CN101853135A - Method for controlling touch screen input interfaces on handheld electronic equipment based on somatosensory device - Google Patents

Method for controlling touch screen input interfaces on handheld electronic equipment based on somatosensory device Download PDF

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Publication number
CN101853135A
CN101853135A CN201010203268A CN201010203268A CN101853135A CN 101853135 A CN101853135 A CN 101853135A CN 201010203268 A CN201010203268 A CN 201010203268A CN 201010203268 A CN201010203268 A CN 201010203268A CN 101853135 A CN101853135 A CN 101853135A
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touch
touch screen
screen input
input interfaces
hand
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CN201010203268A
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Chinese (zh)
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聂兰龙
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聂清永
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Priority to CN201010203268A priority Critical patent/CN101853135A/en
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Abstract

The invention relates to method for switching input interfaces based on handheld electronic equipment, in particular to a method for controlling touch screen input interfaces on handheld electronic equipment based on a somatosensory device, which comprises the following steps that: an operator displaces the handheld electronic equipment, a position sensing device collects the displacement information, determines the displacement state and sends the collected displacement state to a software system, and the software system selects to switch the touch screen input interface according to the displacement state, and a touch display device receives the touch information and transmits the touch information to the software system. The use can realize the high-efficiency input of the handheld electronic equipment, so that the use is more convenient, easier and simpler.

