CN106681500A - Clicking identification system and method in man-machine interaction device in electronic information field - Google Patents

Clicking identification system and method in man-machine interaction device in electronic information field Download PDF

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Publication number
CN106681500A
CN106681500A CN201611154495.9A CN201611154495A CN106681500A CN 106681500 A CN106681500 A CN 106681500A CN 201611154495 A CN201611154495 A CN 201611154495A CN 106681500 A CN106681500 A CN 106681500A
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China
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unit
signal
central processing
processing unit
vibration signal
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CN201611154495.9A
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CN106681500B (en
Inventor
许崇云
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Beijing kangjisen Automation Technology Co.,Ltd.
Beijing kangjisen Technology Co.,Ltd.
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Tianjin Yada Agel Ecommerce Ltd
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Priority to CN201611154495.9A priority Critical patent/CN106681500B/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
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • G06F3/014Hand-worn input/output arrangements, e.g. data gloves

Abstract

The invention discloses a clicking identification system and method in a man-machine interaction device in the electronic information field. The clicking identification system comprises two sets of fingerstalls, wherein vibrating sensors are installed at the left ends of the bottoms of the fingerstalls, the right ends of the fingerstalls are connected with fastening rings, the tops of the fastening rings are connected with binding posts, a support is installed between the two groups of fastening rings, elastic parts are installed on two groups of transverse supporting rods of the support, a constraint band is installed at the bottom of the right end of the support, a central processor is installed at the top of the right end of the support, the vibrating sensors are connected with a data conversion unit in an electrical output mode, the data conversion unit is connected with the a vibrating signal processor in an electrical output mode, the vibrating signal processor is electrically in bidirectional connection with a storage unit and a communication unit respectively. The clicking identification system used in a wearable device for man-machine interaction has obvious distinguishing in typewriting and mouse operation, and the mouse misoperation situations are decreased.

