This chapter presents results obtained by applying the Lyapunov-based robustness analysis techniques developed in Chapter 9 to two clearance problems: aeroelastic stability and un-piloted stability. The considered techniques have been employed to certify robust stability of a number of LFR models, derived from the physical models of a benchmark civil aircraft. The results illustrate the potential and limitations of Lyapunov-based analysis in the clearance context.

Garulli, A., A., M., Paoletti, S., E., T. (2012). Applications of Lyapunov-based analysis techniques for clearance. In Optimization Based Clearance of Flight Control Laws: A Civil Aircraft Application (pp. 253-275). Springer-Verlag [10.1007/978-3-642-22627-4_14].

Applications of Lyapunov-based analysis techniques for clearance

GARULLI, ANDREA;PAOLETTI, SIMONE;
2012-01-01

Abstract

This chapter presents results obtained by applying the Lyapunov-based robustness analysis techniques developed in Chapter 9 to two clearance problems: aeroelastic stability and un-piloted stability. The considered techniques have been employed to certify robust stability of a number of LFR models, derived from the physical models of a benchmark civil aircraft. The results illustrate the potential and limitations of Lyapunov-based analysis in the clearance context.
2012
9783642226267
Garulli, A., A., M., Paoletti, S., E., T. (2012). Applications of Lyapunov-based analysis techniques for clearance. In Optimization Based Clearance of Flight Control Laws: A Civil Aircraft Application (pp. 253-275). Springer-Verlag [10.1007/978-3-642-22627-4_14].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/45173
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