WO2016202017A1 - 一种智能穿戴设备及智能穿戴设备的控制方法 - Google Patents

一种智能穿戴设备及智能穿戴设备的控制方法 Download PDF

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Publication number
WO2016202017A1
WO2016202017A1 PCT/CN2016/076053 CN2016076053W WO2016202017A1 WO 2016202017 A1 WO2016202017 A1 WO 2016202017A1 CN 2016076053 W CN2016076053 W CN 2016076053W WO 2016202017 A1 WO2016202017 A1 WO 2016202017A1
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WO
WIPO (PCT)
Prior art keywords
touch
operation information
control
area
wearable device
Prior art date
Application number
PCT/CN2016/076053
Other languages
English (en)
French (fr)
Inventor
陈宇山
黄雪妍
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to KR1020187000896A priority Critical patent/KR102151136B1/ko
Priority to EP16810758.9A priority patent/EP3301560A4/en
Publication of WO2016202017A1 publication Critical patent/WO2016202017A1/zh
Priority to US15/843,999 priority patent/US11068025B2/en

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    • 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
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    • G06F1/1694Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675 the I/O peripheral being a single or a set of motion sensors for pointer control or gesture input obtained by sensing movements of the portable computer
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    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
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    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04886Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
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Definitions

  • the present invention relates to the field of computer equipment, and in particular, to a smart wearable device and a control method of the smart wearable device.
  • Smart Watch is an emerging smart wearable device with an intelligent operating system that can connect to the network and synchronize the phone, SMS, mail, photos, music and other content in the phone, so that users can realize various mobile phones without operating the mobile phone.
  • the crown member is retained in the smart watch, and the zooming in the interface and the selection of various options can be realized by rotating the crown member;
  • text input and various options are selected by sensing the movement trajectory of the user in the touch screen.
  • the embodiment of the present invention provides a smart wearable device and a control method of the smart wearable device.
  • the technical solution is as follows:
  • a first aspect of the present invention provides a control of a smart wearable device, where the smart wearable device includes a fixed strap, and the fixed strap is provided with a fixed touch area, and the method includes:
  • Detecting a first touch operation on the fixed touch area acquiring first operation information of the first touch operation, generating a control instruction according to the first operation information, and executing the control instruction.
  • the smart wearable device includes a display screen, and the display screen is provided with a display touch area;
  • the generating the control instruction according to the first operation information includes:
  • the control instruction is generated according to the first operation information and the second operation information of the second touch operation.
  • the first operation information includes at least one of a touch velocity value and a deformation degree value.
  • the control instruction includes a control degree parameter;
  • the generating the control instruction according to the first operation information includes:
  • the control instruction is generated according to the value of the control degree parameter.
  • control instruction includes a control degree parameter
  • the generating the control instruction according to the first operation information includes:
  • the control instruction is generated according to the value of the control degree parameter.
  • the first touch operation includes a sliding operation for switching an interface
  • the fixing is provided with a display area.
  • the first touch operation includes: a stretching operation, shaking Operation And at least one of dithering operations;
  • the stretching operation is an operation of stretching the fixing belt in an axial direction parallel to the fixing belt;
  • the swaying operation is an operation of swaying the fixing belt in a direction perpendicular to a plane of the fixing belt;
  • the dithering operation is an operation of fixing one end of the fixing belt and performing irregular shaking on the other end of the fixing belt.
  • the securing strap includes a first segment of the strap and a second segment
  • the first operation information includes third operation information of a touch operation on the first segment of the fixed band area, and fourth operation information of the touch operation on the second segment of the fixed band area ;
  • the generating the control instruction according to the first operation information includes:
  • another smart wearable device provided by the embodiment of the present invention includes: a processor, a fixing strap; the fixing strap includes a mechanical sensor; and the fixing strap is provided with a fixed strap touch region;
  • the mechanical sensor is configured to detect a first touch operation on the fixed touch area, and obtain first operation information of the first touch operation;
  • the processor is configured to generate a control instruction according to the first operation information acquired by the mechanical sensor, and execute the control instruction.
  • the smart wearable device further includes a display screen, where the display screen is provided with a display touch area;
  • the display screen is configured to detect a second touch operation on the touch area of the display screen
  • the processor is configured to generate a control instruction according to the first operation information and the second operation information of the second touch operation on the display touch area.
  • the first operation information includes at least one of a touch force value and a deformation degree value.
  • the control instruction includes a control degree parameter;
  • the processor is configured to determine a value of the control degree parameter according to at least one of the touch force value and the deformation degree value, and generate the control instruction according to the value of the control degree parameter .
  • the smart wearable device further includes an acceleration sensor, where the acceleration sensor is configured to acquire the a current acceleration value of the smart wearable device, the control command including a control degree parameter;
  • the processor is configured to determine a value of the control degree parameter according to the acceleration value acquired by the acceleration sensor and the first operation information, and generate the control instruction according to the value of the control degree parameter .
  • the first touch operation includes a sliding operation for switching an interface, the fixing
  • the display area is provided with a display area for displaying a first keyboard area of the virtual keyboard;
  • the processor is configured to generate an interface switching instruction according to the first operation information
  • the display area is further configured to display a second keyboard area according to the interface switching instruction generated by the processor, where the first keyboard area is different from the second keyboard area.
  • the first touch operation includes: a stretching operation, shaking At least one of operation and dithering operations;
  • the stretching operation is an operation of stretching the fixing belt in an axial direction parallel to the fixing belt;
  • the swaying operation is an operation of swaying the fixing belt in a direction perpendicular to a plane of the fixing belt;
  • the dithering operation is an operation of fixing one end of the fixing belt and performing irregular shaking on the other end of the fixing belt.
  • the fixing strap comprises a first segment of the fixing strap and the second segment
  • the first operation information includes third operation information of a touch operation on the first segment of the fixed band area, and fourth operation information of the touch operation on the second segment of the fixed band area ;
  • the processor is configured to generate a control instruction according to at least one of the third operation information and the fourth operation information.
  • the first operation information of the first touch operation is generated by the smart wearable device detecting the first touch operation performed by the user in the fixed tape, and the control instruction is generated according to the first operation information and the control instruction is executed.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device and improve the smart wear.
  • the operability of the device and the human-computer interaction make up for the shortcomings of single operation and weak interaction caused by operation only on the dial or through the crown.
  • FIG. 1 is a flowchart of a method for controlling a smart wearable device according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for controlling a smart wearable device according to Embodiment 2 of the present invention
  • FIG. 3 is a flowchart of a method for controlling a smart wearable device according to Embodiment 3 of the present invention.
  • FIG. 4 is a flowchart of a method for controlling a smart wearable device according to Embodiment 4 of the present invention.
  • FIG. 5 is a flowchart of a method for controlling a smart wearable device according to Embodiment 5 of the present invention.
  • FIG. 6 is a schematic flowchart of an operation in a method for controlling a smart wearable device according to Embodiment 5 of the present invention.
  • FIG. 7 is a flowchart of a method for controlling a smart wearable device according to Embodiment 6 of the present invention.
  • FIG. 8 is a schematic flowchart of an operation in a method for controlling a smart wearable device according to Embodiment 6 of the present invention.
  • FIG. 9 is a schematic flowchart of an operation in a method for controlling a smart wearable device according to Embodiment 6 of the present invention.
  • FIG. 10 is a schematic flowchart of an operation in a method for controlling a smart wearable device according to Embodiment 6 of the present invention.
  • FIG. 11 is a schematic flowchart of an operation in a method for controlling a smart wearable device according to Embodiment 6 of the present invention.
  • FIG. 12 is a schematic structural diagram of a smart wearable device according to Embodiment 7 of the present invention.
  • Embodiments of the present invention provide a method for controlling a smart wearable device, as shown in FIG.
  • the method is applied to a smart wearable device in which a mechanical sensor is disposed in a fixed strap; the smart wearable device includes a fixed strap, and the fixed strap is provided with a fixed touch area.
