A wearable tactile reproduction device and method integrating electrostatic force and vibration

A technology of tactile reproduction and electrostatic force, applied in the direction of mechanical mode conversion, electrical digital data processing, input/output process of data processing, etc., can solve the problem that the intensity is not proportional to the output intensity, the tactile feedback has poor realism, and affects the tactile realism and other issues, to achieve the effect of reducing energy loss, increasing tactile experience, and enriching tactile experience

Active Publication Date: 2021-01-29
JILIN UNIV
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  • Abstract
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Problems solved by technology

[0003] Chinese patent "A device based on electrostatic force tactile reproduction" (publication number 102662477A), Chinese patent "A method and device for electrostatic force tactile reproduction applied to mobile terminals" (publication number 104199554A) and Chinese patent "A device based on switch Array multi-point electrostatic force tactile reproduction device and method" (publication number 104793746A) respectively discloses a tactile reproduction device and method based on electrostatic force. The device and method have certain flexibility and practicability, but only by changing The electrostatic attraction adjusts the tangential friction force on the finger, realizing the tactile reproduction of the perception dimension of the friction force on the surface of the object, and only when the finger moves, the electrostatic friction force can be generated, the tactile feeling is single, and the tactile feedback is less realistic. Conditional, poor portability
However, the vibration source directly fixed on the touch screen device will cause the mechanical wave generated by the vibration to attenuate during the propagation process, and the intensity of the vibration tactile sensation is not proportional to the output intensity, affecting the sense of tactile reality and causing a waste of resources

Method used

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  • A wearable tactile reproduction device and method integrating electrostatic force and vibration
  • A wearable tactile reproduction device and method integrating electrostatic force and vibration
  • A wearable tactile reproduction device and method integrating electrostatic force and vibration

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Embodiment Construction

[0057] Schematic diagram of the structure of a wearable tactile reproduction device that integrates electrostatic force and vibration figure 1 shown, including:

[0058] (1) finger positioning unit 11, comprises the device that realizes positioning function, and its effect is to read the current position coordinate P (x, y) of finger on the touch screen of multimedia terminal in real time, and the current position coordinate P (x, y) of finger The information is sent to the signal processing unit 13;

[0059] (2) finger speed detection unit 12, including real-time detection of finger speed Devices such as depth sensors (such as LeapMotion) or cameras, whose function is to capture hand movement information in real time, such as the position P of the finger at the previous moment 0 (x 0 ,y 0 ) and the position P(x,y) at the current moment to calculate the finger speed information And sent to the signal processing unit 13;

[0060] (3) signal processing unit 13, comprisin...

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Abstract

The invention relates to a wearable tactile reproducing device and method integrating electrostatic force and vibration, belonging to the field of virtual reality and human-computer interaction. Finger positioning unit, finger speed detection unit, signal processing unit, electrostatic force tactile reproducing unit, vibrotactile reproducing unit and multimedia information terminal. The finger positioning unit and the finger speed detection unit acquire the position information of the finger on the touch screen and the speed information of the finger in real time, and the signal processing unit processes according to the position and speed information of the finger to obtain the corresponding electrostatic force tactile and vibrotactile drive signal amplitude parameters, The driving signal is output to the electrostatic force tactile reproduction unit and the vibrotactile reproduction unit to change the tangential electrostatic friction force and normal vibration stimulation received by the finger to generate electrostatic force and vibrotactile feedback. The advantage is that in the plane haptic interaction, two different haptic feedbacks can be presented at the same time, which enriches the haptic experience and enhances the realism of the haptic feedback.

Description

technical field [0001] The invention belongs to the field of virtual reality and human-computer interaction, and in particular relates to a binary tactile reproduction device and method. Background technique [0002] With the development of science and technology, touch screen mobile devices are widely used in daily life and play an increasingly important role in the field of human-computer interaction. The emergence of tactile interaction technology can improve the immersion of human-computer interaction tasks and enrich human task experience, so it is widely used in medical, education, shopping, entertainment and other fields. It is an inevitable trend of technological development and a frontier issue of research to increase the function of tactile reproduction on touch screen mobile devices, improve the sense of reality of tactile reproduction, and better combine it with visual and auditory feedback methods. At present, there already exist some tactile reproduction devic...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06F3/01G06F3/044G06F3/0488
CPCG06F3/014G06F3/016G06F3/044G06F3/0488
Inventor 孙晓颖张佳丽孙铭会刘国红陈建燕学智
Owner JILIN UNIV
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