CN105187669A - Finger track operating system - Google Patents

Finger track operating system Download PDF

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Publication number
CN105187669A
CN105187669A CN201510657592.9A CN201510657592A CN105187669A CN 105187669 A CN105187669 A CN 105187669A CN 201510657592 A CN201510657592 A CN 201510657592A CN 105187669 A CN105187669 A CN 105187669A
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China
Prior art keywords
touch
module
screen
signal
finger
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Pending
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CN201510657592.9A
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Chinese (zh)
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郭锦彪
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Individual
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Individual
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Priority to CN201510657592.9A priority Critical patent/CN105187669A/en
Publication of CN105187669A publication Critical patent/CN105187669A/en
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Abstract

The invention relates to a finger track operating system, including a mobile phone body and a processor, a touch screen, a light emitter and a touch inductor which are arranged inside the mobile phone. The system includes an execution module and a signal touch module connected with the touch screen; the touch screen receives a signal instruction of the signal touch module, the light emitter, the touch inductor and the processor are located under the touch screen, the touch screen starts the light emitter, the touch inductor and the processor after receiving a touch signal of the signal touch module, the execution module and the signal touch module run synchronously, and the execution module and the processor cooperate in operation. The system provided by the invention can achieve an effect that all keys of an existing mobile phone can be replaced by one key through the signal touch module, and utilizes a displacement induction drive or interactive operation instruction in the system to capture a finger moving track to be used for controlling the mobile phone. The finger track operating system provided by the invention enables use of the mobile phone to be relatively easy and humanized, and provides a new choice and operation experience for a mobile phone user.

