CN104636044A - Single hand operating method and mobile terminal - Google Patents

Single hand operating method and mobile terminal Download PDF

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Publication number
CN104636044A
CN104636044A CN201510091832.3A CN201510091832A CN104636044A CN 104636044 A CN104636044 A CN 104636044A CN 201510091832 A CN201510091832 A CN 201510091832A CN 104636044 A CN104636044 A CN 104636044A
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China
Prior art keywords
mobile terminal
touch trajectory
singlehanded
smaller screen
detecting
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Granted
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CN201510091832.3A
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Chinese (zh)
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CN104636044B (en
Inventor
刘洋
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Shenzhen ZTE Mobile Telecom Co Ltd
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Shenzhen ZTE Mobile Telecom Co Ltd
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    • 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
    • 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
    • G06F3/04883Interaction 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 for inputting data by handwriting, e.g. gesture or text
    • 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
    • G06F3/04886Interaction 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 by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Function (AREA)

Abstract

The invention discloses a single hand operating method and a mobile terminal. The single hand operating method comprises the following steps of detecting a touch track on a screen of the mobile terminal after the mobile terminal is started; and forming a small screen facilitating operation of a user with a single hand according to the touch track when detecting that the touch track is a specific touch track. By the method, the small screen facilitating operation of the user with the single hand can be formed on the mobile terminal, so that the user can operate the mobile terminal conveniently.

Description

The method of one-handed performance and mobile terminal
Technical field
The present invention relates to technical field of mobile terminals, particularly relate to a kind of method and mobile terminal of one-handed performance.
Background technology
Along with the fast development of intelligent terminal technology, the screen size of intelligent terminal is increasing, and a lot of young man favors 5 cun even the big screen intelligent terminal of more than 5 cun.The intelligent terminal of giant-screen can bring better experience to user, as played games or seeing video etc.
But the intelligent terminal of giant-screen equally also existing defects, the application icon on intelligent terminal still uses traditional mode to arrange, and because screen is too large, user is difficult to carry out one-handed performance to intelligent terminal.
Foregoing, only for auxiliary understanding technical scheme of the present invention, does not represent and admits that foregoing is prior art.
Summary of the invention
Fundamental purpose of the present invention is the method and the mobile terminal that provide a kind of one-handed performance, is intended to solve form singlehanded smaller screen how on mobile terminals with user-friendly technical matters.
For achieving the above object, the invention provides a kind of method of one-handed performance, the method for described one-handed performance comprises the following steps:
After mobile terminal starts, detect the touch trajectory on described mobile terminal screen;
When detecting that described touch trajectory is specific touch trajectory, form singlehanded smaller screen according to described touch trajectory.
Preferably, described when detecting that described touch trajectory is specific touch trajectory, the step forming singlehanded smaller screen according to described touch trajectory comprises:
When detecting that described touch trajectory is specific touch trajectory, calculate size parameter and the location parameter of described singlehanded smaller screen according to described specific touch trajectory;
Described singlehanded smaller screen is formed according to described size parameter and location parameter.
Preferably, described when detecting that described touch trajectory is specific touch trajectory, calculate the described size parameter of singlehanded smaller screen according to described specific touch trajectory and the step of location parameter comprises:
When detecting that described touch trajectory is arc touch trajectory, obtain radius and the home position of the circular trace at described touch track place according to described touch track;
The size parameter of singlehanded smaller screen according to described radius calculation, calculates the location parameter of described singlehanded smaller screen according to described home position.
Preferably, the method for described one-handed performance also comprises:
When receiving adjustment instruction, the size of singlehanded smaller screen and/or position according to described adjustment instruction.
In addition, for achieving the above object, the present invention also provides a kind of mobile terminal, and described mobile terminal comprises:
Detection module, for after mobile terminal starts, detects the touch trajectory on described mobile terminal screen;
Forming module, for when detecting that described touch trajectory is specific touch trajectory, forming singlehanded smaller screen according to described touch trajectory.
Preferably, described formation module comprises:
Computing unit, for when detecting that described touch trajectory is specific touch trajectory, calculates size parameter and the location parameter of described singlehanded smaller screen according to described specific touch trajectory;
Forming unit, for forming described singlehanded smaller screen according to described size parameter and location parameter.
Preferably, described computing unit comprises:
Obtaining subelement, for when detecting that described touch trajectory is arc touch trajectory, obtaining radius and the home position of the circular trace at described touch track place according to described touch track;
Computation subunit, for the size parameter of smaller screen singlehanded according to described radius calculation, calculates the location parameter of described singlehanded smaller screen according to described home position.
Preferably, described mobile terminal also comprises:
Adjusting module, for when receiving adjustment instruction, the size of singlehanded smaller screen and/or position according to described adjustment instruction.
In addition, for achieving the above object, the present invention also provides a kind of mobile phone, and described mobile phone is above-mentioned mobile terminal.
