终端的控制方法的第一实施例的流程示意图;
图2是本公开的移动终端的控制方法的第二实施例的流程示意图;
图3是本公开的移动终端的控制方法的第三实施例的流程示意图;
图4是本公开的移动终端的第一实施例的结构示意图;
图5是本公开的移动终端的第二实施例的结构示意图;
图6是本公开的移动终端的第三实施例的结构示意图。
为了使本公开所解决的技术问题、技术方案及有益效果更加清楚明白,以下结合附图及实施例,对本公开进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本公开,并不用于限定本公开。
请参照图1,是本公开的移动终端的控制方法的第一实施例的流程示意图。该控制方法包括:
步骤S11,在移动终端的显示屏上显示指示标记。
在本公开实施例中,指引标记可以在移动终端启动时即显示,也可以在检
测到进入隔空操作模式后显示。进入隔空操作模式的触发条件包括但不限于:由用户通过移动终端实体按键触发(例如,由用户按住移动终端的实体按键,同时在空中以特定轨迹挥舞移动终端);由用户点击或滑动移动终端显示屏上的虚拟操作按钮触发;由用户隔空手势触发。
上述指示标记还可以在移动终端感应到手指或其他指示物悬空停留于触发按钮上方,并持续一定时间后显示。上述触发按钮可以是一个位置可以移动的悬浮按钮,也可以是位置固定的常用按钮,如菜单按钮。示例性的,触发按钮是悬浮按钮,当移动终端感应到手指或其他指示物在悬浮按钮上悬空停留达到2s后,可以于悬浮按钮处出现指示标记。
指示标记可以为焦点、箭头指针、任意图案或动画。指示标记在显示屏的初始位置可以是一预先设置好的一固定位置,也可以是用户手握移动终端时,手指(通常为拇指)在显示屏上易触及到的位置,例如设置在显示屏的边缘位置。
步骤S12,根据用户对移动终端的隔空操作,生成隔空操作信息,所述隔空操作信息包括方位信息和目标操控信息。
用户对移动终端的隔空操作包括:隔空移动操作和隔空目标控制操作。对应的隔空操作信息分别为方位信息、目标操控信息。
其中,方位信息是指隔空操作的执行体(如用户手指或其它指示物)在平行于显示屏所在平面上的移动方向信息和移动距离信息。上述其它指示物可以是用于产生隔空操作的除用户手指外的其他物体,例如触摸指套、触摸笔或任意至少具有一端部的物体。
隔空目标控制操作的类型包括目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型。对应地,目标操控信息包括以下四种:目标功能执行信息、目标拖动信息、目标选中信息和目标缩放信息。
示例性的,上述目标功能执行类型中包括双击的隔空目标控制操作,其对应的目标功能执行信息为:进入或启动指示标记当前所在的目标位置处的目标的信息;
上述目标拖动类型中包括保持单击姿态的隔空目标控制操作,其对应的目标拖动信息为:滑动或拖动指示标记当前所在的目标位置处的目标的信息;
上述目标选中类型中包括单击的隔空目标控制操作,其对应的目标选中信
息为:选中或激活指示标记当前所在的目标位置处的目标的信息;
上述目标缩放类型中包括多个手指分开或并拢的隔空目标控制操作,其对应的目标缩放信息为:缩放指示标记当前所在的目标位置处的目标。
步骤S13,根据方位信息,控制指示标记在显示屏上沿相应方位移动到目标位置。若当前移动终端检测用户的手指或其它指示物到在平行于显示屏的平面上产生了移动,则控制指示标记沿与用户的手指或其它指示物的移动方向相一致的方向移动相应距离,直到到达用户的目标位置。
步骤S14,根据所述目标操控信息,操控所述目标位置处的目标。
所述目标可以是应用图标、图片、文本、多媒体文件、菜单按键、控制按钮或插件等等,操控所述目标的方式包括点击、拖动、打开、激活或选中等等。
在本公开实施例中,为了避免用户的其它不相关动作引起的误触发,可以定义一门限距离,在实施步骤S11之后,通过传感器实时测量用户手指或其他指示物和移动终端之间的距离,当其测量出的距离大于门限距离时,移动终端不对隔空操作做出响应;当测量出的距离小于门限距离时,移动终端才对隔空操作做响应,执行步骤S12。其中,门限距离可以是传感器发送端发出信号能够达到的最远距离(如近场通信技术采用的13.56MHz的无线信号,其最远距离为20cm),也可以是由用户自定义的距离。
本公开实施例通过在移动终端的显示屏上显示指示标记,并根据获取的用户的隔空操作的方位信息,控制该指示标记移动至目标位置,以及根据获取的用户的隔空操作的目标操作信息,操作当前指示标记所指示的目标,可以使用户明确当前的操作目标,从而方便了用户对移动终端进行隔空操作,提高了用户体验。
