CN107077219A - A kind of measuring instrument control method recognized based on motion gesture and measuring instrument - Google Patents

A kind of measuring instrument control method recognized based on motion gesture and measuring instrument Download PDF

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Publication number
CN107077219A
CN107077219A CN201780000026.8A CN201780000026A CN107077219A CN 107077219 A CN107077219 A CN 107077219A CN 201780000026 A CN201780000026 A CN 201780000026A CN 107077219 A CN107077219 A CN 107077219A
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China
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movement locus
operational control
measuring instrument
instruction
application
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袁剑敏
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SHENZHEN EVERBEST MACHINERY INDUSTRY Co Ltd
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SHENZHEN EVERBEST MACHINERY INDUSTRY Co Ltd
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Publication of CN107077219A publication Critical patent/CN107077219A/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
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • 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
    • 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

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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 present invention recognizes field there is provided a kind of measuring instrument control method recognized based on motion gesture and measuring instrument suitable for information, and methods described includes:The exercise data of measuring instrument is obtained, and movement locus is calculated based on exercise data;Judge movement locus classification, and select corresponding operational control instruction database;When movement locus classification is first kind movement locus, the foreground application of measuring instrument is recognized, and from the first operational control instruction database, filters out the operational control matched with movement locus and foreground application and instructs, corresponding task operating is performed in foreground application;When movement locus classification is Equations of The Second Kind movement locus, from the second operational control instruction database, filters out the operational control matched with movement locus and instruct, and perform corresponding task operating.User only need to simply carry out the operation of some motion gestures and can control measuring instrument in control process, without carrying out any button operation or contact action so that control of the user to measuring instrument becomes simple and easy to apply.

Description

A kind of measuring instrument control method recognized based on motion gesture and measuring instrument
Technical field
The invention belongs to information identification field, more particularly to it is a kind of based on motion gesture recognize measuring instrument control method and Measuring instrument.
Background technology
Measuring instrument is the instrument being born to weigh some property values of object, typically all has scale, and volume etc. is single Position.Hand-held meter (hereinafter referred to as measuring instrument) is then the production that will be obtained after traditional measuring instrument progress miniaturization portability Thing, has the advantages that light and handy portable, sturdy and durable and can optimize design for different working environments, also just because of These advantages so that hand-held meter is liked by all trades and professions deeply.
In the prior art, general measure instrument can only be controlled by button operation, and small part hand-held measuring appliance also has There is the function that contact action is controlled.But either button operation control or contact action control, the inadequate intelligence of its control method Energyization and hommization, such as button operation and contact action are respectively provided with certain complexity so that some unprofessional users are difficult to learn Button operation and contact action can be used to control measuring instrument, and for example due to the limitation of hardware requirement, the volume of some measuring instruments It is difficult to really meet the demand of user's one-handed performance, these problems all cause user to the control of measuring instrument using becoming not square enough Just.
The content of the invention
In view of this, the invention provides a kind of measuring instrument control method recognized based on motion gesture and measuring instrument, with Solve the problem of user controls inconvenience to measuring instrument in the prior art.
First aspect there is provided it is a kind of based on motion gesture recognize measuring instrument control method, including:
The exercise data of measuring instrument is obtained, and the movement locus of the measuring instrument is calculated based on the exercise data, it is described Movement locus is made motion gesture while the hand-held measuring instrument by user and produced;
Judge the movement locus classification, and select operational control instruction database corresponding with the movement locus classification, institute Stating operational control instruction database includes the first operational control instruction database and the second operational control instruction database;
When the movement locus classification is the first kind movement locus, the foreground application of measuring instrument is recognized, and from institute State in the first operational control instruction database, filter out the operational control matched with the movement locus and the foreground application and refer to Order, the operational control is performed in the foreground application and instructs corresponding task operating;
When the movement locus classification is the Equations of The Second Kind movement locus, from the second operational control instruction database, Filter out the operational control matched with the movement locus to instruct, and perform the operational control and instruct corresponding task Operation.
Second aspect there is provided a kind of measuring instrument, including:
Acquiring unit, the exercise data for obtaining measuring instrument, and the measuring instrument is calculated based on the exercise data Movement locus, the movement locus is made motion gesture while the hand-held measuring instrument by user and produced;
Instruction database chooses unit, for judging the movement locus classification, and selects corresponding with the movement locus classification Operational control instruction database, the operational control instruction database includes the first operational control instruction database and the second operational control and instructs Storehouse;
First task execution unit, for when the movement locus classification is the first kind movement locus, identification to be surveyed The foreground application of instrument is measured, and from the first operational control instruction database, filtering out should with the movement locus and the foreground Instructed with the operational control matched, the operational control is performed in the foreground application and instructs corresponding task operating;
Second task executing units, for when the movement locus classification is the Equations of The Second Kind movement locus, from described In second operational control instruction database, filter out the operational control matched with the movement locus and instruct, and perform described Operational control instructs corresponding task operating.