The method of one-handed performance of the present invention and mobile terminal, when detecting that the touch trajectory on screen is specific touch trajectory, singlehanded smaller screen is formed according to touch trajectory, due to the interface scaled down version that singlehanded smaller screen is mobile terminal, when user operates in singlehanded smaller screen, user both can operate according to the custom of carrying out operating at the interface of mobile terminal, repeatedly can not search because of moving of application icon, user can also be facilitated to carry out one-handed performance, and operation easily.
Accompanying drawing explanation
Fig. 1 is the hardware configuration signal of the mobile terminal realizing each embodiment of the present invention;
Fig. 2 is the wireless communication system schematic diagram of mobile terminal as shown in Figure 1;
Fig. 3 is the schematic flow sheet of method first embodiment of one-handed performance of the present invention;
Fig. 4 is the refinement schematic flow sheet of step S102 in Fig. 3;
Fig. 5 is the geometric representation of the parameter calculating singlehanded smaller screen in Fig. 4;
Fig. 6 is the schematic diagram forming singlehanded smaller screen in Fig. 4;
Fig. 7 is the schematic flow sheet of method second embodiment of one-handed performance of the present invention;
Fig. 8 is the high-level schematic functional block diagram of mobile terminal first embodiment of the present invention;
Fig. 9 is the refinement high-level schematic functional block diagram forming module in Fig. 8;
Figure 10 is the high-level schematic functional block diagram of mobile terminal second embodiment of the present invention.
The realization of the object of the invention, functional characteristics and advantage will in conjunction with the embodiments, are described further with reference to accompanying drawing.
Embodiment
Should be appreciated that specific embodiment described herein only in order to explain the present invention, be not intended to limit the present invention.
The mobile terminal realizing each embodiment of the present invention is described referring now to accompanying drawing.In follow-up description, use the suffix of such as " module ", " parts " or " unit " for representing element only in order to be conducive to explanation of the present invention, itself is specific meaning not.Therefore, " module " and " parts " can mixedly use.
Mobile terminal can be implemented in a variety of manners.Such as, the terminal described in the present invention can comprise the such as mobile terminal of mobile phone, smart phone, notebook computer, digit broadcasting receiver, PDA (personal digital assistant), PAD (panel computer), PMP (portable media player), guider etc. and the fixed terminal of such as digital TV, desk-top computer etc.Below, suppose that terminal is mobile terminal.But it will be appreciated by those skilled in the art that except the element except being used in particular for mobile object, structure according to the embodiment of the present invention also can be applied to the terminal of fixed type.
Fig. 1 is the hardware configuration signal of the mobile terminal realizing each embodiment of the present invention.
Mobile terminal 100 can comprise wireless communication unit 110, A/V (audio/video) input block 120, user input unit 130, sensing cell 140, output unit 150, storer 160, interface unit 170, controller 180 and power supply unit 190 etc.Fig. 1 shows the mobile terminal with various assembly, it should be understood that, does not require to implement all assemblies illustrated.Can alternatively implement more or less assembly.Will be discussed in more detail below the element of mobile terminal.
Wireless communication unit 110 generally includes one or more assembly, and it allows the wireless communication between mobile terminal 100 and wireless communication system or network.Such as, wireless communication unit can comprise at least one in broadcast reception module 111, mobile communication module 112, wireless Internet module 113, short range communication module 114 and positional information module 115.
Broadcast reception module 111 via broadcast channel from external broadcasting management server receiving broadcast signal and/or broadcast related information.Broadcast channel can comprise satellite channel and/or terrestrial channel.Broadcast management server can be generate and send the server of broadcast singal and/or broadcast related information or the broadcast singal generated before receiving and/or broadcast related information and send it to the server of terminal.Broadcast singal can comprise TV broadcast singal, radio signals, data broadcasting signal etc.And broadcast singal may further include the broadcast singal combined with TV or radio signals.Broadcast related information also can provide via mobile communications network, and in this case, broadcast related information can be received by mobile communication module 112.Broadcast singal can exist in a variety of manners, such as, it can exist with the form of the electronic service guidebooks (ESG) of the electronic program guides of DMB (DMB) (EPG), digital video broadcast-handheld (DVB-H) etc.Broadcast reception module 111 can by using the broadcast of various types of broadcast system Received signal strength.Especially, broadcast reception module 111 can by using such as multimedia broadcasting-ground (DMB-T), DMB-satellite (DMB-S), digital video broadcasting-hand-held (DVB-H), and the digit broadcasting system of the Radio Data System, received terrestrial digital broadcasting integrated service (ISDB-T) etc. of forward link media (MediaFLO) receives digital broadcasting.Broadcast reception module 111 can be constructed to be applicable to providing the various broadcast system of broadcast singal and above-mentioned digit broadcasting system.The broadcast singal received via broadcast reception module 111 and/or broadcast related information can be stored in storer 160 (or storage medium of other type).