Description

A kind of finger trace operating system
Technical field
The invention belongs to touch system, be specifically related to a kind of finger trace operating system.
Background technology
Along with electronic technology development, more and more technological applications is in Cell Phone Design.Mobile phone has had the very large market space as a kind of communication tool easily, more mobile phone have employed the mode of operation of touch, but traditional capacitance touch also wants modifier key to carry out console switch machine, the functions such as sound, in current Cell Phone Design, capital design side switch is as function key, major function has: power on/off function, volume add-minus function, and current side switch all adopts the button of Machine Design, and the button of Machine Design easily damages, greatly can reduce the operating experience of user, three buttons need four communication interfaces, and need a large amount of peripheral protection device, also cannot optimize the moulding of mobile phone and improve the class of mobile phone.
So the man-machine interaction part of mobile phone, still need powerful technical support more, for user reaches better experience.
Summary of the invention
In order to solve the problems referred to above that prior art exists, the invention provides a kind of finger trace operating system.
The technical solution adopted in the present invention is:
A kind of finger trace operating system, comprises mobile phone body, the processor of interior of mobile phone, touch-screen, photophore and touch inductor, and its improvements are: described system comprises Executive Module and the signal that is connected with described touch-screen touches module; Described touch-screen Received signal strength touches module by signal instruction, described photophore, touch inductor and processor are positioned at below described touch-screen, described touch-screen receives after described signal touches module trigger signal and starts photophore, touch inductor and processor, described Executive Module and described signal touch module synchronization and run, described Executive Module and described processor co-operation.
Preferably, it is virtual image module that described signal touches module, and it comprises gesture recognition module and interactive operation instruction, can realize moving in touch-screen optional position.
Further, described gesture recognition module comprises displacement induction and drives, for responding to gesture recognition module running orbit, the input state of identifying operation person, when operator's finger is close to capacitance can be made during touch-screen to change, touch-screen self detects electric capacity knots modification, converts coordinate to, and touch-screen knows finger situation of movement by capacitive sensing.
Further, the pause that described displacement induction is driven through operator judges whether input terminates, and this track is transferred to processor and carries out co-operation by Executive Module; Described operator touches the distance of the movement of instruction, the dead time value of end of input by the self-defined setting of operator.
Further, described interactive operation instruction touches displacement buffer data by traversing operation person, displacement signal is converted to electric impulse signal, Executive Module identification finger shift position and operate time interval and detect the direction of each point one by one, this Signal transmissions carries out co-operation to processor by displacement, time difference.
Preferably, described displacement induction driving comprises touch displacement unit and click event unit; Described touch displacement unit, for the touch coordinate displacement data of recording user; Described click event unit, for the clicking operation data of recording user.
Further, described click event unit is divided into multiple region, each region defines corresponding button or shortcut instruction respectively, when operator is singly to refer to or two finger is clicked or rapid double tap touch-screen, and non-displacement within the time of setting, this Signal transmissions is carried out co-operation to processor by Executive Module.
Further, described Executive Module record touches displacement unit and obtains the touch track of operator's finger at described touch-screen, and determines the virtual touch coordinate of described operator finger on described touch-screen;
According to described virtual touch coordinate and described touch-screen dimension scale, determine the actual output touch coordinate of described operator finger on described touch-screen;
The touch track that described processor calls Executive Module record carries out control operation to the application being positioned at described reality output touch coordinate place.
Further, described signal touches module and comprises a key assignments function, by judging the operating value of touch key-press, completes process or the setting of user.
Beneficial effect of the present invention is:
Present system can liberate the both hands of people, make the use of mobile phone more easily, more healthy, more hommization, and for numerous cellphone subscribers provide a kind of new product select and operating experience;
Present system touches module by signal can reach all buttons that a button can replace existing mobile phone, utilizes the displacement induction in system to drive or interactive operation instruction, flutters to catch finger motion track and be used for manipulating mobile phone; As: click=select, double-click=homepage, length presses=switching on and shutting down, left=menu, to the right=and return, up and down=volume, twice to the left or to the right=rewind F.F., also can coupled system or software simulating greater functionality.
Accompanying drawing explanation
Fig. 1 is a kind of finger trace operating system configuration schematic diagram provided by the invention.
Embodiment
As shown in Figure 1, the invention provides a kind of finger trace operating system, comprise mobile phone body, the processor of interior of mobile phone, touch-screen, photophore and touch inductor, system comprises Executive Module and the signal that is connected with touch-screen touches module; Touch-screen Received signal strength touches module by signal instruction, photophore, touch inductor and processor are positioned at below described touch-screen, touch-screen receives after described signal touches module trigger signal and starts photophore, touch inductor and processor, Executive Module and described signal touch module synchronization and run, Executive Module and described processor co-operation.When operator operates mobile phone, signal touches module and receives the instruction of operator's finger movement, Executive Module starts mobile phone operation simultaneously, start the processor of interior of mobile phone, touch-screen, photophore and touch inductor, touch-screen very first time Received signal strength touches the signal that module transmits, after the signal that touch inductor reception touch-screen transmits, controlling photophore is that screen is lighted, mobile phone normally works, a series of instructions that processor reception Executive Module transmits do corresponding operating to mobile phone, control the operation of mobile phone.
It is virtual image module that signal touches module, and it comprises gesture recognition module and interactive operation instruction, can realize moving in touch-screen optional position.
Gesture recognition module comprises displacement induction and drives, for responding to gesture recognition module running orbit, the input state of identifying operation person, when operator's finger is close to capacitance can be made during touch-screen to change, touch-screen self detects electric capacity knots modification, convert coordinate to, touch-screen knows finger situation of movement by capacitive sensing.Displacement induction is driven through the mobile phone surface-mounted integrated circuit of capacitive sensing under touch screen surface and ceaselessly measures and report out this track, thus finds out action and the position of finger sliding operation.
The pause that displacement induction is driven through operator judges whether input terminates, and this track is transferred to processor and carries out co-operation by Executive Module; Described operator touches the distance of the movement of instruction, the dead time value of end of input by the self-defined setting of operator.
Interactive operation instruction touches displacement buffer data by traversing operation person, displacement signal is converted to electric impulse signal, as: realize by interior of mobile phone light-emitting diode and two orthogonal photosensitive tubes, when light-emitting diode is irradiated to white point and stain respectively, refraction can be produced and do not reflect two states, and photosensitive tube just can produce corresponding signal after processing this two states, thus mobile phone is impelled to react; Executive Module identification finger shift position and operate time interval and detect the direction of each point one by one, this Signal transmissions carries out co-operation to processor by displacement, time difference.In sum, when operator points mobile, its motion track just can be registered as the coherent image of one group of high-speed capture, image analysis processing is carried out by processor, by analyzing the change of characteristic point position on these images, judge moving direction and the displacement of finger, thus complete mobile phone co-operation.
Displacement induction driving comprises touch displacement unit and click event unit; Touch displacement unit, for the touch coordinate displacement data of recording user; Click event unit, for the clicking operation data of recording user.
Click event unit is divided into multiple region, each region defines corresponding button or shortcut instruction respectively, when operator is singly to refer to or two finger is clicked or rapid double tap touch-screen, and non-displacement within the time of setting, this Signal transmissions is carried out co-operation to processor by Executive Module.
Executive Module record touches displacement unit and obtains the touch track of operator's finger at described touch-screen, and the virtual touch coordinate of determination operation person's finger on described touch-screen;
According to virtual touch coordinate and described touch-screen dimension scale, determination operation person's finger actual output touch coordinate on the touchscreen;
The touch track that described processor calls Executive Module record carries out control operation to the application being positioned at described reality output touch coordinate place.
By utilize in system displacement induction drive or interactive operation instruction, flutter catch finger motion track be used for manipulate mobile phone; As: click=select, double-click=homepage, length presses=switching on and shutting down, left=menu, to the right=and return, up and down=volume, twice to the left or to the right=rewind F.F., can according to the function of operator's demand self-defining operation button.
Signal touches module and comprises a key assignments function, by judging the operating value of touch key-press, completes process or the setting of user.
The present invention is not limited to above-mentioned preferred forms; anyone can draw other various forms of products under enlightenment of the present invention; no matter but any change is done in its shape or structure; every have identical with the application or akin technical scheme, all drops within protection scope of the present invention.

