CN106775199A - The touch operation method and terminal of screen interface - Google Patents

The touch operation method and terminal of screen interface Download PDF

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Publication number
CN106775199A
CN106775199A CN201611041060.3A CN201611041060A CN106775199A CN 106775199 A CN106775199 A CN 106775199A CN 201611041060 A CN201611041060 A CN 201611041060A CN 106775199 A CN106775199 A CN 106775199A
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CN
China
Prior art keywords
screen
touch
touch area
user
cursor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201611041060.3A
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Chinese (zh)
Inventor
任魁
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Anyun Century Technology Co Ltd
Original Assignee
Beijing Qihoo Technology Co Ltd
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Application filed by Beijing Qihoo Technology Co Ltd filed Critical Beijing Qihoo Technology Co Ltd
Priority to CN201611041060.3A priority Critical patent/CN106775199A/en
Publication of CN106775199A publication Critical patent/CN106775199A/en
Pending legal-status Critical Current

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction 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
    • G06F3/04812Interaction techniques based on cursor appearance or behaviour, e.g. being affected by the presence of displayed objects
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04847Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/0486Drag-and-drop
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures

Abstract

The invention discloses the touch operation method and terminal of screen interface.The method includes:The drag operation of user is received on the default touch area of screen, trail distance and deflection between towing starting point coordinate and towing terminal point coordinate is calculated;According to default magnification ratio, the displacement after the trail distance is amplified is calculated;The initial position co-ordinates of the onscreen cursor are obtained, final position coordinate of the cursor from after initial position co-ordinates movement is determined according to the displacement and the deflection.Using the present invention, one-handed performance can be easily carried out under the visual experience for not influenceing screen.

Description

The touch operation method and terminal of screen interface
Technical field
The present invention relates to screen technical field of touch control, more particularly, to the touch operation method and terminal of screen interface.
Background technology
When first item " portable mobile phone " is born, it is significant, but becomes more vast it is desirable to it It is small, so that everyone can walk with it, become more to facilitate using it.But ironically, present mobile phone has been It is sufficiently small through being made, but many people are but in the smart mobile phone that pursuit is bigger, it may be seen that many mobile phones do bigger and bigger, Even there is the trend for reaching panel computer size.
As smart mobile phone enters the large-size screen monitors epoch, increasing people pursues the mobile phone of screen accounting high, pursues increasingly Good screen perception.But the hand of people simultaneously unrestricted as screen can not possibly must expand opereating specification, and screen is more big also just to anticipate The difficulty that taste one-handed performance is bigger.Nowadays, large-screen mobile phone is to the maximum puzzlement that user brings, can hardly one hand use It.Compared to the past, for most of key mobile phone, being substantially all can complete dialing, send short message with a thumb Deng operation.And it is present, although the large-size screen monitors epoch are entered, but people still can not possibly completely abandon one-handed performance, therefore singlehanded behaviour Urgently optimize.
The content of the invention
In view of the above problems, the present invention proposes the touch operation method and terminal of a kind of screen interface, can be in not shadow Ring under the visual experience of screen, easily carry out one-handed performance.
A kind of touch operation method of screen interface is provided in the embodiment of the present invention, including:
The drag operation of user is received on the default touch area of screen, towing starting point coordinate is calculated and is sat with towing terminal Trail distance and deflection between mark;
According to default magnification ratio, the displacement after the trail distance is amplified is calculated;
The initial position co-ordinates of the onscreen cursor are obtained, is determined according to the displacement and the deflection described Final position coordinate of the cursor from after initial position co-ordinates movement.
Preferably, it is described on the default touch area of screen receive user drag operation the step of before, including:
Monitoring user triggers the operation of programmable button, and the touch area is opened in image sharpness, wherein, the screen Determine the magnification ratio with the size between the touch area.