Radio signal is sent at least one in base station (such as, access point, Node B etc.), exterior terminal and server and/or receives radio signals from it by mobile communication module 112.Various types of data that such radio signal can comprise voice call signal, video calling signal or send according to text and/or Multimedia Message and/or receive.
Wireless Internet module 113 supports the Wi-Fi (Wireless Internet Access) of mobile terminal.This module can be inner or be externally couple to terminal.Wi-Fi (Wireless Internet Access) technology involved by this module can comprise WLAN (WLAN) (Wi-Fi), Wibro (WiMAX), Wimax (worldwide interoperability for microwave access), HSDPA (high-speed downlink packet access) etc.
Short range communication module 114 is the modules for supporting junction service.Some examples of short-range communication technology comprise bluetooth tM, radio-frequency (RF) identification (RFID), Infrared Data Association (IrDA), ultra broadband (UWB), purple honeybee tMetc..
Positional information module 115 is the modules of positional information for checking or obtain mobile terminal.The typical case of positional information module is GPS (GPS).According to current technology, GPS module 115 calculates from the range information of three or more satellite and correct time information and for the Information application triangulation calculated, thus calculates three-dimensional current location information according to longitude, latitude and pin-point accuracy.Current, the method for calculating position and temporal information uses three satellites and by using the error of the position that goes out of an other satellite correction calculation and temporal information.In addition, GPS module 115 can carry out computing velocity information by Continuous plus current location information in real time.
A/V input block 120 is for audio reception or vision signal.A/V input block 120 can comprise camera 121 and microphone 1220, and the view data of camera 121 to the static images obtained by image capture apparatus in Video Capture pattern or image capture mode or video processes.Picture frame after process may be displayed on display unit 151.Picture frame after camera 121 processes can be stored in storer 160 (or other storage medium) or via wireless communication unit 110 and send, and can provide two or more cameras 1210 according to the structure of mobile terminal.Such acoustic processing can via microphones sound (voice data) in telephone calling model, logging mode, speech recognition mode etc. operational mode, and can be voice data by microphone 122.Audio frequency (voice) data after process can be converted to the formatted output that can be sent to mobile communication base station via mobile communication module 112 when telephone calling model.Microphone 122 can be implemented various types of noise and eliminate (or suppress) algorithm and receiving and sending to eliminate (or suppression) noise or interference that produce in the process of sound signal.
User input unit 130 can generate key input data to control the various operations of mobile terminal according to the order of user's input.User input unit 130 allows user to input various types of information, and keyboard, the young sheet of pot, touch pad (such as, detecting the touch-sensitive assembly of the change of the resistance, pressure, electric capacity etc. that cause owing to being touched), roller, rocking bar etc. can be comprised.Especially, when touch pad is superimposed upon on display unit 151 as a layer, touch-screen can be formed.
Sensing cell 140 detects the current state of mobile terminal 100, (such as, mobile terminal 100 open or close state), the position of mobile terminal 100, user for mobile terminal 100 contact (namely, touch input) presence or absence, the orientation of mobile terminal 100, the acceleration or deceleration of mobile terminal 100 move and direction etc., and generate order or the signal of the operation for controlling mobile terminal 100.Such as, when mobile terminal 100 is embodied as sliding-type mobile phone, sensing cell 140 can sense this sliding-type phone and open or close.In addition, whether whether sensing cell 140 can detect power supply unit 190 provides electric power or interface unit 170 to couple with external device (ED).Sensing cell 140 can comprise proximity transducer 1410 and will be described this in conjunction with touch-screen below.
Interface unit 170 is used as at least one external device (ED) and is connected the interface that can pass through with mobile terminal 100.Such as, external device (ED) can comprise wired or wireless head-band earphone port, external power source (or battery charger) port, wired or wireless FPDP, memory card port, for connecting the port, audio frequency I/O (I/O) port, video i/o port, ear port etc. of the device with identification module.Identification module can be that storage uses the various information of mobile terminal 100 for authentication of users and can comprise subscriber identification module (UIM), client identification module (SIM), Universal Subscriber identification module (USIM) etc.In addition, the device (hereinafter referred to " recognition device ") with identification module can take the form of smart card, and therefore, recognition device can be connected with mobile terminal 100 via port or other coupling arrangement.Interface unit 170 may be used for receive from external device (ED) input (such as, data message, electric power etc.) and the input received be transferred to the one or more element in mobile terminal 100 or may be used for transmitting data between mobile terminal and external device (ED).
In addition, when mobile terminal 100 is connected with external base, interface unit 170 can be used as to allow by it electric power to be provided to the path of mobile terminal 100 from base or can be used as the path that allows to be transferred to mobile terminal by it from the various command signals of base input.The various command signal inputted from base or electric power can be used as and identify whether mobile terminal is arranged on the signal base exactly.Output unit 150 is constructed to provide output signal (such as, sound signal, vision signal, alarm signal, vibration signal etc.) with vision, audio frequency and/or tactile manner.Output unit 150 can comprise display unit 151, dio Output Modules 152, alarm unit 153 etc.