Description

A kind of method based on touch screen input interfaces on the body induction device control hand-hold electronic equipments
Technical field
The present invention relates to a kind of method of switching inputting interface on hand-hold electronic equipments, is a kind of method based on touch screen input interfaces on the body induction device control hand-hold electronic equipments specifically.
Background technology
Hand-hold electronic equipments is meant that panel computer, UMPC, mobile phone, palm PC, palm keyboard etc. can hand the miniaturized electronics of use.The general volume of hand-hold electronic equipments is little, in light weight, be easy to carry, but also has the problem of input information difficulty simultaneously.Current hand-hold electronic equipments touch-screen input but owing to be subjected to the little restriction of display area, whole input demands can't be realized in single interface under touch-screen, therefore need to increase the needs of problems that input is satisfied at the interface, just have the transfer problem of transferring of an inputting interface after inputting interface increases.Touch screen input interfaces is based on a kind of human-computer interaction interface that the display device that is coated with the touch-sensitive transparent panel is operated, such as dummy keyboard input, software function load module etc.The software function load module can be function form touch modules such as the touch-control menu, touch-control tool box, touch-control status bar, navigating lists of software.
My in addition three patented claims, application number are that 200910005029.8 " a kind of method and switching device shifter that switches inputting interface on hand-hold electronic equipments " described a kind of by being arranged on several methods of switching by the key control touch screen input interfaces of hand-hold electronic equipments side; Application number is that 200910018396.1 " demonstration and the control method thereof that are used for the dummy keyboard of touch-screen " described a kind of by being arranged on several methods by key control touch screen transparent dummy keyboard inputting interface of hand-hold electronic equipments side; Application number is that 200910179551.8 " demonstration and the control method that are used for the Control-Menu on the touch-screen " described a kind of by being arranged on several methods by key control touch-screen menu inputting interface of hand-hold electronic equipments side.
Direction of motion, movement velocity and the gravity tester that the position induction installation can be responded to hand-hold electronic equipments to etc. body sense information, present existing position induction installation mainly contains three types: one, adopt vibration transducer as the position induction installation, carry out or implement corresponding function according to the displacement state information of equipment; Two, adopt gravity sensor as the position induction installation, carry out or implement function corresponding according to the gravity directional information of equipment; Three, adopt imageing sensor as the position induction installation, gather continuous images in the surrounding environment, by every image of comparative analysis, the displacement state of judgment device, and carry out or implement corresponding function in view of the above; Four, adopt imageing sensor as the position induction installation, by user's gesture motion of gathering, carry out or implement corresponding in advance function according to user's gesture motion feature.
Summary of the invention
The purpose of this invention is to provide a kind of method of on hand-hold electronic equipments, using the control of body induction device and switching touch screen input interfaces, make the touch-screen input of hand-hold electronic equipments more convenient, easier, simpler and more direct.
For achieving the above object, the present invention is by the following technical solutions:
A kind of method based on touch screen input interfaces on the body induction device control hand-hold electronic equipments of the present invention is characterized in that comprising the steps:
Steps A: the operator holds hand-hold electronic equipments; Step B: the operator carries out displacement operation to hand-hold electronic equipments; Step C: the position induction installation is gathered displacement information and is determined displacement state; Step D: the position induction installation sends the displacement state that collects to software systems, and software systems are selected to switch touch screen input interfaces according to displacement state, and this inputting interface is outputed to touch display unit; Step e: touch display unit receives touch information, and this touch information is transported to software systems; Step F: software systems are converted into the information of touch display unit input the content of input according to selected inputting interface.
At step C, described displacement state is one or more in direction of motion, movement velocity, the gravity directional information.
At step D, described touch screen input interfaces is the virtual key keyboard interface, software systems output to touch display unit with selected virtual key keyboard interface, and touch display unit superposes on former Application Program Interface with translucent or opaque state and shows the virtual key keyboard interface.
At step D, described touch screen input interfaces is the function menu of application software, software systems are selected the function corresponding load module according to displacement state, and this function load module outputed to touch display unit, touch display unit superposes on former Application Program Interface with translucent or opaque state and shows this function load module.
Above-mentioned function load module can be touch-control menu or touch-control tool box or the touch-control status bar or the navigating lists of application software.
This device based on the employed switching inputting interface of method of touch screen input interfaces on the body induction device control hand-hold electronic equipments is the position induction installation, the position induction installation can checkout equipment displacement state, this position induction installation can the involving vibrations sensor, gravity sensor or imageing sensor.Vibration transducer can be the vibration induction circuit of any kind known in this field, such as accelerometer, inertia meter uniform acceleration sensor, gyroscope constant angular velocity sensor, magnetic resistance sensors such as electronic compass, can produce the data such as relative direction, angle, distance of equipment displacement in real time, the equipment displacement data that processor detects according to this vibrating circuit is determined operator's motion characteristic.Gravity sensor is the gravity directional information of collecting device in real time, and the equipment gravity directional information that processor detects according to gravity sensor is determined operator's motion characteristic.Imageing sensor can be included in this field any kind photosensitive circuit, such as CMOS, CCD etc., and images acquired that can be continuous, processor is analyzed every image of continuous capturing, determines the deformation trace feature of operator's hand motion.
