WO2021189514A1 - 一种触摸交互方法、装置、终端设备及存储介质 - Google Patents

一种触摸交互方法、装置、终端设备及存储介质 Download PDF

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Publication number
WO2021189514A1
WO2021189514A1 PCT/CN2020/082631 CN2020082631W WO2021189514A1 WO 2021189514 A1 WO2021189514 A1 WO 2021189514A1 CN 2020082631 W CN2020082631 W CN 2020082631W WO 2021189514 A1 WO2021189514 A1 WO 2021189514A1
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WO
WIPO (PCT)
Prior art keywords
touch
touch operation
confirmed
terminal device
adjustment
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
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PCT/CN2020/082631
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English (en)
French (fr)
Inventor
龚翼
王修越
张燕昕
桑成艳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
AAC Technologies Holdings Shenzhen Co Ltd
AAC Technologies Pte Ltd
Original Assignee
AAC Acoustic Technologies Shenzhen Co Ltd
AAC Technologies Pte Ltd
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Application filed by AAC Acoustic Technologies Shenzhen Co Ltd, AAC Technologies Pte Ltd filed Critical AAC Acoustic Technologies Shenzhen Co Ltd
Publication of WO2021189514A1 publication Critical patent/WO2021189514A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; 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

Definitions

  • the present invention relates to the field of computer technology, in particular to a touch interaction method, device, terminal equipment and storage medium.
  • touch screens are used in various types of electronic products, such as automobiles, airplanes, mobile phones, wearable devices, and so on.
  • the operation of the object displayed on the touch screen requires first clicking on the object to confirm, then raising the hand (finger away from the screen), and then adjusting the object on the touch screen or through buttons to obtain the adjustment result (increase or decrease) .
  • the whole process requires a lot of visual assistance, which increases the user’s eye assistance requirements. Therefore, it is particularly important to develop a touch interaction method that reduces visual aids.
  • the present invention provides a touch interaction method, device, terminal device, and storage medium, which are used to solve the technical problem of requiring a large amount of visual assistance during touch interaction in the prior art.
  • the present invention provides a touch interaction method, which is applied to a terminal device, the terminal device includes a touch display screen, and the method includes:
  • the continuous process of the first touch operation detect a second touch operation input to the touch display screen, and obtain a second position corresponding to the second touch operation based on the second touch operation ,
  • the second position is the initial touch position corresponding to the second touch operation
  • the touch position corresponding to the second touch operation is continuously detected as A third position corresponding to the second touch operation, where the third position is a touch position of the second touch operation at a detection time;
  • the terminal device is controlled to generate tactile feedback and/or auditory feedback.
  • the present invention also provides a touch interaction device, which is applied to a terminal device, the terminal device includes a touch display screen, and the device includes:
  • a display module for displaying the object to be confirmed on the touch screen
  • the touch interaction module is configured to detect a first touch operation input to the object to be confirmed, obtain a first position corresponding to the first touch operation based on the first touch operation, and During the continuous control operation, a second touch operation input to the touch display screen is detected, and a second position corresponding to the second touch operation is acquired based on the second touch operation, and the second position Is the initial touch position corresponding to the second touch operation. During the continuous process of the second touch operation, the touch position corresponding to the second touch operation is continuously detected as the touch position corresponding to the second touch operation.
  • the third position corresponding to the control operation where the third position is the touch position of the second touch operation at the detection time, which is determined according to the first position, the second position, and the third position
  • the terminal device is controlled to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed.
  • the present invention also provides a terminal device, including a memory, a processor, and a computer program stored on the memory and capable of running on the processor.
  • the processor executes the computer program when the computer program is executed. The steps of the touch interaction method according to any one of the first aspect.
  • the present invention also provides a computer-readable storage medium, including computer instructions, which when run on a computer, cause the computer to execute the steps of the touch interaction method described in any one of the first aspect.
  • the first position corresponding to the first touch operation is acquired based on the first touch operation, and the first position corresponding to the first touch operation is acquired based on the second touch operation.
  • the present invention can obtain feedback of the touch operation process without visual assistance, reduces the need for eye assistance, and improves user experience.
  • FIG. 1 is a flowchart of a touch interaction method in an embodiment
  • FIG. 2 is a flowchart of determining the adjustment speed of the touch interaction method of FIG. 1;
  • Fig. 3 is a flowchart of a touch interaction method in another embodiment
  • FIG. 4 is a flow chart of adjusting the volume by the touch interaction method of FIG. 3;
  • Fig. 5 is a flowchart of a touch interaction method in another embodiment
  • Fig. 6 is a structural block diagram of a touch interaction device in an embodiment
  • Fig. 7 is a structural block diagram of a computer device in an embodiment.
  • the present invention provides a touch interaction method, which is applied to a terminal device, and the terminal device includes a touch display screen. It can be understood that the touch interaction method of the present invention can be applied to the adjustment of the volume, and can also be applied to other application scenarios where the volume needs to be adjusted.
  • the terminal device may be an electronic device in a car, an electronic device in an airplane, or an electronic device on a ship, which is not specifically limited in this example.
  • the touch display screen can be selected from the prior art, which allows the user to input information to the terminal device only by touch operation, which will not be repeated here.
  • the touch interaction method includes:
  • the controller of the terminal device obtains the adjustment request input by the user, and displays the object to be confirmed on the touch display screen according to the adjustment request.
  • the software program or other software program of the touch interaction method of the present invention may also send an adjustment request to the controller of the terminal device, and the controller of the terminal device may set the adjustment request according to the adjustment request. The object to be confirmed is displayed on the touch screen.
  • the object to be confirmed refers to any of the controls, buttons, patterns, and symbols that can be displayed on the touch display screen, which is not specifically limited in this example.
  • the controller of the terminal device may select an industrial computer and/or PLC (Programmable Logic Controller) and/or FPGA (Field Programmable Gate Array) and/or from the prior art. Or a PC (personal computer), which is not specifically limited in this example.
  • PLC Process Control Controller
  • FPGA Field Programmable Gate Array
  • the controller of the terminal device receives a first touch signal sent by a user touch operation of the touch display screen, the first touch signal carries a touch position, and responds to the first touch.
  • Control signal to obtain a preset touch position range compare the touch position carried by the first touch signal with the preset touch position range, and when the comparison result is within the range, the first touch position range is compared.
  • a touch operation corresponding to a touch signal is taken as a first touch operation
  • a touch position carried by the first touch signal is taken as a first position corresponding to the first touch operation.
  • the first position corresponding to the first touch operation is stored in a database.
  • the controller of the terminal device receives the second touch signal sent by the user’s touch operation on the touch screen.
  • a touch signal the second touch signal carries a touch position
  • the touch operation corresponding to the second touch signal is used as a second touch operation
  • the touch position carried by the second touch signal As the second position corresponding to the second touch operation, in the process of continuously receiving the second touch operation to send the second touch signal, carry the updated second touch signal
  • the touch position of is used as the third position corresponding to the second touch operation; the third position is the touch position of the second touch operation on the touch display screen during the detection time.
  • the third position is used to characterize the touch position when the second touch operation moves on the touch display screen.
  • the numerical value of the third position obtained at different detection times may be the same or different.
  • the second position and the third position may be the same or different.
  • the first position and the second position are different.
  • the detection time refers to a current time point, so that the third position represents a real-time touch position of the second touch operation on the touch display screen.
  • the controller of the terminal device calculates the distance between the first position and the second position to obtain the first distance, and calculates the distance between the first position and the third position to obtain the first distance.
