CN103412674A - Touch screen based instrument parameter adjusting method and system - Google Patents

Touch screen based instrument parameter adjusting method and system Download PDF

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Publication number
CN103412674A
CN103412674A CN2013103166396A CN201310316639A CN103412674A CN 103412674 A CN103412674 A CN 103412674A CN 2013103166396 A CN2013103166396 A CN 2013103166396A CN 201310316639 A CN201310316639 A CN 201310316639A CN 103412674 A CN103412674 A CN 103412674A
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China
Prior art keywords
contact point
parameter
touch
screen
regional
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CN2013103166396A
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Chinese (zh)
Inventor
张兴杰
宫玥枚
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SHENZHEN MICSIG INSTRUMENTS Co Ltd
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SHENZHEN MICSIG INSTRUMENTS Co Ltd
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Priority to CN2013103166396A priority Critical patent/CN103412674A/en
Publication of CN103412674A publication Critical patent/CN103412674A/en
Priority to PCT/CN2014/070017 priority patent/WO2015010452A1/en
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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]
    • G06F3/0484Interaction 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]
    • G06F3/0487Interaction 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

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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)
  • User Interface Of Digital Computer (AREA)

Abstract

The invention provides a touch screen based instrument parameter adjusting method. The method comprises steps as follows: whether a contact point on a touch screen is in an appointed area A is detected, and the area A on the touch screen is provided to a user and used for adjusting parameters displayed on the touch display screen; and if the contact point on a touch screen is detected in an appointed area A, parameters currently applied by an instrument according to the sliding direction and the displacement of the sliding point are adjusted. The invention provides a touch screen based instrument parameter adjusting system. The system comprises a touch screen, an input detecting module, a sliding detecting module and an adjustment executing module. The method and the system can be operated conveniently and directly, provide good operating experience, and save the cost.

