본문 바로가기

Business

AAM/UAM Validation

We provide pre-demonstration validation solutions for UAM/eVTOL operations — using simulation to comprehensively review routes, vertiports, urban and airport environments, aircraft performance, and ATC integration conditions.
AAM/UAM Validation
AAM/UAM VALIDATION PLATFORM

From Pre-Demonstration Validation to ATC Integration —
Our AAM/UAM Validation Business

FLYTO connects 3D digital twins, a flight physics engine, and aviation operational data to construct comprehensive validation environments for UAM/eVTOL operations ahead of real-world demonstration.

VALIDATION SCOPE

Simulation-Based AAM/UAM Validation Framework

We provide a pre-validation framework for comprehensively reviewing aircraft performance, routes, weather, urban and airport environments, vertiports, and ATC integration conditions.

Operational Condition Analysis
01Operational Condition Analysis

Validation objectives, aircraft conditions, routes, vertiport sites, and ATC integration scope are defined to establish the complete pre-validation range.

Validation Environment Design
02Validation Environment Design

A digital twin-based validation environment is constructed reflecting domestic terrain, urban areas, airports, vertiport sites, and weather conditions.

Scenario Validation
03Scenario Validation

Validation scenarios incorporating flight routes, emergency situations, ATC integration, and airport and urban environments are executed repeatedly.

VALIDATION BENEFIT

Why the Validation Platform Matters

For AAM/UAM, the ability to pre-validate aircraft performance, routes, ATC integration, vertiport conditions, and emergency scenarios before real-world demonstration is essential to improving both safety and commercial viability.

  • Route, weather & vertiport condition analysis
  • Urban & airport 3D digital twin review
  • Aircraft performance & emergency scenario integration
  • ATC integration & flight operations validation expansion
PROJECT FLOW

Validation Operations Process

A structured validation process spanning planning, digital twin environment setup, scenario execution, and results analysis systematically reduces risk ahead of real-world demonstration.

01Define Validation Scope
02Configure Digital Twin
03Execute Scenarios
04Analyze Results