U-WING adopts the VSV visual system ± that is most suitable for general avia σtion aircraft. By combining high-pr∑αδ<ecision satellite data with larg&'e-scale automatic 3D modeling technoloβ"gy, it meets the customi¶πzed requirements of high-pre¥&cision urban visual simσαulation, especially the precise ™♦€¶modeling of landmark bui£₩φ∏ldings. It is more in ♣∏←↑line with the charact♠®eristics of visual flight at low altπ£∞itudes for general aviation a∞≈÷ircraft. It has won theβ♠♠ first prize of National Science anφ₩♣d Technology Progress Award.

Vincifly Teaching Terminal
Student Terminal :
Equipped with video course teaching,★ →≈ answer assessment, task™>✔★ guidance, free expl ¥oration, teaching&nbs±←☆p; evaluation and other tea₩ ↕ching modules
Realized the teaching functions o¥•<f ATC communication, networking, a •₩ircraft painting, formation battle ™≈ , graphical prλogramming etc
independent teaching instrument b©∑₽oard simulates the real &☆ aircraft layout and supports tλ✔eaching functions such as avioφnics instrumen↕εt, radar fire control, communλ✘ication and navigation
Teacher Terminal :
All student terminals can be controll₩αα•ed by one key to efficiently manage te•φ♥aching progress
Contains 24 aviation course↕βΩβ videos, using animation to₩≤ automatically explain the ba↓♥sic theoretical knowledg☆ε≤e of aviation
Including air traffic <™control system functions, suppo↕★rt tower view, runway view, air s&"how view, radar map and other ♦πmulti-view switching functions
The software, hardware ₹≈and curriculum system β♣are all domestic independe₽$&nt intellectual property rightsγ₩;
Integrating aviation and ↔ αprogramming, turning simulat•§↕ed flight from "vidΩ¥<eo game" to "AI education&q↓πuot;;
The innovative human-computer β∏¶interactive teaching and gamifyin"♣ g interface is adopted to gu↑≥ide students to realize i∞♣ndependent learning ★>β≤and teamwork through pic♥♦αtures, texts and situational voice, co←←mplete role - based and task-based ♣↓challenges.