  • the method comprises:
  • the control instruction corresponding to the first operation information is acquired from the correspondence between the operation information and the control instruction, and the control instruction is executed.
  • the fixing strap is used for fixing the smart wearable device to the user's body or to the fixture.
  • the strap may be a strap.
  • the mechanical sensor disposed in the fixing belt includes one or more of a deformation sensing sensor, a pressure sensing sensor, and a tension sensing sensor.
  • the deformation sensing sensor, the pressure sensing sensor, and the tension sensing sensor can detect different types of external forces such as a click operation, a sliding operation, a stretching operation, a twisting operation, a shaking operation, a shaking operation, or a pressing operation applied by the user to the fixing belt.
  • the deformation induction sensor can pre-set the positive and negative directions of the fixed belt, and correspondingly can sense the forward deformation and the negative deformation, and the relative concepts set for the positive and negative directions are only convenient to distinguish.
  • the stretching operation is an operation of stretching the fixing belt in an axial direction parallel to the fixing belt
  • the shaking operation is an operation of shaking the fixing belt in a direction perpendicular to the plane of the fixing belt;
  • the dithering operation is to fix one end of the fixing strap and perform the operation of irregularly shaking the other end of the fixing strap.
  • the fixing strap may include a first segment fixing strap and a second segment fixing strap, and the two segment fixing straps may allow the user to individually operate one or two of the fixing strap combination operations.
  • the first fixed strap and the second fixed strap may be upper and lower fixed straps respectively, and the upper and lower fixed straps are only relative concepts set for distinguishing.
  • the first length of strap may be located on the left side of the smart wearable device and the second strap may be located on the right side of the smart wearable device.
  • the user can perform a touch operation on any one of the fixed straps to obtain operation information corresponding to the touch operation, and finally generate a control command according to the operation signal; the user can also perform touch operations on the two fixed straps in the fixed strap respectively.
  • the same or different touch operations can be performed.
  • fixed A plurality of sensing areas can also be preset in the belt, and corresponding markings are defined for each sensing area to determine the user's touch position in the fixing belt.
  • the first operation information in the step 102 may include an external force type, an external force position, and an external force direction of the first touch operation; correspondingly, the correspondence between the operation information and the control instruction may be an external force type, an external force position, and an external force direction and a control instruction.
  • the correspondence is as shown in Table 1 below:
  • step 102 may specifically be:
  • the application's program ID can be the name of the application, the installation time, or the installation location.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • Embodiments of the present invention provide a method for controlling a smart wearable device, as shown in FIG. 2 .
  • the method embodiment is applied to a smart wearable device with a mechanical sensor disposed in the fixed strap;
  • the smart wearable device includes a fixed strap, and the fixed strap is provided with a fixed touch area;
  • the smart wearable device further includes a display screen and a display screen A display touch area is provided on the display.
  • the method comprises:
  • 201 Detect a first touch operation on the fixed touch area to obtain first operation information of the first touch operation.
  • the first touch operation performed by the user on the fixed touch area is performed to make the first touch
  • the first operational information of the operation and the second operational information of the second touch operation together determine a final control command.
  • the first touch operation and the second touch operation may include, but are not limited to, a click operation, a long press operation, a sliding operation, and the like.
  • the first operation information and the control information corresponding to the second operation information are acquired from the correspondence between the first operation information, the second operation information, and the control instruction according to the first operation information and the second operation information. .
  • the application may set the correspondence between the first operation information, the second operation information and the control instruction according to the needs of the application.
  • the corresponding step 203 may be:
  • the information and the second operation information acquire the first operation information and the control instruction corresponding to the second operation information from the correspondence between the first operation information, the second operation information and the control instruction corresponding to the application.
  • the smart wearable device takes a smart watch as an example.
  • the user presses the display of the smart watch with one finger, and the smart watch senses that the long press event is triggered, that is, the second touch operation; while the other finger is on the fixed strap along the length of the fixed strap or perpendicular to the strap.
  • the touch operation of sliding in the length direction that is, the first touch operation.
  • the generated control command is an instruction to control the content displayed on the display screen of the smart watch to be enlarged or reduced according to the first operation information of the first touch operation and the second operation information of the second touch operation.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • Embodiments of the present invention provide a method for controlling a smart wearable device, as shown in FIG. 3.
  • the method embodiment is applied to a smart wearable device in which a mechanical sensor is disposed in a fixed strap.
  • the method comprises:
  • 301 Detect a first touch operation on the fixed touch area, and obtain first operation information of the first touch operation.
  • the first operation information includes at least one of a touch force value and a deformation degree value
  • the first operation information may be at least one of a touch force value and a deformation degree value sensed by a deformation inductive sensor or a pressure sensor in the fixing band.
  • the value of the control degree parameter is obtained from the correspondence between the touch force value and the value of the control degree parameter according to the touch force value;
  • the value of the control degree parameter is obtained from the correspondence between the touch force value, the deformation degree value and the value of the control degree parameter.
  • control instruction includes a control degree parameter.
  • control degree parameters Through different control degree parameters, it is possible to apply different strengths under the same touch operation and obtain different control effects.
  • the first touch operation is a sliding operation in the fixed belt. If the touch force value is larger, the corresponding operation game action is large in the game running by the smart wearable device, and specifically: the control instruction corresponding to the sliding operation For the operation of controlling the steering wheel in a racing game, the larger the touch force value, the larger the angle of the corresponding turn.
  • the current control command is a picture in the screen of the sliding smart wearable device, which can be based on touch.
  • the velocity value or the deformation degree value controls the speed of the sliding, and the larger the touch velocity value or the deformation degree value, the faster the sliding speed, and vice versa.
  • a control instruction corresponding to the value of the control degree parameter is obtained from the correspondence between the value of the control degree parameter and the control instruction.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • Embodiments of the present invention provide a method for controlling a smart wearable device, as shown in FIG. 4 .
  • the method embodiment is applied to a smart wearable device in which a mechanical sensor is disposed in a fixed strap.
  • the method comprises:
  • the smart wearable device may further include a three-axis acceleration sensor.
  • the acceleration sensor can sense the value of the acceleration of the smart wearable device corresponding to each of the three axes.
  • the value of the acceleration corresponding to each axis can also be matched with the touch operation performed by the user on the fixed belt to control the execution intensity of the control command.
  • the implementation scenario in this case may be that the user performs the operation of the somatosensory game in the somatosensory game application, and the movement of the smart wearable device can be controlled to obtain a more realistic motion effect. For example, swinging up and down for a trampoline game, similar to hurdles, skiing, surfing, etc.
  • the value of the control degree parameter is obtained from the correspondence between the acceleration value, the operation information, and the value of the control degree parameter according to the acceleration value and the first operation information.
  • the correspondence between the value of the control degree parameter and the control instruction is Obtain a control instruction corresponding to the value of the control degree parameter.
  • the smart wearable device senses the acceleration parameter when the device is shaken up and down, and the deformation sensor senses the deformation of the fixed band, through the deformation and the position of the deformation.
  • the direction ultimately results in a control command, which can be motion control or jump control in a trampoline game.
  • the execution control of the motion control or the jump control in the control command can be controlled. If the acceleration parameter is larger, the corresponding motion amplitude or the jump amplitude is larger, and vice versa.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • An embodiment of the present invention provides a method for controlling a smart wearable device, as shown in FIG. 5.
  • the embodiment of the present invention is applied to a smart wearable device in which a mechanical sensor is disposed in a fixed strap.
  • the fixed strap may further include a display area, and a virtual keyboard for performing text input may be displayed.
  • the method comprises:
  • the virtual keyboard further includes a second keyboard area.
  • the first keyboard area is different from the second keyboard area.
  • keyboard areas can be included in the virtual keyboard, and different keyboard areas include different key positions.
  • Each keyboard area can be switched by determining an interface switching command by a touch operation in the fixed tape.
  • the first keyboard area displays the key position: ASDFG; and the second keyboard area displays the key position ZXCVB.
  • the first keyboard area and the second keyboard area are only used to distinguish different keyboard areas, and the number of keyboard areas is not limited. All keyboard areas may include all key positions in the keyboard.