Description

Identifying system and method are clicked under a kind of electronic information field in human-computer interaction device
Technical field
The present invention relates to electronic information technical field, clicks under specially a kind of electronic information field in human-computer interaction device Identifying system and method.
Background technology
The development of information technology, internet and technology of Internet of things, the species of smart machine is more and more diversified.Intelligently setting Standby control plane, it is one of developing direction to pursue hommization and interactive experience, because the limit of mouse volume and operation principle System, has many inconveniences when flat board, mobile phone, portable office equipment is controlled, including not readily portable, such as be sitting in sofa During upper operation flat board, mouse is just not convenient to use.And when switching between mouse control and typewriting operation, there is certain inconvenience Part, it is convenient that wearable device replaces mouse to use, but the existing wearable device for replacing mouse is for the shake of difference typewriting Dynamic signal and mouse vibration signal are relatively obscured, and easily typing position are mistakenly considered into the operation to mouse, for this purpose, we have proposed Identifying system and method are clicked under one seed information field in human-computer interaction device.
The content of the invention
It is an object of the invention to provide identifying system is clicked in a kind of wearable device for man-machine interaction, with solution State the vibration signal and mouse vibration signal of the wearable device for difference typewriting of the existing replacement mouse proposed in background technology It is relatively fuzzyyer, typing position is easily mistakenly considered the problem of the operation to mouse.
For achieving the above object, the present invention provides following technical scheme:Under one seed information field in human-computer interaction device Click recognition system, including two groups of fingerstall, the left end of the fingerstall bottom is provided with vibrating sensor, and the right-hand member of the fingerstall connects Tight loop is connected to, binding post is connected with the top of the tight loop, support, the support are installed described in two groups between tight loop Two groups of lateral struts on be mounted on elastic component, the bottom of the support right-hand member is provided with restraining, the support right-hand member Top is provided with central processing unit, and the shock sensor electrically exports connection Date Conversion Unit, the Date Conversion Unit Electrically output connects vibration signal processing device, and the vibration signal processing device is electrically bi-directionally connected respectively memory cell and communication unit Unit, the communication unit electrically exports connection central processing unit, and the central processing unit is electrically input into connection power supply unit, described Central processing unit is electrically bi-directionally connected respectively wearable device master control system, the detecting system that links and frequency detecting system of shaking.
Preferably, the communication unit is connected with central processing unit by data wire, the communication unit on fingerstall described in two groups Connected by data wire between unit.
Preferably, the frequency detecting system of shaking is including timing unit, statistic unit and comparison unit, the timing unit pair Vibrating sensor continuously sends the time difference of vibration signal to be carried out timing and is counted by statistic unit, and by comparison unit Compare, and testing result is fed back to into central processing unit.
Preferably, the linkage detecting system includes detecting signal unit and signal memory cell, the signal detection list Unit receives the vibration signal from one group of vibrating sensor and this signal is saved in into signal memory cell, the signal detection Unit detects another group of vibrating sensor whether there is corresponding vibration signal.
Preferably, the support is soft rubber support, and the outer wall of support scribbles skin-friendly layer.
Preferably, concretely comprising the following steps for recognition methods is clicked under the electronic information field in human-computer interaction device:
S1:Two groups of fingerstall are respectively fitted on forefinger and little finger of toe, wearable device master control system is arranged on and is enclosed within forefinger On fingerstall, the forefinger being generally controlled to mouse is more, and little finger of toe is not controlled to mouse, and two groups of vibrating sensors are to fingerstall Action message carry out monitor in real time;
S2:One of which vibrating sensor senses vibrations, and this signal is passed through data conversion list by this group of vibrating sensor Unit is transmitted to vibration signal processing device, and vibration signal processing device transmits this signal storage to memory cell and by communication unit Central processing unit to wrist, communication unit is directly connected to central processing unit by data wire, it is to avoid what signal was shielded Situation, power supply unit is powered for control system, the control normal left click of wearable device of wearable device master control system, right click, is clicked With double-click etc. conventional control command;
S3:Vibration signal is respectively transmitted to link detecting system and frequency detecting system of shaking by central processing unit, frequency detection of shaking System include timing unit, statistic unit and comparison unit, timing unit vibrating sensor is continuously sent vibration signal when Between difference carry out being counted by statistic unit and being compared by comparison unit, linkage detecting system include detecting signal unit And signal memory cell, detecting signal unit receives the vibration signal from one group of vibrating sensor and is saved in this signal Signal memory cell, detecting signal unit detects another group of vibrating sensor whether there is corresponding vibration signal, and by testing result Transmit to central processing unit, if different and another groups of vibrating sensors of the vibrations time difference between vibration signal also produce linkage shake Dynamic, central processing unit assert that this shake signal is moved as typewriting operation, then order wearable device master control system is not reacted, if if vibration Close or another group of vibrating sensor of vibrations time difference between signal do not produce linkage vibrations, central processing unit it is thought that Mouse action, central processing unit sends control information to wearable device master control system, and is done by wearable device master control system Go out reaction.