Preferably, it is described on the default touch area of screen receive user drag operation the step of before, including:
Monitoring user double-clicks the operation of screen, and the touch area is opened near the edge for double-clicking position in screen, its In, the size between the screen and the touch area determines the magnification ratio.
Preferably, it is described on the default touch area of screen receive user drag operation the step of before, including:
Monitoring user press the operation of sub-screen, when depressed between when exceeding preset duration, in the close depressed position of screen The touch area is opened in edge, wherein, the size between the screen and the touch area determines the amplification Ratio.
Preferably, it is described on the default touch area of screen receive user drag operation the step of before, including:
The touch area on screen is preset as transparent figure layer, for screen circle that user is checked under the transparent figure layer Face.
Preferably, when the marginal point of the touch area on the screen is towed, the Touch Zone is zoomed in or out Domain;
The size between touch area according to the screen and after zooming in or out redefines the amplification ratio Example.
Preferably, when the point beyond the touch area on the screen is clicked on by user, the touch area is closed And/or the cursor.
Preferably, the step of initial position co-ordinates of the acquisition onscreen cursor, including:
According to the default magnification ratio, the mapping point of the towing starting point coordinate is calculated, by the mapping point As the smooth target initial position co-ordinates.
Preferably, it is described to determine the cursor from the initial position co-ordinates according to the displacement and the deflection After the step of final position coordinate after movement, including:
The double click operation of user is received on the touch area, the generation triggering cursor clicks on the final position Operational order.
Preferably, it is described to determine the cursor from the initial position co-ordinates according to the displacement and the deflection After the step of final position coordinate after movement, including:
The operation of the click pre-set button of user is received on the touch area, the generation triggering cursor is clicked on described The operational order of final position.
Preferably, after the step of generation triggering cursor clicks on the operational order of the final position, also include:
What monitoring user currently clicked on lifts operation, and the smooth target operational order is lifted in generation.
Correspondingly, a kind of touch control operation terminal of screen interface is the embodiment of the invention provides, including:
Touch control operation unit, the drag operation for receiving user on the default touch area of screen, calculating is pulled Trail distance and deflection between point coordinates and towing terminal point coordinate;
Scaling unit, for according to default magnification ratio, calculating the displacement after the trail distance is amplified;
Cursor determining unit, the initial position co-ordinates for obtaining the onscreen cursor, according to the displacement and The deflection determines final position coordinate of the cursor from after initial position co-ordinates movement.
Preferably, including:
First switch unit, the operation of programmable button is triggered for monitoring user, and the touch-control is opened in image sharpness Region, wherein, the size between the screen and the touch area determines the magnification ratio.
Preferably, including:
Second switch unit, the operation of screen is double-clicked for monitoring user, is beaten near the edge for double-clicking position in screen The touch area is opened, wherein, the size between the screen and the touch area determines the magnification ratio.
Preferably, including:
3rd switch unit, for monitoring operation of the user by sub-screen, when depressed between exceed preset duration when, screen Curtain opens the touch area near the edge of depressed position, wherein, the size between the screen and the touch area Magnification ratio described in ratio-dependent.
Preferably, including:
The display setting device being connected with the touch control operation unit, for the touch area on screen to be preset as Transparent figure layer, for the screen interface that user is checked under the transparent figure layer.
Preferably, including:
The ratio setting unit being connected with the touch control operation unit, for when the side of the touch area on the screen When edge point is towed, the touch area is zoomed in or out;Between touch area according to the screen and after zooming in or out Size redefine the magnification ratio.
Preferably, including:
The touch-control being connected with the touch control operation unit exits unit, for beyond the touch area on the screen Point when being clicked on by user, close the touch area and/or the cursor.
Preferably, the cursor determining unit, including:
Initial computation unit, for according to the default magnification ratio, the mapping for calculating the towing starting point coordinate to be sat Mark, using the mapping point as the smooth target initial position co-ordinates.