It is the control of measuring instrument the invention provides a kind of measuring instrument control method recognized based on motion gesture and measuring instrument System is used there is provided a kind of brand-new method.In the present invention, first the exercise data of measuring instrument is acquired, and identifies use Movement locus is produced when motion gesture is made in family while the hand-held measuring instrument, and is chosen according to exercise data classification Go out after corresponding operational control instruction database, final behaviour is determined with reference to exercise data, foreground application and operational control instruction database Make control instruction, and perform and the corresponding task operating of operational control instruction.
During by Intelligent Recognition user by motion gesture operational measure instrument, the movement locus and foreground application of measuring instrument, And according to movement locus type come selection operation control instruction storehouse, the control to the task operating of measuring instrument is finally realized, control During user only need the i.e. controllable measuring instrument of simple some motion gestures operation, without carrying out any button operation or touch screen Operation so that control of the user to measuring instrument becomes simple and easy to apply.
Brief description of the drawings
In order to illustrate more clearly of the technical scheme in embodiments of the invention, embodiment or prior art will be retouched below The accompanying drawing used required in stating is briefly described, it should be apparent that, drawings in the following description are only the one of the present invention A little embodiments, for those of ordinary skill in the art, without having to pay creative labor, can also be according to this A little accompanying drawings obtain other accompanying drawings.
Fig. 1 is a flow chart of measuring instrument control method in the embodiment of the present invention 1;
Fig. 2 is a flow chart of measuring instrument control method in the embodiment of the present invention 2;
Fig. 3 is a system architecture diagram of measuring instrument in the embodiment of the present invention 3.
Embodiment
In describing below, in order to illustrate rather than in order to limit, it is proposed that such as tool of particular system structure, technology etc Body details, the present invention is understood so as to thorough.However, it will be clear to one skilled in the art that in these no details The present invention can also be realized in other embodiments.In other situations, omit to well-known system, circuit and method Describe in detail, in case unnecessary details hinders description of the invention.
The invention provides a kind of measuring instrument control method recognized based on motion gesture and measuring instrument, this method includes: The exercise data of measuring instrument is obtained, and based on the movement locus of the exercise data calculating measuring instrument, the movement locus Motion gesture is made while the hand-held measuring instrument by user and is produced;Judge the movement locus classification, and select with The corresponding operational control instruction database of the movement locus classification, the operational control instruction database includes the first operational control instruction database And the second operational control instruction database;When the movement locus classification is the first kind movement locus, before identification measuring instrument Platform application, and from the first operational control instruction database, filter out and match with the movement locus and the foreground application Operational control instruction, the operational control is performed in the foreground application and instructs corresponding task operating;When the motion When track classification is the Equations of The Second Kind movement locus, from the second operational control instruction database, filter out and the motion rail The operational control instruction that mark matches, and perform the corresponding task operating of the operational control instruction.The measuring instrument includes But it is not limited to the measuring instrument of the hand-helds such as thermal infrared imager, infrared temperature-measuring gun and environment detector.
In order to illustrate technical solutions according to the invention, illustrated below by specific embodiment.
Fig. 1 shows the implementation process for the measuring instrument control method that the embodiment of the present invention one is provided, and details are as follows:
Step S101, obtains the exercise data of measuring instrument, and based on the motion of the exercise data calculating measuring instrument Track, the movement locus is made motion gesture while the hand-held measuring instrument by user and produced.
Wherein, when exercise data refers to user by motion gesture come operational control measuring instrument, the exercise data of measuring instrument, Movement locus is then the corresponding track of motion gesture.Common simple motion track include as above whipping, lower whipping, left whipping and Right whipping etc., common complex exercise data includes such as upper left side whipping, turn-takes and counterclockwise turn clockwise Circle etc., these movement locus are all corresponded with the track of the motion gesture of user.In the present embodiment, research staff is in measurement Motion sensor module is added in instrument so that measuring instrument can come by reading the exercise data that motion sensor module is gathered Calculating identification is carried out to movement locus, so as to realize that user is controlled by motion gesture identification to measuring instrument.Motion-sensing Device refers to the sensor with measurement exercise data function, including but not limited to gravity sensor, acceleration transducer, gyro Instrument, geomagnetic sensor and magnetometric sensor etc..In the present embodiment, after the exercise data of measuring instrument is got, begin to fortune Dynamic data carry out analysis identification, to determine its corresponding specific movement locus.