Display unit 151 may be displayed on the information of process in mobile terminal 100.Such as, when mobile terminal 100 is in telephone calling model, display unit 151 can show with call or other communicate (such as, text messaging, multimedia file are downloaded etc.) be correlated with user interface (UI) or graphic user interface (GUI).When mobile terminal 100 is in video calling pattern or image capture mode, display unit 151 can the image of display capture and/or the image of reception, UI or GUI that video or image and correlation function are shown etc.
Meanwhile, when display unit 151 and touch pad as a layer superposed on one another to form touch-screen time, display unit 151 can be used as input media and output unit.Display unit 151 can comprise at least one in liquid crystal display (LCD), thin film transistor (TFT) LCD (TFT-LCD), Organic Light Emitting Diode (OLED) display, flexible display, three-dimensional (3D) display etc.Some in these displays can be constructed to transparence and watch from outside to allow user, and this can be called transparent display, and typical transparent display can be such as TOLED (transparent organic light emitting diode) display etc.According to the specific embodiment wanted, mobile terminal 100 can comprise two or more display units (or other display device), such as, mobile terminal can comprise outernal display unit (not shown) and inner display unit (not shown).Touch-screen can be used for detecting touch input pressure and touch input position and touch and inputs area.
When dio Output Modules 152 can be under the isotypes such as call signal receiving mode, call mode, logging mode, speech recognition mode, broadcast reception mode at mobile terminal, voice data convert audio signals that is that wireless communication unit 110 is received or that store in storer 160 and exporting as sound.And dio Output Modules 152 can provide the audio frequency relevant to the specific function that mobile terminal 100 performs to export (such as, call signal receives sound, message sink sound etc.).Dio Output Modules 152 can comprise loudspeaker, hummer etc.
Alarm unit 153 can provide and export that event informed to mobile terminal 100.Typical event can comprise calling reception, message sink, key signals input, touch input etc.Except audio or video exports, alarm unit 153 can provide in a different manner and export with the generation of notification event.Such as, alarm unit 153 can provide output with the form of vibration, when receive calling, message or some other enter communication (incoming communication) time, alarm unit 153 can provide sense of touch to export (that is, vibrating) to notify to user.By providing such sense of touch to export, even if when the mobile phone of user is in the pocket of user, user also can identify the generation of various event.Alarm unit 153 also can provide the output of the generation of notification event via display unit 151 or dio Output Modules 152.
Storer 160 software program that can store process and the control operation performed by controller 180 etc., or temporarily can store oneself through exporting the data (such as, telephone directory, message, still image, video etc.) that maybe will export.And, storer 160 can store about when touch be applied to touch-screen time the vibration of various modes that exports and the data of sound signal.
Storer 160 can comprise the storage medium of at least one type, described storage medium comprises flash memory, hard disk, multimedia card, card-type storer (such as, SD or DX storer etc.), random access storage device (RAM), static random-access memory (SRAM), ROM (read-only memory) (ROM), Electrically Erasable Read Only Memory (EEPROM), programmable read only memory (PROM), magnetic storage, disk, CD etc.And mobile terminal 100 can be connected the memory function of execute store 160 network storage device with by network cooperates.
Controller 180 controls the overall operation of mobile terminal usually.Such as, controller 180 performs the control relevant to voice call, data communication, video calling etc. and process.In addition, controller 180 can comprise the multi-media module 1810 for reproducing (or playback) multi-medium data, and multi-media module 1810 can be configured in controller 180, or can be configured to be separated with controller 180.Controller 180 can pattern recognition process, is identified as character or image so that input is drawn in the handwriting input performed on the touchscreen or picture.
Power supply unit 190 receives external power or internal power and provides each element of operation and the suitable electric power needed for assembly under the control of controller 180.
Various embodiment described herein can to use such as computer software, the computer-readable medium of hardware or its any combination implements.For hardware implementation, embodiment described herein can by using application-specific IC (ASIC), digital signal processor (DSP), digital signal processing device (DSPD), programmable logic device (PLD), field programmable gate array (FPGA), processor, controller, microcontroller, microprocessor, being designed at least one performed in the electronic unit of function described herein and implementing, in some cases, such embodiment can be implemented in controller 180.For implement software, the embodiment of such as process or function can be implemented with allowing the independent software module performing at least one function or operation.Software code can be implemented by the software application (or program) write with any suitable programming language, and software code can be stored in storer 160 and to be performed by controller 180.