Compared with prior art, the invention has the beneficial effects as follows:This is used for click recognition in the wearable device of man-machine interaction System, for typewriting and mouse action distinguish obvious, reduces the situation of the maloperation of mouse.
Description of the drawings
Fig. 1 is schematic structural view of the invention;
Fig. 2 is present system schematic diagram;
Fig. 3 is identifying system identification process figure of the present invention.
In figure:1 fingerstall, 2 vibrating sensors, 3 tight loops, 4 binding posts, 5 supports, 6 elastic components, 7 restrainings, 8 centres Reason device, 9 Date Conversion Units, 10 vibration signal processing devices, 11 memory cell, 12 communication units, 13 power supply units, 14 wearings set Standby master control system, 15 linkage detecting systems, 16 shake frequency detecting system.
Specific 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 carried out clear, complete Site preparation is described, it is clear that described embodiment is only a part of embodiment of the invention, rather than the embodiment of whole.It is based on Embodiment in the present invention, it is every other that those of ordinary skill in the art are obtained under the premise of creative work is not made Embodiment, belongs to the scope of protection of the invention.
Fig. 1-3 are referred to, the present invention provides a kind of technical scheme:Human-computer interaction device midpoint under a kind of electronic information field Identifying system, including two groups of fingerstall 1 are hit, fingerstall 1 is socketed on two fingers and is used as control, preferably by two fingerstall 1 It is respectively fitted on forefinger and little finger of toe, the left end of the bottom of fingerstall 1 is provided with vibrating sensor 2, and the right-hand member of fingerstall 1 is connected with tight loop 3, the top of tight loop 3 is connected with binding post 4, support 5 is provided between two groups of tight loops 3, in two groups of lateral struts of support 5 Elastic component 6 is mounted on, the bottom of the right-hand member of support 5 is provided with restraining 7, at the top of the right-hand member of support 5 central processing unit is provided with 8, electrically output connects Date Conversion Unit 9 to shock sensor 2, and Date Conversion Unit 9 electrically exports connection vibration signal processing Device 10, vibration signal processing device 10 is electrically bi-directionally connected respectively memory cell 11 and communication unit 12, and communication unit 12 is electrically defeated Go out to connect central processing unit 8, electrically input connects power supply unit 13, the electrical two-way company of the difference of central processing unit 8 to central processing unit 8 Connect wearable device master control system 14, linkage detecting system 15 and frequency detecting system 16 of shaking.
Wherein, communication unit 12 is connected with central processing unit 8 by data wire, the communication unit 12 on two groups of fingerstall 1 it Between by data wire connect, frequency detecting system 16 of shaking include timing unit, statistic unit and comparison unit, timing unit to vibration Sensor 2 continuously sends the time difference of vibration signal to be carried out timing and is counted by statistic unit, and is made by comparison unit Contrast, and testing result is fed back to into central processing unit 8, linkage detecting system 15 includes that detecting signal unit and signal storage are single Unit, detecting signal unit receives the vibration signal from one group of vibrating sensor 2 and this signal is saved in into signal storage list Unit, detecting signal unit detects another group of vibrating sensor 2 whether there is corresponding vibration signal, and support 5 is soft rubber support, is prolonged Malleability is preferable, and the outer wall of support 5 scribbles skin-friendly layer, it is to avoid skin produces allergy.
Recognition methods is clicked in human-computer interaction device under a kind of electronic information field, man-machine interaction under the electronic information field Concretely comprising the following steps for recognition methods is clicked in equipment:
S1:Two groups of fingerstall 1 are respectively fitted on forefinger and little finger of toe, wearable device master control system 14 is arranged on and is enclosed within forefinger Fingerstall 1 on, the forefinger being generally controlled to mouse is more, and little finger of toe is not controlled to mouse, two groups of vibrating sensors 2 pairs The action message of fingerstall 1 carries out monitor in real time;
S2:One of which vibrating sensor 2 senses vibrations, and this signal is passed through data conversion by this group of vibrating sensor 2 Unit 9 is transmitted to vibration signal processing device 10, and vibration signal processing device 10 is by this signal storage to memory cell 11 and by logical Letter unit 12 transmits the central processing unit 8 to wrist, and communication unit 12 is directly connected to central processing unit 8 by data wire, The situation that signal is shielded, power supply unit 13 is avoided to power for control system, the control wearable device of wearable device master control system 14 Normal left click, right click, click and double-click etc. conventional control command;
S3:Vibration signal is respectively transmitted to link detecting system 15 and frequency detecting system 16 of shaking by central processing unit 8, and shake frequency Detecting system 16 includes timing unit, statistic unit and comparison unit, and timing unit continuously sends vibration letter to vibrating sensor 2 Number time difference carry out being counted by statistic unit and being compared by comparison unit, linkage detecting system 15 include signal Detector unit and signal memory cell, detecting signal unit receive from one group of vibrating sensor 2 vibration signal and by this Signal is saved in signal memory cell, and detecting signal unit detects another group of vibrating sensor 2 whether there is corresponding vibration signal, and Testing result is transmitted to central processing unit 8, if different and another groups of vibrating sensors 2 of the vibrations time difference between vibration signal Also linkage vibrations are produced, central processing unit 8 assert that this shake signal is moved as typewriting operation, then order wearable device master control system 14 is not React, if if close or another group of vibrating sensor 2 of the vibrations time difference between vibration signal does not produce linkage vibrations, in Central processor 8 is it is thought that mouse action, central processing unit 8 sends control information to wearable device master control system 14, and leads to Cross wearable device master control system 14 to make a response.
Although an embodiment of the present invention has been shown and described, for the ordinary skill in the art, can be with Understanding can carry out various changes, modification, replacement to these embodiments without departing from the principles and spirit of the present invention And modification, the scope of the present invention be defined by the appended.