请参考图2,作为本公开的移动终端的控制方法的第二实施例,该控制方法包括:
步骤S21,在移动终端的显示屏上显示指示标记。
本步骤与第一实施例对应步骤相同,在此不再赘述。
步骤S22,获取用户的隔空移动操作在显示屏的平面上的投影位移。
移动终端记录隔空移动操作前的手指或其他指示物于显示屏平面的投影位置作为初位置,记录隔空移动操作后的手指或其他指示物于显示屏平面的投影位置作为末位置,并根据初位置和末位置生成投影位移。
在本公开实施例中,上述隔空移动操作,是指在连续时间内隔空操作的用户手指或其他指示物与移动终端发生相对移动的操作,以单个手指为例,当用户手指从一个位置移动到另一个位置时,手指于显示屏平面的投影位置对应的从初位置移动到末位置,生成投影位移。
步骤S23,根据投影位移,生成方位信息,该方位信息包括投影位移的投影方向和投影距离信息。
上述投影方向可以为初位置到末位置的方向,上述投影距离可以为初位置到末位置的直线距离。
步骤S24,根据隔空目标控制操作,生成目标操控信息。
隔空目标控制操作的类型包括目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型。对应地,目标操控信息包括以下四种:目标功能执行信息、目标拖动信息、目标选中信息和目标缩放信息。
示例性的,上述目标功能执行类型中包括双击的隔空目标控制操作,其对应的目标功能执行信息为:进入或启动指示标记当前所在的目标位置处的目标的信息;
上述目标拖动类型中包括保持单击姿态的隔空目标控制操作,其对应的目标拖动信息为:滑动或拖动指示标记当前所在的目标位置处的目标的信息;
上述目标选中类型中包括单击的隔空目标控制操作,其对应的目标选中信息为:选中或激活指示标记当前所在的目标位置处的目标的信息;
上述目标缩放类型中包括多个手指分开或并拢的隔空目标控制操作,其对应的目标缩放信息为:缩放指示标记当前所在的目标位置处的目标。
步骤S25,控制所述指示标记沿与所述投影方向一致的方向移动。
若当前移动终端检测用户的手指或其它指示物与移动终端发生了相移动,则控制指示标记沿与用户的手指或其它指示物的移动的投影方向相一致的方向移动相应距离,直到到达用户的目标位置。
步骤S26,控制所述指示标记移动预设距离至目标位置,所述预设距离与所述投影距离信息相对应。
在本公开实施例中,指示标记移动的预设距离大于所述投影距离,指示标记移动的预设距离与所述投影距离可以呈线性比例关系。
步骤S27,根据所述目标操控信息,操控所述目标位置处的目标。
需要说明的是,在本公开实施例中,所述步骤序号并非用于限定本方法发明的实施步骤,序号靠后的步骤也并非一定依赖于前一步骤的实施。同时,在本公开实施例中,对隔空目标控制操作的反馈和对隔空移动操作的反馈可以是先后进行的,也可以是同时进行的,示例性的,在用户隔空操作时,当用户保持手指点击的姿态并移动手指,可拖动点击时指示标记所在目标位置处的对象。
本公开实施例通过将用户隔空操作中隔空移动操作的距离线性放大,使用户能够单手将指示标记移动到移动终端显示屏上任意位置,便于用户在一手拿重物或扶握栏杆时,使用另一只手对移动终端进行单手操作。同时,通过由用户隔空目标控制操作生成目标操控信息,控制指示标记所在处的目标,使用简单方便,提高了用户使用体验。
请参考图3,作为本公开的移动终端的控制方法的第三实施例,该控制方法包括。
步骤S31,在移动终端的显示屏上显示指示标记。
本步骤与第一实施例对应步骤相同,在此不再赘述。
步骤S32,获取用户的隔空移动操作在显示屏的平面上的投影位移。
本步骤与第二实施例对应步骤相同,在此不再赘述。
步骤S33,根据投影位移,生成方位信息,该方位信息包括投影位移的投影方向和投影距离信息。
本步骤与第二实施例对应步骤相同,在此不再赘述。
步骤S34,根据用户的目标控制操作,在预设的目标控制操作库中,查询与所述目标控制操作相对应的目标控制操作类型。
移动终端可以为所有应用、操作界面提供统一的目标控制操作库,也可以为各应用、操作界面提供独立的目标控制操作库,以使用户可以通过同一目标控制操作在不同应用中实现不同功能,满足用户的个性化需求。
步骤S35,根据所述目标控制操作类型,生成与所述目标控制操作类型相对应的目标操控信息。
