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Full Description
Reducing the theoretical methods of flight control to design practice, Practical Methods for Aircraft and Rotorcraft Flight Control Design: An Optimization-Based Approach compiles the authors' extensive experience and lessons learned into a single comprehensive resource for both academics and working flight control engineers.
Contents
Introduction; Fundamentals of Control System Design Methodology Based on Multi-Objective Parametric Optimization; Overview of CONDUIT(R) Software; Description of XV-15 Design Case Studies; Quantitative Design Requirements for Flight Control; Simulation Requirements for Flight Control Design; Conceptual and Preliminary Design; Design Optimization; Sensitivity and Robustness Analyses of Design; Design Trade-offs and Piloted Feedback; Practical Application of Multi-Objective Parameter Optimization to Hover/Low-Speed Control Laws for a Conventional Helicopter; Practical Application of Multi-Objective Parameter Optimization to Longitudinal Control Law for A Business Jet Flight Control System; Alternative Design Methods Using Conduit; Appendices.