  • the first touch operation may be a click operation, a long press operation, a sliding operation, and the like.
  • 503 Generate an interface switching instruction according to the first operation information, and execute an interface switching instruction to display the second keyboard area on the display area.
  • the smart wearable device takes a smart watch as an example, and a display area is also set in the wristband of the smart watch.
  • the user can place the smart watch in front and lay it flat.
  • the smart watch displays characters on the display area in the strap.
  • Control operation the corresponding control command is an input character, wherein the specific character content of the input is determined according to the area clicked by the user in the preset strap and according to the correspondence between the area and the character.
  • the operation diagram of this example is shown in FIG. 6.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • Embodiments of the present invention provide a method for controlling a smart wearable device, as shown in FIG. 7.
  • the method embodiment is applied to a smart wearable device in which a mechanical sensor is disposed in a fixed strap.
  • the method comprises:
  • the fixing strap includes a first segment fixing strap and a second segment fixing strap
  • the first operation information includes third operation information of the touch operation on the first segment fixing strap region, and The fourth operation information of the touch operation on the two-segment fixed band area.
  • control instruction corresponding to the third operation information is obtained from the correspondence between the operation information and the control instruction according to the third operation information;
  • step 702 may specifically be:
  • the information and the fourth operation information acquire the third operation information and the control instruction corresponding to the fourth operation information from the correspondence between the third operation information, the fourth operation information and the control instruction corresponding to the application.
  • the smart wearable device takes a smart watch as an example.
  • the current smart watch is in a portrait holding state, and the user runs a racing game application in the smart wearable device.
  • the user can touch the touch on the upper fixed strap with one finger, and the corresponding control command is to accelerate the racing car; the other finger is carried on the lower fixing strap along the length direction of the fixing strap or perpendicular to the length of the fixing strap.
  • the sliding touch operation, the corresponding control command is to control the direction of travel of the car.
  • the control mode can also be a touch operation in which the user's one finger slides along the length direction of the fixing belt or perpendicular to the length direction of the fixing belt on the upper fixing strap, and the corresponding control command is to control the traveling direction of the racing car; the other finger
  • the touch operation that is clicked on the lower fixed strap, the corresponding control command is to control the car to brake.
  • the user can perform a touch operation on the upper fixed strap with one finger, and the corresponding control command initiates an attack operation for the applied weapon; the other finger is along the length of the fixed strap or perpendicular to the length of the fixed strap on the lower half.
  • the sliding operation is performed on the sliding, and the corresponding control command is to control the traveling direction of the character.
  • the operation diagram of this example is shown in FIG. 8.
  • the deformation of the fixed strap may also be caused by the user's touch operation of twisting or shaking on the two segment fixing straps, and the corresponding control command is an action corresponding thereto.
  • the operation diagram of this example is shown in FIG. 9.
  • the smart wearable device takes a smart watch as an example.
  • a smart watch is used for photographing or as a remote control to control a user's mobile phone, tablet, etc. to take a photo
  • the user can use two fingers to simultaneously slide on the fixed strap along the length of the fixed strap, correspondingly
  • the control command is focusing, for example, the index finger slides up/down on the upper fixed strap, while the thumb is fixed in the lower section.
  • the belt slides downward/upward; it can also touch the two fingers at the same time away from/near the dial direction along the circumference of the wrist.
  • the corresponding control command is to zoom in/out the lens; adjust the focal length and set the lens After that, the touch operation is performed by clicking on the preset area of the fixed belt, and the corresponding control command is to focus or trigger the photographing.
  • the operation diagram of the present example is shown in FIG.
  • the above method for focusing can also be used to enlarge or reduce the content displayed on the screen.
  • the smart wearable device takes a smart watch as an example.
  • the user can perform a long-pressing touch operation or a sliding touch operation on the fixed strap, and the corresponding control command is to control the movement of the cursor on the display screen; or the touch control can be performed on the fixed strap in different directions.
  • Operation, the corresponding control command is to select the range of content.
  • the upper fixed band is swiped up or to the left to enlarge the starting point of the selected text, and the lower fixed band is swung down or to the right to expand the end point of the selected text, and vice versa.
  • the operation diagram of this example is shown in FIG. 11 .
  • the upper fixed strap and the lower fixed strap in the embodiment of the present invention may be: a first fixed strap and a second fixed strap.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • Embodiments of the present invention provide a control device for a smart wearable device, which is applied to a smart wearable device in which a mechanical sensor is disposed in a fixed strap, as shown in FIG.
  • the device includes:
  • the processor 1201 is fixed to the strap 1202; the fixed strap 1202 includes a mechanical sensor 12021; and the fixed strap is provided with a fixed strap touch area;
  • the mechanical sensor 12021 is configured to detect a first touch operation on the fixed touch area; and obtain first operation information of the first touch operation;
  • the processor 1201 is configured to generate a control instruction according to the first operation information acquired by the mechanical sensor 12021, and execute the control instruction.
  • the processor 1201 is coupled to the memory for reading the code in the memory.
  • the smart wearable device further includes a display screen 1203, and the display screen is provided with a display touch area;
  • the display 1203 is configured to detect a second touch operation on the touch area of the display screen, and acquire second operation information of the second touch operation;
  • the processor 1201 is configured to generate a control instruction according to the first operation information and the second operation information of the second touch operation on the touch area of the display screen.
  • the first operation information includes at least one of a touch strength value and a deformation degree value, and the control instruction includes a control degree parameter;
  • the processor 1201 is configured to determine a value of the control degree parameter according to at least one of a touch strength value and a deformation degree value, and generate a control instruction according to the value of the control degree parameter.
  • the smart wearable device further includes an acceleration sensor 1204, wherein the acceleration sensor 1204 is configured to acquire a current acceleration value of the smart wearable device, and the control instruction includes a control degree parameter;
  • the processor 1201 is configured to determine a value of the control degree parameter according to the acceleration value acquired by the acceleration sensor and the first operation information, and generate a control instruction according to the value of the control degree parameter.
  • the first touch operation includes a sliding operation for switching the interface, and the fixed band 1202 is provided with a display area 12022 for displaying the first keyboard area of the virtual keyboard;
  • the processor 1201 is configured to generate an interface switching instruction according to the first operation information
  • the display area 12022 is further configured to display a second keyboard area according to an interface switching instruction generated by the processor 1201, where the first keyboard area is different from the second keyboard area.
  • the first touch operation includes: a stretching operation, a shaking operation, and a shaking operation;
  • the stretching operation is an operation of stretching the fixing belt 1202 in the axial direction parallel to the fixing belt 1202;
  • the shaking operation is an operation of shaking the fixing belt 1202 in a direction perpendicular to the plane of the fixing belt 1202;
  • the dithering operation is to fix one end of the fixing strap 1202 and perform the operation of irregularly shaking the other end of the fixing strap 1202.
  • the fixing strap 1202 includes a first segment fixing strap and a second segment fixing strap, and the first operation information includes third operation information of the touch operation on the first segment fixing strap region, and on the second segment fixing strap region. Fourth operation information of the touch operation;
  • the processor 1201 is configured to generate a control instruction according to at least one of the third operation information and the fourth operation information.
  • the first touch operation of the user on the fixed touch area is detected by the smart wearable device, and the first operation information of the first touch operation is acquired, and the control instruction is generated according to the first operation information and the control is executed. instruction.
  • the touch control operation in the fixed strap can increase the control mode of the smart wearable device, improve the operability of the smart wearable device and the human-computer interaction, and make up for the operation mode only by operating the dial or the crown. A single, weakly interactive defect.
  • the storage medium may be a read only memory, a magnetic disk or an optical disk or the like.