In the present embodiment, divided according to whether the exercise data normally measured for measuring instrument when using, number will be moved According to being divided into first kind movement locus and Equations of The Second Kind movement locus.Wherein first kind movement locus refers to that user normally uses measuring instrument When movement locus, upper whipping, lower whipping, upper left side whipping and turn-take clockwise as mentioned in the above, user passes through this A little first kind movement locus control the normal task operating using during measuring instrument, such as using can adopt when checking that image is applied Control to check previous image with left whipping, right whipping controls to check latter image.Equations of The Second Kind movement locus then refers to Movement locus during measuring instrument user's non-normal use measuring instrument, such as user is when that wouldn't use measuring instrument and put down measuring instrument Put down, tenesmus when measuring instrument drops (also regards a kind of motion gesture of user as, and will when measuring instrument is dropped in the present invention Corresponding movement locus evidence is named as tenesmus), these movement locus can not control task operating during measuring instrument normal work, but Use is normally measured with measuring instrument closely bound up, and each Equations of The Second Kind movement locus correspond to a fixed improper measurement Using scene, tenesmus as mentioned in the text correspond to the scene that measuring instrument drops.
In view of different application when user controls measuring instrument using motion gesture, movement locus correspondence task operating is set It may clash, in the present embodiment, while movement locus identification is carried out, can also recognize the foreground that user is operating Using, so as to subsequently can integrated motion track and foreground application measure the control of instrument.Understand for the ease of reader, will The present invention is illustrated exemplified by being applied in thermal infrared imager.Thermal infrared imager be it is a kind of object can be sent it is invisible Infrared energy is changed into the measuring instrument of visible thermal image, and it has the shoot function of infrared image and visible images simultaneously. Thermal infrared imager is that infrared image and Optical image that two cameras are shot is respectively adopted, and is needed two in actual conditions Image co-registration is that a thermal image is analyzed again, it is therefore desirable to which two kinds of images are carried out into fusion treatments, set its fusion away from From parameter.The operating procedure of fusion distance parameter is set to be generally in the prior art:
1st, the thermal image tentatively merged is checked in image co-registration application.
2nd, the fusion distance opened in menu sets function.
3rd, fusion distance parameter size is adjusted by button (or other buttons) up and down.
In order to simplify operation, it can skip step 2 when progress step 1 checks the thermal image tentatively merged, directly lead to Simple motion gesture operation is crossed to carry out the adjustment of fusion distance parameter size, but now it is possible that movement locus is corresponding Task operating sets the scene of conflict, such as wishes directly to realize that fusion distance parameter size is adjusted by left whipping and right whipping Task operating, but check image application in, left whipping and right whipping have been already set as checking previous and latter The task operating of image, now the corresponding task operating of two exercise datas, which is set, has occurred as soon as conflict.In order to solve to move rail The problem of corresponding task operating of mark sets conflict so that user controls measuring instrument more hommization, this reality using motion gesture Example is applied after exercise data is identified, the foreground application that user is operating also is will recognise that, it is specific subsequently combine Application is operated to determine the final corresponding task operating of exercise data.
The concrete application embodiment set as the present invention is applied in the image blend degree of thermal infrared imager, its In, image blend degree is preset as four ranks, 1 to 4 rank corresponds to 0%, 25%, 50% and 100% image respectively Degree of mixing, and the task operating for the image blend degree that left whipping is set to not adjust to next stage, right whipping are set to upwards The task operating of the image blend degree of one rank adjusting, specific implementation step is as follows:
When foreground application is applied for image taking, the movement locus of thermal infrared imager is monitored.In the present embodiment, due to figure As camera application belongs to DATA REASONING application, when detecting foreground application and being applied for image taking, thermal infrared imager can be automatic Opening movement gesture control pattern, and monitor the movement locus of thermal infrared imager.
In actual conditions, image taking application can set the rank of image blend degree acquiescence, be such as defaulted as 2 grades- 25% image blend degree, when carrying out image taking, thermal infrared imager can be given tacit consent to using the rank to carry out image blend.When , it is necessary to set adjustment by touch screen or button during user's modification level, operation is more bothered.In the present embodiment, for convenience The use operation of user, sets and replaces traditional touch screen and button operation with motion gesture operation.
When movement locus is left whipping, the image blend degree of shooting is adjusted to next rank of present image degree of mixing Image blend degree.In the present embodiment, when monitoring that movement locus is left whipping, the image blend degree of shooting is not adjusted to next stage Whole, when such as present image degree of mixing is 2 grades of acquiescence, if monitoring, movement locus is left whipping, and image blend degree is adjusted For 3 grade -50% of image blend degree.
When movement locus is right whipping, the upper level that the image blend degree of shooting is adjusted into present image degree of mixing is other Image blend degree.When monitoring that movement locus is right whipping, the image blend degree of shooting is not adjusted to upper level, such as current figure When picture degree of mixing is 2 grades of acquiescence, if monitoring, movement locus is right whipping, and image blend degree is adjusted into 1 grade -0% Image blend degree.