Description

A kind of control method of instrument parameter based on touch-screen and system
Technical field
The present invention relates to areas of information technology, relate in particular to a kind of control method of instrument parameter based on touch-screen and system.
Background technology
Along with the continuous maturation of touch screen technology, increasing consumer electronics and instrument and equipment are equipped with touch-screen as a kind of input medium, and surveying instrument is no exception, such as the DPO7000 series oscillograph of Tyke etc.But in the surveying instrument application, touch-screen also only limits to the simple application such as actions menu, operation for more sophisticated functionss still mainly depends on mechanical knob and mechanical key, for example regulate continuously the size of a parameter on a large scale, generally all adopt mechanical knob to realize, use in a large number mechanical knob and button to be unfavorable for saving cost of products, and easily wearing and tearing, lifetime limitation is arranged, also be not easy to simultaneously cleaning and clean, experience more intuitively also can't for the operator.
Summary of the invention
The object of the invention is to overcome the defect of prior art, the method and system that a kind of convenience is directly perceived, operating experience good and cost-effective instrument parameter based on touch-screen is regulated is provided.
The present invention is achieved in that a kind of control method of instrument parameter based on touch-screen, comprises the following steps:
Detect the position of contact point on touch-screen whether in regional A; Described regional A offers the user on touch-screen, the zone of adjusting for the parameter to showing on touch display screen;
If described detection is yes, the direction and the displacement that according to contact point, slide are adjusted the parameter of instrument current application; Described displacement is the displacement of contact point current location initial position on screen with respect to contact point.
Further, described direction of sliding according to contact point comprises before the parameter of instrument current application is adjusted:
Set a direction and specify described regional A;
If the angle that contact point slides in regional A direction and direction initialization are less is less than 90 degree, the described contact point direction of sliding in regional A is positive dirction;
If the angle that contact point slides in regional A direction and direction initialization are less is greater than 90 degree, the described contact point direction of sliding in regional A is in the other direction;
If the angle that contact point slides in regional A direction and direction initialization are less equals 90 degree, the described contact point direction of sliding in regional A is vertical direction.
Further, described direction of sliding according to contact point is adjusted the parameter of instrument current application, comprising:
If the direction that contact point slides is positive dirction, increase the parameter of current application, if the direction that contact point slides is in the other direction, reduce the parameter of current application;
Or, if the direction that contact point slides is positive dirction, reduce the parameter of current application, if the direction that contact point slides is in the other direction, increase the parameter of current application;
If the direction that contact point slides is vertical direction, do not change the parameter of current application.
Further, the described displacement slided according to contact point is adjusted the parameter of instrument current application, and the change amount of parameter is directly proportional to the displacement that described contact point slides.
Further, the described displacement slided according to contact point is adjusted the parameter of instrument current application, and the change speed of parameter is directly proportional to the component of displacement on direction initialization that displacement or the described contact point of described contact point slip slide.
Further, the parameter of described instrument current application comprises that the moving up and down of displaying contents, audio/video broadcasting speed, numerical values recited and gear change.
The system that a kind of instrument parameter based on touch-screen is regulated comprises:
Touch-screen, for providing the regional A of appointment to the user; Described regional A is the zone of for the user, the parameter shown on touch display screen being adjusted on touch-screen;
The input detection module, for detection of the position of contact point on touch-screen whether in regional A;
The slip detection module, for detection of direction and the displacement of contact point slip on touch-screen; Described displacement is the displacement of contact point current location initial position on screen with respect to contact point;
Adjust execution module, for the direction and the displacement that according to contact point, slide, the parameter of instrument current application is adjusted.
Further, the system of described a kind of adjusting of instrument parameter based on touch-screen also comprises:
The direction setting module, be used to setting a direction and regional A, and
The angle that the direction of sliding in regional A when contact point and direction initialization are less is less than 90 while spending, and setting described contact point slides in regional A direction is positive dirction;
The angle that the direction of sliding in regional A when contact point and direction initialization are less is greater than 90 while spending, and sets described contact point slides in regional A direction in the other direction;
The angle that the direction of sliding in regional A when contact point and direction initialization are less equals 90 while spending, and setting described contact point slides in regional A direction is vertical direction.
Further, the system that described a kind of instrument parameter based on touch-screen is regulated also comprises regular preset module, and for preset regulation rule, described regulation rule comprises:
If the direction that contact point slides is positive dirction, increase the parameter of current application; If the direction that contact point slides is in the other direction, reduce the parameter of current application;
Or, if the direction that contact point slides is positive dirction, reduce the parameter of current application; If the direction that contact point slides is in the other direction, increase the parameter of current application;