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Abstract

一种智能穿戴设备及智能穿戴设备的控制方法,属于计算机设备领域。所述方法包括:检测在所述固定带触控区域上的第一触控操作,获取所述第一触控操作的第一操作信息(101);根据所述第一操作信息生成控制指令,并执行所述控制指令(102)。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。

Description

一种智能穿戴设备及智能穿戴设备的控制方法
本申请要求于2015年06月17日提交中国专利局、申请号为201510338262.3、发明名称为“一种智能穿戴设备及智能穿戴设备的控制方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及计算机设备领域,特别涉及一种智能穿戴设备及智能穿戴设备的控制方法。
背景技术
智能手表是新兴的智能穿戴设备,其搭载智能化操作系统,可以连接网络并且可以同步手机中的电话、短信、邮件、照片、音乐等内容,使得用户无需操作手机即可实现各种手机中的功能。
目前,在智能手表中进行操作的方式可以有以下几种:在智能手表中保留了表冠部件,可以通过对该表冠部件的旋转实现界面中的放大缩小以及各种选项的选取操作;在智能手表中通过感应用户在触屏中的移动轨迹来进行文字输入以及各种选项的选取操作。
发明人发现现有技术至少存在以下问题:
通过表冠部件进行旋转的方式操作过于单一,实现的功能较少会降低人机交互性;另外,由于智能手表的表盘触屏面积较小,因此触屏操作的准确性较低,这种方式也会降低人机交互性。
发明内容
为了解决现有技术中智能穿戴设备控制方式单一造成的交互性能偏弱的问题,本发明实施例提供了一种智能穿戴设备及智能穿戴设备的控制方法。所述技术方案如下:
第一方面,本发明实施例提供的一种智能穿戴设备的控制,所述智能穿戴设备包括固定带,所述固定带上设置有固定带触控区域,方法包括:
检测在所述固定带触控区域上的第一触控操作,获取所述第一触控操作的第一操作信息根据所述第一操作信息生成控制指令,并执行所述控制指令。
在第一方面的第一种可能的实现方式中,所述智能穿戴设备包括显示屏,所述显示屏上设置有显示屏触控区域;
当检测到所述显示屏触控区域上的第二触控操作时,所述根据所述第一操作信息生成控制指令,包括:
当检测到所述智能穿戴设备的屏幕区域上的第二触控操作时,根据所述第一操作信息和所述第二触控操作的第二操作信息,生成所述控制指令。
结合第一方面或者第一方面的第一种可能的实现方式,在第一方面的第二种可能的实现方式中,所述第一操作信息包括触控力度值和形变程度值中的至少一种,所述控制指令包括控制程度参数;
所述根据所述第一操作信息生成控制指令,包括:
根据所述触控力度值和所述形变程度值中的至少一种,确定所述控制程度参数的值;
根据所述控制程度参数的值,生成所述控制指令。
结合第一方面或者第一方面的第一种可能的实现方式,在第一方面的第三种可能的实现方式中,所述控制指令包括控制程度参数;
所述根据所述第一操作信息生成控制指令,包括:
获取所述智能穿戴设备的当前加速度值;
根据所述加速度值以及所述第一操作信息,确定所述控制程度参数的值;
根据所述控制程度参数的值,生成所述控制指令。
结合第一方面或者第一方面的第一种可能的实现方式,在第一方面的第四种可能的实现方式中,所述第一触控操作包括用于切换界面的滑动操作,所述固定带上设置有显示区域,在所述检测在固定带区域上的第一触控操作之前,所述方法还包括:
在所述显示区域上显示虚拟键盘的第一键盘区域;
所述根据所述第一操作信息生成控制指令,并执行所述控制指令,包括:
根据所述第一操作信息生成界面切换指令,并执行所述界面切换指令以在所述显示区域上显示第二键盘区域,所述第一键盘区域与所述第二键盘区域不同。结合第一方面至第一方面的第三种可能的实现方式中的任一项,在第一方面的第五种可能的实现方式中,所述第一触控操作包括:拉伸操作,晃动操作 和抖动操作中至少一种;
所述拉伸操作为将所述固定带沿平行于所述固定带轴向进行拉伸的操作;
所述晃动操作为将所述固定带沿垂直于所述固定带平面方向进行晃动的操作;
所述抖动操作为将所述固定带的一端固定,且将所述固定带的另一端进行无规律抖动的操作。
结合第一方面至第一方面的第五种可能的实现方式中的任一项,在第一方面的第六种可能的实现方式中,所述固定带包括第一段固定带和第二段固定带,所述第一操作信息包括在所述第一段固定带区域上的触控操作的第三操作信息,和在所述第二段固定带区域上的触控操作的第四操作信息;
相应的,所述根据所述第一操作信息生成控制指令,包括:
根据所述第三操作信息和第四操作信息中的至少一个生成控制指令。
第二方面,本发明实施例提供的另一种智能穿戴设备,所述智能穿戴设备包括:处理器,固定带;所述固定带中包括力学传感器;所述固定带上设置有固定带触控区域;
所述力学传感器,用于检测在所述固定带触控区域上的第一触控操作,获取所述第一触控操作的第一操作信息;
所述处理器,用于根据所述力学传感器获取的所述第一操作信息生成控制指令,并执行所述控制指令。
在第二方面的第一种可能的实现方式中,所述智能穿戴设备还包括显示屏,所述显示屏上设置有显示屏触控区域;
所述显示屏用于检测在所述显示屏触控区域上的第二触控操作;
所述处理器,用于根据所述第一操作信息和所述显示屏触控区域上的第二触控操作的所述第二操作信息,生成控制指令。
结合第二方面或者第二方面的第一种可能的实现方式,在第二方面的第二种可能的实现方式中,所述第一操作信息包括触控力度值和形变程度值中的至少一种,所述控制指令包括控制程度参数;
所述处理器,用于根据所述触控力度值和所述形变程度值中的至少一种,确定所述控制程度参数的值,并根据所述控制程度参数的值,生成所述控制指令。
结合第二方面或者第二方面的第一种可能的实现方式,在第二方面的第三种可能的实现方式中,所述智能穿戴设备还包括加速度传感器,所述加速度传感器用于获取所述智能穿戴设备的当前加速度值,所述控制指令包括控制程度参数;
所述处理器,用于根据所述加速度传感器获取的所述加速度值以及所述第一操作信息,确定所述控制程度参数的值,并根据所述控制程度参数的值,生成所述控制指令。
结合第二方面或者第二方面的第一种可能的实现方式,在第二方面的第四种可能的实现方式中,所述第一触控操作包括用于切换界面的滑动操作,所述固定带上设置有显示区域,用于显示虚拟键盘的第一键盘区域;
相应的,所述处理器,用于根据所述第一操作信息生成界面切换指令;
所述显示区域,还用于根据所述处理器生成的所述界面切换指令显示第二键盘区域,所述第一键盘区域与所述第二键盘区域不同。
结合第二方面至第二方面的第三种可能的实现方式中的任一项,在第二方面的第五种可能的实现方式中,所述第一触控操作包括:拉伸操作,晃动操作和抖动操作中至少一种;
所述拉伸操作为将所述固定带沿平行于所述固定带轴向进行拉伸的操作;
所述晃动操作为将所述固定带沿垂直于所述固定带平面方向进行晃动的操作;
所述抖动操作为将所述固定带的一端固定,且将所述固定带的另一端进行无规律抖动的操作。
结合第二方面至第二方面的第五种可能的实现方式中的任一项,在第二方面的第六种可能的实现方式中,所述固定带包括第一段固定带和第二段固定带,所述第一操作信息包括在所述第一段固定带区域上的触控操作的第三操作信息,和在所述第二段固定带区域上的触控操作的第四操作信息;
相应的,所述处理器,用于根据所述第三操作信息和第四操作信息中的至少一个生成控制指令。
通过在智能穿戴设备检测用户在固定带中进行的第一触控操作,第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴 设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例1提供的智能穿戴设备的控制方法流程图;
图2是本发明实施例2提供的智能穿戴设备的控制方法流程图;
图3是本发明实施例3提供的智能穿戴设备的控制方法流程图;
图4是本发明实施例4提供的智能穿戴设备的控制方法流程图;
图5是本发明实施例5提供的智能穿戴设备的控制方法流程图;
图6是本发明实施例5提供的智能穿戴设备的控制方法中的一种操作示意图流程图;
图7是本发明实施例6提供的智能穿戴设备的控制方法流程图;
图8是本发明实施例6提供的智能穿戴设备的控制方法中的一种操作示意图流程图;
图9是本发明实施例6提供的智能穿戴设备的控制方法中的一种操作示意图流程图;
图10是本发明实施例6提供的智能穿戴设备的控制方法中的一种操作示意图流程图;
图11是本发明实施例6提供的智能穿戴设备的控制方法中的一种操作示意图流程图;
