A finite-state aeroelastic model for rotorcraft–pilot coupling analysis

Author:

Serafini Jacopo,Molica Colella Marco,Gennaretti Massimo

Publisher

Springer Science and Business Media LLC

Subject

Aerospace Engineering,Transportation

Reference21 articles.

1. Pavel, M., Yilmaz, D.: Background, definition and classification of a/rpc. Tech. Rep. Deliverable D1.1, EU funded project ARISTOTEL (GA no. 266073) (2010)

2. Barry Walden, R.: A retrospective survey of pilot–structural coupling instabilities in naval rotorcraft. In: 63rd Annual Forum of the American Helicopter Society (2007)

3. Parham, T.J., Popelka, D., Miller, D., Froebel, A.: V-22 pilot-in the-loop aeroelastic stability analysis. In: 47th Annual Forum of the American Helicopter Society (1991)

4. Pavel, M., Malecki, J., Dang Vu, B., Masarati, P.M., Jump, M., Jones, M., Smaili, H., Ionita, A., Zaicek, L.: Present and future trends in rotorcraft pilot couplings (rpcs)—a retrospective survey of recent research activities within the European project ARISTOTEL. In: 37th European Rotorcraft Forum 2011 (ERF 2011), pp. 266–284. Curran Associates, Inc. (2012)

5. Serafini, J., Gennaretti, M., Masarati, P., Quaranta, G., Dieterich, O.: Aeroelastic and biodynamic modelling for stability analysis of rotorcraft–pilot coupling phenomena. In: 34th European Rotorcraft Forum 2008 (ERF34), pp. 1572–1607. Curran Associates, Inc. (2011)

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