A Synthesis of Stabilization Algorithms for Long-Range Surface-to-Air Missile Systems
Le Quyet Thang
Abstract
Long-range surface-to-air missile (SAM) systems operate under extreme aerodynamic, environmental, and electronic warfare conditions. Ensuring flight stability across the entire engagement envelope requires robust, adaptive, and computationally efficient algorithms. This paper presents a comprehensive synthesis of stabilization algorithms for long-range SAM systems, covering classical, modern, robust, and intelligent control methods. Mathematical models, stability analyses, and algorithmic formulations are included. A unified hierarchical control architecture combining linear, strong, and adaptive layers is proposed. Comparative evaluations and cited references support the theoretical discussion.
Long-range surface-to-air missile; synthesis of stabilization.
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