上述目标控制操作类型为目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型中的任一项。
步骤S36,控制所述指示标记沿与所述投影方向一致的方向移动。
步骤S37,控制所述指示标记移动预设距离至目标位置,所述预设距离与
所述投影距离信息相对应。
本步骤与第二实施例对应步骤相同,在此不再赘述。
步骤S38,根据所述目标操控信息,操控所述目标位置处的目标。
需要说明的是,在本公开实施例中,所述步骤序号并非用于限定本方法发明的实施步骤,序号靠后的步骤也并非一定依赖于前一步骤的实施。同时,在本公开实施例中,对隔空目标控制操作的反馈和对隔空移动操作的反馈可以是先后进行的,也可以是同时进行的,示例性的,在用户隔空操作时,当用户保持手指点击的姿态并移动手指,可拖动点击时指示标记所在目标位置处的对象。
本公开实施例通过提供预设的目标控制操作库,通过在目标控制操作库中查询与目标控制操作对应的目标控制操作类型,并生成与所述目标控制操作类型相对应的目标操控信息,使用户可以使用多种不同的目标控制操作对移动终端进行控制,使得隔空操作的控制方式可以更加丰富,而不仅限于现有的翻页功能,提升了移动终端的易用性和智能化水平。
上文对本公开的移动终端的控制方法的实施例作了详细介绍。下面将相应于上述方法的装置(即移动终端)作进一步阐述。其中,移动终端可以是手机、平板电脑、MP3、MP4或笔记本电脑等。
请参照图5,是本公开的移动终端的第一实施例的结构示意图。所述移动终端100包括显示模块110、隔空操作信息生成模块120、方位处理模块130和目标处理模块140。
显示模块110,与方位处理模块130和目标处理模块140连接,用于在移动终端100的显示屏上显示指示标记。
在本公开实施例中,指引标记可以在移动终端启动时即显示,或在检测到进入隔空操作模式后显示。进入隔空操作模式的触发条件包括但不限于:由用户通过移动终端实体按键触发(例如,由用户按住移动终端的实体按键,同时在空中以特定轨迹挥舞移动终端);由用户点击或滑动移动终端显示屏上的虚拟操作按钮触发;由用户隔空手势触发。
上述指示标记还可以在移动终端感应到手指或其他指示物悬空停留于触发按钮上方,并持续一定时间后显示。上述触发按钮可以是一个位置可以移动的悬浮按钮,也可以是位置固定的常用按钮,如菜单按钮。示例性的,触发按钮是悬浮按钮,当移动终端感应到手指或其他指示物在悬浮按钮上悬空停留达
到2s后,可以于悬浮按钮处出现指示标记。
指示标记可以为焦点、箭头指针、任意图案或动画。指示标记在显示屏的初始位置可以是一预先设置好的一固定位置,也可以是用户手握移动终端时,手指(通常为拇指)在显示屏上易触及到的位置,例如设置在显示屏的边缘位置。
隔空操作信息生成模块120,与方位处理模块130和目标处理模块140连接,用于感应用户对移动终端100的隔空操作,生成隔空操作信息,所述隔空操作信息包括方位信息和目标操控信息。
其中,方位信息是指隔空操作的执行体(如用户手指或其它指示物)在平行于显示屏所在平面上的移动方向信息和移动距离信息。上述其它指示物可以是用于产生隔空操作的除用户手指外的其他物体,例如触摸指套、触摸笔或任意至少具有一端部的物体。
隔空目标控制操作的类型包括目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型。对应地,目标操控信息包括以下四种:目标功能执行信息、目标拖动信息、目标选中信息和目标缩放信息。
示例性的,上述目标功能执行类型中包括双击的隔空目标控制操作,其对应的目标功能执行信息为:进入或启动指示标记当前所在的目标位置处的目标的信息;
上述目标拖动类型中包括保持单击姿态的隔空目标控制操作,其对应的目标拖动信息为:滑动或拖动指示标记当前所在的目标位置处的目标的信息;
上述目标选中类型中包括单击的隔空目标控制操作,其对应的目标选中信息为:选中或激活指示标记当前所在的目标位置处的目标的信息;
上述目标缩放类型中包括多个手指分开或并拢的隔空目标控制操作,其对应的目标缩放信息为:缩放指示标记当前所在的目标位置处的目标。
方位处理模块130,用于根据方位信息,控制指示标记在显示屏上沿相应方位移动到目标位置。若当前隔空信息生成模块120检测用户的手指或其它指示物到在平行于显示屏的平面上产生了移动,则方位处理模块130控制指示标记沿与用户的手指或其它指示物的移动方向相一致的方向移动相应距离,直到到达用户的目标位置。