图12是本发明实施例7提供的智能穿戴设备的结构示意图。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。
实施例1
本发明实施例提供了一种智能穿戴设备的控制方法,参见图1。本方法实 施例应用于固定带中设置有力学传感器的智能穿戴设备;智能穿戴设备包括固定带,固定带上设置有固定带触控区域。
其中,该方法包括:
101:检测在固定带触控区域上的第一触控操作,获取第一触控操作的第一操作信息;
102:根据第一操作信息生成控制指令,并执行控制指令。
具体地,根据第一操作信息,从操作信息与控制指令的对应关系中获取第一操作信息对应的控制指令,并执行该控制指令。
其中,固定带用于智能穿戴设备固定于用户身体或者固定于固定物的装备,当智能穿戴设备为智能手表时,固定带可以为表带。
固定带中设置的力学传感器包括形变感应传感器,压力感应传感器,拉力感应传感器中的一种或多种。通过形变感应传感器,压力感应传感器,拉力感应传感器可以检测到用户对固定带施加的点击操作、滑动操作、拉伸操作、扭动操作、晃动操作、抖动操作或者按压操作等不同类型的外力。其中,形变感应传感器可以预先设定固定带的正向和负向,相应的可以感应到正向形变和负向形变,关于正向和负向仅是便于区分而设定的相对概念。
其中,拉伸操作为将固定带沿平行于固定带轴向进行拉伸的操作;
晃动操作为将固定带沿垂直于固定带平面方向进行晃动的操作;
抖动操作为将固定带的一端固定,且将固定带的另一端进行无规律抖动的操作。
一步的,固定带可以包括第一段固定带和第二段固定带,两个段固定带可以允许用户单独操作其中一段或两段固定带组合操作。其中,当智能穿戴设备纵向佩戴时,第一段固定带和第二段固定带可以分别为上、下段固定带,关于上、下段固定带仅是用于区分而设定的相对概念。当智能穿戴设备被横向放置时,第一段固定带可以位于智能穿戴设备的左侧的半段,第二段固定带可以位于智能穿戴设备的右侧的半段。
用户可以对固定带中任意一个半段进行触控操作,得到该触控操作对应的操作信息,最终根据操作信生成控制指令;用户也可以对固定带中两段固定带分别进行触控操作,得到每段固定带的触控操作对应的操作信息;或者得到每个段固定带的触控操作,并根据两个触控操作的操作信息共同确定对应的控制指令,其中在两段固定带中可以进行相同或者不相同的触控操作。其中,固定 带中还可以预先设置多个感应区域,并为每个感应区域定义相应的标识,以便确定用户在固定带中触碰位置。
步骤102中的第一操作信息可以包括第一触控操作的外力类型、外力位置和外力方向;相应的,操作信息与控制指令的对应关系可以为外力类型、外力位置和外力方向与控制指令的对应关系,如下表1所示:
表1
Figure PCTCN2016076053-appb-000001
Figure PCTCN2016076053-appb-000002
另外,由于应用之间的使用方式的区别,因此各应用会根据自身的需要设定操作信息与控制指令之间的对应关系。相应的,步骤102具体可以为:
获取智能穿戴设备当前运行的应用程序的程序标识,根据该程序标识,获取该应用程序对应的操作信息与控制指令的对应关系;根据第一操作信息,从该应用程序对应的操作信息与控制指令的对应关系中获取第一操作信息对应的控制指令,并执行该控制指令。
应用程序的程序标识可以为应用程序的名称、安装时间或者安装位置等。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
实施例2
本发明实施例提供了一种智能穿戴设备的控制方法,参见图2。本方法实施例应用于固定带中设置有力学传感器的智能穿戴设备;智能穿戴设备包括固定带,固定带上设置有固定带触控区域;智能穿戴设备还包括显示屏,显示屏 上设置有显示屏触控区域。
其中,该方法包括:
201:检测在固定带触控区域上的第一触控操作,获取第一触控操作的第一操作信息。
在本发明实施例中,可以通过用户在智能穿戴设备的显示屏中进行了第二触控操作后,配合用户在固定带触控区域上进行的第一触控操作,以使第一触控操作的第一操作信息和第二触控操作的第二操作信息共同确定最终的控制指令。
其中,第一触控操作和第二触控操作都可以包括但不限于:点击操作;长按操作,滑动操作等。
202:检测在显示屏触控区域上的第二触控操作。
203:当检测到显示屏触控区域上的第二触控操作时,根据第一操作信息和第二触控操作的第二操作信息,生成控制指令。
具体地,根据第一操作信息和第二操作信息,从第一操作信息、第二操作信息与控制指令三者之间的对应关系中,获取第一操作信息和第二操作信息对应的控制指令。
由于应用之间的使用方式的区别,各应用会根据自身的需要设定第一操作信息、第二操作信息与控制指令三者之间的对应关系,相应的,步骤203具体可以为:
获取显示屏触控区域上当前运行的应用程序程序标识,根据该程序标识,获取该应用程序对应的第一操作信息、第二操作信息与控制指令三者之间的对应关系;根据第一操作信息和第二操作信息,从该应用程序对应的第一操作信息、第二操作信息与控制指令三者之间的对应关系中获取第一操作信息和第二操作信息对应的控制指令。
以拍照场景为例进行说明,智能穿戴设备以智能手表为例。用户一个手指按住智能手表的显示屏,此时智能手表感应到触发了长按事件,即第二触控操作;同时另外一手指在固定带上沿固定带的长度方向或垂直于表带的长度方向进行滑动的触控操作,即第一触控操作。
根据第一触控操作的第一操作信息和第二触控操作的第二操作信息,生成的控制指令为控制智能手表的显示屏上显示的内容被放大或缩小的指令。
204:执行控制指令。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
实施例3
本发明实施例提供了一种智能穿戴设备的控制方法,参见图3。本方法实施例应用于固定带中设置有力学传感器的智能穿戴设备。
其中,该方法包括:
301:检测在固定带触控区域上的第一触控操作,获取第一触控操作的第一操作信息。
其中,第一操作信息包括触控力度值和形变程度值中的至少一种;
相应的,第一操作信息可以通过固定带中的形变感应传感器或者压力传感器感应到触控力度值和形变程度值中的至少一种。
302:根据触控力度值和形变程度值中的至少一种,确定控制程度参数的值;
具体地,根据触控力度值,从触控力度值和控制程度参数的值的对应关系中获取控制程度参数的值;或者,
根据形变程度值,从形变程序值和控制程度参数的值的对应关系中获取控制程度参数的值;或者,
根据触控力度值和形变程度值,从触控力度值、形变程度值与控制程度参数的值三者之间的对应关系中获取控制程度参数的值。
303:根据控制程度参数的值,生成控制指令。
其中,控制指令包括控制程度参数。通过不同的控制程度参数,可以实现在相同的触控操作下,被施加不相同的力度,得到不相同的控制效果。
例如:第一触控操作为在固定带中的滑动操作,如果触控力度值越大,则在智能穿戴设备运行的游戏中对应的操作游戏动作大,具体可以为:滑动操作对应的控制指令为赛车游戏中控制方向盘转弯的操作,而触控力度值越大则对应的转弯的角度越大。
再例如:当前控制指令为滑动智能穿戴设备屏幕中的图片,可以根据触控 力度值或形变程度值控制滑动的速度,触控力度值或形变程度值越大则滑动速度越快,反之则越慢。
因此,生成控制指令的方式可以由以下步骤进行实现:
根据控制程度参数的值,从控制程度参数的值与控制指令的对应关系中获取该控制程度参数的值对应的控制指令。
304:执行控制指令。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
实施例4
本发明实施例提供了一种智能穿戴设备的控制方法,参见图4。本方法实施例应用于固定带中设置有力学传感器的智能穿戴设备。
其中,该方法包括:
401:检测在固定带触控区域上的第一触控操作,获取第一触控操作的第一操作信息。
在本发明实施例中,智能穿戴设备中还可以包括三轴的加速度传感器。通过该加速度传感器可以感应到智能穿戴设备在三个轴中各轴对应的加速度的值。
通过感应到的各轴对应的加速度的值还可以配合用户在固定带上进行的触控操作,对控制指令的执行力度进行控制。
此种情况下的实施场景可以为,用户在体感游戏应用中进行体感游戏的操作,通过控制智能穿戴设备进行移动可以获得更加真实的运动效果。例如:上下晃动进行蹦床游戏,类似的还可以进行跨栏、滑雪、冲浪等。
402:根据加速度值以及第一操作信息,确定控制程度参数的值;
具体地,根据加速度值以及第一操作信息,从加速度值、操作信息与控制程度参数的值三者之间的对应关系中获取控制程度参数的值。
403:根据控制程度参数的值,生成控制指令;
具体地,根据控制程度参数从控制程度参数的值与控制指令的对应关系中 获取该控制程度参数的值对应的控制指令。
404:执行控制指令。