Claims (9)

1. a finger trace operating system, comprises mobile phone body, and the processor of interior of mobile phone, touch-screen, photophore and touch inductor, is characterized in that: described system comprises Executive Module and the signal that is connected with described touch-screen touches module; Described touch-screen Received signal strength touches module by signal instruction, described photophore, touch inductor and processor are positioned at below described touch-screen, described touch-screen receives after described signal touches module trigger signal and starts photophore, touch inductor and processor, described Executive Module and described signal touch module synchronization and run, described Executive Module and described processor co-operation.
2. a kind of finger trace operating system according to claim 1, is characterized in that: it is virtual image module that described signal touches module, and it comprises gesture recognition module and interactive operation instruction, can realize moving in touch-screen optional position.
3. a kind of finger trace operating system according to claim 2, it is characterized in that: described gesture recognition module comprises displacement induction and drives, for responding to gesture recognition module running orbit, the input state of identifying operation person, when operator's finger is close to capacitance can be made during touch-screen to change, touch-screen self detects electric capacity knots modification, converts coordinate to, and touch-screen knows finger situation of movement by capacitive sensing.
4. a kind of finger trace operating system according to claim 3, is characterized in that: the pause that described displacement induction is driven through operator judges whether input terminates, and this track is transferred to processor and carries out co-operation by Executive Module; Described operator touches the distance of the movement of instruction, the dead time value of end of input by the self-defined setting of operator.
5. a kind of finger trace operating system according to claim 2, it is characterized in that: described interactive operation instruction touches displacement buffer data by traversing operation person, displacement signal is converted to electric impulse signal, Executive Module identification finger shift position and operate time interval and detect the direction of each point one by one, this Signal transmissions carries out co-operation to processor by displacement, time difference.
6. a kind of finger trace operating system according to claim 1, is characterized in that: described displacement induction driving comprises touch displacement unit and click event unit; Described touch displacement unit, for the touch coordinate displacement data of recording user; Described click event unit, for the clicking operation data of recording user.
7. a kind of finger trace operating system according to claim 6, it is characterized in that: described click event unit is divided into multiple region, each region defines corresponding button or shortcut instruction respectively, when operator is singly to refer to or two finger is clicked or rapid double tap touch-screen, and non-displacement within the time of setting, this Signal transmissions is carried out co-operation to processor by Executive Module.
8. a kind of finger trace operating system according to claim 6, it is characterized in that: described Executive Module record touches displacement unit and obtains the touch track of operator's finger at described touch-screen, and determine the virtual touch coordinate of described operator finger on described touch-screen;
According to described virtual touch coordinate and described touch-screen dimension scale, determine the actual output touch coordinate of described operator finger on described touch-screen;
The touch track that described processor calls Executive Module record carries out control operation to the application being positioned at described reality output touch coordinate place.
9. a kind of finger trace operating system according to claim 1, is characterized in that: described signal touches module and comprises a key assignments function, by judging the operating value of touch key-press, completes process or the setting of user.
CN201510657592.9A 2015-10-13 2015-10-13 Finger track operating system Pending CN105187669A (en)

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Application Number Priority Date Filing Date Title
CN201510657592.9A CN105187669A (en) 2015-10-13 2015-10-13 Finger track operating system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107066196A (en) * 2017-02-28 2017-08-18 珠海格力电器股份有限公司 Control method, control device and control system based on line control machine
CN108304711A (en) * 2018-02-02 2018-07-20 惠州Tcl移动通信有限公司 Touch unlocking method, storage device and the mobile terminal of mobile terminal

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102799376A (en) * 2012-07-11 2012-11-28 广东欧珀移动通信有限公司 Shortcut function setup method for touch equipment
CN102819394A (en) * 2012-07-27 2012-12-12 东莞宇龙通信科技有限公司 Terminal and terminal operating method
CN103235665A (en) * 2013-05-02 2013-08-07 百度在线网络技术(北京)有限公司 Mobile terminal input method and device and mobile terminal

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102799376A (en) * 2012-07-11 2012-11-28 广东欧珀移动通信有限公司 Shortcut function setup method for touch equipment
CN102819394A (en) * 2012-07-27 2012-12-12 东莞宇龙通信科技有限公司 Terminal and terminal operating method
CN103235665A (en) * 2013-05-02 2013-08-07 百度在线网络技术(北京)有限公司 Mobile terminal input method and device and mobile terminal

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107066196A (en) * 2017-02-28 2017-08-18 珠海格力电器股份有限公司 Control method, control device and control system based on line control machine
CN108304711A (en) * 2018-02-02 2018-07-20 惠州Tcl移动通信有限公司 Touch unlocking method, storage device and the mobile terminal of mobile terminal

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Application publication date: 20151223