Step S102, judges the movement locus classification, and select operational control corresponding with the movement locus classification Instruction database, the operational control instruction database includes the first operational control instruction database and the second operational control instruction database.
In the present embodiment, operational control instruction database is by the first operational control instruction database and the second operational control instruction database two It is grouped into, is instructed wherein the first operational control instruction database stores to all related operational controls of first kind movement locus, with And the incidence relation list that first kind movement locus and application are instructed with operational control.From the foregoing, it can be understood that movement locus is divided into One type games track and Equations of The Second Kind movement locus, each Equations of The Second Kind movement locus fixation correspond to an improper measurement and uses feelings The corresponding relation for instructing each Equations of The Second Kind movement locus operational control in scape, the present embodiment is uniquely changed, i.e., each Equations of The Second Kind fortune Dynamic rail mark respective operations control instruction will not change with the change of foreground application, and by this incidence relation list and these Operational control instruction is stored in the second operational control instruction database.Because first kind movement locus must refer to the first operational control Make storehouse corresponding, and Equations of The Second Kind movement locus must be corresponding with the second operational control instruction database, so in step s 102, directly Connect and the corresponding operational control instruction database of selection is can determine that according to movement locus.
Step S103, when the movement locus classification is the first kind movement locus, the foreground of identification measuring instrument should With, and from the first operational control instruction database, filter out the behaviour matched with the movement locus and the foreground application Make control instruction, the operational control is performed in the foreground application and instructs corresponding task operating.
From the foregoing, it can be understood that when movement locus is first kind movement locus, its corresponding operational control instruction, in addition it is also necessary to root Determination is integrated according to foreground application and incidence relation list.For example:Set in image application is checked, left whipping pair Previous image command should be checked, checks that previous image command correspondence checks the task operating of previous image.When identifying Exercise data is left whipping, and foreground application is that when checking that image is applied, in step s 103, just can determine that corresponding operation control System instruction performs the task operating for checking previous image to check previous image command.
Step S104, when the movement locus classification is the Equations of The Second Kind movement locus, from second operational control In instruction database, filter out the operational control matched with the movement locus and instruct, and perform the operational control instruction Corresponding task operating.
From the foregoing, it can be understood that Equations of The Second Kind movement locus respective operations control instruction will not become with the change of foreground application Change, i.e., the corresponding relation instructed with operational control is uniquely fixed, so in step S104, when exercise data is Equations of The Second Kind During movement locus, it is only necessary to according in the second operational control instruction database, it is corresponding that Equations of The Second Kind movement locus and operational control are instructed Relation, to determine corresponding operational control instruction.
As the specific embodiment of the present invention, before step S101, in addition to:
Whether monitoring motion gesture control function is triggered;If motion gesture control function is triggered, enter motion hand Gesture control model.In the present embodiment, motion gesture identification control only controls one of optional control mode, one as measuring instrument As in the case of acquiescence be not turned on the control mode, when user needs opening movement gesture identification to control, it is only necessary to which triggering is corresponding Motion gesture control function, now measuring instrument can enter motion gesture control model, user can by motion gesture to measurement Instrument is controlled.Exist it should be noted that motion gesture control button may be either physical button form, can also be used as measuring instrument Operating system in One function modular form presence.
As the another specific embodiment of the present invention, before step S101, in addition to:
Step S201, receives the application selection instruction of user's input, needs to set according to application selection instruction selection Application, and show that the corresponding movement locus of the application sets interface.
In the present embodiment, user can under each application, first kind movement locus and with associating that operational control is instructed Relation is modified setting.Modify first step S201 when setting to incidence relation, and user first chooses desired modification Application, now measuring instrument operating system can eject this using corresponding movement locus set interface, user according to this transport Dynamic rail mark sets interface, and the first movement locus of modification incidence relation is wanted in selection application.
In a practical situation, technical staff can preset a first kind movement locus given tacit consent to and application refers to operational control The incidence relation list of order, to ensure that user sets operation directly can also control to survey using motion gesture even if without any Measure instrument.Because different users there may be different motion gesture customs, such as some users like left whipping previous to check Image is opened, and some users like the right side to get rid of to check previous image.In order to meet the motion gesture of different user as much as possible Custom, in the present embodiment, user can be changed freely in the first operational control instruction database of setting, and first kind movement locus is with before Platform applies the corresponding relation instructed with operational control.Motion gesture can both be set to, instead of conventional button, such as will by user In the corresponding measuring instrument first kind movement locus of motion gesture of user, left whipping sets the button operation of correspondence to the left, when the During the left whipping in one type games track, equivalent to the button pressed to the left, can also motion gesture be set to functions of shortcut key, such as By in the corresponding measuring instrument first kind movement locus of the motion gesture of user, upper left side whipping sets correspondence fast to enter and checks figure As application, when first kind movement locus is upper left side whipping, it can directly open to enter and check among image application.