  • the second distance is to determine the adjustment speed corresponding to the object to be confirmed according to the first distance and the second distance.
  • the determining the adjustment speed corresponding to the object to be confirmed according to the first distance and the second distance includes: dividing the second distance by the first distance to obtain a distance change Ratio; obtain the detection time corresponding to the second position and the detection time corresponding to the third position; subtract the detection time corresponding to the third position from the detection time corresponding to the second position to obtain The operation duration corresponding to the third position; the distance change ratio is divided by the operation duration corresponding to the third position to obtain the adjustment speed corresponding to the object to be confirmed.
  • S110 Control the terminal device to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed.
  • the controlling the terminal device to generate tactile feedback and/or auditory feedback includes: controlling the terminal device to generate tactile feedback, or controlling the terminal device to generate auditory feedback, or controlling the terminal device to generate tactile feedback and auditory feedback.
  • the controller of the terminal device controls the terminal device to continuously generate tactile feedback and/or auditory feedback in real time according to the adjustment speed corresponding to the object to be confirmed.
  • the controller of the terminal device controls the terminal device to generate tactile feedback and/or auditory feedback at a preset time interval according to the adjustment speed corresponding to the object to be confirmed.
  • the controller of the terminal device obtains a speed feedback list, matches the adjustment speed corresponding to the object to be confirmed in the speed feedback list, and controls the terminal device to generate tactile feedback when the matching is successful And/or auditory feedback.
  • the speed feedback list includes adjustment speed and feedback type.
  • the feedback types include tactile feedback, auditory feedback, tactile feedback, and auditory feedback.
  • the tactile feedback means that the touch display screen generates vibration.
  • the auditory feedback refers to playing sound.
  • the speed feedback list also includes tactile feedback strength and auditory feedback strength.
  • the tactile feedback intensity includes the vibration intensity of the display screen.
  • the auditory feedback intensity includes sound intensity.
  • the tactile feedback is to generate a short-term vibration on the touch display screen.
  • the tactile feedback is Haptic vibration.
  • a first position corresponding to the first touch operation is acquired based on the first touch operation
  • a second position corresponding to the second touch operation is acquired based on the second touch operation.
  • the determining the adjustment speed corresponding to the object to be confirmed according to the first position, the second position, and the third position includes:
  • the controller of the terminal device calculates the distance between the first position and the second position, and uses the calculated distance as the first distance.
  • the controller of the terminal device calculates the distance between the first position and the third position, and uses the calculated distance as the second distance.
  • the controller of the terminal device subtracts the first distance from the second distance to obtain the adjustment range to be confirmed.
  • the controller of the terminal device obtains the detection time corresponding to the second position and the detection time corresponding to the third position from a database.
  • the detection time corresponding to the second position refers to the sending time of the second touch signal corresponding to the second position.
  • the detection time corresponding to the third position refers to the sending time of the second touch signal corresponding to the third position.
  • S210 Determine an operation duration corresponding to the third position according to the detection time corresponding to the second position and the detection time corresponding to the third position;
  • the controller of the terminal device subtracts the detection time corresponding to the second position from the detection time corresponding to the third position to obtain the operation duration corresponding to the third position.
  • S212 Perform speed calculation according to the adjustment range to be confirmed and the operation duration corresponding to the third position to obtain an adjustment speed corresponding to the object to be confirmed.
  • the controller of the terminal device divides the adjustment range to be confirmed by the operation duration corresponding to the third position to obtain the adjustment speed corresponding to the object to be confirmed.
  • the adjustment range to be confirmed is obtained, and the speed calculation is performed according to the adjustment range to be confirmed and the operation duration corresponding to the third position to obtain
  • the adjustment speed corresponding to the object to be confirmed makes the adjustment speed corresponding to the object to be confirmed characterize the change speed of the adjustment range to be confirmed, so that the terminal device is controlled according to the adjustment speed corresponding to the object to be confirmed.
  • the tactile feedback and/or auditory feedback can better reflect the change speed of the adjustment range of the object to be confirmed, which is beneficial for the user to accurately perform touch operations.
  • a touch interaction method is proposed, and the method includes:
  • S310 Control the terminal device to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed;
  • the controller of the terminal device detects the end of the first touch operation, based on the end of the first touch operation, the time point when the first touch operation ends is determined by the user.
  • the second touch operation carries the touch position carried in the second touch signal sent by the touch display screen as the fourth position corresponding to the second touch operation; the fourth position is the second touch
  • the control operation is at the touch position on the touch display screen at the time point when the detection time ends.
  • the fourth position is the end touch position of the second touch operation.
  • the controller of the terminal device obtains the end duration of the second touch operation and will end The duration is compared with the duration threshold.
  • the end duration is greater than the duration threshold, based on the end of the second touch operation, the second touch operation of the user will be performed at the end of the second touch operation. Controlling the touch position carried in the second touch signal sent by the touch display screen as the fourth position corresponding to the second touch operation. Therefore, it is realized that the touch operation is restarted within the duration threshold after the second touch operation ends, and the adjustment of the object to be confirmed can be continued.
  • the touch display when the touch operation is restarted within the duration threshold after the second touch operation ends, the second touch operation of the user at the time point when the second touch operation ends, the touch display
  • the touch position carried in the mobile phone may be the same or different.
  • the target adjustment range corresponding to the object to be confirmed is determined according to the distance between the first position and the second position, and the distance between the first position and the fourth position.
  • the target adjustment range corresponding to the object to be confirmed refers to a final adjustment range adjusted to the object to be confirmed.
  • This embodiment realizes that the target adjustment range corresponding to the object to be confirmed is determined according to the end of the first touch operation and the end of the second touch operation as the end condition during the process in which the first touch operation continues.
  • the target adjustment range corresponding to the object to be confirmed is the final adjustment range adjusted to the object to be confirmed, so as to realize that the adjustment of the object to be confirmed is determined according to the first touch operation and the second touch operation.
  • the final adjustment range is determined according to the end of the first touch operation and the end of the second touch operation.
  • the determining the target adjustment range corresponding to the object to be confirmed according to the first position, the second position, and the fourth position includes: The second position is calculated to obtain a third distance; the first position and the fourth position are calculated to obtain a fourth distance; according to the third distance and the fourth distance, the distance to the Describe the target adjustment range corresponding to the object to be confirmed.
  • the coordinates of the first position are (X a1 , Y a1 ), the coordinates of the second position are (X b1 , Y b1 ), and the coordinates of the fourth position are (X b2 , Y b2 ).
  • the determining the target adjustment range corresponding to the object to be confirmed according to the third distance and the fourth distance includes: subtracting the third distance from the fourth distance to obtain
  • the target adjustment range corresponding to the object to be confirmed makes the calculation method of the target adjustment range simple. It is understandable that when the target adjustment range is greater than 0, the adjustment to the object to be confirmed is increased; when the target adjustment range is less than 0, the adjustment to the object to be confirmed is reduced; when When the target adjustment range is equal to 0, the adjustment of the object to be confirmed is unchanged.
  • the determining the target adjustment range corresponding to the object to be confirmed according to the third distance and the fourth distance further includes: dividing the fourth distance by the third distance to obtain The target adjustment range corresponding to the object to be confirmed. It is understandable that when the target adjustment amplitude is greater than the preset amplitude, the adjustment to the object to be confirmed is increased; when the target adjustment amplitude is less than the preset amplitude, the adjustment to the object to be confirmed In order to reduce; when the target adjustment range is equal to the preset range, the adjustment of the object to be confirmed is not changed.