If the direction that contact point slides is vertical direction, do not change the parameter of current application;
The change amount of parameter is directly proportional to the displacement that described contact point slides;
The change speed of parameter is directly proportional to the component of displacement on direction initialization that displacement or the described contact point of described contact point slip slide.
Further, the parameter of described instrument current application comprises that the moving up and down of displaying contents, audio/video broadcasting speed, numerical values recited and gear change.
The invention provides a kind of control method of instrument parameter based on touch-screen and system, preset regulation rule, action in regional A is adjusted accordingly to the parameter of current application according to contact point, convenient directly perceived, parameter is regulated direction and speed can arbitrarily be controlled, and gives be used to having brought splendid operating experience, compare mechanical knob and button, reduce wearing and tearing, effectively extended the life-span of instrument, saved simultaneously hardware cost.
The accompanying drawing explanation
In order to be illustrated more clearly in the embodiment of the present invention or technical scheme of the prior art, below will the accompanying drawing of required use in embodiment or description of the Prior Art be briefly described, apparently, accompanying drawing in the following describes is only some embodiments of the present invention, for those of ordinary skills, under the prerequisite of not paying creative work, can also obtain according to these accompanying drawings other accompanying drawing.
Fig. 1 is the general flow chart of a kind of control method of instrument parameter based on touch-screen of the present invention;
Fig. 2 is the parameter adjustment module process flow diagram of a kind of control method of instrument parameter based on touch-screen of the present invention;
Fig. 3 is the theory diagram of the system of a kind of adjusting of instrument parameter based on touch-screen of the present invention;
Fig. 4 is the process flow diagram moved up and down of the first embodiment adjusting displayed content provided by the invention;
Fig. 5 is the process flow diagram that the second embodiment provided by the invention regulates the audio/video broadcasting speed;
Fig. 6 is that the 3rd embodiment provided by the invention regulates the process flow diagram of numerical values recited;
Fig. 7 is the process flow diagram that the 4th embodiment regulation stall provided by the invention changes.
Embodiment
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 clearly and completely described, obviously, described embodiment is only the present invention's part embodiment, rather than whole embodiment.Based on the embodiment in the present invention, those of ordinary skills, not making under the creative work prerequisite the every other embodiment obtained, belong to the scope of protection of the invention.
As Fig. 1, for the general flow chart of a kind of control method of instrument parameter based on touch-screen of the present invention, in step S1, on touch-screen, set a direction and regional A; If the angle that contact point slides in regional A direction and direction initialization are less is less than 90 degree, the contact point direction of sliding in regional A is positive dirction; If the angle that contact point slides in regional A direction and direction initialization are less is greater than 90 degree, the contact point direction of sliding in regional A is in the other direction; If the angle that contact point slides in regional A direction and direction initialization are less equals 90 degree, the contact point direction of sliding in regional A is vertical direction.
In step S2, enter the parameter adjustment module, in the parameter adjustment module, instrument interface is the customized parameter interface, the user carries out touch operation in regional A, thereby realizes the instrument parameter adjusting, regulates and finishes when parameter, exit the parameter adjustment module, but now instrument does not cut out, the user can be in follow-up application that need to regulate parameter the activation parameter adjustment module, carry out again the parameter adjusting, if after this step, instrument cuts out, need to re-execute step S1 one time.
As Fig. 2, for the step S2 parameter adjustment module of a kind of control method of instrument parameter based on touch-screen of the present invention is regulated the parameter process flow diagram, in step S101, detect the position of contact point on touch-screen whether in regional A, if testing result is yes, perform step S102, if testing result is no, perform step S103; Zone A offers the user on touch-screen, the zone of adjusting for the parameter to showing on touch display screen.
In step S102, according to direction, displacement that contact point slides, the parameter of instrument current application is adjusted; Specifically comprise, if the direction that contact point slides is positive dirction, increase the parameter of current application; If the direction that contact point slides is in the other direction, reduce the parameter of current application; If the direction that contact point slides is vertical direction, do not change the parameter of current application.
In other embodiments of the invention, above-mentioned in step S102, according to direction, displacement that contact point slides, the parameter of instrument current application is adjusted, also can be adopted following rule: if the direction that contact point slides is positive dirction, reduce the parameter of current application; If the direction that contact point slides is in the other direction, increase the parameter of current application; If the direction that contact point slides is vertical direction, do not change the parameter of current application.
In step S102, according to direction, displacement that contact point slides, the parameter of instrument current application is adjusted; Also comprise, the change amount of parameter is directly proportional to the displacement that contact point slides, and the change speed of parameter is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In step S103, judge whether to exit detection, after receiving the order of exiting detection, process ends, namely exit the parameter adjustment module, and the user now can carry out other operations at interface, when the determination result is NO, continue execution step S101.
