Vehicle-mounted naked eye 3D display method and system based on binocular camera shooting
A binocular camera and display system technology, applied in the field of vehicle-mounted naked-eye 3D display, can solve the problems of inability to apply spatial layout display equipment, high production cost, and long processing time, so as to achieve smooth connection, reduce recognition error rate, reduce cost effect
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Embodiment 1
[0062] refer to figure 1 and figure 2 , is a vehicle-mounted naked-eye 3D display method based on binocular camera photography disclosed by the present invention, applied to a vehicle-mounted naked-eye 3D display system, comprising the following steps:
[0063] Step S1 , video image acquisition, real-time acquisition of two channels of video image signals from left and right perspectives through the vehicle-mounted binocular camera 1 .
[0064] Regarding the collection of video images, it is obtained through the following specific steps:
[0065] Step S101, obtain the original image information, and obtain the scene image information through real-time shooting by the vehicle-mounted binocular camera 1;
[0066] Step S102, image processing, the vehicle-mounted binocular camera 1 is electrically connected to a video image acquisition module 2, and the video image acquisition module 2 is used to perform parallel analog-to-digital conversion and compression processing on the tw...
Embodiment 2
[0076] refer to image 3 , a vehicle-mounted naked-eye 3D display system based on binocular camera photography, including two parts: hardware system design and software algorithm implementation. The hardware system mainly includes vehicle-mounted binocular camera 1, vehicle-mounted naked-eye 3D display 8, and a hardware computing system. The design is realized by SoC system; the software algorithm implementation part includes the artificial intelligence-based image rendering model applied to generate new perspective images and the synthetic rendering algorithm for synthesizing binocular 2D images into naked-eye 3D images. The software algorithm implementation part is stored in the operating system mode. In the hardware computing system, the software algorithm implementation part and the hardware computing system are combined into a display processing device connected to the vehicle-mounted binocular camera 1 and the vehicle-mounted naked-eye 3D display 8 . The display processi...
Embodiment 3
[0101] In one embodiment, a computer-readable storage medium is provided, which stores a computer program that can be loaded by a processor and execute the above-mentioned vehicle-mounted naked-eye 3D display method based on binocular camera photography. When the computer program is executed by the processor, the computer program is implemented. The following steps:
[0102] Step S1, video image collection, real-time collection of two-way video image signals of left and right perspectives through the vehicle-mounted binocular camera 1;
[0103] Step S2, scene similarity comparison, the general calculation module 7 performs scene similarity comparison calculation on the two image signals;
[0104] Step S3, generating a new right perspective image, the AI module 3 renders and adjusts the pixels of the right perspective image to generate a new right perspective image;
[0105] Step S4, generating a 3D image, the image processing module 4 performs rendering and composition proc...
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