  • This embodiment adopts two solutions to determine the target adjustment range corresponding to the object to be confirmed according to the third distance and the fourth distance, thereby increasing the application scenarios of the touch interaction method of the present invention.
  • a touch interaction method is proposed, and the method includes:
  • S402 Display the object to be confirmed on the touch display screen
  • S404 Detect a first touch operation input to the object to be confirmed, and obtain a first position corresponding to the first touch operation based on the first touch operation;
  • S410 Control the terminal device to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed;
  • the amplitude and volume correspondence table is used to describe the correspondence between the adjustment amplitude and the volume.
  • the amplitude and volume correspondence table includes an adjustment amplitude and an adjustment volume value. It can be understood that each adjustment amplitude corresponds to a volume value.
  • one adjustment volume value may correspond to at least one adjustment range.
  • S420 Determine a target volume adjustment value according to the target adjustment range and the amplitude volume correspondence table
  • the adjustment volume value in the amplitude and volume correspondence table is an adjustment value based on a default volume value
  • a matching search is performed in the amplitude and volume correspondence table according to the target adjustment amplitude, and the found adjustment is matched
  • the adjustment volume value corresponding to the amplitude is added to the default volume value to obtain the target volume adjustment value. For example, when the adjustment volume value corresponding to the found adjustment range is greater than 0, the adjustment volume value is added to the default volume value to obtain the target volume adjustment value; when the adjustment volume value corresponding to the found adjustment range is less than 0, Then subtract the default volume value from the adjusted volume value to obtain the target volume adjustment value.
  • the adjustment volume value in the amplitude volume correspondence table is the total volume value, then a matching search is performed in the amplitude volume correspondence table according to the target adjustment amplitude, and the adjustment volume corresponding to the found adjustment amplitude is matched The value is used as the target volume adjustment value.
  • the terminal device is controlled to adjust the volume according to the target volume adjustment value.
  • the object to be confirmed refers to a volume button.
  • This embodiment realizes the adjustment of the volume according to the target adjustment range, so that the touch interaction method of the present invention is suitable for application scenarios that need to adjust the volume through a touch operation on the touch screen, and in the moving process of the second touch operation Tactile feedback and/or auditory feedback are generated, thereby further enabling the user to obtain feedback of the touch operation process without visual assistance, reducing the need for assisting eyes of the user, and improving the user experience of the user of the touch interaction method.
  • the controlling the terminal device to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed includes: determining the target according to the adjustment speed corresponding to the object to be confirmed Vibration intensity; determine the corresponding vibration signal according to the target vibration intensity; control the terminal device to generate tactile feedback according to the vibration signal.
  • a speed vibration correspondence table is obtained; the adjustment speed corresponding to the object to be confirmed is searched and matched in the speed vibration correspondence table, and the matching result is used as the target vibration intensity.
  • the target vibration intensity is a vibration intensity required for the touch display screen of the terminal device to vibrate.
  • the corresponding vibration signal is different if the value of the target vibration intensity is different.
  • the target vibration intensity is determined according to the adjustment speed corresponding to the object to be confirmed, thereby achieving different adjustment speeds to control the terminal device to generate different intensities of tactile feedback, so that the user can obtain the adjustment range of the touch operation.
  • the feedback of the degree of influence simplifies the user's adjustment of the object to be confirmed, and further improves the user experience of the user of the touch interaction method.
  • the determining the target vibration intensity according to the adjustment speed corresponding to the object to be confirmed includes: determining the target vibration intensity according to the adjustment speed corresponding to the object to be confirmed according to a proportional relationship.
  • the first adjustment speed is greater than the second adjustment speed
  • the target vibration intensity corresponding to the first adjustment speed is greater than the target vibration intensity corresponding to the second adjustment speed
  • the target vibration intensity is determined by a proportional relationship, and the proportional relationship conforms to the user's operating habits, thereby further improving the user experience of the user of the touch interaction method.
  • the controlling the terminal device to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed further includes: determining according to the adjustment speed corresponding to the object to be confirmed Target sound intensity; determine the corresponding sound signal according to the target sound intensity; control the terminal device to generate auditory feedback according to the sound signal.
  • a speed sound correspondence table is obtained; the adjustment speed corresponding to the object to be confirmed is searched and matched in the speed sound correspondence table, and the matching result is used as the target sound intensity.
  • the target sound intensity is the sound intensity that needs to be played by the terminal device.
  • the target sound intensity is determined according to the adjustment speed corresponding to the object to be confirmed, thereby achieving different adjustment speeds to control the terminal device to generate different intensities of auditory feedback, so that the user can obtain the adjustment range of the touch operation.
  • the feedback of the degree of influence simplifies the user's adjustment of the object to be confirmed, and further improves the user experience of the user of the touch interaction method.
  • a touch interaction method is also proposed, and the method includes:
  • S502 Display the object to be confirmed on the touch display screen
  • the controller of the terminal device receives a first touch signal sent by a user touch operation of the touch display screen, and the first touch signal carries a touch position, and obtains a preset touch position Range, in response to the first touch signal, the touch position carried by the first touch signal is compared with the preset touch position range, and when the comparison result is within the range, the first touch position is compared A touch operation corresponding to a touch signal is used as a first touch operation, a first initial vibration signal is determined based on the first touch operation, and the terminal device is controlled to generate tactile feedback according to the first initial vibration signal, and all The touch position carried by the first touch signal is used as the first position corresponding to the first touch operation.
  • the first initial vibration signal is a default vibration signal.
  • the controller of the terminal device receives the second touch signal sent by the user’s touch operation on the touch screen.
  • a touch signal the second touch signal carries a touch position
  • a touch operation corresponding to the second touch signal is used as a second touch operation
  • a second initial vibration is determined based on the second touch operation Signal
  • control the terminal device to generate tactile feedback according to the second initial vibration signal, use the touch position carried by the second touch signal as the second position corresponding to the second touch operation, and continue to receive
  • the second initial vibration signal is a default vibration signal.
  • S510 Control the terminal device to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed.
  • tactile feedback is generated for both the first touch operation and the initial touch operation of the second touch operation, and tactile feedback and/or auditory feedback are generated for the movement process of the second touch operation, thereby further enabling the user
  • the feedback of the touch operation process can be obtained without visual assistance, which further reduces the need for assistance of the user's eyes, and further improves the user experience of the user of the touch interaction method.
  • a touch interaction device is provided, which is applied to a terminal device, the terminal device includes a touch display screen, and the device includes:
  • the display module 602 is configured to display the object to be confirmed on the touch display screen
  • the touch interaction module 604 is configured to detect a first touch operation input to the object to be confirmed, and obtain a first position corresponding to the first touch operation based on the first touch operation.
  • a second touch operation input to the touch display screen is detected, and a second position corresponding to the second touch operation is acquired based on the second touch operation.
  • the position is the initial touch position corresponding to the second touch operation.
  • the touch position corresponding to the second touch operation is continuously detected as the touch position corresponding to the second touch operation.
  • the third position corresponding to the touch operation where the third position is the touch position of the second touch operation at the detection time, according to the first position, the second position, and the third position,
  • the adjustment speed corresponding to the object to be confirmed is determined, and the terminal device is controlled to generate tactile feedback and/or auditory feedback according to the adjustment speed corresponding to the object to be confirmed.
  • a first position corresponding to the first touch operation is acquired based on the first touch operation
  • a second position corresponding to the second touch operation is acquired based on the second touch operation.