例如:在用户进行蹦床游戏时,通过对智能穿戴设备上下晃动,此时智能穿戴设备会感应到上下晃动时的加速度参数,形变感应传感器会感应到固定带的形变,通过形变以及形变的位置和方向最终得到控制指令,控制指令可以为蹦床游戏中的动作控制或者跳跃控制。相应的,根据加速度参数可以对控制指令中的动作控制或者跳跃控制的执行力度进行控制,加速度参数越大则相应的动作幅度或者跳跃幅度越大,反之则越小。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
实施例5
本发明实施例提供了一种智能穿戴设备的控制方法,参见图5。本方法实施例应用于固定带中设置有力学传感器的智能穿戴设备;在本发明实施例中,固定带中还可以包括有显示区域,可以显示用于进行文字输入的虚拟键盘。
其中,该方法包括:
501:显示区域上显示虚拟键盘的第一键盘区域。
相应的,虚拟键盘还包括第二键盘区域。第一键盘区域与第二键盘区域不同。
由于显示区域的面积较小,因此不能显示全部键位,相应的在虚拟键盘中可以包括多个键盘区域,不同的键盘区域中包括不同的键位。可以通过在固定带中的触控操作来确定界面切换指令,来切换各个键盘区域。例如:第一键盘区域显示的键位为:ASDFG;而第二键盘区域显示的键位为ZXCVB。其中,第一键盘区域与第二键盘区域仅用于区别不同的键盘区域,并不限定键盘区域的数量,全部的键盘区域可以包括键盘中的全部键位。
502:检测在固定带触控区域上的第一触控操作,获取第一触控操作的第一操作信息。
其中,第一触控操作可以为点击操作;长按操作,滑动操作等。
503:根据第一操作信息生成界面切换指令,并执行界面切换指令以在显示区域上显示第二键盘区域。
以文本输入场景为例进行说明,智能穿戴设备以智能手表为例,智能手表的表带中还设置有显示区域。用户可以将智能手表置于面前并平放,智能手表在表带中的显示区域上显示字符,通过进行滑动的触控操作,相应的控制指令为切换不同排的键位;通过进行点击的触控操作,相应的控制指令为输入字符,其中此时根据预设的表带中用户点击的区域,并根据区域与字符的对应关系确定输入的具体字符内容。其中,本实例的操作示意图如图6所示。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
实施例6
本发明实施例提供了一种智能穿戴设备的控制方法,参见图7。本方法实施例应用于固定带中设置有力学传感器的智能穿戴设备。
其中,该方法包括:
701:检测在固定带触控区域上的第一触控操作,获取第一触控操作的第一操作信息。
其中,在本发明实施例中,固定带包括第一段固定带和第二段固定带,第一操作信息包括在第一段固定带区域上的触控操作的第三操作信息,和在第二段固定带区域上的触控操作的第四操作信息。
702:根据第三操作信息和第四操作信息中的至少一个生成控制指令。
具体地,根据第三操作信息,从操作信息和控制指令的对应关系中获取该第三操作信息对应的控制指令;或者,
根据第四操作信息,从操作信息和控制指令的对应关系中获取该第四操作信息对应的控制指令;或者,
根据第三操作信息和第四操作信息,从第三操作信息、第四操作信息和控制指令三者之间的对应关系中获取该第三操作信息和第四操作信息对应的控制指令。
由于应用之间的使用方式的区别,各应用会根据自身的需要设定第三操作信息、第四操作信息与控制指令三者之间的对应关系,相应的,步骤702具体可以为:
获取显示屏触控区域上当前运行的应用程序程序标识,根据该程序标识,获取该应用程序对应的第三操作信息、第四操作信息与控制指令三者之间的对应关系;根据第三操作信息和第四操作信息,从该应用程序对应的第三操作信息、第四操作信息与控制指令三者之间的对应关系中获取第三操作信息和第四操作信息对应的控制指令。
703:执行控制指令。
以几个具体实施场景为例对本发明实施例中智能穿戴设备的控制方法进行描述:
以游戏场景为例进行说明,智能穿戴设备以智能手表为例。当前智能手表为纵向握持状态,用户在智能穿戴设备中进行运行赛车类游戏应用。用户可以一个手指在上段固定带上进行点击的触控操作,相应的控制指令为对赛车进行加速;另一个手指在下段固定带上沿固定带的长度方向或垂直于固定带的长度方向上进行滑动的触控操作,相应的控制指令为对赛车的行进方向进行控制。控制方式还可以为用户的一个手指在上段固定带上沿固定带的长度方向或垂直于固定带的长度方向上进行滑动的触控操作,相应的控制指令为控制赛车的行进方向;另一个手指在下段固定带上点击的触控操作,相应的控制指令为控制赛车进行刹车。在动作冒险类的游戏应用中,还可以横向持智能手表。此时用户可以一个手指在上段固定带上进行点击的触控操作,相应的控制指令为应用武器发起攻击操作;另一个手指在下半段上沿固定带的长度方向或垂直于固定带的长度方向上进行滑动的触控操作,相应的控制指令为控制角色的行进方向。其中,本实例的操作示意图如图8所示。
另外,当前智能手表为横向握持状态时,也可以通过用户在两个段固定带上进行扭动或晃动的触控操作造成固定带的形变,相应的控制指令为与之相对应的动作。其中,本实例的操作示意图如图9所示。
以拍照场景为例进行说明,智能穿戴设备以智能手表为例。当智能手表用于拍照或作为遥控器控制用户的手机、平板电脑等设备来进行拍照时,用户可以用两根手指同时在固定带上沿固定带的长度方向进行滑动的触控操作,相应的控制指令为调焦,如食指在上段固定带上向上/下方滑动,同时拇指在下段固 定带上向下方/上方滑动;还可以两个手指同时向远离/靠近表盘方向沿手腕圆周进行滑动的触控操作,相应的控制指令为拉近/拉远镜头;调节好焦距以及设置好镜头后,再在固定带预设的区域进行点击的触控操作,相应的控制指令为对焦或触发拍照。其中,本实例的操作示意图如图10所示。另外,上述用来调焦的方式也可以用于放大或缩小屏幕上显示的内容。
以内容选择场景为例进行说明,智能穿戴设备以智能手表为例。用户可以在固定带上进行长按的触控操作或进行滑动的触控操作,相应的控制指令为控制光标在显示屏上的移动;也可以在固定带上沿不同的方向进行滑动的触控操作,相应的控制指令为进行内容的范围选择。以文本选择为例,在上段固定带向上或向左滑动以扩大被选择文本的起始点,在下段固定带向下或向右滑动以扩大被选择文本的终止点,反之亦然。其中,本实例的操作示意图如图11所示。
其中,本发明实施例中的上段固定带和下段固定带可以为:第一段固定带和第二段固定带。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
实施例7
本发明实施例提供了一种智能穿戴设备的控制装置,应用于固定带中设置有力学传感器的智能穿戴设备,参见图12。该装置包括:
处理器1201,固定带1202;固定带1202中包括力学传感器12021;固定带上设置有固定带触控区域;
力学传感器12021,用于检测在固定带触控区域上的第一触控操作;获取第一触控操作的第一操作信息;
处理器1201,用于根据力学传感器12021获取的第一操作信息生成控制指令,并执行控制指令。
处理器1201,与存储器连接,用于读取存储器中的代码。
其中,智能穿戴设备还包括显示屏1203,显示屏上设置有显示屏触控区域;
显示屏1203用于检测在显示屏触控区域上的第二触控操作,并获取第二触控操作的第二操作信息;
处理器1201,用于根据第一操作信息和显示屏触控区域上的第二触控操作的第二操作信息,生成控制指令。
其中,第一操作信息包括触控力度值和形变程度值中的至少一种,控制指令包括控制程度参数;
处理器1201,用于根据触控力度值和形变程度值至少一种,确定控制程度参数的值,并根据控制程度参数的值,生成控制指令。
其中,智能穿戴设备还包括加速度传感器1204,加速度传感器1204用于获取智能穿戴设备的当前加速度值,控制指令包括控制程度参数;
处理器1201,用于根据加速度传感器获取的加速度值以及第一操作信息,确定控制程度参数的值,并根据控制程度参数的值,生成控制指令。
其中,第一触控操作包括用于切换界面的滑动操作,固定带1202上设置有显示区域12022,用于显示虚拟键盘的第一键盘区域;
相应的,处理器1201,用于根据第一操作信息生成界面切换指令;
显示区域12022,还用于根据处理器1201生成的界面切换指令,显示第二键盘区域,第一键盘区域与第二键盘区域不同。
其中,第一触控操作包括:拉伸操作,晃动操作和抖动操作;
拉伸操作为将固定带1202沿平行于固定带1202轴向进行拉伸的操作;
晃动操作为将固定带1202沿垂直于固定带1202平面方向进行晃动的操作;
抖动操作为将固定带1202的一端固定,且将固定带1202的另一端进行无规律抖动的操作。
其中,固定带1202包括第一段固定带和第二段固定带,第一操作信息包括在第一段固定带区域上的触控操作的第三操作信息,和在第二段固定带区域上的触控操作的第四操作信息;