As Fig. 3, the theory diagram of the system of regulating for a kind of instrument parameter based on touch-screen of the present invention, native system comprises:
Touch-screen 1 is the zone of for the user, the parameter shown on touch display screen being adjusted on touch-screen for regional A, regional A are provided to the user; Touch-screen 1 can be electric resistance touch screen, capacitance touch screen, infrared touch panel or surface acoustic wave screen.
Input detection module 4, for detection of the position of contact point on touch-screen whether in regional A;
Slip detection module 5, for detection of direction, the displacement of contact point slip on touch-screen; Displacement is the displacement of contact point current location initial position on screen with respect to contact point;
Adjust execution module 3, for the direction, the displacement that according to contact point, slide, the parameter of instrument current application is adjusted;
Direction setting module 6, be used to setting a direction and regional A, and the direction of sliding in regional A when contact point and the less angle of direction initialization be less than 90 while spending, and setting contact point slides in regional A direction is positive dirction; The angle that the direction of sliding in regional A when contact point and direction initialization are less is greater than 90 while spending, and sets contact point slides in regional A direction in the other direction; The angle that the direction of sliding in regional A when contact point and direction initialization are less equals 90 while spending, and setting contact point slides in regional A direction is vertical direction.
Rule preset module 2, for preset regulation rule, regulation rule comprises: if the direction that contact point slides is positive dirction, increase the parameter of current application; If the direction that contact point slides is in the other direction, reduce the parameter of current application; If the direction that contact point slides is vertical direction, do not change the parameter of current application; The change amount of parameter is directly proportional to the displacement that contact point slides; The speed of parameter change is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
If the direction that the contact point in above-mentioned regulation rule slides is positive dirction, increase the parameter of current application; If the direction that contact point slides is in the other direction, reduce the parameter of current application; Can be also, if the direction that contact point slides is positive dirction, to reduce the parameter of current application; If the direction that contact point slides is in the other direction, increase the parameter of current application.
Touch-screen 1, input detection module 4, slip detection module 5, direction setting module 6 and regular preset module 2 are connected respectively to adjusts execution module 3, inputs simultaneously detection module 4 and slip detection module 5 also is connected respectively to touch-screen 1.
In a kind of control method of instrument parameter based on touch-screen of the present invention and system, the parameter of instrument current application comprises the moving up and down of displaying contents, audio/video broadcasting speed, numerical values recited and gear change etc.
The invention provides a kind of control method of instrument parameter based on touch-screen and system, preset regulation rule, action in regional A is adjusted accordingly to the parameter of current application according to contact point, convenient directly perceived, parameter is regulated direction and speed can arbitrarily be controlled, and has brought splendid operating experience to the user, compare mechanical knob and button, reduce wearing and tearing, effectively extended the life-span of instrument, saved simultaneously hardware cost.
The embodiment process flow diagram that in the present invention, Fig. 4-Fig. 7 provides is all the process flow diagram that the design parameter of the parameter adjustment module in Fig. 2 is regulated, and is the embodiment of flow process in Fig. 2, and all is based on the basis of main-process stream of Fig. 1.
As Fig. 4, the process flow diagram moved up and down for the first embodiment adjusting displayed content provided by the invention, in step S201, by input detection module 4, detect the position of contact point on touch-screens whether in regional A, if testing result is yes, perform step S202, if testing result is no, perform step S203.
In step S202, slip detection module 5 detects direction and the displacement that on touch-screen, contact point slides, adjusting execution module 3 moves displaying contents towards the identical or opposite direction of the direction of sliding on touch-screen 1 with contact point, and adjust according to contact point slides on touch-screen 1 displacement and speed displacement and the speed that displaying contents moves, in the present embodiment, the component of displacement on direction initialization that slide of the displacement that slides on touch-screen 1 to contact point respectively of the displacement that moves of displaying contents and speed or contact point is directly proportional.The content shown can be picture, figure, waveform, symbol, word etc., the content be moved can be displaying contents integrated moving, certain part is mobile, certain figure layer moves, certain element moves or certain figure layer in element move.
In step S203, judge whether to exit detection, after receiving the order of exiting detection, process ends, namely exit the parameter adjustment module, and the user now can carry out at interface other operations, otherwise execution step S201.
As Fig. 5, for the second embodiment provided by the invention, regulate the process flow diagram of audio/video broadcasting speed;
In step S301, whether the position of detecting contact point on touch-screens by input detection module 4 in regional A, if testing result is yes, performs step S302, if testing result is no, performs step S306.
In step S302, slip detection module 5 detects direction and the displacement that on touch-screen, contact point slides, if glide direction is positive dirction, perform step S303, if glide direction is in the other direction, perform step S304, if glide direction is vertical direction, perform step S305.