  • the device further includes: an adjustment range confirmation module 606;
  • the adjustment range confirmation module 606 is configured to, when the end of the first touch operation is detected, obtain the difference between the end of the first touch operation and the end of the second touch operation based on the end of the first touch operation.
  • the touch position corresponding to the touch operation is taken as the fourth position corresponding to the second touch operation, and the fourth position is the touch position of the second touch operation at the end of the detection time.
  • the touch position corresponding to the second touch operation at the end of the second touch operation is acquired as the fourth position corresponding to the second touch operation, according to the first The position, the second position, and the fourth position determine the target adjustment range corresponding to the object to be confirmed.
  • the device further includes: a volume adjustment module 608;
  • the volume adjustment module 608 is configured to obtain an amplitude volume correspondence table, determine a target volume adjustment value according to the target adjustment amplitude and the amplitude volume correspondence table, and adjust the volume according to the target volume adjustment value.
  • Fig. 7 shows an internal structure diagram of a computer device in an embodiment.
  • the computer device may specifically be a server or a terminal.
  • the computer device includes a processor, a memory, and a network interface connected through a system bus.
  • the memory includes a non-volatile storage medium and an internal memory.
  • the non-volatile storage medium of the computer device stores an operating system, and may also store a computer program.
  • the processor can realize the touch interaction method.
  • a computer program may also be stored in the internal memory, and when the computer program is executed by the processor, the processor can execute the touch interaction method.
  • FIG. 7 is only a block diagram of a part of the structure related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied.
  • the specific computer device may Including more or fewer components than shown in FIG. 7, or combining some components, or having a different component arrangement.
  • the touch interaction method provided by the present application may be implemented in the form of a computer program, and the computer program may run on the computer device as shown in FIG. 7.
  • the memory of the computer device can store various program modules that make up the touch interaction device. For example, the display module 602, the touch interaction module 604, the adjustment range confirmation module 606, the volume adjustment module 608, and so on.
  • a terminal device including a memory, a processor, and a computer program stored on the memory and running on the processor.
  • the implementation is as follows Method steps: display the object to be confirmed on the touch display screen; detect a first touch operation input to the object to be confirmed, and obtain a first touch operation corresponding to the first touch operation based on the first touch operation A position; during the continuous process of the first touch operation, detect a second touch operation input to the touch display screen, and obtain the corresponding second touch operation based on the second touch operation
  • the second position, the second position is the initial touch position corresponding to the second touch operation, and during the continuous process of the second touch operation, the touch corresponding to the second touch operation is continuously detected
  • the control position is taken as the third position corresponding to the second touch operation, and the third position is the touch position of the second touch operation at the detection time; according to the first position, the second The position and the third position determine the adjustment speed corresponding to the object to be confirmed; according to the adjustment speed corresponding to the object
  • a first position corresponding to the first touch operation is acquired based on the first touch operation
  • a second position corresponding to the second touch operation is acquired based on the second touch operation.