So far, oneself is through the mobile terminal according to its functional description.Below, for the sake of brevity, by the slide type mobile terminal that describes in various types of mobile terminals of such as folded form, board-type, oscillating-type, slide type mobile terminal etc. exemplarily.Therefore, the present invention can be applied to the mobile terminal of any type, and is not limited to slide type mobile terminal.
Mobile terminal 100 as shown in Figure 1 can be constructed to utilize and send the such as wired and wireless communication system of data via frame or grouping and satellite-based communication system operates.
Describe wherein according to the communication system that mobile terminal of the present invention can operate referring now to Fig. 2.
Such communication system can use different air interfaces and/or Physical layer.Such as, the air interface used by communication system comprises such as frequency division multiple access (FDMA), time division multiple access (TDMA) (TDMA), CDMA (CDMA) and universal mobile telecommunications system (UMTS) (especially, Long Term Evolution (LTE)), global system for mobile communications (GSM) etc.As non-limiting example, description below relates to cdma communication system, but such instruction is equally applicable to the system of other type.
With reference to figure 2, cdma wireless communication system can comprise multiple mobile terminal 100, multiple base station (BS) 270, base station controller (BSC) 275 and mobile switching centre (MSC) 280.MSC280 is constructed to form interface with Public Switched Telephony Network (PSTN) 290.MSC280 is also constructed to form interface with the BSC275 that can be couple to base station 270 via back haul link.Back haul link can construct according to any one in some interfaces that oneself knows, described interface comprises such as E1/T1, ATM, IP, PPP, frame relay, HDSL, ADSL or xDSL.Will be appreciated that system as shown in Figure 2 can comprise multiple BSC2750.
Each BS270 can serve one or more subregion (or region), by multidirectional antenna or point to specific direction each subregion of antenna cover radially away from BS270.Or each subregion can by two or more antenna covers for diversity reception.Each BS270 can be constructed to support multiple parallel compensate, and each parallel compensate has specific frequency spectrum (such as, 1.25MHz, 5MHz etc.).
Subregion can be called as CDMA Channel with intersecting of parallel compensate.BS270 also can be called as base station transceiver subsystem (BTS) or other equivalent terms.Under these circumstances, term " base station " may be used for broadly representing single BSC275 and at least one BS270.Base station also can be called as " cellular station ".Or each subregion of particular B S270 can be called as multiple cellular station.
As shown in Figure 2, broadcast singal is sent to the mobile terminal 100 at operate within systems by broadcsting transmitter (BT) 295.Broadcast reception module 111 as shown in Figure 1 is arranged on mobile terminal 100 and sentences the broadcast singal receiving and sent by BT295.In fig. 2, several GPS (GPS) satellite 300 is shown.Satellite 300 helps at least one in the multiple mobile terminal 100 in location.
In fig. 2, depict multiple satellite 300, but understand, the satellite of any number can be utilized to obtain useful locating information.GPS module 115 as shown in Figure 1 is constructed to coordinate to obtain the locating information wanted with satellite 300 usually.Substitute GPS tracking technique or outside GPS tracking technique, can use can other technology of position of tracking mobile terminal.In addition, at least one gps satellite 300 optionally or extraly can process satellite dmb transmission.
As a typical operation of wireless communication system, BS270 receives the reverse link signal from various mobile terminal 100.Mobile terminal 100 participates in call usually, information receiving and transmitting communicates with other type.Each reverse link signal that certain base station 270 receives is processed by particular B S270.The data obtained are forwarded to relevant BSC275.BSC provides call Resourse Distribute and comprises the mobile management function of coordination of the soft switching process between BS270.The data received also are routed to MSC280 by BSC275, and it is provided for the extra route service forming interface with PSTN290.Similarly, PSTN290 and MSC280 forms interface, and MSC and BSC275 forms interface, and BSC275 correspondingly control BS270 so that forward link signals is sent to mobile terminal 100.
Based on above-mentioned mobile terminal hardware configuration and communication system, each embodiment of the inventive method is proposed.
With reference to Fig. 3, in one embodiment, the method for this one-handed performance comprises:
Step S101, after mobile terminal starts, detects the touch trajectory on described mobile terminal screen;
In the present embodiment, mobile terminal can be mobile phone or panel computer etc., preferably, can be mobile phone or the Rimless mobile phone of narrow frame.
In the present embodiment, user is when one-handed performance terminal, and the general thumb that uses operates, and is certainly not limited to user and uses thumb to carry out one-handed performance.After mobile terminal starts, if form singlehanded smaller screen first, then detect the touch trajectory on screen by mobile terminal.
In the present embodiment, singlehanded little get rid of size different from the interface of mobile terminal outside, other factors are substantially same or corresponding with the interface phase of mobile terminal, arrangement etc. as button, application icon and application icon is identical, namely singlehanded smaller screen is the mapping at the interface of mobile terminal, is the scaled down version at the interface of mobile terminal.
Step S102, when detecting that described touch trajectory is specific touch trajectory, forms singlehanded smaller screen according to described touch trajectory.