In step S303, adjust execution module 3 and according to the displacement of contact point slip, increase the broadcasting speed (namely increasing the frame number that per second is play) of audio/video, and the amount that the audio/video broadcasting speed increases is directly proportional to the displacement that contact point slides, the speed that the audio/video broadcasting speed increases is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In step S304, adjust execution module 3 and according to the displacement of contact point slip, reduce the broadcasting speed (namely increasing the frame number that per second is play) of audio/video, and the amount that the audio/video broadcasting speed reduces is directly proportional to the displacement that contact point slides, the speed that the audio/video broadcasting speed reduces is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In other embodiments of the invention, above-mentioned steps S303 can be also, adjust execution module 3 and according to the displacement of contact point slip, reduce the broadcasting speed (namely increasing the frame number that per second is play) of audio/video, and the amount that the audio/video broadcasting speed reduces is directly proportional to the displacement that contact point slides, the speed that the audio/video broadcasting speed reduces is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
Above-mentioned steps S304 can be also, adjust execution module 3 and according to the displacement of contact point slip, increase the broadcasting speed (namely increasing the frame number that per second is play) of audio/video, and the amount that the audio/video broadcasting speed increases is directly proportional to the displacement that contact point slides, the speed that the audio/video broadcasting speed increases is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In step S305, adjust execution module 3 and the audio/video broadcasting speed is not adjusted.
In step S306, judge whether to exit detection, after receiving the order of exiting detection, process ends, namely exit the parameter adjustment module, and the user now can carry out at interface other operations, otherwise execution step S301.
As Fig. 6, for the 3rd embodiment provided by the invention regulates the process flow diagram of numerical values recited,
In step S401, whether the position of detecting contact point on touch-screens by input detection module 4 in regional A, if testing result is yes, performs step S402, if testing result is no, performs step S406.
In step S402, slip detection module 5 detects direction and the displacement that on touch-screen, contact point slides, if glide direction is positive dirction, perform step S403, if glide direction is in the other direction, perform step S404, if glide direction is vertical direction, perform step S405.
In step S403, adjust execution module 3 and increase according to the displacement that contact point slides the numerical value that current application need to be adjusted, and the amount that numerical value increases is directly proportional to the displacement that contact point slides, the speed that numerical value increases is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In step S404, adjust execution module 3 and reduce according to the displacement that contact point slides the numerical value that current application need to be adjusted, and the amount that numerical value reduces is directly proportional to the displacement that contact point slides, the speed that numerical value reduces is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In other embodiments of the invention, above-mentioned steps S403 can be also, adjust execution module 3 and reduce according to the displacement that contact point slides the numerical value that current application need to be adjusted, and the amount that numerical value reduces is directly proportional to the displacement that contact point slides, the speed that numerical value reduces is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
Above-mentioned steps S404 can be also, adjust execution module 3 and increase according to the displacement that contact point slides the numerical value that current application need to be adjusted, and the amount that numerical value increases is directly proportional to the displacement that contact point slides, the speed that numerical value increases is directly proportional to the component of displacement on direction initialization that displacement or the contact point of contact point slip slide.
In step S405, adjust execution module 3 and current value is not adjusted.
In step S406, judge whether to exit detection, after receiving the order of exiting detection, process ends, namely exit the parameter adjustment module, and the user now can carry out at interface other operations, otherwise execution step S401.
As Fig. 7, be the process flow diagram of the 4th embodiment regulation stall change provided by the invention,
In step S501, whether the position of detecting contact point on touch-screens by input detection module 4 in regional A, if testing result is yes, performs step S502, if testing result is no, performs step S506.
In step S502, slip detection module 5 detects direction and the displacement that on touch-screen, contact point slides, if glide direction is positive dirction, perform step S503, if glide direction is in the other direction, perform step S504, if glide direction is vertical direction, perform step S505.
In step S503, adjusting execution module 3 increases gear according to the displacement that contact point slides.
In step S504, adjust execution module 3 and reduce gear according to the displacement that contact point slides.
In other embodiments of the invention, above-mentioned steps S503 can be also to adjust execution module 3 and reduce gear according to the displacement that contact point slides; Also, adjust execution module 3 increases gear according to the displacement that contact point slides to above-mentioned steps S504.
In step S505, adjust execution module 3 and gear is not adjusted.
When contact point, when regional A disappears or stop sliding, adjust execution module 3 and stop the adjustment to gear.
In step S506, judge whether to exit detection, after receiving the order of exiting detection, process ends, namely exit the parameter adjustment module, and the user now can carry out at interface other operations, otherwise execution step S501.
A kind of control method of instrument parameter based on touch-screen of the present invention and system are mainly used on instrument and meter, but are not limited to instrument and meter.
These are only preferred embodiment of the present invention, in order to limit the present invention, within the spirit and principles in the present invention not all, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection scope of the present invention.