Preferably, including:
The first click unit being connected with the cursor determining unit, for receiving the double of user on the touch area Operation is hit, the generation triggering cursor clicks on the operational order of the final position.
Preferably, including:
The second click unit being connected with the cursor determining unit, the point for receiving user on the touch area The operation of pre-set button is hit, the generation triggering cursor clicks on the operational order of the final position.
Preferably, also include:
Monitoring unit is lifted, the operation of lifting for monitoring user's currently click, generation is lifted the smooth target operation and referred to Order.
Relative to the scheme that prior art, the present invention are provided, the towing of user is received on the default touch area of screen Operation, it is preferable that to adapt to the finger touch scope of user's left hand or the right hand, touch area can be arranged on the lower left corner of screen Or the lower right corner.The drag operation of user is received, the trail distance between towing starting point coordinate and towing terminal point coordinate and side is calculated To angle.According to default magnification ratio, the displacement after the trail distance is amplified is calculated, obtain the onscreen cursor Initial position co-ordinates, determine the cursor from after initial position co-ordinates movement according to the displacement and the deflection Final position coordinate.The fingers of single hand of user is only needed in an a small range activity, is occurred on screen corresponding virtual Cursor can be moved with the towing of finger, and the displacement bi-directional scaling of light target displacement and hand, light target is lived Dynamic scope covering full screen, so that accurate large-size screen monitors one-handed performance is realized, without half screen or contracting screen, you can the whole screen of operation Curtain.It should be added that, the touch area is to mark off to come in current screen, and the not extra hardware that increases is pressed Key cuts screen, so, the one-handed performance mode of one side this programme improves the utilization rate of current screen;On the other hand touch Control region can't block screen, not influence the perception of large-size screen monitors to experience, because during finger towing, block screen is hand In itself, after one-handed performance is completed, touch area with transparence or can be exited finger, to recover full frame perception, thus, the present invention Realize under the visual experience for not influenceing screen, easily carry out one-handed performance.
The additional aspect of the present invention and advantage will be set forth in part in the description, and these will become from the following description Obtain substantially, or recognized by practice of the invention.
Brief description of the drawings
Technical scheme in order to illustrate more clearly the embodiments of the present invention, below will be to that will make needed for embodiment description Accompanying drawing is briefly described, it should be apparent that, drawings in the following description are only some embodiments of the present invention, for For those skilled in the art, on the premise of not paying creative work, can also obtain other attached according to these accompanying drawings Figure.
Fig. 1 is a kind of flow chart of the touch operation method of screen interface of the invention.
Fig. 2 is a kind of first embodiment flow chart of the touch operation method of screen interface of the invention.
Fig. 3-1 is one of embodiment of the present invention schematic diagram;
Fig. 3-2 is the two of embodiment of the present invention schematic diagram;
Fig. 3-3 is the three of embodiment of the present invention schematic diagram;
Fig. 4 is a kind of second embodiment flow chart of the touch operation method of screen interface of the invention.
Fig. 5 is a kind of schematic diagram of the touch control operation terminal of screen interface of the invention.
Fig. 6 is a kind of first embodiment schematic diagram of the touch control operation terminal of screen interface of the invention.
Fig. 7 is a kind of second embodiment schematic diagram of the touch control operation terminal of screen interface of the invention.
Specific embodiment
In order that those skilled in the art more fully understand the present invention program, below in conjunction with the embodiment of the present invention Accompanying drawing, is clearly and completely described to the technical scheme in the embodiment of the present invention.
In some flows of description in description and claims of this specification and above-mentioned accompanying drawing, contain according to Multiple operations of particular order appearance, but it should be clearly understood that these operations can not be according to the suitable of its appearance herein Sequence is performed or executed in parallel, the sequence number such as 101,102 etc. of operation, is only used for distinguishing each different operation, sequence number Any execution sequence is not represented for itself.In addition, these flows can include more or less operation, and these operations can To perform in order or executed in parallel.It should be noted that " first ", " second " herein etc. describes, it is for distinguishing not Same message, equipment, module etc., does not represent sequencing, and it is different types also not limit " first " and " second ".