Claims (6)

1. identifying system, including two groups of fingerstall (1) are clicked under a kind of electronic information field in human-computer interaction device, and its feature exists In:The left end of fingerstall (1) bottom is provided with vibrating sensor (2), and the right-hand member of the fingerstall (1) is connected with tight loop (3), Binding post (4) is connected with the top of the tight loop (3), support (5) is installed described in two groups between tight loop (3), described Elastic component (6) is mounted in two groups of lateral struts of frame (5), the bottom of support (5) right-hand member is provided with restraining (7), Central processing unit (8) is installed, electrically output connection data turn the shock sensor (2) at the top of support (5) right-hand member Change unit (9), the Date Conversion Unit (9) electrically output connection vibration signal processing device (10), the vibration signal processing Device (10) is electrically bi-directionally connected respectively memory cell (11) and communication unit (12), the communication unit (12) electrically output connection Central processing unit (8), the central processing unit (8) electrically input connection power supply unit (13), the central processing unit (8) is respectively Electrically it is bi-directionally connected wearable device master control system (14), linkage detecting system (15) and frequency detecting system (16) of shaking.
2. identifying system is clicked in human-computer interaction device under a kind of electronic information field according to claim 1, its feature It is:The communication unit (12) is connected with central processing unit (8) by data wire, the communication unit on fingerstall (1) described in two groups Connected by data wire between first (12).
3. identifying system is clicked in human-computer interaction device under a kind of electronic information field according to claim 1, its feature It is:Including timing unit, statistic unit and comparison unit, the timing unit is passed the frequency detecting system (16) of shaking to vibration Sensor (2) continuously sends the time difference of vibration signal to be carried out timing and is counted by statistic unit, and is made by comparison unit Contrast, and testing result is fed back to into central processing unit (8).
4. identifying system is clicked in human-computer interaction device under a kind of electronic information field according to claim 1, its feature It is:Linkage detecting system (15) includes detecting signal unit and signal memory cell, and the detecting signal unit is received Signal memory cell, the signal detection list are saved in the vibration signal from one group of vibrating sensor (2) and by this signal Unit's another group of vibrating sensor (2) of detection whether there is corresponding vibration signal.
5. identifying system is clicked in human-computer interaction device under a kind of electronic information field according to claim 1, its feature It is:The support (5) is soft rubber support, and the outer wall of support (5) scribbles skin-friendly layer.
6. recognition methods is clicked in human-computer interaction device under a kind of electronic information field, it is characterised in that:This is used for man-machine interaction Wearable device in click on the recognition methods of identifying system and concretely comprise the following steps:
S1:Two groups of fingerstall (1) are respectively fitted on forefinger and little finger of toe, wearable device master control system (14) is installed in being enclosed within forefinger Fingerstall (1) on, the forefinger being generally controlled to mouse is more, and little finger of toe is not controlled to mouse, two groups of vibrating sensors (2) monitor in real time is carried out to the action message of fingerstall (1);
S2:One of which vibrating sensor (2) senses vibrations, and this signal is passed through data conversion by this group of vibrating sensor (2) Unit (9) is transmitted to vibration signal processing device (10), and vibration signal processing device (10) is by this signal storage to memory cell (11) And the central processing unit (8) to wrist is transmitted by communication unit (12), communication unit (12) passes through with central processing unit (8) Data wire is directly connected to, it is to avoid the situation that signal is shielded, and power supply unit (13) is powered for control system, wearable device master control system System (14) the control normal left click of wearable device, right click, click and double-click etc. conventional control command;
S3:Vibration signal is respectively transmitted to link detecting system (15) and frequency detecting system (16) of shaking by central processing unit (8), is shaken Frequency detecting system (16) includes timing unit, statistic unit and comparison unit, and timing unit continuously sends to vibrating sensor (2) The time difference of vibration signal carries out being counted by statistic unit and being compared by comparison unit, linkage detecting system (15) Including detecting signal unit and signal memory cell, detecting signal unit receives the vibrations from one group of vibrating sensor (2) This signal is simultaneously saved in signal memory cell by signal, and detecting signal unit detects another group of vibrating sensor (2) whether there is accordingly Vibration signal, and testing result is transmitted to central processing unit (8), if the vibrations time difference between vibration signal is different and another One group of vibrating sensor (2) also produces linkage vibrations, and central processing unit (8) assert that this shake signal is moved as typewriting operation, then order Wearable device master control system (14) is not reacted, if if close or another group of vibration of the vibrations time difference between vibration signal is passed Sensor (2) does not produce linkage vibrations, it is thought that mouse action, central processing unit (8) sends out control information to central processing unit (8) Wearable device master control system (14) is delivered to, and is made a response by wearable device master control system (14).
CN201611154495.9A 2016-12-14 2016-12-14 Click recognition system and method in man-machine interaction equipment in electronic information field Active CN106681500B (en)