相应的,处理器1201,用于根据第三操作信息和第四操作信息中的至少一个生成控制指令。
本发明实施例通过在智能穿戴设备检测用户在固定带触控区域上的第一触控操作,并获取第一触控操作的第一操作信息,根据第一操作信息生成控制指令并执行该控制指令。通过在固定带中的触控操作可以增加智能穿戴设备的控制方式,提高了智能穿戴设备的可操作性以及人机交互性,弥补了仅在表盘或者通过表冠等部位操作带来的操作方式单一,交互性弱的缺陷。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。
以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (14)

  1. 一种智能穿戴设备的控制方法,其特征在于,所述智能穿戴设备包括固定带,所述固定带上设置有固定带触控区域,所述方法包括:
    检测在所述固定带触控区域上的第一触控操作,获取所述第一触控操作的第一操作信息;
    根据所述第一操作信息生成控制指令,并执行所述控制指令。
  2. 根据权利要求1所述的方法,其特征在于,所述智能穿戴设备包括显示屏,所述显示屏上设置有显示屏触控区域;
    当检测到所述显示屏触控区域上的第二触控操作时,所述根据所述第一操作信息生成控制指令,包括:
    根据所述第一操作信息和所述第二触控操作的第二操作信息,生成所述控制指令。
  3. 根据权利要求1或2所述的方法,其特征在于,所述第一操作信息包括触控力度值和形变程度值中的至少一种,所述控制指令包括控制程度参数;
    所述根据所述第一操作信息生成控制指令,包括:
    根据所述触控力度值和所述形变程度值中的至少一种,确定所述控制程度参数的值;
    根据所述控制程度参数的值,生成所述控制指令。
  4. 根据权利要求1或2所述的方法,其特征在于,所述控制指令包括控制程度参数;
    所述根据所述第一操作信息生成控制指令,包括:
    获取所述智能穿戴设备的当前加速度值;
    根据所述加速度值以及所述第一操作信息,确定所述控制程度参数的值;
    根据所述控制程度参数的值,生成所述控制指令。
  5. 根据权利要求1或2所述的方法,其特征在于,所述第一触控操作包括用于切换界面的滑动操作,所述固定带上设置有显示区域,在所述检测在固定 带区域上的第一触控操作之前,所述方法还包括:
    在所述显示区域上显示虚拟键盘的第一键盘区域;
    所述根据所述第一操作信息生成控制指令,并执行所述控制指令,包括:
    根据所述第一操作信息生成界面切换指令,并执行所述界面切换指令以在所述显示区域上显示第二键盘区域,所述第一键盘区域与所述第二键盘区域不同。
  6. 根据权利要求1至4任一项所述的方法,其特征在于,所述第一触控操作包括:拉伸操作,晃动操作和抖动操作中至少一种;
    所述拉伸操作为将所述固定带沿平行于所述固定带轴向进行拉伸的操作;
    所述晃动操作为将所述固定带沿垂直于所述固定带平面方向进行晃动的操作;
    所述抖动操作为将所述固定带的一端固定,且将所述固定带的另一端进行无规律抖动的操作。
  7. 根据权利要求1至6任一项所述的方法,其特征在于,所述固定带包括第一段固定带和第二段固定带,所述第一操作信息包括在所述第一段固定带区域上的触控操作的第三操作信息,和在所述第二段固定带区域上的触控操作的第四操作信息;
    相应的,所述根据所述第一操作信息生成控制指令,包括:
    根据所述第三操作信息和第四操作信息中的至少一个生成控制指令。
  8. 一种智能穿戴设备,其特征在于,所述智能穿戴设备包括:处理器,固定带,所述固定带中包括力学传感器,所述固定带上设置有固定带触控区域;
    所述力学传感器,用于检测在所述固定带触控区域上的第一触控操作,获取所述第一触控操作的第一操作信息;
    所述处理器,用于根据所述力学传感器获取的所述第一操作信息生成控制指令,并执行所述控制指令。
  9. 根据权利要求8所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括显示屏,所述显示屏上设置有显示屏触控区域;
    所述显示屏用于检测在所述显示屏触控区域上的第二触控操作;
    所述处理器,用于根据所述第一操作信息和所述显示屏触控区域上的第二触控操作的所述第二操作信息,生成控制指令。
  10. 根据权利要求8或9所述的智能穿戴设备,其特征在于,所述第一操作信息包括触控力度值和形变程度值中的至少一种,所述控制指令包括控制程度参数;
    所述处理器,用于根据所述触控力度值和所述形变程度值至少一种,确定所述控制程度参数的值,并根据所述控制程度参数的值,生成所述控制指令。
  11. 根据权利要求8或9所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括加速度传感器,所述加速度传感器用于获取所述智能穿戴设备的当前加速度值,所述控制指令包括控制程度参数;
    所述处理器,用于根据所述加速度传感器获取的所述加速度值以及所述第一操作信息,确定所述控制程度参数的值,并根据所述控制程度参数的值,生成所述控制指令。
  12. 根据权利要求8或9所述的智能穿戴设备,其特征在于,所述第一触控操作包括用于切换界面的滑动操作,所述固定带上设置有显示区域,用于显示虚拟键盘的第一键盘区域;
    相应的,所述处理器,用于根据所述第一操作信息生成界面切换指令;
    所述显示区域,还用于根据所述处理器生成的所述界面切换指令显示第二键盘区域,所述第一键盘区域与所述第二键盘区域不同。
  13. 根据权利要求8至11任一项所述的智能穿戴设备,其特征在于,所述第一触控操作包括:拉伸操作,晃动操作和抖动操作中至少一种;
    所述拉伸操作为将所述固定带沿平行于所述固定带轴向进行拉伸的操作;
    所述晃动操作为将所述固定带沿垂直于所述固定带平面方向进行晃动的操作;
    所述抖动操作为将所述固定带的一端固定,且将所述固定带的另一端进行无规律抖动的操作。
  14. 根据权利要求8至13任一项所述的智能穿戴设备,其特征在于,所述固定带包括第一段固定带和第二段固定带,所述第一操作信息包括在所述第一段固定带区域上的触控操作的第三操作信息,和在所述第二段固定带区域上的触控操作的第四操作信息;
    相应的,所述处理器,用于根据所述第三操作信息和第四操作信息中的至少一个生成控制指令。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3586216A4 (en) * 2017-02-27 2020-12-30 Bálint, Géza INTELLIGENT DEVICE EQUIPPED WITH A DISPLAY DEVICE WHICH ALLOWS SIMULTANEOUS MULTIFUNCTIONAL HANDLING OF DISPLAYED INFORMATION AND / OR DATA

Families Citing this family (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102334084B1 (ko) * 2015-06-16 2021-12-03 삼성전자주식회사 전자 장치 및 그의 제어 방법
CN104978142B (zh) 2015-06-17 2018-07-31 华为技术有限公司 一种智能穿戴设备及智能穿戴设备的控制方法
CN105487707B (zh) * 2015-11-24 2019-02-15 歌尔股份有限公司 一种智能穿戴设备及其信息输入方法
CN105487800B (zh) * 2015-11-27 2019-07-12 三星电子(中国)研发中心 智能终端的输入方法和系统
CN105727551A (zh) * 2016-01-29 2016-07-06 网易(杭州)网络有限公司 一种移动终端的游戏攻击方法及装置
CN115145446B (zh) * 2016-03-25 2023-03-17 华为技术有限公司 字符输入方法、装置及终端
CN105975078B (zh) * 2016-05-11 2019-02-22 上海墨百意信息科技有限公司 用于可穿戴设备的手势识别方法及装置
CN107037947A (zh) * 2017-03-30 2017-08-11 上海斐讯数据通信技术有限公司 一种智能穿戴设备及其控制方法
CN107562205B (zh) * 2017-09-15 2021-08-13 上海展扬通信技术有限公司 一种智能终端的投影键盘及该投影键盘的操作方法