  • a computer-readable storage medium which includes computer instructions, when the computer instructions are executed on the computer, the computer executes the following method steps: displaying the pending confirmation on the touch screen Object; detecting a first touch operation input for the object to be confirmed, and obtaining a first position corresponding to the first touch operation based on the first touch operation; while the first touch operation continues In the process, a second touch operation input to the touch display screen is detected, and a second position corresponding to the second touch operation is acquired based on the second touch operation, where the second position is the first The initial touch position corresponding to the second touch operation.
  • the touch position corresponding to the second touch operation is continuously detected as the touch position corresponding to the second touch operation.
  • the third position, the third position is the touch position of the second touch operation at the detection time; according to the first position, the second position, and the third position, it is determined to be the same as the waiting position. Confirm the adjustment speed corresponding to the object; according to the adjustment speed corresponding to the object to be confirmed, control the terminal device to generate tactile feedback and/or auditory feedback.
  • a first position corresponding to the first touch operation is acquired based on the first touch operation
  • a second position corresponding to the second touch operation is acquired based on the second touch operation.
  • a touch interaction method a touch interaction device, a terminal device, and a computer-readable storage medium belong to a general inventive concept, a touch interaction method, and a touch interaction device.
  • the contents in the embodiments of a terminal device and a computer-readable storage medium are mutually applicable.
  • Non-volatile memory may include read only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory.
  • Volatile memory may include random access memory (RAM) or external cache memory.
  • RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous chain Channel (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.
  • SRAM static RAM
  • DRAM dynamic RAM
  • SDRAM synchronous DRAM
  • DDRSDRAM double data rate SDRAM
  • ESDRAM enhanced SDRAM
  • SLDRAM synchronous chain Channel
  • memory bus Radbus direct RAM
  • RDRAM direct memory bus dynamic RAM
  • RDRAM memory bus dynamic RAM

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Abstract

本发明实施例公开了一种触摸交互方法、装置、终端设备及存储介质。所述方法包括:在触摸显示屏上显示待确认对象;检测针对待确认对象输入的第一触控操作,基于第一触控操作获取与第一触控操作对应的第一位置;在第一触控操作持续的过程中,检测针对触摸显示屏输入的第二触控操作,基于第二触控操作获取与第二触控操作对应的第二位置,在第二触控操作持续的过程中,持续检测与第二触控操作对应的触控位置作为与第二触控操作对应的第三位置;根据第一位置、第二位置及第三位置,确定与待确认对象对应的调节速度;根据与待确认对象对应的调节速度,控制终端设备产生触觉反馈和/或听觉反馈。本发明减少了对眼睛的辅助需求,提高了用户体验。

Description

一种触摸交互方法、装置、终端设备及存储介质 【技术领域】
本发明涉及计算机技术领域,尤其涉及一种触摸交互方法、装置、终端设备及存储介质。
【背景技术】
随着技术的发展,触摸显示屏应用于各种类型的电子产品,比如,汽车、飞机、手机、穿戴设备等。现有技术中对触摸显示屏显示的对象的操作,需要先点击对象进行确认,再抬手(手指离开屏幕),然后再在触摸显示屏上或者通过按钮调节对象得到调节结果(增加或者减少),整个过程需要大量的视觉辅助,增加了用户眼睛的辅助需求。因此,开发一种减少视觉辅助的触摸交互方法显得尤为重要。
【发明内容】
有鉴于此,本发明提供了一种触摸交互方法、装置、终端设备及存储介质,用于解决现有技术中触摸交互时需要大量视觉辅助的技术问题。
本发明实施例的具体技术方案为:
第一方面,本发明提出了一种触摸交互方法,应用于终端设备,所述终端设备包括触摸显示屏,所述方法包括:
在所述触摸显示屏上显示待确认对象;
检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;
在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;
根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;
根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
第二方面,本发明还提出了一种触摸交互装置,应用于终端设备,所述终端设备包括触摸显示屏,所述装置包括:
显示模块,用于在所述触摸显示屏上显示待确认对象;
触摸交互模块,用于检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置,在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置,根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
第三方面,本发明还提出了一种终端设备,包括存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现第一方面任一项所述的触摸交互方法的步骤。
第四方面,本发明还提出了一种计算机可读存储介质,包括计算机指令,当所述计算机指令在计算机上运行时,使得计算机执行第一方面任一项所述的触摸交互方法的步骤。
实施本发明实施例,将具有如下有益效果:
采用了上述一种触摸交互方法、装置、终端设备及存储介质之后,通过基于所述第一触控操作获取与所述第一触控操作对应的第一位置,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,从而实现了对触控操作过程的进行触觉反馈和/或听觉反馈,使使用者不需视觉辅 助即可得到触控操作过程的反馈,减少了对使用者眼睛的辅助需求,提高了触摸交互方法的使用者的用户体验。因此,本发明不需视觉辅助即可得到触控操作过程的反馈,减少了对眼睛的辅助需求,提高了用户体验。
【附图说明】
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术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。其中:
图1为一个实施例中触摸交互方法的流程图;
图2为图1的触摸交互方法的确定调节速度的流程图;
图3为另一个实施例中触摸交互方法的流程图;
图4为图3的触摸交互方法对音量进行调节的流程图;
图5为另一个实施例中触摸交互方法的流程图;
图6为一个实施例中触摸交互装置的结构框图;
图7为一个实施例中计算机设备的结构框图。
【具体实施方式】
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明提出了一种触摸交互方法,应用于终端设备,所述终端设备包括触摸显示屏。可以理解的是,本发明的触摸交互方法可以应用于音量的大小的调节,也可以应用于其他需要调节大小的应用场景。
所述终端设备可以是汽车内的电子设备、飞机内的电子设备、轮船上的电子设备,在此举例不做具体限定。
所述触摸显示屏可以从现有技术中选择可以让使用者只要触控操作就能实现向所述终端设备输入信息的显示屏,在此不做赘述。
如图1所示,在一个实施例中,所述触摸交互方法包括:
S102、在所述触摸显示屏上显示待确认对象;
其中,所述终端设备的控制器获取使用者输入的调节请求,根据所述调节请求在所述触摸显示屏上显示待确认对象。在另一个实施例中,也可以由本发明的所述触摸交互方法的软件程序或者其他软件程序向所述终端设备的控制器发送调节请求,所述终端设备的控制器根据所述调节请求在所述触摸显示屏上显示待确认对象。
所述待确认对象是指所述触摸显示屏可以显示的控件、按钮、图案、符号中的任一种,在此举例不做具体限定。