Claims (10)

1. the control method of the instrument parameter based on touch-screen, is characterized in that, comprises the following steps:
Detect the position of contact point on touch-screen whether in regional A; Described regional A offers the user on touch-screen, the zone of adjusting for the parameter to showing on touch display screen;
If described detection is yes, the direction and the displacement that according to contact point, slide are adjusted the parameter of instrument current application; Described displacement is the displacement of contact point current location initial position on screen with respect to contact point.
2. the control method of the instrument parameter based on touch-screen as claimed in claim 1 is characterized in that: described direction of sliding according to contact point comprises before the parameter of instrument current application is adjusted:
Set a direction and specify described regional A;
If the angle that contact point slides in regional A direction and direction initialization are less is less than 90 degree, the described contact point direction of sliding in regional A is positive dirction;
If the angle that contact point slides in regional A direction and direction initialization are less is greater than 90 degree, the described contact point direction of sliding in regional A is in the other direction;
If the angle that contact point slides in regional A direction and direction initialization are less equals 90 degree, the described contact point direction of sliding in regional A is vertical direction.
3. the control method of the instrument parameter based on touch-screen as claimed in claim 2 is characterized in that: described direction of sliding according to contact point is adjusted the parameter of instrument current application, comprising:
If the direction that contact point slides is positive dirction, increase the parameter of current application, if the direction that contact point slides is in the other direction, reduce the parameter of current application;
Or, if the direction that contact point slides is positive dirction, reduce the parameter of current application, if the direction that contact point slides is in the other direction, increase the parameter of current application;
If the direction that contact point slides is vertical direction, do not change the parameter of current application.
4. the control method of the instrument parameter based on touch-screen as claimed in claim 1 is characterized in that: the described displacement slided according to contact point is adjusted the parameter of instrument current application, and the change amount of parameter is directly proportional with the displacement of described contact point slip.
5. the control method of the instrument parameter based on touch-screen as claimed in claim 1, it is characterized in that: the described displacement slided according to contact point is adjusted the parameter of instrument current application, and the change speed of parameter is directly proportional to the component of displacement on direction initialization that displacement or the described contact point of described contact point slip slide.
6. the control method of the instrument parameter based on touch-screen as claimed in claim 1 is characterized in that: the parameter of described instrument current application comprises that the moving up and down of displaying contents, audio/video broadcasting speed, numerical values recited and gear change.
7. the system that the instrument parameter based on touch-screen is regulated, is characterized in that, comprising:
Touch-screen, for providing the regional A of appointment to the user; Described regional A is the zone of for the user, the parameter shown on touch display screen being adjusted on touch-screen;
The input detection module, for detection of the position of contact point on touch-screen whether in regional A;
The slip detection module, for detection of direction and the displacement of contact point slip on touch-screen; Described displacement is the displacement of contact point current location initial position on screen with respect to contact point;
Adjust execution module, for the direction and the displacement that according to contact point, slide, the parameter of instrument current application is adjusted.
8. the system of the adjusting of the instrument parameter based on touch-screen according to claim 7, is characterized in that, also comprises:
The direction setting module, be used to setting a direction and regional A, and
The angle that the direction of sliding in regional A when contact point and direction initialization are less is less than 90 while spending, and setting described contact point slides in regional A direction is positive dirction;
The angle that the direction of sliding in regional A when contact point and direction initialization are less is greater than 90 while spending, and sets described contact point slides in regional A direction in the other direction;
The angle that the direction of sliding in regional A when contact point and direction initialization are less equals 90 while spending, and setting described contact point slides in regional A direction is vertical direction.
9. the system of the adjusting of the instrument parameter based on touch-screen according to claim 7, is characterized in that, also comprise regular preset module, for preset regulation rule, described regulation rule comprises:
If the direction that contact point slides is positive dirction, increase the parameter of current application; If the direction that contact point slides is in the other direction, reduce the parameter of current application;
Or, if the direction that contact point slides is positive dirction, reduce the parameter of current application; If the direction that contact point slides is in the other direction, increase the parameter of current application;
If the direction that contact point slides is vertical direction, do not change the parameter of current application;
The change amount of parameter is directly proportional to the displacement that described contact point slides;
The change speed of parameter is directly proportional to the component of displacement on direction initialization that displacement or the described contact point of described contact point slip slide.
10. the system of regulating according to the described instrument parameter based on touch-screen of claim 7-9 any one, it is characterized in that, the parameter of described instrument current application comprises that the moving up and down of displaying contents, audio/video broadcasting speed, numerical values recited and gear change.
CN2013103166396A 2013-07-25 2013-07-25 Touch screen based instrument parameter adjusting method and system Pending CN103412674A (en)

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CN2013103166396A CN103412674A (en) 2013-07-25 2013-07-25 Touch screen based instrument parameter adjusting method and system
PCT/CN2014/070017 WO2015010452A1 (en) 2013-07-25 2014-01-02 A method and system for adjusting the parameters of the apparatus based on touch screen

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Cited By (6)

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