In the present embodiment, user can use left hand to carry out one-handed performance, and the right hand also can be used to carry out one-handed performance.If user uses left hand to carry out one-handed performance, touch trajectory is positioned at the left side at the interface of mobile terminal, then form singlehanded smaller screen on the left side at the interface of mobile terminal, if user uses the right hand to carry out one-handed performance, touch trajectory is positioned at the right at the interface of mobile terminal, then form singlehanded smaller screen on the right at the interface of mobile terminal.
In the present embodiment, specific touch trajectory has multiple, such as, can be arc, or closed arbitrary shape etc.If specific touch trajectory is arc, then can calculates size parameter and the location parameter of singlehanded smaller screen according to the touch trajectory of this arc, namely can form singlehanded smaller screen on the interface of mobile terminal according to these parameters; If specific touch trajectory is closed arbitrary shape, then by calculating the size parameter and the location parameter that get singlehanded smaller screen, finally can form singlehanded smaller screen on the interface of mobile terminal equally.
In the present embodiment, due to the interface scaled down version that singlehanded smaller screen is mobile terminal, when user operates in singlehanded smaller screen, user both can operate according to the custom of carrying out operating at the interface of mobile terminal, repeatedly can not search because of moving of application icon, user can also be facilitated to carry out one-handed performance, and operation easily.
In a preferred embodiment, as shown in Figure 4, on the basis of the embodiment of above-mentioned Fig. 3, above-mentioned steps S102 comprises:
Step S1021, when detecting that described touch trajectory is specific touch trajectory, calculates size parameter and the location parameter of described singlehanded smaller screen according to described specific touch trajectory;
Step S1022, forms described singlehanded smaller screen according to described size parameter and location parameter.
In the present embodiment, if the thumb of user carries out arc sliding on screen, then specific touch trajectory is arc, size parameter and the location parameter of singlehanded smaller screen can be calculated according to the touch trajectory of this arc, namely can form singlehanded smaller screen on the interface of mobile terminal according to these parameters.
In the present embodiment, obtain radius and the home position of the circular trace at touch track place according to the touch trajectory of arc (circular arc can be thought); According to the size parameter of the singlehanded smaller screen of radius calculation, calculate the location parameter of singlehanded smaller screen according to home position.
As illustrated in figures 5 and 6, in a preferred embodiment, for the arc touch trajectory AB that user slides, on AB, can get a C respectively and put D and respectively do a tangent line, the arc length between C and D is Δ S, and two tangent line angles are α, then curve A B is in the curvature of C point the present embodiment can be thought that the curvature of every bit on arc is all equal or get the mean curvature of several point, like this, and radius the position in the center of circle also can be determined.In an additional preferred embodiment, can get arbitrarily the string that on arc two are different, the intersection point of the perpendicular bisector of two strings is the home position of the circle at this arc place, by this home position, can determine the radius R of this circle.
The present embodiment is after obtaining home position, mobile terminal detects the air line distance H between home position to screen position bottom, the distance just can determining singlehanded smaller screen position bottom and mobile terminal screen position is bottom H-80/9, this makes it possible to the position determining singlehanded smaller screen.In addition, the width of singlehanded smaller screen gets R-15, and the Aspect Ratio of dynamic terminal screen is 16/9, and the length of so singlehanded smaller screen just can calculate (R-15) * 16/9, this makes it possible to the size determining singlehanded smaller screen.Long measure in the present embodiment is millimeter, and parameter 15, (80/9) are empirical value.
Wherein, the value upper limit of radius R is 70, as detected value R>70, gets R=70.In addition, if distance H is excessive, intactly cannot show singlehanded smaller screen on the screen of the mobile terminal, therefore, the H value upper limit is the H value that singlehanded smaller screen area is maximum, corresponding when being positioned at mobile terminal screen the top, when H is greater than capping value in limited time; H value lower limit is the H value that singlehanded smaller screen area is minimum, corresponding when being positioned at mobile terminal screen bottom, under H is less than, remove the limit value in limited time.
In a preferred embodiment, as shown in Figure 7, the method for this one-handed performance also comprises:
Step S103, when receiving adjustment instruction, the size of singlehanded smaller screen and/or position according to described adjustment instruction.
In the present embodiment, after the size parameter and location parameter that calculate singlehanded smaller screen according to the touch trajectory of user also finally form singlehanded smaller screen, if when the size and location of user to singlehanded smaller screen are unsatisfied with, when mobile terminal receives the adjustment instruction of user, such as when receiving length by instruction, can adjust, be adjusted by the mode dragged, as only adjusting size or only adjusting position or simultaneously adjusting size and position.
The present invention also provides a kind of mobile terminal, and as shown in Figure 8, described mobile terminal comprises:
Detection module 101, for after mobile terminal starts, detects the touch trajectory on described mobile terminal screen;
In the present embodiment, mobile terminal can be mobile phone or panel computer etc., preferably, can be mobile phone or the Rimless mobile phone of narrow frame.