所述终端设备的控制器可以从现有技术中选择工控机和/或PLC(可编程逻辑控制器,Programmable Logic Controller)和/或FPGA(现场可编程逻辑门阵列,Field Programmable Gate Array)和/或PC(个人计算机),在此举例不作具体限定。
S104、检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;
具体而言,所述终端设备的控制器接收使用者触控操作所述触摸显示屏发送的第一触控信号,所述第一触控信号中携带有触控位置,响应所述第一触控信号,获取预设触控位置范围,将所述第一触控信号携带的触控位置与所述预设触控位置范围进行对比,当对比结果为在范围内时,则将所述第一触控信号对应的触控操作作为第一触控操作,将所述第一触控信号携带的触控位置作为与所述第一触控操作对应的第一位置。
可选的,将与所述第一触控操作对应的第一位置存储在数据库中。
S106、在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;
具体而言,所述终端设备的控制器在持续接收到所述第一触控操作发送的所述第一触控信号的过程中,接收使用者触控操作所述触摸显示屏发送的第二触控信号,所述第二触控信号携带有触控位置,将所述第二触控信号对应的触控操作 作为第二触控操作,将所述第二触控信号携带的触控位置作为与所述第二触控操作对应的第二位置,在持续接收到所述第二触控操作发送所述第二触控信号的过程中,将更新后的所述第二触控信号携带的触控位置作为与所述第二触控操作对应的第三位置;所述第三位置为所述第二触控操作在检测时间下在所述触摸显示屏上的触控位置。
可以理解的是,所述第三位置用于表征所述第二触控操作在所述触摸显示屏上移动时的触控位置。
可以理解的是,不同的所述检测时间得到的所述第三位置的数值可以相同,也可以不相同。
可以理解的是,所述第二位置与所述第三位置可以相同,也可以不相同。
可选的,所述第一位置和所述第二位置不相同。
可选的,所述检测时间是指当前时间点,从而使所述第三位置表征的是所述第二触控操作在所述触摸显示屏上的实时触控位置。
S108、根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;
具体而言,所述终端设备的控制器对所述第一位置和所述第二位置进行距离计算,得到第一距离,对所述第一位置和所述第三位置进行距离计算,得到第二距离,根据所述第一距离和所述第二距离,确定与所述待确认对象对应的调节速度。
可选的,所述根据所述第一距离和所述第二距离,确定与所述待确认对象对应的调节速度,包括:将所述第二距离除以所述第一距离,得到距离变化比例;获取与所述第二位置对应的检测时间、与所述第三位置对应的检测时间;将与所述第三位置对应的检测时间减去与所述第二位置对应的检测时间,得到与所述第三位置对应的操作时长;将所述距离变化比例除以与所述第三位置对应的操作时长,得到与所述待确认对象对应的调节速度。
S110、根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
所述控制所述终端设备产生触觉反馈和/或听觉反馈,包括:控制所述终端设备产生触觉反馈,或者控制所述终端设备产生听觉反馈,或者控制所述终端设备产生触觉反馈和听觉反馈。
可选的,所述终端设备的控制器根据与所述待确认对象对应的调节速度,控制所述终端设备持续实时产生触觉反馈和/或听觉反馈。
可选的,所述终端设备的控制器根据与所述待确认对象对应的调节速度,控制所述终端设备按预设时间间隔产生触觉反馈和/或听觉反馈。
可选的,所述终端设备的控制器获取速度反馈列表,将与所述待确认对象对应的调节速度在所述速度反馈列表进行匹配查找,当匹配成功时则控制所述终端设备产生触觉反馈和/或听觉反馈。速度反馈列表包括调节速度、反馈类型。
所述反馈类型包括触觉反馈、听觉反馈、触觉反馈和听觉反馈。
所述触觉反馈是指所述触摸显示屏产生振动。
所述听觉反馈是指播放声音。
可选的,速度反馈列表还包括触觉反馈强度、听觉反馈强度。
所述触觉反馈强度包括显示屏振动强度。
所述听觉反馈强度包括声音强度。
可选的,所述触觉反馈是在所述触摸显示屏产生一个短时间的振动。
可选的,所述触觉反馈是Haptic振动。
本实施例通过基于所述第一触控操作获取与所述第一触控操作对应的第一位置,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,从而实现了对触控操作过程的进行触觉反馈和/或听觉反馈,使使用者不需视觉辅助即可得到触控操作过程的反馈,减少了对使用者眼睛的辅助需求,提高了触摸交互方法的使用者的用户体验。
如图2所示,在一个实施例中,所述根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,包括:
S202、对所述第一位置和所述第二位置进行距离计算,得到第一距离;
具体而言,所述终端设备的控制器计算所述第一位置和所述第二位置之间的距离,将计算得到的距离作为所述第一距离。
S204、对所述第一位置和所述第三位置进行距离计算,得到第二距离;
具体而言,所述终端设备的控制器计算所述第一位置和所述第三位置之间的 距离,将计算得到的距离作为所述第二距离。
S206、计算所述第一距离与所述第二距离的差值,得到待确认调节幅度;
具体而言,所述终端设备的控制器将所述第二距离减去所述第一距离,得到待确认调节幅度。
S208、获取与所述第二位置对应的检测时间、与所述第三位置对应的检测时间;
具体而言,所述终端设备的控制器从数据库中获取与所述第二位置对应的检测时间、与所述第三位置对应的检测时间。
所述与所述第二位置对应的检测时间是指所述第二位置对应的所述第二触控信号的发送时间。
所述与所述第三位置对应的检测时间是指所述第三位置对应的所述第二触控信号的发送时间。
S210、根据与所述第二位置对应的检测时间、与所述第三位置对应的检测时间,确定与所述第三位置对应的操作时长;
具体而言,所述终端设备的控制器将与所述第三位置对应的检测时间减去与所述第二位置对应的检测时间,得到与所述第三位置对应的操作时长。
S212、根据所述待确认调节幅度、与所述第三位置对应的操作时长进行速度计算,得到与所述待确认对象对应的调节速度。
具体而言,所述终端设备的控制器将所述待确认调节幅度除以与所述第三位置对应的操作时长,得到与所述待确认对象对应的调节速度。
本实施例通过计算所述第一距离与所述第二距离的差值,得到待确认调节幅度,根据所述待确认调节幅度、与所述第三位置对应的操作时长进行速度计算,得到与所述待确认对象对应的调节速度,使与所述待确认对象对应的调节速度表征了待确认调节幅度的变化速度,从而使根据与所述待确认对象对应的调节速度控制所述终端设备产生的触觉反馈和/或听觉反馈能更好的反映所述待确认对象的调节幅度的变化速度,有利于使用者准确的进行触控操作。
如图3所示,在一个实施例中,提出了一种触摸交互方法,所述方法包括:
S302、在所述触摸显示屏上显示待确认对象;
S304、检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;
S306、在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;
S308、根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;
S310、根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈;
S312、当检测到所述第一触控操作结束时,基于所述第一触控操作的结束,获取在所述第一触控操作结束时与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第四位置,所述第四位置为所述第二触控操作在所述检测时间结束时的触控位置;
具体而言,所述终端设备的控制器检测到所述第一触控操作结束时,基于所述第一触控操作的结束,将所述第一触控操作结束的时间点使用者的所述第二触控操作所述触摸显示屏发送的第二触控信号中携带的触控位置作为与所述第二触控操作对应的第四位置;所述第四位置为所述第二触控操作在检测时间结束的时间点在所述触摸显示屏上的触控位置。
可以理解的是,所述第四位置是所述第二触控操作的结束触控位置。
S314、当在所述第一触控操作持续的过程中检测到所述第二触控操作结束时,获取所述第二触控操作的结束时长,当所述结束时长大于时长阈值时,则基于所述第二触控操作的结束,获取在所述第二触控操作结束时与所述第二触控操作的触控位置作为与所述第二触控操作对应的第四位置;
具体而言,当在所述第一触控操作持续的过程中检测到所述第二触控操作结束时,所述终端设备的控制器获取所述第二触控操作的结束时长,将结束时长与时长阈值进行对比,当所述结束时长大于时长阈值时,则基于所述第二触控操作的结束,将在所述第二触控操作结束的时间点使用者的所述第二触控操作所述触摸显示屏发送的第二触控信号中携带的触控位置作为与所述第二触控操作对应的第四位置。从而实现了所述第二触控操作结束后在时长阈值内重新开始触控操 作,可以继续对所述待确认对象进行调节。
可选的,在所述第二触控操作结束后在时长阈值内重新开始触控操作时,所述第二触控操作结束的时间点使用者的所述第二触控操作所述触摸显示屏发送的第二触控信号中携带的触控位置,和所述第二触控操作重新开始的时间点使用者的所述第二触控操作所述触摸显示屏发送的第二触控信号中携带的触控位置,可以相同,也可以不相同。
S316、根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度。
具体而言,根据所述第一位置与所述第二位置之间的距离、所述第一位置与所述第四位置之间的距离,确定与所述待确认对象对应的目标调节幅度。
所述与所述待确认对象对应的目标调节幅度是指对所述待确认对象调节的最终调节幅度。
本实施例实现了根据所述第一触控操作结束、所述第一触控操作持续的过程中所述第二触控操作结束作为结束条件,确定与所述待确认对象对应的目标调节幅度,与所述待确认对象对应的目标调节幅度是对所述待确认对象调节的最终调节幅度,从而实现了根据第一触控操作和第二触控操作确定了对所述待确认对象调节的最终调节幅度。
在一个实施例中,所述根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度,包括:对所述第一位置和所述第二位置进行距离计算,得到第三距离;对所述第一位置和所述第四位置进行距离计算,得到第四距离;根据所述第三距离和所述第四距离,确定与所述待确认对象对应的目标调节幅度。
第三距离D3和第四距离D4的计算公式如下:
Figure PCTCN2020082631-appb-000001
Figure PCTCN2020082631-appb-000002
第一位置的坐标为(X a1,Y a1),第二位置的坐标为(X b1,Y b1),第四位置的坐标为(X b2,Y b2)。
