3D printer control method based on winking recognition and vision induction

A 3D printer, vision-induced technology, applied in manufacturing auxiliary devices, processing data acquisition/processing, additive processing, etc., can solve the problems of large size, large size, unfavorable application, and little meaning.

A 3D printer, vision-induced technology, applied in manufacturing auxiliary devices, processing data acquisition/processing, additive processing, etc., can solve the problems of large size, large size, unfavorable application, and little meaning.

CN106476281AInactive Publication Date: 2017-03-08XIAN UNIV OF SCI & TECH

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  • 3D printer control method based on winking recognition and vision induction
  • 3D printer control method based on winking recognition and vision induction
  • 3D printer control method based on winking recognition and vision induction

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Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0060] Such as figure 2 A 3D printer control method based on blink recognition and visual induction is shown, comprising the following steps:

[0061] Step 1. Start the 3D printing drive control device: start the 3D print drive control device;

[0062] Such as figure 1 As shown, the 3D printing drive control device is a 3D print drive control device based on a brain-computer interface and it includes an EEG signal extraction device 1 that extracts the brain electrical signals of the subject, and is connected to the EEG signal extraction device 1 And the electroencephalogram signal preprocessing device 2 that samples and preprocesses the signal extracted by the electroencephalogram signal extraction device 1 and the data processing terminal 3 that communicates with the electroencephalogram signal preprocessing device 2; the electroencephalogram signal extraction device 1 and The EEG signal preprocessing device 2 forms an EEG signal acquisition device; the data processing ter...

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Abstract

The invention discloses a 3D printer control method based on winking recognition and vision induction. The 3D printer control method comprises: 1, 3D printing drive control device starting, wherein a 3D printing drive control device is started, is a 3D printing drive control device based on a brain-machine interface, and comprises an EEG extraction device, an EEG pretreatment device for sampling and pretreating the signal extracted by the EEG extraction device, and a data processing terminal for communicating with the EEG pretreatment device, the data processing terminal comprises a data processer and a display device, and the data processer is connected to a 3D printer; 2, printing model selection based on vision induction; and 3, printing judgment based on winking recognition. According to the present invention, the method has characteristics of simple steps, reasonable design, convenient achieving, good use effect and simple and rapid 3D printer control, and is suitable for people having limb movement disorder and language dysfunction.

Description

technical field [0001] The invention belongs to the technical field of 3D printer control, and in particular relates to a 3D printer control method based on blink recognition and visual induction. Background technique [0002] 3D printing, known as Additive Manufacturing (AM) in academic circles, is a technology that uses computer design data to manufacture physical objects by layer-by-layer accumulation of materials. At present, 3D printing has been widely used. [0003] Brain-computer interface technology based on visual evoked potentials is still in its infancy in China, so there are relatively few related studies. The research team at Tsinghua University designed an environmental control system for disabled people based on steady-state visual evoked. Institutions such as Anhui University and Chongqing University have also carried out relevant research and produced systems such as robotic arm control. But there are some following common problems in the system that they...

Claims

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Application Information

Patent Timeline
08 Mar 2017
Publication
CN106476281A
IPC
B29C64/386; B29C64/393; B33Y50/00; B33Y50/02
CPC
B33Y50/00; B33Y50/02
Inventors
汪梅; 赵海强