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is carried out clear, complete Site preparation is described, it is clear that described embodiment is only a part of embodiment of the invention, rather than whole embodiments.It is based on Embodiment in the present invention, the every other implementation that those skilled in the art are obtained under the premise of creative work is not made Example, belongs to the scope of protection of the invention.
Fig. 1 is a kind of flow chart of the touch operation method of screen interface of the invention, including:
S101:The drag operation of user is received on the default touch area of screen, towing starting point coordinate is calculated with towing Trail distance and deflection between terminal point coordinate;
S102:According to default magnification ratio, the displacement after the trail distance is amplified is calculated;
S103:The initial position co-ordinates of the onscreen cursor are obtained, it is true according to the displacement and the deflection Final position coordinate of the fixed cursor from after initial position co-ordinates movement.
Relative to the scheme that prior art, the present invention are provided, the towing of user is received on the default touch area of screen Operation, it is preferable that to adapt to the finger touch scope of user's left hand or the right hand, touch area can be arranged on the lower left corner of screen Or the lower right corner.The drag operation of user is received, the trail distance between towing starting point coordinate and towing terminal point coordinate and side is calculated To angle.According to default magnification ratio, the displacement after the trail distance is amplified is calculated, obtain the onscreen cursor Initial position co-ordinates, determine the cursor from after initial position co-ordinates movement according to the displacement and the deflection Final position coordinate.The fingers of single hand of user is only needed in an a small range activity, is occurred on screen corresponding virtual Cursor can be moved with the towing of finger, and the displacement bi-directional scaling of light target displacement and hand, light target is lived Dynamic scope covering full screen, so that accurate large-size screen monitors one-handed performance is realized, without half screen or contracting screen, you can the whole screen of operation Curtain.It should be added that, the touch area is to mark off to come in current screen, and the not extra hardware that increases is pressed Key cuts screen, so, the one-handed performance mode of one side this programme improves the utilization rate of current screen;On the other hand touch Control region can't block screen, not influence the perception of large-size screen monitors to experience, because during finger towing, block screen is hand In itself, after one-handed performance is completed, touch area with transparence or can be exited finger, to recover full frame perception, thus, the present invention Realize under the visual experience for not influenceing screen, easily carry out one-handed performance.
Preferably, the touch area is contemplated that and calls a View, is realized by suspension control, and preset touch area The size in domain, suitably regulates the proportionate relationship with screen.
Fig. 2 is a kind of first embodiment flow chart of the touch operation method of screen interface of the invention.Fig. 2 compared to Figure 1, The first embodiment of Fig. 2 has further defined opening touch area, closes touch area, and the click for triggering screen cursor The method and step of operation, realizes convenient switching touch area, quickly recovers full frame perception, and really simulated with cursor Finger clicking operation.
S201:Monitoring user triggers the operation of programmable button, and the touch area is opened in image sharpness, wherein, institute State the size between screen and the touch area and determine the magnification ratio.
S202:The touch area on screen is preset as transparent figure layer, so that user is checked under the transparent figure layer Screen interface.
S203:The drag operation of user is received on the default touch area of screen, towing starting point coordinate is calculated with towing Trail distance and deflection between terminal point coordinate;
S204:According to default magnification ratio, the displacement after the trail distance is amplified is calculated;
S205:The initial position co-ordinates of the onscreen cursor are obtained, it is true according to the displacement and the deflection Determine the final position coordinate after the cursor is moved on the screen.
S206:The double click operation of user is received on the touch area, the generation triggering cursor clicks on the termination The operational order of position.
S207:When the point beyond the touch area on the screen is clicked on by user, close the touch area and/ Or the cursor.