可选的,所述根据所述第三距离和所述第四距离,确定与所述待确认对象对应的目标调节幅度,包括:将所述第四距离减去所述第三距离,得到与所述待确认对象对应的目标调节幅度,从而使得到目标调节幅度的计算方法简单。可以理 解的是,当所述目标调节幅度大于0时,则对所述待确认对象的调节为增加;当所述目标调节幅度小于0时,则对所述待确认对象的调节为减少;当所述目标调节幅度等于0时,则对所述待确认对象的调节为不变更。
可选的,所述根据所述第三距离和所述第四距离,确定与所述待确认对象对应的目标调节幅度,还包括:将所述第四距离除以所述第三距离,得到与所述待确认对象对应的目标调节幅度。可以理解的是,当所述目标调节幅度大于预设幅度时,则对所述待确认对象的调节为增加;当所述目标调节幅度小于预设幅度时,则对所述待确认对象的调节为减少;当所述目标调节幅度等于预设幅度时,则对所述待确认对象的调节为不变更。
本实施例采用两种方案实现了根据所述第三距离和所述第四距离,确定与所述待确认对象对应的目标调节幅度,从而增加了本发明的触摸交互方法的应用场景。
如图4所示,在一个实施例中,在一个实施例中,提出了一种触摸交互方法,所述方法包括:
S402、在所述触摸显示屏上显示待确认对象;
S404、检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;
S406、在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;
S408、根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;
S410、根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈;
S412、当检测到所述第一触控操作结束时,基于所述第一触控操作的结束,获取在所述第一触控操作结束时与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第四位置,所述第四位置为所述第二触控操作在所述检测 时间结束时的触控位置;
S414、当在所述第一触控操作持续的过程中检测到所述第二触控操作结束时,获取所述第二触控操作的结束时长,当所述结束时长大于时长阈值时,则基于所述第二触控操作的结束,获取在所述第二触控操作结束时与所述第二触控操作的触控位置作为与所述第二触控操作对应的第四位置;
S416、根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度;
S418、获取幅度音量对应表;
所述幅度音量对应表用于描述调节幅度与音量之间的对应关系。
所述幅度音量对应表包括调节幅度、调节音量值,可以理解的是每个调节幅度对应一个音量值。
可选的,一个调节音量值可以对应至少一个调节幅度。
S420、根据所述目标调节幅度、所述幅度音量对应表,确定目标音量调节值;
可选的,当所述幅度音量对应表中的调节音量值是基于默认音量值的调节值时,根据所述目标调节幅度在所述幅度音量对应表中进行匹配查找,将匹配查找到的调节幅度对应的调节音量值与默认音量值相加,得到目标音量调节值。比如,当查找到的调节幅度对应的调节音量值大于0时,则将调节音量值与默认音量值相加,得到目标音量调节值;当查找到的调节幅度对应的调节音量值小于0时,则将调节音量值减去默认音量值,得到目标音量调节值。
可选的,所述幅度音量对应表中的调节音量值是音量总值,则根据所述目标调节幅度在所述幅度音量对应表中进行匹配查找,将匹配查找到的调节幅度对应的调节音量值作为目标音量调节值。
S422、根据所述目标音量调节值对音量进行调节。
具体而言,根据所述目标音量调节值控制所述终端设备调整音量。
可以理解的是,当根据所述目标音量调节值对音量进行调节时,所述待确认对象是指音量按钮。
本实施例根据目标调节幅度实现了对音量的调节,从而使本发明的触摸交互方法适用于需要通过在触摸显示屏触控操作调节音量的应用场景,而且在对第二触控操作的移动过程产生触觉反馈和/或听觉反馈,从而进一步使使用者不需视觉辅助即可得到触控操作过程的反馈,减少了对使用者眼睛的辅助需求,提高了触 摸交互方法的使用者的用户体验。
在一个实施例中,所述根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,包括:根据与所述待确认对象对应的调节速度,确定目标振动强度;根据所述目标振动强度,确定对应的振动信号;根据所述振动信号控制所述终端设备产生触觉反馈。
具体而言,获取速度振动对应表;将与所述待确认对象对应的调节速度在所述速度振动对应表中进行查找匹配,将匹配结果作为所述目标振动强度。
所述目标振动强度是需要所述终端设备的所述触摸显示屏振动的振动强度。
可以理解的是,所述目标振动强度的数值不同,对应的振动信号不同。
本实施例通过根据与所述待确认对象对应的调节速度,确定目标振动强度,从而实现了不同的调节速度控制所述终端设备产生触觉反馈的强度不同,使使用者得到触控操作对调节幅度影响程度的反馈,简化了使用者对所述待确认对象的调节,进一步提高了触摸交互方法的使用者的用户体验。
在一个实施例中,所述根据与所述待确认对象对应的调节速度,确定目标振动强度,包括:根据与所述待确认对象对应的调节速度按照正比关系,确定所述目标振动强度。
具体而言,第一调节速度大于第二调节速度,与第一调节速度对应的所述目标振动强度大于与第二调节速度对应的所述目标振动强度。
本实施例通过正比关系确定所述目标振动强度,正比关系符合使用者的操作习惯,从而进一步提高了触摸交互方法的使用者的用户体验。
在一个实施例中,所述根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,还包括:根据与所述待确认对象对应的调节速度,确定目标声音强度;根据所述目标声音强度,确定对应的声音信号;根据所述声音信号控制所述终端设备产生听觉反馈。
具体而言,获取速度声音对应表;将与所述待确认对象对应的调节速度在所述速度声音对应表中进行查找匹配,将匹配结果作为所述目标声音强度。
所述目标声音强度是需要所述终端设备播放的声音强度。
可以理解的是,所述目标声音强度的数值不同,对应的声音信号不同。
本实施例通过根据与所述待确认对象对应的调节速度,确定目标声音强度,从而实现了不同的调节速度控制所述终端设备产生听觉反馈的强度不同,使使用 者得到触控操作对调节幅度影响程度的反馈,简化了使用者对所述待确认对象的调节,进一步提高了触摸交互方法的使用者的用户体验。
如图5所示,在一个实施例中,还提出了一种触摸交互方法,所述方法包括:
S502、在所述触摸显示屏上显示待确认对象;
S504、检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作确定第一初始振动信号,根据所述第一初始振动信号控制所述终端设备产生触觉反馈,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;
具体而言,所述终端设备的控制器接收使用者触控操作所述触摸显示屏发送的第一触控信号,所述第一触控信号中携带有触控位置,获取预设触控位置范围,响应所述第一触控信号,根据所述第一触控信号携带的触控位置与所述预设触控位置范围进行对比,当对比结果为在范围内时,则将所述第一触控信号对应的触控操作作为第一触控操作,基于所述第一触控操作确定第一初始振动信号,根据所述第一初始振动信号控制所述终端设备产生触觉反馈,将所述第一触控信号携带的触控位置作为与所述第一触控操作对应的第一位置。
可选的,第一初始振动信号是一个默认的振动信号。
S506、在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作确定第二初始振动信号,根据所述第二初始振动信号控制所述终端设备产生触觉反馈,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;
具体而言,所述终端设备的控制器在持续接收到所述第一触控操作发送的所述第一触控信号的过程中,接收使用者触控操作所述触摸显示屏发送的第二触控信号,所述第二触控信号携带有触控位置,将所述第二触控信号对应的触控操作作为第二触控操作,基于所述第二触控操作确定第二初始振动信号,根据所述第二初始振动信号控制所述终端设备产生触觉反馈,将所述第二触控信号携带的触控位置作为与所述第二触控操作对应的第二位置,在持续接收到所述第二触控操作发送所述第二触控信号的过程中,将更新后的所述第二触控信号携带的触控位置作为与所述第二触控操作对应的第三位置。
可选的,第二初始振动信号是一个默认的振动信号。
S508、根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;
S510、根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
本实施例实现了对第一触控操作、第二触控操作的初始触控操作都产生触觉反馈,对第二触控操作的移动过程产生触觉反馈和/或听觉反馈,从而进一步使使用者不需视觉辅助即可得到触控操作过程的反馈,进一步减少了对使用者眼睛的辅助需求,进一步提高了触摸交互方法的使用者的用户体验。
如图6所示,在一个实施例中,提出了一种触摸交互装置,应用于终端设备,所述终端设备包括触摸显示屏,所述装置包括:
显示模块602,用于在所述触摸显示屏上显示待确认对象;
触摸交互模块604,用于检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置,在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置,根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
本实施例通过基于所述第一触控操作获取与所述第一触控操作对应的第一位置,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,从而实现了对触控操作过程的进行触觉反馈和/或听觉反馈,使使用者不需视觉辅助即可得到触控操作过程的反馈,减少了对使用者眼睛的辅助需求,提高了触摸交互装置的使用者的用户体验。
在一个实施例中,所述装置还包括:调节幅度确认模块606;
所述调节幅度确认模块606,用于当检测到所述第一触控操作结束时,基于所述第一触控操作的结束,获取在所述第一触控操作结束时与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第四位置,所述第四位置为所述第二触控操作在所述检测时间结束时的触控位置,当在所述第一触控操作持续的过程中检测到所述第二触控操作结束时,获取所述第二触控操作的结束时长,当所述结束时长大于时长阈值时,则基于所述第二触控操作的结束,获取在所述第二触控操作结束时与所述第二触控操作的触控位置作为与所述第二触控操作对应的第四位置,根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度。
在一个实施例中,所述装置还包括:音量调节模块608;