Step S202, receives user and sets instruction in the movement locus that the movement locus sets interface to input, according to institute Stating movement locus sets instruction to determine the first kind movement locus for needing to set, and shows the first kind movement locus phase The operational control instruction answered sets interface.
User is after movement locus sets interface to choose the first kind movement locus accordingly changed, measuring instrument operating system The corresponding operational control instruction of the meeting automatic spring first kind movement locus sets interface.
Step S203, receives user and instructs the operational control for setting interface to input to set instruction in the operational control, and Set and instructed according to the operational control, the movement locus and associating that the operational control is instructed are set in the application Relation.
Because Equations of The Second Kind movement locus is normally measured with measuring instrument, use is closely bound up, and each Equations of The Second Kind movement locus is right Answer a fixed improper measurement to use scene, and fixed pair is instructed using the operational control of scene with the improper measurement Should, it can just be produced as dropped when measuring instrument drops, fixation correspond to shutdown command, and therefore, under normal circumstances, user is not Need to carry out the information in the second operational control instruction database any setting, so only including controlling the first operation in the present embodiment The function that incidence relation is configured in instruction database processed.It should be understood that ground, although under normal circumstances, user need not grasp to second Make the information in control instruction storehouse and carry out any setting, but be not meant to that the work(of the second operational control instruction database can not will be set It can add in the present embodiment, can specifically be chosen whether to need to add the function according to actual conditions by technical staff.
As the another specific embodiment of the present invention, before step S101, in addition to:
Whether recognize the foreground application is DATA REASONING application.In the present embodiment, by answering in measuring instrument operating system With being divided into, DATA REASONING is applied and two major classes are applied in non-data measurement.Wherein, DATA REASONING application refers to that measuring instrument is entering line number According to used application during measurement, in such as thermal infrared imager, the application that infrared image and visible images are gathered can be carried out.
If the foreground application is the DATA REASONING application, the measuring instrument opening movement gesture control pattern.At this In embodiment, measuring instrument can monitor the foreground application of user's operation in real time, and when foreground application is applied for DATA REASONING, automatically Opening movement gesture control pattern, and carry out the collection of exercise data.In the present embodiment, user is using DATA REASONING application When, without carrying out any pattern switching or opening operation, it just motion gesture can be used to control measuring instrument, provided the user pole Big facility.
It should be understood that in ground, the present embodiment, although selected DATA REASONING to apply automatic as motion gesture control model The application program of unlatching, but be not meant to that DATA REASONING application can only be used to carry out automatic opening movement gesture control pattern.Skill Art personnel can automatically turn on corresponding application program to motion gesture control model and select according to the actual requirements.For example:Can To select DATA REASONING application+check image application to be used as the application program of motion gesture control model automatic opening, now, Measuring instrument can all automatically turn on fortune when the foreground application for monitoring user's operation is DATA REASONING application or checks that image is applied Gesture of starting control model, and the exercise data control task operation collected according to motion sensor.
As a step S103 preferred embodiment, when the measuring instrument is thermal infrared imager, in addition to:
The first kind movement locus includes upper whipping, lower whipping, left whipping, right whipping, clockwise upper left side whipping, side To turn-take and counterclockwise turn-take.
When foreground application to check image application, and the movement locus for the whipping to the left when, choose described first Switch a upper image command in operational control instruction database to instruct for the operational control.
When foreground application to check image application, and the movement locus is when being the right whipping, chooses first behaviour It is operational control instruction to make to switch next image command in control instruction storehouse.
When foreground application is image co-registration application, and the movement locus for the whipping to the left when, choose described first Reduce fusion distance parameter instruction in operational control instruction database to instruct for the operational control.
When foreground application be image co-registration application, and the movement locus be the right whipping when, choose it is described first behaviour It is operational control instruction to make to increase fusion distance parameter instruction in control instruction storehouse.
As step S103 another preferred embodiment, in addition to:
The Equations of The Second Kind movement locus includes putting down, pick up and dropping.
When the exercise data is described puts down, the standby command conduct in the second operational control instruction database is chosen The operational control instruction.In the present embodiment, put down the scene that correspond to put down measuring instrument, now user temporarily without using Measuring instrument, in order to which the energy content of battery for reducing measuring instrument is lost, will preferably put down fixed correspondence standby command so that by measuring instrument While being put down by user, holding state can be entered.
When the exercise data is described picks up, the wake-up instruction conduct in the second operational control instruction database is chosen The operational control instruction.It is corresponding with putting down, pick up and correspond to the scene that user picks up measuring instrument, now user needs Using measuring instrument, that is, need measuring instrument to enter in working condition, therefore the present embodiment, will preferably pick up fixed correspondence wake-up and refer to Order, when make it that measuring instrument is picked up by user, can simultaneously be waken up and enter working condition.