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1740957A (en) * 2004-08-27 2006-03-01 联想(北京)有限公司 Wearable signal inputting device for data processing system
CN101697096A (en) * 2009-10-30 2010-04-21 清华大学 Wireless input terminal worn on fingers
CN103109462A (en) * 2010-04-16 2013-05-15 尼古拉斯·J.·马斯坦德雷亚 Wearable motion sensing computing interface
CN103649873A (en) * 2011-03-30 2014-03-19 知识产权国际有限责任公司 Thumb mountable cursor control and input device
CN203733070U (en) * 2014-01-13 2014-07-23 南京信息工程大学 Glove with wireless transmission function
CN104778746A (en) * 2015-03-16 2015-07-15 浙江大学 Method for performing accurate three-dimensional modeling based on data glove by using natural gestures
CN105278699A (en) * 2014-09-29 2016-01-27 北京至感传感器技术研究院有限公司 Easy-wearable gesture identification device

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1740957A (en) * 2004-08-27 2006-03-01 联想(北京)有限公司 Wearable signal inputting device for data processing system
CN101697096A (en) * 2009-10-30 2010-04-21 清华大学 Wireless input terminal worn on fingers
CN103109462A (en) * 2010-04-16 2013-05-15 尼古拉斯·J.·马斯坦德雷亚 Wearable motion sensing computing interface
CN103649873A (en) * 2011-03-30 2014-03-19 知识产权国际有限责任公司 Thumb mountable cursor control and input device
CN203733070U (en) * 2014-01-13 2014-07-23 南京信息工程大学 Glove with wireless transmission function
CN105278699A (en) * 2014-09-29 2016-01-27 北京至感传感器技术研究院有限公司 Easy-wearable gesture identification device
CN104778746A (en) * 2015-03-16 2015-07-15 浙江大学 Method for performing accurate three-dimensional modeling based on data glove by using natural gestures

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