Strategic Objectives
• Master the core mathematical frameworks for non-ballistic trajectory modeling.
• Understand the physics of hypersonic flow and its impact on predictability.
• Implement advanced filtering and estimation algorithms for real-time tracking.
• Develop robust predictive models for high-speed maneuverable atmospheric gliders.
The Core Challenge
Traditional ballistic defense systems are blind to the unpredictable curves and glides of hypersonic weaponry.
01
The Paradigm Shift
02
Foundations of High-Speed Flow
03
Atmospheric Reentry Dynamics
04
The Mechanics of Lift-and-Glide
05
Computational Fluid Dynamics
06
Optimal Control Theory
07
Kalman Filtering
08
Non-Linear Tracking Systems
09
Differential Games
10
Flight Envelope Mapping
11
Stochastic Processes
12
Trajectory Optimization
13
Monte Carlo Methods
14
Aerothermodynamics
15
Signal Processing
16
Bayesian Inference
17
System Identification
18
Machine Learning in Ballistics
19
Guidance Laws
20
Sensitivity Analysis
21