Fig. 3-1 is one of embodiment of the present invention schematic diagram.As shown in figure 3-1, as mobile phone screen is increasing, Yong Hudan The scope that the finger of hand to be touched is less and less.So that user uses left hand as an example, habitually, user's left-hand finger institute energy The region in scope i.e. Fig. 3-1 lower left corner of touch.However, have many application programs or notification message for large-size screen monitors, Beyond the region.For example, there is a chat to notify that being located at screen top could open access, now, user, it is necessary to user clicks on Have to play mobile phone with a hand rest, the finger of another hand clicks on the announcement information.If subscriber station is in the compartment for rocking, The both hands of user all hold mobile phone, just in case brake, then may fall down or fall mobile phone.
Fig. 3-2 is the two of embodiment of the present invention schematic diagram.It is also a kind of to shield in the middle of prior art for one-handed performance The mode that curtain reduces, is exactly, at one jiao of screen, to realize the one-handed performance of smaller screen by the scaling of original large-size screen monitors equal proportion.But this Since the shortcoming of kind of mode is also it will be apparent that have selected large-size screen monitors, why also to go to reduce and use smaller screen.This hair Bright scheme marks off touch-control not by the full frame angular zone of screen one being contracted to as shown in figure 3-2 from the angular zone of screen one Region, if Fig. 3-3 is shown in the three of embodiment of the present invention schematic diagram.
Monitoring user triggers the operation of programmable button, and the touch area is opened in image sharpness, wherein, the screen Determine the magnification ratio with the size between the touch area.The programmable button can be virtual key, such as shield Home keys on curtain, or one-handed performance button, or hardware case in default application program, such as screen locking key are clicked on, Or unlocked by fingerprint key etc..These buttons can will be triggered, as the start button for opening touch area.If detecting user to exist The screen lower left corner touches, then the touch area is opened in screen lower left corner edge, if conversely, user uses the right hand Finger, then can open touch area, to be user-friendly in screen lower right corner edge.In the present embodiment, Touch Zone The length-width ratio in domain is consistent with screen script length-width ratio, now, magnification ratio be the length of screen and touch area length it Business.Alternatively, if touch area is different from the length-width ratio of screen, magnification ratio need to be divided into both vertically and horizontally Magnification ratio.
In addition, the touch area on screen is preset as transparent figure layer, so that user is checked under the transparent figure layer Screen interface, the perception of screen is not influenceed.
In the middle of the present embodiment, the drag operation of user is received on the default touch area of screen, calculate towing starting point Trail distance and deflection between coordinate and towing terminal point coordinate.As shown in Fig. 3-3, user needs to open chatting above screen Its announcement information, the towing starting point of finger is the white small arrow on touch area, and towing terminal is the black on touch area Small arrow, the horizontal line between two small arrows represents trail distance.Wherein, deflection can be by pulling starting point coordinate and towing Terminal point coordinate is calculated.It should be added that, the touch area of Fig. 3-3 displays and its frame, white small arrow, black are small Horizontal line between arrow, two small arrows be only used for illustrate, in the middle of practical application, these can be set to it is transparent sightless, User can be controlled by the sense of touch of oneself completely, and screen perception is not influenceed, and screen is more succinct.
According to default magnification ratio, the displacement after the trail distance is amplified is calculated;Obtain the screen glazing Target initial position co-ordinates, after determining that the cursor is moved on the screen according to the displacement and the deflection Final position coordinate.As shown in Fig. 3-3, the big arrow of white on screen represents light target initial position, the big arrow of black then table Show the final position after movement, they correspond respectively to white small arrow and black small arrow on touch area.Obviously, touch-control Trail distance on region and the displacement on screen are that equal proportion is amplified, in this way, user exactly can move cursor To the position of chat notification message.
Finally, the double click operation of user is received on the touch area, the generation triggering cursor clicks on the termination The operational order of position, so, user can just open the chat notification message.Specifically, when on touch area, continuously Detect twice and press a little and lift a little in same position (or at a distance of less than threshold value), then judge double click operation.Now, Displacement is zero (or less than threshold value), then need not move cursor, the notice/application program on opening cursor present position/press Key, you can.