Software systems of the present invention can be Input Softwares, can be application software; Touch screen input interfaces of the present invention can be a dummy keyboard, also can be application software functional module or function menu.Support the software systems based on the method for touch screen input interfaces on the body induction device control hand-hold electronic equipments of the present invention to have following feature: to include plural inputting interface; Can receive and handle the displacement information that the position induction installation collects; Can receive and handle information input from touch screen; Switch inputting interface according to displacement information; In selected inputting interface, the information of touch-screen input is converted into the content of input; In cover software systems, a kind of displacement state can only define corresponding inputting interface, and an inputting interface can define corresponding multiple displacement state.
According to the actual needs of software systems, software developer or operator can define the quantity of inputting interface and the content of each inputting interface in software systems, and define the corresponding relation between each inputting interface and the various displacement state.By the conversion of displacement state, make the inputting interface of system customize switching.
Use after this method, can realize the high input of efficient of hand-hold electronic equipments, use more convenient, easier, simpler and more direct.
Description of drawings
Fig. 1 is the action synoptic diagram that hand-hold electronic equipments rotates to the left in the one embodiment of the invention.
Fig. 2 is the action synoptic diagram that hand-hold electronic equipments rotates to the right in the one embodiment of the invention.
Fig. 3 is the action synoptic diagram that hand-hold electronic equipments horizontally rotates counterclockwise in the one embodiment of the invention.
Fig. 4 is the action synoptic diagram that hand-hold electronic equipments horizontally rotates clockwise in the one embodiment of the invention.
Fig. 5 is the hand-hold electronic equipments action synoptic diagram of sideway swivel forward in the one embodiment of the invention.
Fig. 6 is the hand-hold electronic equipments action synoptic diagram of sideway swivel backward in the one embodiment of the invention.
Embodiment
The position induction installation is the application case of vibrating circuit: the employed switching device shifter of method that switches inputting interface on the hand-hold electronic equipments that present embodiment adopts is the built-in acceleration transducer of equipment, can detect the accelerating force, the angular velocity information that are applied on the hand-hold electronic equipments.
As Fig. 1-shown in Figure 6, present embodiment has defined six position features: rotate to the left, rotate to the right, horizontally rotate clockwise, horizontally rotate counterclockwise, sideway swivel forward, sideway swivel backward.Operator's hand grips electronic equipment when the equipment left side is rotated, it is the accelerating force that reference field tilts to the left based on the electronic equipment screen face that the position induction installation detects one, and processor determines that according to detected angle turn of speed directional information operator's hand motion is characterized as " rotation to the left "; Operator's hand grips electronic equipment when the equipment right side tilts rotation, if it is the accelerating force that reference field tilts to the right based on the electronic equipment screen face that the position induction installation detects one, processor determines that according to detected angle turn of speed directional information operator's hand motion is characterized as " rotation to the right "; When operator's hand gripping electronic equipment level turns clockwise, it is the clockwise accelerating force of reference field level based on the electronic equipment screen face that the position induction installation detects one, and processor determines that according to detected angle turn of speed directional information operator's hand motion is characterized as " horizontally rotating clockwise "; When operator's hand gripping electronic equipment level is rotated counterclockwise, it is the counterclockwise accelerating force of reference field level based on the electronic equipment screen face that the position induction installation detects one, and processor determines that according to detected angle turn of speed directional information operator's hand motion is characterized as " level is counterclockwise "; Operator's hand grips electronic equipment forward during sideway swivel, the position induction installation detect one based on the electronic equipment screen face be reference field forward sideway swivel the angle turn of speed, processor determines that according to detected angle turn of speed directional information operator's hand motion is characterized as " sideway swivel forward "; Operator's hand grips electronic equipment backward during sideway swivel, it is the angle turn of speed that reference field turns clockwise based on the electronic equipment screen face that the position induction installation detects one, and processor determines that according to detected angle turn of speed directional information operator's hand motion is characterized as " sideway swivel backward ".
The touch screen input interfaces of present embodiment is the dummy keyboard interface, and software systems comprise a plurality of dummy keyboards interface.Fig. 1-Fig. 4 has comprised four dummy keyboard interfaces.The dummy keyboard interface can be that full frame mode shows, can be that translucent mode superposes and is presented on the application software interface.
With input " we " is example, and at first the operator rotates this electronic equipment 10 to the left, and the position induction installation obtains the displacement state information of one " rotation to the left ", and touch-screen input keyboard interface becomes the interface that includes " W " key lattice.As shown in Figure 1, this dummy keyboard interface comprises English alphabet " Q ", " W ", " E ", " R ", " T ", " A ", " S ", " D ", " F ", " G ", " Z ", " X ", " C ", " V ", " B " and candidate lattice 11.Click then and choose " W " key lattice, Input Software shows some candidate speech, as " I ", " king ", " asking ", " End " or the like according to " W " that choose in the candidate lattice of this dummy keyboard.If click " I " that choose in the candidate lattice this moment, then software systems are directly imported " I "; Certainly, directly enter next step after also can choosing " W " in click, as shown in Figure 2, the operator rotates this electronic equipment to the right, the position induction installation obtains the displacement state information of one " rotation to the right ", and touch-screen input keyboard interface switches to the interface that includes " M " key lattice.This dummy keyboard interface comprises English alphabet " Y ", " U ", " I ", " O ", " P ", " H ", " J ", " K ", " L ", " N ", " M ", conventional sign "; ", ", ", ".", space bar and candidate lattice.Click then and choose " M " key lattice; Input Software shows some candidate speech, as " we ", " civilization ", " outside ", " perfection " or the like according to " W " and " M " that choose for twice in the candidate lattice of dummy keyboard." we " are chosen in click, finish input.
In addition, touch-screen input keyboard interface switches to dummy keyboard interface as shown in Figure 3 when the operator horizontally rotates this electronic equipment counterclockwise, this dummy keyboard interface comprises ten arabic numeral of 0-9 and radix point and adds, subtracts, multiplication and division, equals operational symbol to also have the upper and lower, left and right directionkeys.Click chooses method as above.