In the present embodiment, user is when one-handed performance terminal, and the general thumb that uses operates, and is certainly not limited to user and uses thumb to carry out one-handed performance.After mobile terminal starts, if form singlehanded smaller screen first, then detect the touch trajectory on screen by mobile terminal.
In the present embodiment, singlehanded little get rid of size different from the interface of mobile terminal outside, other factors are substantially same or corresponding with the interface phase of mobile terminal, arrangement etc. as button, application icon and application icon is identical, namely singlehanded smaller screen is the mapping at the interface of mobile terminal, is the scaled down version at the interface of mobile terminal.
Forming module 102, for when detecting that described touch trajectory is specific touch trajectory, forming singlehanded smaller screen according to described touch trajectory.
In the present embodiment, user can use left hand to carry out one-handed performance, and the right hand also can be used to carry out one-handed performance.If user uses left hand to carry out one-handed performance, touch trajectory is positioned at the left side at the interface of mobile terminal, then form singlehanded smaller screen on the left side at the interface of mobile terminal, if user uses the right hand to carry out one-handed performance, touch trajectory is positioned at the right at the interface of mobile terminal, then form singlehanded smaller screen on the right at the interface of mobile terminal.
In the present embodiment, specific touch trajectory has multiple, such as, can be arc, or closed arbitrary shape etc.If specific touch trajectory is arc, then can calculates size parameter and the location parameter of singlehanded smaller screen according to the touch trajectory of this arc, namely can form singlehanded smaller screen on the interface of mobile terminal according to these parameters; If specific touch trajectory is closed arbitrary shape, then by calculating the size parameter and the location parameter that get singlehanded smaller screen, finally can form singlehanded smaller screen on the interface of mobile terminal equally.
In the present embodiment, due to the interface scaled down version that singlehanded smaller screen is mobile terminal, when user operates in singlehanded smaller screen, user both can operate according to the custom of carrying out operating at the interface of mobile terminal, repeatedly can not search because of moving of application icon, user can also be facilitated to carry out one-handed performance, and operation easily.
In a preferred embodiment, as shown in Figure 9, on the basis of the embodiment of above-mentioned Fig. 8, described formation module 102 comprises:
Computing unit 1021, for when detecting that described touch trajectory is specific touch trajectory, calculates size parameter and the location parameter of described singlehanded smaller screen according to described specific touch trajectory;
Forming unit 1022, for forming described singlehanded smaller screen according to described size parameter and location parameter.
In the present embodiment, if the thumb of user carries out arc sliding on screen, then specific touch trajectory is arc, size parameter and the location parameter of singlehanded smaller screen can be calculated according to the touch trajectory of this arc, namely can form singlehanded smaller screen on the interface of mobile terminal according to these parameters.
In the present embodiment, obtain radius and the home position of the circular trace at touch track place according to the touch trajectory of arc (circular arc can be thought); According to the size parameter of the singlehanded smaller screen of radius calculation, calculate the location parameter of singlehanded smaller screen according to home position.
As illustrated in figures 5 and 6, in a preferred embodiment, for the arc touch trajectory AB that user slides, on AB, can get a C respectively and put D and respectively do a tangent line, the arc length between C and D is Δ S, and two tangent line angles are α, then curve A B is in the curvature of C point the present embodiment can be thought that the curvature of every bit on arc is all equal or get the mean curvature of several point, like this, and radius the position in the center of circle also can be determined.In an additional preferred embodiment, can get arbitrarily the string that on arc two are different, the intersection point of the perpendicular bisector of two strings is the home position of the circle at this arc place, by this home position, can determine the radius R of this circle.
The present embodiment is after obtaining home position, mobile terminal detects the air line distance H between home position to screen position bottom, the distance just can determining singlehanded smaller screen position bottom and mobile terminal screen position is bottom H-80/9, this makes it possible to the position determining singlehanded smaller screen.In addition, the width of singlehanded smaller screen gets R-15, and the Aspect Ratio of dynamic terminal screen is 16/9, and the length of so singlehanded smaller screen just can calculate (R-15) * 16/9, this makes it possible to the size determining singlehanded smaller screen.Long measure in the present embodiment is millimeter, and parameter 15, (80/9) are empirical value.
Wherein, the value upper limit of radius R is 70, as detected value R>70, gets R=70.In addition, if distance H is excessive, intactly cannot show singlehanded smaller screen on the screen of the mobile terminal, therefore, the H value upper limit is the H value that singlehanded smaller screen area is maximum, corresponding when being positioned at mobile terminal screen the top, when H is greater than capping value in limited time; H value lower limit is the H value that singlehanded smaller screen area is minimum, corresponding when being positioned at mobile terminal screen bottom, under H is less than, remove the limit value in limited time.