目标处理模块140,用于根据所述目标操控信息,操控所述目标位置处的
目标。
所述目标可以是应用图标、图片、文本、多媒体文件、菜单按键、控制按钮或插件等等,操控所述目标的方式包括点击、拖动、打开、激活或选中等等。
在本公开实施例中,为了避免用户的其它不相关动作引起的误触发,可以定义一门限距离,通过传感器实时测量用户手指或其他指示物和移动终端之间的距离,当其测量出的距离大于门限距离时,移动终端不对隔空操作做出响应;当测量出的距离小于门限距离时,移动终端才对隔空操作做响应。其中,门限距离可以是传感器发送端发出信号能够达到的最远距离(如近场通信技术采用的13.56MHz的无线信号,其最远距离为20cm),也可以是由用户自定义的距离。
本公开实施例通过在移动终端的显示屏上显示指示标记,并根据获取的用户的隔空操作的方位信息,控制该指示标记移动至目标位置,以及根据获取的用户的隔空操作的目标操作信息,操作当前指示标记所指示的目标,可以使用户明确当前的操作目标,从而方便了用户对移动终端进行隔空操作,提高了用户体验。
请参考图6,是本公开的移动终端的第二实施例的结构示意图。所述移动终端200包括显示模块210、隔空操作信息生成模块220、方位处理模块230、目标处理模块240。
显示模块210,用于在所述移动终端的显示屏上显示指示标记。
本模块与第一实施例对应模块相同,在此不再赘述。
隔空操作信息生成模块220,包括投影位移获取单元221,方位信息生成单元222和操控信息生成单元223,隔空操作包括隔空移动操作和隔空目标控制操作。
投影位移获取单元221,与方位信息生成单元222连接,用于获取所述隔空移动操作在所述显示屏的平面上的投影位移。
投影位移获取单元221记录隔空移动操作前的手指或其他指示物于显示屏平面的投影位置作为初位置,记录隔空移动操作后的手指或其他指示物于显示屏平面的投影位置作为末位置,并根据初位置和末位置生成投影位移。
在本公开实施例中,上述隔空移动操作,是指在连续时间内隔空操作的用户手指或其他指示物的位置发生移动的操作,以单个手指为例,当用户手指从
一个位置移动到另一个位置时,手指于显示屏平面的投影位置对应的的从初位置移动到末位置,生成投影位移。
方位信息生成单元222,用于根据所述投影位移,生成方位信息,所述方位信息包括所述投影位移的投影方向和投影距离。
上述投影方向可以为初位置到末位置的方向,上述投影距离可以为初位置到末位置的直线距离。
操控信息生成单元223,用于根据所述隔空目标控制操作,生成目标操控信息。
隔空目标控制操作的类型包括目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型。对应地,目标操控信息包括以下四种:目标功能执行信息、目标拖动信息、目标选中信息和目标缩放信息。
示例性的,上述目标功能执行类型中包括双击的隔空目标控制操作,其对应的目标功能执行信息为:进入或启动指示标记当前所在的目标位置处的目标的信息;
上述目标拖动类型中包括保持单击姿态的隔空目标控制操作,其对应的目标拖动信息为:滑动或拖动指示标记当前所在的目标位置处的目标的信息;
上述目标选中类型中包括单击的隔空目标控制操作,其对应的目标选中信息为:选中或激活指示标记当前所在的目标位置处的目标的信息;
上述目标缩放类型中包括多个手指分开或并拢的隔空目标控制操作,其对应的目标缩放信息为:缩放指示标记当前所在的目标位置处的目标。
在本公开实施例中,方位处理模块230,包括第一控制单元231和第二控制单元232。
第一控制单元231,用于控制所述指示标记沿与所述投影方向一致的方向移动。
第二控制单元232,用于控制所述指示标记移动预设距离至目标位置,所述预设距离与所述投影距离信息相对应。
在本公开实施例中,目标处理模块240,用于根据所述目标操控信息,操控所述目标位置处的目标。
需要说明的是,在本公开实施例中,对隔空目标控制操作的反馈和对隔空移动操作的反馈可以是先后进行的,也可以是同时进行的,示例性的,在用户
隔空操作时,当用户保持手指点击的姿态并移动手指,可拖动点击时指示标记所在目标位置处的对象。
本公开实施例通过将用户隔空操作中隔空移动操作的距离线性放大,使用户能够单手将指示标记移动到移动终端显示屏上任意位置,便于用户在一手拿重物或扶握栏杆时,使用另一只手对移动终端进行单手操作。同时,通过由用户隔空目标控制操作生成目标操控信息,控制指示标记所在处的目标,使用简单方便,提高了用户使用体验。