Touch-screen input keyboard interface switches to dummy keyboard interface as shown in Figure 4 when the operator horizontally rotates this electronic equipment clockwise, and this dummy keyboard interface has comprised other punctuation mark and code commonly used.Click chooses method as above.
Touch screen input interfaces also can be the functional module or the function menu of application software, as shown in Figure 5, when the operator with this electronic equipment 10 forward during sideway swivel, touch screen input interfaces switches to function menu as shown in Figure 5, this function menu can be that full frame mode shows, also can be to superpose in translucent mode to be presented on the application software interface.This function menu comprises common function and literal display window 12 of copy editor's softwares such as " duplicating ", " subtract and cut ", " stickup ", " full choosing ", " cancelling ", " recovery ", " BACKSPACE ", " SHIFT ", " TAB ", " HOME ", " ENTER ", " CTRL ", " ALT ", " END ", " DELETE ".Click chooses a certain function just can make copy editor's software carry out corresponding instruction.
As shown in Figure 6, when the operator with this electronic equipment 10 backward during sideway swivel, touch screen input interfaces switches to function menu as shown in Figure 6, this function menu has only a literal display window 12.
The position induction installation is the application case of vibrating circuit: the employed switching device shifter of method that switches inputting interface on the hand-hold electronic equipments that present embodiment adopts is the built-in gravity sensor of equipment, can detect the gravity directional information that is applied in hand-hold electronic equipments.
Present embodiment has defined eight position features: left-leaningly, upper left incline, updip, upper rightly incline, Right deviation, bottom right are inclined, have a down dip, incline in the lower-left.Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment left side, the position induction installation detects electronic equipment gravity tester information to the left, and processor determines that according to detected gravity information operator's hand motion is characterized as " "Left"-deviationist "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment upper left side tilts, the position induction installation detects the information of electronic equipment gravity tester to the upper left side, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " upper left incline "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment upside tilts, the position induction installation detects the information of electronic equipment gravity tester to upside, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " updip "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment upper right side tilts, the position induction installation detects the electronic equipment gravity tester to upper right information, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " upper right incline "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment right side tilts, the position induction installation detects electronic equipment gravity tester information to the right, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " Right deviation "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment lower right side tilts, the position induction installation detects the information of electronic equipment gravity tester to the bottom right, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " inclining in the bottom right "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the equipment downside tilts, the position induction installation detects the downward information of electronic equipment gravity tester, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " having a down dip "; Operator's hand grips electronic equipment with touch screen plane and face of land plane parallel, the operator will be when the inclination of equipment lower-left be oblique, the position induction installation detects electronic equipment gravity tester information to left down, and processor determines that according to detected gravity directional information operator's hand motion is characterized as " inclining in the lower-left ".
The touch screen input interfaces of present embodiment is the touch function module of application software, application software comprises a plurality of touch function modules, and described touch function module is that the function load module can be touch-control menu or touch-control tool box or the touch-control status bar or the navigating lists of application software.Present embodiment has comprised application software bottom interface and seven application software touch function modules of a no touch functional module: navigating lists, menu one, menu two, menu three, menu four, status bar, tool box.
When the operator held the electronic equipment "Left"-deviationist, touch screen input interfaces changed first state of a control into, and application software accesses the navigating lists interface and is transported to screen displaying is carried out the software navigation function for the operator touch operation; The operator holds when electronic equipment is upper left to incline, and touch screen input interfaces changes second state of a control into, and application software accesses menu one interface and is transported to screen displaying is carried out menu one for the operator touch operation; When the operator held the electronic equipment updip, touch screen input interfaces changed three control-state into, and application software accesses the menu second interface and is transported to screen displaying is carried out menu two for the operator touch operation; The operator holds when electronic equipment is upper right to incline, and touch screen input interfaces changes the 4th state of a control into, and application software accesses menu one interface and is transported to screen displaying is carried out menu three for the operator touch operation; When the operator held the electronic equipment Right deviation, touch screen input interfaces changed the 5th state of a control into, and application software accesses menu one interface and is transported to screen displaying is carried out menu four for the operator touch operation; When the operator held the electronic equipment bottom right and inclines, touch screen input interfaces changed the 6th state of a control into, and application software accesses the status bar interface and is transported to screen displaying is carried out the application state hurdle for the operator touch operation; When the operator held electronic equipment and has a down dip, touch screen input interfaces changed the 7th state of a control into, and application software is hidden all touch function modules, and the operator carries out touch operation under application software bottom interface; When the operator held the electronic equipment lower-left and inclines, touch screen input interfaces changed the 8th state of a control into, and application software accesses the tool box interface and is transported to screen displaying is carried out the software function hurdle for the operator touch operation.
The corresponding relation of control position and software function load module is as shown in the table:
State of a control The control position Access the software function load module
First state of a control Left-leaning Navigating lists
Second state of a control Upper leftly incline Menu one
Three control-state Updip Menu two
The 4th state of a control Upper rightly incline Menu three
The 5th state of a control Right deviation Menu four
The 6th state of a control Incline in the bottom right Status bar
The 7th state of a control Have a down dip Do not have
The 8th state of a control Incline in the lower-left Tool box

