A novel aircraft training method and system based on VR visual simulation

By combining VR visual simulation with a training system based on real aircraft, the safety and effectiveness issues of training single-person aircraft pilots have been resolved, achieving training effects that simulate high-risk flight scenarios under safe conditions.

CN117437829BActive Publication Date: 2026-07-17BEIJING AEROSPACE INST OF THE LONG MARCH VEHICLE

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
BEIJING AEROSPACE INST OF THE LONG MARCH VEHICLE
Filing Date
2023-11-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies cannot simultaneously meet the training needs of single-person aircraft pilots in terms of both safety and effectiveness. Traditional simulation training systems cannot realistically simulate the pilot's flight state, and direct flight training carries significant risks.

Method used

By combining VR visual simulation with real aircraft, the system coordinates and controls the pilot's commands in real time through an aircraft motion simulation system and a VR display system to simulate flight effects and display the corresponding flight status in the VR display system, ensuring that the aircraft's attitude is consistent with the attitude of the VR display system.

Benefits of technology

It enables real flight training under relatively safe conditions, simulates high-risk flight scenarios, improves the safety and realism of training, and fills the gap in single-person aircraft pilot training.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a novel aircraft training method and system based on VR visual simulation. It combines a VR display system with real flight. The aircraft flies in a relatively safe state, such as hovering or low-speed movement, under the conditions of a real aircraft. Simultaneously, the pilot wears virtual display devices within the VR system, such as VR glasses, which display the corresponding flight state after the pilot's actions. However, the aircraft's flight state does not respond exactly to the pilot's actions, thus simulating higher-risk flight situations, such as high altitudes and high speeds. Ultimately, this achieves a realistic environmental state, providing the pilot with a realistic hovering experience, while simultaneously enabling flight training under relatively safe conditions.
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