When the exercise data is the tenesmus, the shutdown command conduct in the second operational control instruction database is chosen The operational control instruction.Tenesmus correspond to the scene that measuring instrument drops, and for the data safety of protection instrument, preferably will The fixed correspondence shutdown command of tenesmus so that can be shut down in time when measuring instrument drops, with the data of anti-lost measuring instrument.
Corresponding to the measuring instrument control method described in foregoing embodiments, Fig. 3 shows the measurement that the embodiment of the present invention 3 is provided The system architecture diagram of instrument.
Reference picture 3, the measuring instrument includes:
Acquiring unit 31, the exercise data for obtaining measuring instrument, and the measuring instrument is calculated based on the exercise data Movement locus, the movement locus made motion gesture while the hand-held measuring instrument by user and produced.
Instruction database chooses unit 32, for judging the movement locus classification, and selects and the movement locus classification pair The operational control instruction database answered, the operational control instruction database includes the first operational control instruction database and the second operational control is instructed Storehouse.
First task execution unit 33, for when the movement locus classification is the first kind movement locus, recognizing The foreground application of measuring instrument, and from the first operational control instruction database, filter out and the movement locus and the foreground Using the operational control instruction matched, the operational control is performed in the foreground application and instructs corresponding task operating.
Second task executing units 34, for when the movement locus classification is the Equations of The Second Kind movement locus, from institute State in the second operational control instruction database, filter out the operational control matched with the movement locus and instruct, and perform institute State operational control and instruct corresponding task operating.
Further, before acquiring unit 31, in addition to:
First receiving unit, the application selection instruction for receiving user's input, is selected according to the application selection instruction The application set is needed, and shows that the corresponding movement locus of the application sets interface.
Second receiving unit, refers to for receiving user and being set in the movement locus that the movement locus sets interface to input Order, sets instruction to determine the first kind movement locus for needing to set, and show the first kind according to the movement locus The corresponding operational control instruction of movement locus sets interface.
Setting unit is associated, is set for receiving user in the operational control that the operational control instructs setting interface to input Instruction, and instruction is set according to the operational control, set the movement locus to refer to the operational control in the application The incidence relation of order.
Further, before acquiring unit 31, in addition to:
Using judging unit, for recognizing whether the foreground application is DATA REASONING application.
Mode opening unit, if being the DATA REASONING application, the measuring instrument opening movement for the foreground application Gesture control pattern.
Further, first task execution unit 33, when the measuring instrument is thermal infrared imager, including:
The first kind movement locus includes upper whipping, lower whipping, left whipping, right whipping, clockwise upper left side whipping, side To turn-take and counterclockwise turn-take.
First instruction selecting unit, for checking image application when foreground application, and the movement locus for it is described to During left whipping, it is that the operational control is instructed to switch a upper image command in selection the first operational control instruction database.
Second instruction selecting unit, for checking image application when foreground application, and the movement locus is the right side During whipping, it is that the operational control is instructed to switch next image command in selection the first operational control instruction database.
3rd instruction selecting unit, for when foreground application be image co-registration application, and the movement locus for it is described to During left whipping, it is that the operational control is instructed to choose reduction fusion distance parameter instruction in the first operational control instruction database.
4th instruction selecting unit, for being image co-registration application when foreground application, and the movement locus is the right side During whipping, choose increase fusion distance parameter instruction in the first operational control instruction database and instructed for the operational control.
Further, the second task executing units 34, in addition to:
The Equations of The Second Kind movement locus includes putting down, pick up and dropping.
The peculair motion data include putting down, pick up and dropping.
5th instruction selecting unit, for when the exercise data is described puts down, choosing second operational control Standby command in instruction database is instructed as the operational control.
6th instruction selecting unit, for when the exercise data is described picks up, choosing second operational control Wake-up instruction in instruction database is instructed as the operational control.
7th instruction selecting unit, for when the exercise data is the tenesmus, choosing second operational control Shutdown command in instruction database is instructed as the operational control.
Those of ordinary skill in the art are it is to be appreciated that the list of each example described with reference to the embodiments described herein Member and algorithm steps, can be realized with the combination of electronic hardware or computer software and electronic hardware.These functions are actually Performed with hardware or software mode, depending on the application-specific and design constraint of technical scheme.Professional and technical personnel Described function can be realized using distinct methods to each application-specific, but this realization is it is not considered that beyond this The scope of invention.It should be understood that the size of the sequence number of each step is not meant to the priority of execution sequence, each mistake in above-described embodiment The execution sequence of journey should determine that the implementation process without tackling the embodiment of the present invention constitutes any limit with its function and internal logic It is fixed.
It is apparent to those skilled in the art that, for convenience and simplicity of description, the system of foregoing description, The specific work process of system and unit, may be referred to the corresponding process in preceding method embodiment, will not be repeated here.