请参考图6,是本公开的移动终端的第三实施例的结构示意图。所述移动终端300包括显示模块310、隔空操作信息生成模块320、方位处理模块330、目标处理模块340。
显示模块310,用于在所述移动终端的显示屏上显示指示标记。
本模块与第一实施例对应模块相同,在此不再赘述。
隔空操作信息生成模块320,包括投影位移获取单元321,方位信息生成单元322和操控信息生成单元323,隔空操作包括隔空移动操作和隔空目标控制操作。
投影位移获取单元321,与方位信息生成单元322连接,用于获取所述隔空移动操作在所述显示屏的平面上的投影位移。
本单元与第二实施例对应单元相同,在此不再赘述。
方位信息生成单元322,用于根据所述投影位移,生成方位信息,所述方位信息包括所述投影位移的投影方向和投影距离。
本单元与第二实施例对应单元相同,在此不再赘述。
操控信息生成单元323,包括查询子单元323a和生成子单元323b。
查询子单元323a,用于根据用户的目标控制操作,在预设的目标控制操作库中,查询与所述目标控制操作相对应的目标控制操作类型。
移动终端可以为所有应用、操作界面提供统一的目标控制操作库,也可以为各应用、操作界面可各自提供独立经定制的目标控制操作库,以使用户可以通过同一目标控制操作在不同应用中实现不同功能,满足用户的个性化需求。
生成子单元323b,用于根据所述目标控制操作类型,生成与所述目标控制操作类型相对应的目标操控信息。
上述目标控制操作类型为目标功能执行类型、目标拖动类型、目标选中类
型和目标缩放类型中的任一项。
在本公开实施例中,方位处理模块330,包括第一控制单元331和第二控制单元332。
第一控制单元331,用于控制所述指示标记沿与所述投影方向一致的方向移动。
第二控制单元332,用于控制所述指示标记移动预设距离至目标位置,所述预设距离与所述投影距离信息相对应。
本单元与第二实施例对应单元相同,在此不再赘述。
在本公开实施例中,目标处理模块340,用于根据所述目标操控信息,操控所述目标位置处的目标。
需要说明的是,在本公开实施例中,对隔空目标控制操作的反馈和对隔空移动操作的反馈可以是先后进行的,也可以是同时进行的,示例性的,在用户隔空操作时,当用户保持手指点击的姿态并移动手指,可拖动点击时指示标记所在目标位置处的对象。
本公开实施例通过提供预设的目标控制操作库,通过在目标控制操作库中查询与目标控制操作对应的目标控制操作类型,并生成与所述目标控制操作类型相对应的目标操控信息,使用户可以使用多种不同的目标控制操作对移动终端进行控制,使得隔空操作的控制方式可以更加丰富,而不仅限于现有的翻页功能,提升了移动终端的易用性和智能化水平。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将装置的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露移动终端和控制方法,可以通过其它的方式实现。例如,以上所描述的移动终端实施例仅仅是示意性的,所述模块或单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,
可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本公开各个实施例中的各功能单元可以集成在一个芯片单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本公开的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本公开各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述仅为本公开的较佳实施例而已,并不用以限制本公开,凡在本公开的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本公开的保护范围之内。
Claims (12)
- 一种移动终端的控制方法,包括:在所述移动终端的显示屏上显示指示标记;根据用户对所述移动终端的隔空操作,生成隔空操作信息,所述隔空操作信息包括方位信息和目标操控信息;根据所述方位信息,控制所述指示标记在所述显示屏上沿相应方位移动到目标位置;以及根据所述目标操控信息,操控所述目标位置处的目标。