Claims (5)

1. the method based on touch screen input interfaces on the body induction device control hand-hold electronic equipments is characterized in that comprising the steps:
Steps A: the operator holds hand-hold electronic equipments; Step B: the operator carries out displacement operation to hand-hold electronic equipments; Step C: the position induction installation is gathered displacement information and is determined displacement state; Step D: the position induction installation sends the displacement state that collects to software systems, and software systems are selected to switch touch screen input interfaces according to displacement state, and this inputting interface is outputed to touch display unit; Step e: touch display unit receives touch information, and this touch information is transported to software systems; Step F: software systems are converted into the information of touch display unit input the content of input according to selected inputting interface.
2. a kind of method according to claim 1 based on touch screen input interfaces on the body induction device control hand-hold electronic equipments, it is characterized in that: at step C, described displacement state is one or more in direction of motion, movement velocity, the gravity directional information.
3. a kind of method according to claim 1 and 2 based on touch screen input interfaces on the body induction device control hand-hold electronic equipments, it is characterized in that: at step D, described touch screen input interfaces is the virtual key keyboard interface, software systems output to touch display unit with selected virtual key keyboard interface, and touch display unit superposes on former Application Program Interface with translucent or opaque state and shows the virtual key keyboard interface.
4. a kind of method according to claim 1 and 2 based on touch screen input interfaces on the body induction device control hand-hold electronic equipments, it is characterized in that: at step D, described touch screen input interfaces is the function load module of application software, software systems are selected the function corresponding load module according to displacement state, and this function load module outputed to touch display unit, touch display unit superposes on former Application Program Interface with translucent or opaque state and shows this function load module.
5. a kind of method based on touch screen input interfaces on the body induction device control hand-hold electronic equipments according to claim 4 is characterized in that: touch-control menu that described function load module is an application software or touch-control tool box or touch-control status bar or navigating lists.
CN201010203268A 2010-06-20 2010-06-20 Method for controlling touch screen input interfaces on handheld electronic equipment based on somatosensory device Pending CN101853135A (en)

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102890566A (en) * 2011-07-22 2013-01-23 中兴通讯股份有限公司 Method and device for electronic device to realize desktop switching, and electronic terminal
CN103677266A (en) * 2013-12-09 2014-03-26 联想(北京)有限公司 Electronic equipment and display control method and system thereof
CN103813019A (en) * 2014-03-03 2014-05-21 宇龙计算机通信科技(深圳)有限公司 Method and device for adjusting input interface
CN103902207A (en) * 2012-12-25 2014-07-02 联想(北京)有限公司 Display method and electronic device
CN104777895A (en) * 2014-01-15 2015-07-15 英华达(南京)科技有限公司 Input method control method and handheld device
CN103902196B (en) * 2012-12-28 2017-02-08 联芯科技有限公司 Screen display system and method and electronic display equipment
CN109871114A (en) * 2017-12-04 2019-06-11 北京搜狗科技发展有限公司 A kind of keyboard operation method and device

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US20090201246A1 (en) * 2008-02-11 2009-08-13 Apple Inc. Motion Compensation for Screens
CN101706677A (en) * 2009-12-22 2010-05-12 聂清永 Input device based on body feeling and input method thereof

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US20090201246A1 (en) * 2008-02-11 2009-08-13 Apple Inc. Motion Compensation for Screens
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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102890566A (en) * 2011-07-22 2013-01-23 中兴通讯股份有限公司 Method and device for electronic device to realize desktop switching, and electronic terminal
CN103902207A (en) * 2012-12-25 2014-07-02 联想(北京)有限公司 Display method and electronic device
CN103902196B (en) * 2012-12-28 2017-02-08 联芯科技有限公司 Screen display system and method and electronic display equipment
CN103677266A (en) * 2013-12-09 2014-03-26 联想(北京)有限公司 Electronic equipment and display control method and system thereof
CN103677266B (en) * 2013-12-09 2017-01-25 联想(北京)有限公司 Electronic equipment and display control method and system thereof
CN104777895A (en) * 2014-01-15 2015-07-15 英华达(南京)科技有限公司 Input method control method and handheld device
CN103813019A (en) * 2014-03-03 2014-05-21 宇龙计算机通信科技(深圳)有限公司 Method and device for adjusting input interface
CN109871114A (en) * 2017-12-04 2019-06-11 北京搜狗科技发展有限公司 A kind of keyboard operation method and device
CN109871114B (en) * 2017-12-04 2023-02-03 北京搜狗科技发展有限公司 Keyboard operation method and device

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Open date: 20101006