CN107754308A (zh) 2017-09-28 2018-03-06 网易(杭州)网络有限公司 信息处理方法、装置、电子设备及存储介质
CN111867449B (zh) * 2018-03-09 2022-03-29 华为技术有限公司 一种测量人体生理参数的方法和终端设备
CN109002244A (zh) * 2018-07-02 2018-12-14 努比亚技术有限公司 可穿戴设备的表带控制方法、可穿戴设备及可读存储介质
CN109144246A (zh) * 2018-07-10 2019-01-04 珠海格力电器股份有限公司 可穿戴设备、控制方法及控制装置
CN109992340A (zh) * 2019-03-15 2019-07-09 努比亚技术有限公司 一种桌面显示方法、可穿戴设备和计算机可读存储介质
CN113835605B (zh) * 2020-06-24 2024-02-13 Oppo(重庆)智能科技有限公司 表盘显示控制方法、装置、可穿戴设备以及存储介质
CN113805471A (zh) * 2021-09-03 2021-12-17 上海豪承信息技术有限公司 智能手表和智能手表控制方法
KR20230096730A (ko) 2021-12-23 2023-06-30 삼성전자주식회사 웨어러블 장치 및 그 제어 방법

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090187121A1 (en) * 2008-01-22 2009-07-23 Camntech Limited Diary and method for medical monitoring
US20100219943A1 (en) * 2009-02-27 2010-09-02 Nokia Corporation Touch Sensitive Wearable Band Apparatus and Method
CN104317394A (zh) * 2014-09-26 2015-01-28 广东欧珀移动通信有限公司 腕带式穿戴设备的控制方法、装置及腕带式穿戴设备
CN104461004A (zh) * 2014-12-12 2015-03-25 北京奇虎科技有限公司 一种可穿戴智能设备
CN104978142A (zh) * 2015-06-17 2015-10-14 华为技术有限公司 一种智能穿戴设备及智能穿戴设备的控制方法

Family Cites Families (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4042340B2 (ja) * 2000-05-17 2008-02-06 カシオ計算機株式会社 情報機器
JP5371371B2 (ja) * 2008-10-29 2013-12-18 京セラ株式会社 携帯端末および文字表示プログラム
JP5108747B2 (ja) 2008-12-26 2012-12-26 富士フイルム株式会社 情報表示装置、方法およびプログラム
CA2716677C (en) 2010-10-07 2012-09-11 Electronic Systems Software Solutions Inc. Text entry device and method
US9477320B2 (en) 2011-08-16 2016-10-25 Argotext, Inc. Input device
US8902713B2 (en) 2012-08-29 2014-12-02 Motorola Mobility Llc Wearable device with acoustic user input and method for same
CN104007832B (zh) * 2013-02-25 2017-09-01 上海触乐信息科技有限公司 连续滑行输入文本的方法、系统及设备
CN103150063A (zh) * 2013-04-09 2013-06-12 北京紫霄科技有限公司 一种基于lcd的光学多点触控设备
US8725842B1 (en) * 2013-07-11 2014-05-13 Khalid Al-Nasser Smart watch
WO2015038684A1 (en) * 2013-09-10 2015-03-19 Polyera Corporation Attachable article with signaling, split display and messaging features
KR102169952B1 (ko) * 2013-10-18 2020-10-26 엘지전자 주식회사 웨어러블 디바이스 및 그 제어 방법
JP2017501469A (ja) * 2013-10-24 2017-01-12 アップル インコーポレイテッド 手首の動きを用いたリストバンドデバイスの入力
KR20150061420A (ko) * 2013-11-27 2015-06-04 엘지전자 주식회사 스마트 워치 및 그 동작 방법
US20150153854A1 (en) 2013-12-03 2015-06-04 Lenovo (Singapore) Pte. Ltd. Extension of wearable information handling device user interface
US20150227245A1 (en) * 2014-02-10 2015-08-13 Polyera Corporation Attachable Device with Flexible Electronic Display Orientation Detection
CN104090649A (zh) 2014-05-20 2014-10-08 上海翰临电子科技有限公司 一种智能表带及其操作控制方法
US9594427B2 (en) * 2014-05-23 2017-03-14 Microsoft Technology Licensing, Llc Finger tracking
US9904254B1 (en) * 2014-09-24 2018-02-27 Andrew Jeon Hariri Customizable smart watch and housing
US9785123B2 (en) * 2014-09-26 2017-10-10 Intel Corporation Digital analog display with rotating bezel
US10055563B2 (en) * 2015-04-15 2018-08-21 Mediatek Inc. Air writing and gesture system with interactive wearable device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090187121A1 (en) * 2008-01-22 2009-07-23 Camntech Limited Diary and method for medical monitoring
US20100219943A1 (en) * 2009-02-27 2010-09-02 Nokia Corporation Touch Sensitive Wearable Band Apparatus and Method
CN104317394A (zh) * 2014-09-26 2015-01-28 广东欧珀移动通信有限公司 腕带式穿戴设备的控制方法、装置及腕带式穿戴设备
CN104461004A (zh) * 2014-12-12 2015-03-25 北京奇虎科技有限公司 一种可穿戴智能设备
CN104978142A (zh) * 2015-06-17 2015-10-14 华为技术有限公司 一种智能穿戴设备及智能穿戴设备的控制方法

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3586216A4 (en) * 2017-02-27 2020-12-30 Bálint, Géza INTELLIGENT DEVICE EQUIPPED WITH A DISPLAY DEVICE WHICH ALLOWS SIMULTANEOUS MULTIFUNCTIONAL HANDLING OF DISPLAYED INFORMATION AND / OR DATA

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