A Closed-Form Representation of Three-Dimensional State-Space Influence Coefficients

VFS-F61-000007

6/1/2005

Authors
Abstract
Content

State-space modeling of the rotorcraft flow field is well recognized for its advantage in real-time simulation, preliminary design, eigenvalue analysis, etc. Based on different methodologies, many versions of the statespace model have been developed over the years. From the simplest, crudest approximation of the relationship between on-disk induced flow and thrust perturbations in the 1950s to the most recent studies, which have shown success in representing the induced flow field everywhere above the rotor plane even with mass source terms, the state-space modeling of rotorcraft flow field has become more and more complete and efficient. In all of the state-space representations, there is a set of influence coefficients between loading distributions and inflow distributions. This matrix is in closed-form as a function of wake skew angle, but it must be inverted numerically to be used in the model. For problems of flight simulation, this implies that the matrix must be inverted at each time step because the wake skew angle is dynamic. Although this inversion is presently done routinely in real-time simulations, it does limit the number of states that can be included. What is needed is a closed-form of the inverse of the matrix to give better facility in numerical applications.

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DOI
https://doi.org/10.4050/VFS-F61-000007
Citation
Yu, K. and Peters, D., "A Closed-Form Representation of Three-Dimensional State-Space Influence Coefficients," Forum 61 - Grapevine, TX 2005, Grapevine, TX, June 1, 2005, https://doi.org/10.4050/VFS-F61-000007.
Additional Details
Publisher
Published
6/1/2005
Product Code
VFS-F61-000007
Content Type
Technical Paper
Language
English