NASA NTRS ยท 20110015712
A Flight Dynamics Model for a Multi-Actuated Flexible Rocket Vehicle
Abstract
A comprehensive set of motion equations for a multi-actuated flight vehicle is presented. The dynamics are derived from a vector approach that generalizes the classical linear perturbation equations for flexible launch vehicles into a coupled three-dimensional model. The effects of nozzle and aerosurface inertial coupling, sloshing propellant, and elasticity are incorporated without restrictions on the position, orientation, or number of model elements. The present formulation is well suited to matrix implementation for large-scale linear stability and sensitivity analysis and is also shown to be extensible to nonlinear time-domain simulation through the application of a special form of Lagrange s equations in quasi-coordinates. The model is validated through frequency-domain response comparison with a high-fidelity planar implementation.
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Orr, Jeb S.. 2011-08-08. A Flight Dynamics Model for a Multi-Actuated Flexible Rocket Vehicle. https://ntrs.nasa.gov/citations/20110015712
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