It should be added that, as shown in Fig. 3-3, the finger overlay area of user is bigger than touch area, when described When point on screen beyond the touch area is clicked on by user, the touch area and/or the cursor are closed, recover complete Screen.If user will be clicked under touch area, application program or during button in screen interface, it may not be necessary to by Touch Zone Domain, thus after exiting by finger coverage click on.
Wherein in one embodiment, it is described on the default touch area of screen receive user drag operation the step of Before, including:
Monitoring user double-clicks the operation of screen, and the touch area is opened near the edge for double-clicking position in screen, its In, the size between the screen and the touch area determines the magnification ratio.
Specifically, if user has changed a hand, by right finger, screen is double-clicked in screen lower right.Then such as Fig. 3-3 Shown, the point beyond touch area is double-clicked, and touch area will move out, and be reopened in screen lower right corner edge, for User's right hand is used.
Fig. 4 is a kind of second embodiment flow chart of the touch operation method of screen interface of the invention.Fig. 4 compared with Fig. 2, The second embodiment of Fig. 4 further with the addition of the mode step for opening touch area, there is provided a kind of touch-control of adjustable size Region, and further, simulate the finger down action different with lifting two with cursor so that light target uses cleverer It is living.
S301:Monitoring user press the operation of sub-screen, when depressed between when exceeding preset duration, in screen near by the next The touch area is opened in the edge put, wherein, the size between the screen and the touch area determines described Magnification ratio.
S302:When the marginal point of the touch area on the screen is towed, the touch area is zoomed in or out;
S303:The size between touch area according to the screen and after zooming in or out is put described in redefining Vast scale.
S304:The drag operation of user is received on the default touch area of screen, towing starting point coordinate is calculated with towing Trail distance and deflection between terminal point coordinate;
S305:According to default magnification ratio, the displacement after the trail distance is amplified is calculated;
S306:According to the default magnification ratio, the mapping point of the towing starting point coordinate is calculated, by the mapping Coordinate is used as the smooth target initial position co-ordinates.
S307:Determine the cursor from after initial position co-ordinates movement according to the displacement and the deflection Final position coordinate.
S308:The operation of the click pre-set button of user, the generation triggering smooth punctuate are received on the touch area Hit the operational order of the final position.
S309:What monitoring user currently clicked on lifts operation, and the smooth target operational order is lifted in generation.
In the middle of second embodiment, continuation is clear from Fig. 3-3, and touch area has equally been multiplexed the screen lower left corner One part.Monitoring user press the operation of sub-screen, when depressed between when exceeding preset duration, in the close depressed position of screen The touch area is opened in edge, wherein, the size between the screen and the touch area determines the amplification Ratio.Specifically, user presses by screen lower-left angular length, opens touch area.Because screen size is fixed, Touch Zone The size in domain then determines magnification ratio, if touch area is too small, the small towing on touch area can all cause cursor Quick movement on screen, it is difficult to position.So, a kind of touch area of adjustable size is present embodiments provided, according to Size between the screen and the touch area after zooming in or out redefines the magnification ratio.Specifically, use Family can pull the upper right angular vertex of the touch area as shown in Fig. 3-3, and touch area is amplified with this.User is on touch area During towing, according to the magnification ratio for redefining, the displacement after the trail distance is amplified is calculated.
According to the default magnification ratio, the mapping point of the towing starting point coordinate is calculated, by the mapping point As the smooth target initial position co-ordinates.
In the present embodiment, cursor is not inherently present on screen, but presses dragging for touch area from user When draging starting point, generated in the mapping position of screen, when user lifts from touch area, cursor dwell is in final position On.When user presses touch area again, then to pull starting point coordinate recalculate light target initial position co-ordinates again.Such as This, the user and final position before need not being concerned about cursor is at which, you can quick positioning.