, can be with several embodiments provided herein, it should be understood that disclosed system, system and method Realize by another way.For example, system embodiment described above is only schematical, for example, the unit Divide, only a kind of division of logic function there can be other dividing mode when actually realizing, such as multiple units or component Another system can be combined or be desirably integrated into, or some features can be ignored, or do not perform.It is another, it is shown or The coupling each other discussed or direct-coupling or communication connection can be the indirect couplings of system or unit by some interfaces Close or communicate to connect, can be electrical, machinery or other forms.
The unit illustrated as separating component can be or may not be it is physically separate, it is aobvious as unit The part shown can be or may not be physical location, you can with positioned at a place, or can also be distributed to multiple On NE.Some or all of unit therein can be selected to realize the mesh of this embodiment scheme according to the actual needs 's.
In addition, each functional unit in each embodiment of the invention can be integrated in a processing unit, can also That unit is individually physically present, can also two or more units it is integrated in a unit.
If the function is realized using in the form of SFU software functional unit and is used as independent production marketing or in use, can be with It is stored in a computer read/write memory medium.Understood based on such, technical scheme is substantially in other words The part contributed to prior art or the part of the technical scheme can be embodied in the form of software product, the meter Calculation machine software product is stored in a storage medium, including some instructions are to cause a computer equipment (can be individual People's computer, server, or network equipment etc.) perform all or part of step of each of the invention embodiment methods described. And foregoing storage medium includes:USB flash disk, mobile hard disk, read-only storage (ROM, Read-Only Memory), arbitrary access are deposited Reservoir (RAM, Random Access Memory), magnetic disc or CD etc. are various can be with the medium of store program codes.
Embodiment described above is merely illustrative of the technical solution of the present invention, rather than its limitations;Although with reference to foregoing reality Example is applied the present invention is described in detail, it will be understood by those within the art that:It still can be to foregoing each Technical scheme described in embodiment is modified, or carries out equivalent substitution to which part technical characteristic;And these are changed Or replace, the essence of appropriate technical solution is departed from the spirit and scope of various embodiments of the present invention technical scheme, all should Within protection scope of the present invention.

Claims (10)

1. a kind of measuring instrument control method recognized based on motion gesture, it is characterised in that including:
The exercise data of measuring instrument is obtained, and based on the movement locus of the exercise data calculating measuring instrument, the motion Motion gesture is made while the hand-held measuring instrument by user and is produced in track;
Judge the movement locus classification, and select operational control instruction database corresponding with the movement locus classification, the behaviour Making control instruction storehouse includes the first operational control instruction database and the second operational control instruction database;
When the movement locus classification is the first kind movement locus, the foreground application of measuring instrument is recognized, and from described the In one operational control instruction database, filter out the operational control matched with the movement locus and the foreground application and instruct, The operational control is performed in the foreground application and instructs corresponding task operating;
When the movement locus classification is the Equations of The Second Kind movement locus, from the second operational control instruction database, screening Go out the operational control matched with the movement locus to instruct, and perform the operational control and instruct corresponding task behaviour Make.
2. method as claimed in claim 1, it is characterised in that before the exercise data of the acquisition measuring instrument, in addition to:
The application selection instruction of user's input is received, the application for needing to set is selected according to the application selection instruction, and show It is described to apply corresponding movement locus that interface is set;
Receive user and instruction is set in the movement locus that the movement locus sets interface to input, set according to the movement locus Instruction determines the first kind movement locus for needing to set, and shows that the corresponding operational control of first kind movement locus refers to Order sets interface;
Receive user and instruct the operational control for setting interface to input that instruction is set in the operational control, and controlled according to the operation Set up and put instruction, the incidence relation for setting the movement locus to be instructed with the operational control in the application.
3. method as claimed in claim 1, it is characterised in that the exercise data of the acquisition measuring instrument, and based on the motion Data are calculated before the movement locus of the measuring instrument, in addition to:
Whether recognize the foreground application is DATA REASONING application;
If the foreground application is the DATA REASONING application, the measuring instrument opening movement gesture control pattern.
4. method as claimed in claim 1, it is characterised in that described when the movement locus classification is the first type games rail During mark, recognize the foreground application of measuring instrument, and from the first operational control instruction database, filter out with the movement locus and The operational control instruction that the foreground application matches, the operational control is performed in the foreground application and instructs corresponding Business operation, when the measuring instrument is thermal infrared imager, including:
The first kind movement locus includes upper whipping, lower whipping, left whipping, right whipping, upper left side whipping, clockwise direction and turned Circle and counter clockwise direction are turn-taked;
When foreground application to check image application, and the movement locus is when being the left whipping, chooses the first operation control Switch a upper image command in instruction database processed to instruct for the operational control;
When foreground application to check image application, and the movement locus is when being the right whipping, chooses the first operation control Switch next image command in instruction database processed to instruct for the operational control;
When foreground application be image co-registration application, and the movement locus be the left whipping when, choose it is described first operation control Reduce fusion distance parameter instruction in instruction database processed to instruct for the operational control;
When foreground application be image co-registration application, and the movement locus be the right whipping when, choose it is described first operation control Increase fusion distance parameter instruction in instruction database processed to instruct for the operational control.