所述音量调节模块608,用于获取幅度音量对应表,根据所述目标调节幅度、所述幅度音量对应表,确定目标音量调节值,根据所述目标音量调节值对音量进行调节。
图7示出了一个实施例中计算机设备的内部结构图。该计算机设备具体可以是服务器,也可以是终端。如图7所示,该计算机设备包括通过系统总线连接的处理器、存储器和网络接口。其中,存储器包括非易失性存储介质和内存储器。该计算机设备的非易失性存储介质存储有操作系统,还可存储有计算机程序,该计算机程序被处理器执行时,可使得处理器实现触摸交互方法。该内存储器中也可储存有计算机程序,该计算机程序被处理器执行时,可使得处理器执行触摸交互方法。本领域技术人员可以理解,图7中示出的结构,仅仅是与本申请方案相关的部分结构的框图,并不构成对本申请方案所应用于其上的计算机设备的限定,具体的计算机设备可以包括比图7中所示更多或更少的部件,或者组合某些部件,或者具有不同的部件布置。
在一个实施例中,本申请提供的触摸交互方法可以实现为一种计算机程序的形式,计算机程序可在如图7所示的计算机设备上运行。计算机设备的存储器中可存储组成所述触摸交互装置的各个程序模块。比如,显示模块602、触摸交互模块604、调节幅度确认模块606、音量调节模块608等。
在一个实施例中,提出了一种终端设备,包括存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现如下方法步骤:在所述触摸显示屏上显示待确认对象;检测针对所述待 确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
本实施例通过基于所述第一触控操作获取与所述第一触控操作对应的第一位置,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,从而实现了对触控操作过程的进行触觉反馈和/或听觉反馈,使使用者不需视觉辅助即可得到触控操作过程的反馈,减少了对使用者眼睛的辅助需求,提高了终端设备的使用者的用户体验。
在一个实施例中,提出了一种计算机可读存储介质,包括计算机指令,当所述计算机指令在计算机上运行时,使得计算机执行时实现如下方法步骤:在所述触摸显示屏上显示待确认对象;检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
本实施例通过基于所述第一触控操作获取与所述第一触控操作对应的第一位置,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,持续检 测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置;根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,从而实现了对触控操作过程的进行触觉反馈和/或听觉反馈,使使用者不需视觉辅助即可得到触控操作过程的反馈,减少了对使用者眼睛的辅助需求,提高了计算机可读存储介质的使用者的用户体验。
需要说明的是,上述一种一种触摸交互方法、一种触摸交互装置、一种终端设备及一种计算机可读存储介质属于一个总的发明构思,一种触摸交互方法、一种触摸交互装置、一种终端设备及一种计算机可读存储介质实施例中的内容可相互适用。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一非易失性计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,本申请所提供的各实施例中所使用的对存储器、存储、数据库或其它介质的任何引用,均可包括非易失性和/或易失性存储器。非易失性存储器可包括只读存储器(ROM)、可编程ROM(PROM)、电可编程ROM(EPROM)、电可擦除可编程ROM(EEPROM)或闪存。易失性存储器可包括随机存取存储器(RAM)或者外部高速缓冲存储器。作为说明而非局限,RAM以多种形式可得,诸如静态RAM(SRAM)、动态RAM(DRAM)、同步DRAM(SDRAM)、双数据率SDRAM(DDRSDRAM)、增强型SDRAM(ESDRAM)、同步链路(Synchlink)DRAM(SLDRAM)、存储器总线(Rambus)直接RAM(RDRAM)、直接存储器总线动态RAM(DRDRAM)、以及存储器总线动态RAM(RDRAM)等。
以上实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (12)

  1. 一种触摸交互方法,应用于终端设备,所述终端设备包括触摸显示屏,所述方法包括:
    在所述触摸显示屏上显示待确认对象;
    检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置;
    在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置;
    根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度;
    根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
  2. 如权利要求1所述的方法,其特征在于,所述根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,包括:
    对所述第一位置和所述第二位置进行距离计算,得到第一距离;
    对所述第一位置和所述第三位置进行距离计算,得到第二距离;
    计算所述第一距离与所述第二距离的差值,得到待确认调节幅度;
    获取与所述第二位置对应的检测时间、与所述第三位置对应的检测时间;
    根据与所述第二位置对应的检测时间、与所述第三位置对应的检测时间,确定与所述第三位置对应的操作时长;
    根据所述待确认调节幅度、与所述第三位置对应的操作时长进行速度计算,得到与所述待确认对象对应的调节速度。
  3. 如权利要求1所述的方法,其特征在于,在所述基于所述第二触控操作获取与所述第二触控操作对应的第二位置之后,还包括:
    当检测到所述第一触控操作结束时,基于所述第一触控操作的结束,获取在 所述第一触控操作结束时与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第四位置,所述第四位置为所述第二触控操作在所述检测时间结束时的触控位置;
    当在所述第一触控操作持续的过程中检测到所述第二触控操作结束时,获取所述第二触控操作的结束时长,当所述结束时长大于时长阈值时,则基于所述第二触控操作的结束,获取在所述第二触控操作结束时与所述第二触控操作的触控位置作为与所述第二触控操作对应的第四位置;
    根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度。
  4. 如权利要求3所述的方法,其特征在于,所述根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度,包括:
    对所述第一位置和所述第二位置进行距离计算,得到第三距离;
    对所述第一位置和所述第四位置进行距离计算,得到第四距离;
    根据所述第三距离和所述第四距离,确定与所述待确认对象对应的目标调节幅度。
  5. 如权利要求3所述的方法,其特征在于,在所述根据所述第一位置、所述第二位置及所述第四位置,确定与所述待确认对象对应的目标调节幅度之后,还包括:
    获取幅度音量对应表;
    根据所述目标调节幅度、所述幅度音量对应表,确定目标音量调节值;
    根据所述目标音量调节值对音量进行调节。
  6. 如权利要求1至5任一项所述的方法,其特征在于,所述根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,包括:
    根据与所述待确认对象对应的调节速度,确定目标振动强度;
    根据所述目标振动强度,确定对应的振动信号;
    根据所述振动信号控制所述终端设备产生触觉反馈。
  7. 如权利要求6所述的方法,其特征在于,所述根据与所述待确认对象对应的调节速度,确定目标振动强度,包括:
    根据与所述待确认对象对应的调节速度按照正比关系,确定所述目标振动强度。
  8. 如权利要求1至5任一项所述的方法,其特征在于,所述根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈,还包括:
    根据与所述待确认对象对应的调节速度,确定目标声音强度;
    根据所述目标声音强度,确定对应的声音信号;
    根据所述声音信号控制所述终端设备产生听觉反馈。
  9. 如权利要求1至5任一项所述的方法,其特征在于,所述检测针对所述待确认对象输入的第一触控操作,包括:
    检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作确定第一初始振动信号;
    根据所述第一初始振动信号控制所述终端设备产生触觉反馈;
    所述在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,包括:
    在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作确定第二初始振动信号;
    根据所述第二初始振动信号控制所述终端设备产生触觉反馈。
  10. 一种触摸交互装置,应用于终端设备,所述终端设备包括触摸显示屏,其特征在于,所述装置包括:
    显示模块,用于在所述触摸显示屏上显示待确认对象;
    触摸交互模块,用于检测针对所述待确认对象输入的第一触控操作,基于所述第一触控操作获取与所述第一触控操作对应的第一位置,在所述第一触控操作持续的过程中,检测针对所述触摸显示屏输入的第二触控操作,基于所述第二触控操作获取与所述第二触控操作对应的第二位置,所述第二位置为所述第二触控操作对应的初始触控位置,在所述第二触控操作持续的过程中,持续检测与所述第二触控操作对应的触控位置作为与所述第二触控操作对应的第三位置,所述第三位置为所述第二触控操作在检测时间下的触控位置,根据所述第一位置、所述第二位置及所述第三位置,确定与所述待确认对象对应的调节速度,根据与所述待确认对象对应的调节速度,控制所述终端设备产生触觉反馈和/或听觉反馈。
  11. 一种终端设备,其特征在于,包括存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,其特征在于,所述处理器执行所述计算 机程序时实现权利要求1至9中任一项所述的触摸交互方法的步骤。
  12. 一种计算机可读存储介质,包括计算机指令,当所述计算机指令在计算机上运行时,使得计算机执行如权利要求1至9中任一项所述的触摸交互方法的步骤。
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