Determine end of the cursor from after initial position co-ordinates movement according to the displacement and the deflection Only position coordinates.The operation of the click pre-set button of user is received on the touch area, the generation triggering cursor is clicked on The operational order of the final position.The pre-set button can be virtual key on touch area, or other are hard Part button, such as fingerprint button etc..
Finally, what monitoring user currently clicked on lifts operation, and the smooth target operational order is lifted in generation.In the present embodiment In, cursor is pressed to lift with user's finger pressing on touch area and lift operation with cursor and matched, and more conforms to use The custom at family, improves Consumer's Experience.
Fig. 5 is a kind of schematic diagram of the touch control operation terminal of screen interface of the invention, including:
Touch control operation unit, the drag operation for receiving user on the default touch area of screen, calculating is pulled Trail distance and deflection between point coordinates and towing terminal point coordinate;
Scaling unit, for according to default magnification ratio, calculating the displacement after the trail distance is amplified;
Cursor determining unit, the initial position co-ordinates for obtaining the onscreen cursor, according to the displacement and The deflection determines final position coordinate of the cursor from after initial position co-ordinates movement.
Fig. 5 is corresponding with Fig. 1, and the method for operation of unit is identical with method in figure.
Fig. 6 is a kind of first embodiment schematic diagram of the touch control operation terminal of screen interface of the invention.
As shown in fig. 6, including:
First switch unit, the operation of programmable button is triggered for monitoring user, and the touch-control is opened in image sharpness Region, wherein, the size between the screen and the touch area determines the magnification ratio.
As shown in fig. 6, including:
The display setting device being connected with the touch control operation unit, for the touch area on screen to be preset as Transparent figure layer, for the screen interface that user is checked under the transparent figure layer.
As shown in fig. 6, including:
The touch-control being connected with the touch control operation unit exits unit, for beyond the touch area on the screen Point when being clicked on by user, close the touch area and/or the cursor.
As shown in fig. 6, including:
The first click unit being connected with the cursor determining unit, for receiving the double of user on the touch area Operation is hit, the generation triggering cursor clicks on the operational order of the final position.
Fig. 6 is corresponding with Fig. 2, and the method for operation of unit is identical with method in figure.
Preferably, including:
Second switch unit, the operation of screen is double-clicked for monitoring user, is beaten near the edge for double-clicking position in screen The touch area is opened, wherein, the size between the screen and the touch area determines the magnification ratio.
Fig. 7 is a kind of second embodiment schematic diagram of the touch control operation terminal of screen interface of the invention.
As shown in fig. 7, comprises:
3rd switch unit, for monitoring operation of the user by sub-screen, when depressed between exceed preset duration when, screen Curtain opens the touch area near the edge of depressed position, wherein, the size between the screen and the touch area Magnification ratio described in ratio-dependent.
As shown in fig. 7, comprises:
The ratio setting unit being connected with the touch control operation unit, for when the side of the touch area on the screen When edge point is towed, the touch area is zoomed in or out;Between touch area according to the screen and after zooming in or out Size redefine the magnification ratio.
As shown in fig. 7, the cursor determining unit, including:
Initial computation unit, for according to the default magnification ratio, the mapping for calculating the towing starting point coordinate to be sat Mark, using the mapping point as the smooth target initial position co-ordinates.
As shown in fig. 7, comprises:
The second click unit being connected with the cursor determining unit, the point for receiving user on the touch area The operation of pre-set button is hit, the generation triggering cursor clicks on the operational order of the final position.
As shown in fig. 7, also including:
Monitoring unit is lifted, the operation of lifting for monitoring user's currently click, generation is lifted the smooth target operation and referred to Order.
Fig. 7 is corresponding with Fig. 4, and the method for operation of unit is identical with method in figure.
It is apparent to those skilled in the art that, for convenience and simplicity of description, the system of foregoing description, The specific work process of device and unit, may be referred to the corresponding process in preceding method embodiment, will not be repeated here.