5. method as claimed in claim 1, it is characterised in that described when the movement locus classification is the second type games rail During mark, from the second operational control instruction database, filter out the operational control matched with the movement locus and instruct, And the corresponding task operating of the operational control instruction is performed, including:
The Equations of The Second Kind movement locus includes putting down, pick up and dropping;
When the movement locus is described puts down, the standby command in the second operational control instruction database is chosen as described Operational control is instructed;
When the movement locus is described picks up, the wake-up instruction in the second operational control instruction database is chosen as described Operational control is instructed;
When the movement locus is the tenesmus, the shutdown command in the second operational control instruction database is chosen as described Operational control is instructed.
6. a kind of measuring instrument, it is characterised in that including:
Acquiring unit, the exercise data for obtaining measuring instrument, and based on the motion of the exercise data calculating measuring instrument Track, the movement locus is made motion gesture while the hand-held measuring instrument by user and produced;
Instruction database chooses unit, for judging the movement locus classification, and selects behaviour corresponding with the movement locus classification Make control instruction storehouse, the operational control instruction database includes the first operational control instruction database and the second operational control instruction database;
First task execution unit, for when the movement locus classification is the first kind movement locus, recognizing measuring instrument Foreground application, and from the first operational control instruction database, filter out and the movement locus and the foreground application phase The operational control instruction of matching, the operational control is performed in the foreground application and instructs corresponding task operating;
Second task executing units, for when the movement locus classification is the Equations of The Second Kind movement locus, from described second In operational control instruction database, filter out the operational control matched with the movement locus and instruct, and perform the operation The corresponding task operating of control instruction.
7. measuring instrument as claimed in claim 6, it is characterised in that before the acquiring unit, in addition to:
First receiving unit, the application selection instruction for receiving user's input, needs are selected according to the application selection instruction The application of setting, and show that the corresponding movement locus of the application sets interface;
Second receiving unit, for receiving the movement locus setting instruction that user sets interface to input in the movement locus, root Set instruction to determine the first kind movement locus for needing to set according to the movement locus, and show the first type games rail The corresponding operational control instruction of mark sets interface;
Setting unit is associated, is referred to for receiving user and being set in the operational control that the operational control instructs setting interface to input Order, and instruction is set according to the operational control, set the movement locus to be instructed with the operational control in the application Incidence relation.
8. measuring instrument as claimed in claim 6, it is characterised in that the acquiring unit, including:
Using judging unit, for recognizing whether the foreground application is DATA REASONING application;
First mode opening unit, if being the DATA REASONING application, the measuring instrument opening movement for the foreground application Gesture control pattern.
9. measuring instrument as claimed in claim 6, it is characterised in that the first task execution unit, is red in the measuring instrument During outer thermal imaging system, including:
The first kind movement locus includes upper whipping, lower whipping, left whipping, right whipping, upper left side whipping, clockwise direction and turned Circle and counter clockwise direction are turn-taked;
First instruction selecting unit, for checking image application when foreground application, and the movement locus is the left whipping When, choose that to switch a upper image command in the first operational control instruction database be operational control instruction;
Second instruction selecting unit, for checking image application when foreground application, and the movement locus is the right whipping When, choose that to switch next image command in the first operational control instruction database be operational control instruction;
3rd instruction selecting unit, for being image co-registration application when foreground application, and the movement locus is the left whipping When, it is that the operational control is instructed to choose reduction fusion distance parameter instruction in the first operational control instruction database;
4th instruction selecting unit, for being image co-registration application when foreground application, and the movement locus is the right whipping When, choose increase fusion distance parameter instruction in the first operational control instruction database and instructed for the operational control.
10. measuring instrument as claimed in claim 6, it is characterised in that second task executing units, in addition to:
The Equations of The Second Kind movement locus includes putting down, pick up and dropping;
5th instruction selecting unit, for when the exercise data is described puts down, choosing the second operational control instruction Standby command in storehouse is instructed as the operational control;
6th instruction selecting unit, for when the exercise data is described picks up, choosing the second operational control instruction Wake-up instruction in storehouse is instructed as the operational control;
7th instruction selecting unit, for when the exercise data is the tenesmus, choosing the second operational control instruction Shutdown command in storehouse is instructed as the operational control.
CN201780000026.8A 2017-01-22 2017-01-22 A kind of measuring instrument control method recognized based on motion gesture and measuring instrument Pending CN107077219A (en)

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