In a preferred embodiment, as shown in Figure 10, on the basis of the embodiment of above-mentioned Fig. 8, described mobile terminal also comprises:
Adjusting module 103, for when receiving adjustment instruction, the size of singlehanded smaller screen and/or position according to described adjustment instruction.
In the present embodiment, after the size parameter and location parameter that calculate singlehanded smaller screen according to the touch trajectory of user also finally form singlehanded smaller screen, if when the size and location of user to singlehanded smaller screen are unsatisfied with, when mobile terminal receives the adjustment instruction of user, such as when receiving length by instruction, can adjust, be adjusted by the mode dragged, as only adjusting size or only adjusting position or simultaneously adjusting size and position.
In addition, the present invention also provides a kind of mobile phone, and described mobile phone is above-mentioned mobile terminal.
It should be noted that, in this article, term " comprises ", " comprising " or its any other variant are intended to contain comprising of nonexcludability, thus make to comprise the process of a series of key element, method, article or device and not only comprise those key elements, but also comprise other key elements clearly do not listed, or also comprise by the intrinsic key element of this process, method, article or device.When not more restrictions, the key element limited by statement " comprising ... ", and be not precluded within process, method, article or the device comprising this key element and also there is other identical element.
The invention described above embodiment sequence number, just to describing, does not represent the quality of embodiment.
Through the above description of the embodiments, those skilled in the art can be well understood to the mode that above-described embodiment method can add required general hardware platform by software and realize, hardware can certainly be passed through, but in a lot of situation, the former is better embodiment.Based on such understanding, technical scheme of the present invention can embody with the form of software product the part that prior art contributes in essence in other words, this computer software product is stored in a storage medium (as ROM/RAM, magnetic disc, CD), comprising some instructions in order to make a station terminal equipment (can be mobile phone, computing machine, server, air conditioner, or the network equipment etc.) perform method described in each embodiment of the present invention.
These are only the preferred embodiments of the present invention; not thereby the scope of the claims of the present invention is limited; every utilize instructions of the present invention and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present invention.

Claims (9)

1. a method for one-handed performance, is characterized in that, the method for described one-handed performance comprises the following steps:
After mobile terminal starts, detect the touch trajectory on described mobile terminal screen;
When detecting that described touch trajectory is specific touch trajectory, form singlehanded smaller screen according to described touch trajectory.
2. the method for one-handed performance as claimed in claim 1, it is characterized in that, described when detecting that described touch trajectory is specific touch trajectory, the step forming singlehanded smaller screen according to described touch trajectory comprises:
When detecting that described touch trajectory is specific touch trajectory, calculate size parameter and the location parameter of described singlehanded smaller screen according to described specific touch trajectory;
Described singlehanded smaller screen is formed according to described size parameter and location parameter.
3. the method for one-handed performance as claimed in claim 2, it is characterized in that, described when detecting that described touch trajectory is specific touch trajectory, calculate the described size parameter of singlehanded smaller screen according to described specific touch trajectory and the step of location parameter comprises:
When detecting that described touch trajectory is arc touch trajectory, obtain radius and the home position of the circular trace at described touch track place according to described touch track;
The size parameter of singlehanded smaller screen according to described radius calculation, calculates the location parameter of described singlehanded smaller screen according to described home position.
4. the method for the one-handed performance as described in any one of claims 1 to 3, is characterized in that, the method for described one-handed performance also comprises:
When receiving adjustment instruction, the size of singlehanded smaller screen and/or position according to described adjustment instruction.
5. a mobile terminal, is characterized in that, described mobile terminal comprises:
Detection module, for after mobile terminal starts, detects the touch trajectory on described mobile terminal screen;
Forming module, for when detecting that described touch trajectory is specific touch trajectory, forming singlehanded smaller screen according to described touch trajectory.
6. mobile terminal as claimed in claim 5, it is characterized in that, described formation module comprises:
Computing unit, for when detecting that described touch trajectory is specific touch trajectory, calculates size parameter and the location parameter of described singlehanded smaller screen according to described specific touch trajectory;
Forming unit, for forming described singlehanded smaller screen according to described size parameter and location parameter.
7. mobile terminal as claimed in claim 6, it is characterized in that, described computing unit comprises:
Obtaining subelement, for when detecting that described touch trajectory is arc touch trajectory, obtaining radius and the home position of the circular trace at described touch track place according to described touch track;
Computation subunit, for the size parameter of smaller screen singlehanded according to described radius calculation, calculates the location parameter of described singlehanded smaller screen according to described home position.
8. the mobile terminal as described in any one of claim 5 to 7, is characterized in that, described mobile terminal also comprises:
Adjusting module, for when receiving adjustment instruction, the size of singlehanded smaller screen and/or position according to described adjustment instruction.
9. a mobile phone, is characterized in that, described mobile phone is the mobile terminal described in any one of claim 5 to 8.
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