- 如权利要求1所述的控制方法,其中,所述隔空操作包括隔空移动操作和隔空目标控制操作;所述根据用户对所述移动终端的隔空操作,生成隔空操作信息的步骤,包括:获取所述隔空移动操作在所述显示屏的平面上的投影位移;根据所述投影位移,生成方位信息,所述方位信息包括所述投影位移的投影方向和投影距离信息;以及根据所述隔空目标控制操作,生成目标操控信息。
- 如权利要求2所述的控制方法,其中,所述根据所述方位信息,控制所述指示标记在所述显示屏上沿相应方位移动到目标位置的步骤,包括:控制所述指示标记沿与所述投影方向一致的方向移动;控制所述指示标记移动预设距离至目标位置,所述预设距离与所述投影距离信息相对应。
- 如权利要求3所述的控制方法,其中,所述预设距离大于所述投影距离。
- 如权利要求2所述的控制方法,其中,所述根据所述目标控制操作,生成所述目标操控信息的步骤,包括:在预设的目标控制操作库中,查询与所述目标控制操作相对应的目标控制 操作类型;根据所述目标控制操作类型,生成与所述目标控制操作类型相对应的目标操控信息。
- 如权利要求5所述的控制方法,其中,所述目标控制操作类型为目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型中的任一项。
- 一种移动终端,包括:显示模块,用于在所述移动终端的显示屏上显示指示标记;隔空操作信息生成模块,用于感应用户对所述移动终端的隔空操作,生成隔空操作信息,所述隔空操作信息包括方位信息和目标操控信息;方位处理模块,用于根据所述方位信息,控制所述指示标记在所述显示屏上沿相应方位移动到目标位置;以及目标处理模块,用于根据所述目标操控信息,操控所述目标位置处的目标。
- 如权利要求7所述的移动终端,其中,所述隔空操作包括隔空移动操作和隔空目标控制操作;所述隔空操作信息生成模块包括:投影位移获取单元,用于获取所述隔空移动操作在所述显示屏的平面上的投影位移;方位信息生成单元,用于根据所述投影位移,生成方位信息,所述方位信息包括所述投影位移的投影方向和投影距离;以及操控信息生成单元,用于根据所述隔空目标控制操作,生成目标操控信息。
- 如权利要求8所述的移动终端,其中,所述方位处理模块包括:第一控制单元,用于控制所述指示标记沿与所述投影方向一致的方向移动;第二控制单元,用于控制所述指示标记移动预设距离至目标位置,所述预设距离与所述方位信息生成单元生成的所述投影距离信息相对应。
- 如权利要求9所述的移动终端,其中,所述预设距离大于所述投影距离。
- 如权利要求8所述的移动终端,其中,所述操控信息生成单元包括:查询子单元,用于在预设的目标控制操作库中,查询与所述目标控制操作相对应的目标控制操作类型;生成子单元,用于根据所述目标控制操作类型,生成与所述目标控制操作类型相对应的目标操控信息。
- 如权利要求11所述的移动终端,其中,所述目标控制操作类型为目标功能执行类型、目标拖动类型、目标选中类型和目标缩放类型中的任一项。
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| CN101971129A (zh) * | 2008-02-11 | 2011-02-09 | 奈克斯特控股有限公司 | 解决光学触摸屏的多点触摸情景的系统和方法 |
| US20130241827A1 (en) * | 2012-03-15 | 2013-09-19 | Nokia Corporation | Touch screen hover input handling |
| CN104035710A (zh) * | 2013-03-06 | 2014-09-10 | 三星电子株式会社 | 具有在对象上的预执行的功能的移动设备及其控制方法 |
| CN104076972A (zh) * | 2013-03-15 | 2014-10-01 | 联想(新加坡)私人有限公司 | 用于选择热点的设备和方法 |
| CN103858085A (zh) * | 2013-10-31 | 2014-06-11 | 华为技术有限公司 | 悬浮或隔空操作的处理方法及装置 |
| CN104182121A (zh) * | 2014-08-06 | 2014-12-03 | 深圳市金立通信设备有限公司 | 一种悬浮图标的移动方法 |
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