Embodiment described above only expresses several embodiments of the invention, and its description is more specific and detailed, but simultaneously Therefore the limitation to the scope of the claims of the present invention can not be interpreted as.It should be pointed out that for one of ordinary skill in the art For, without departing from the inventive concept of the premise, various modifications and improvements can be made, these belong to guarantor of the invention Shield scope.Therefore, the protection domain of patent of the present invention should be determined by the appended claims.

Claims (10)

1. a kind of touch operation method of screen interface, it is characterised in that including:
On the default touch area of screen receive user drag operation, calculate towing starting point coordinate with towing terminal point coordinate it Between trail distance and deflection;
According to default magnification ratio, the displacement after the trail distance is amplified is calculated;
The initial position co-ordinates of the onscreen cursor are obtained, the cursor is determined according to the displacement and the deflection Final position coordinate from after initial position co-ordinates movement.
2. the touch operation method of screen interface according to claim 1, it is characterised in that described to touch screen is default Before the step of drag operation of user being received on control region, including:
Monitoring user triggers the operation of programmable button, and the touch area is opened in image sharpness, wherein, the screen and institute State the size between touch area and determine the magnification ratio.
3. the touch operation method of screen interface according to claim 1, it is characterised in that described to touch screen is default Before the step of drag operation of user being received on control region, including:
Monitoring user double-clicks the operation of screen, and the touch area is opened near the edge for double-clicking position in screen, wherein, institute State the size between screen and the touch area and determine the magnification ratio.
4. the touch operation method of screen interface according to claim 1, it is characterised in that described to touch screen is default Before the step of drag operation of user being received on control region, including:
Monitoring user press the operation of sub-screen, when depressed between more than preset duration when, screen near depressed position edge Place opens the touch area, wherein, the size between the screen and the touch area determines the magnification ratio.
5. the touch operation method of screen interface according to claim 1, it is characterised in that described to touch screen is default Before the step of drag operation of user being received on control region, including:
The touch area on screen is preset as transparent figure layer, for the screen interface that user is checked under the transparent figure layer.
6. the touch control operation terminal of a kind of screen interface, it is characterised in that including:
Touch control operation unit, the drag operation for receiving user on the default touch area of screen calculates towing starting point and sits Trail distance and deflection between mark and towing terminal point coordinate;
Scaling unit, for according to default magnification ratio, calculating the displacement after the trail distance is amplified;
Cursor determining unit, the initial position co-ordinates for obtaining the onscreen cursor, according to the displacement and described Deflection determines final position coordinate of the cursor from after initial position co-ordinates movement.
7. the touch control operation terminal of screen interface according to claim 6, it is characterised in that including:
First switch unit, the operation of programmable button is triggered for monitoring user, and the touch area is opened in image sharpness, Wherein, the size between the screen and the touch area determines the magnification ratio.
8. the touch control operation terminal of screen interface according to claim 6, it is characterised in that including:
Second switch unit, the operation of screen is double-clicked for monitoring user, and institute is opened near the edge for double-clicking position in screen Touch area is stated, wherein, the size between the screen and the touch area determines the magnification ratio.
9. the touch control operation terminal of screen interface according to claim 6, it is characterised in that including:
3rd switch unit, for monitoring operation of the user by sub-screen, when depressed between exceed preset duration when, leaned in screen The touch area is opened in the edge of nearly depressed position, wherein, the size between the screen and the touch area Determine the magnification ratio.
10. the touch control operation terminal of screen interface according to claim 6, it is characterised in that including:
The display setting device being connected with the touch control operation unit is transparent for the touch area on screen to be preset as Figure layer, for the screen interface that user is checked under the transparent figure layer.
CN201611041060.3A 2016-11-11 2016-11-11 The touch operation method and terminal of screen interface Pending CN106775199A (en)

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