Application of Transfer Matrix Approach to Modeling and Decentralized Control of Lattice-based Structures
Author(s) -
Nick B. Cramer,
Sean ShanMin Swei,
Kenneth Cheung,
Mircea Teodorescu
Publication year - 2015
Publication title -
56th aiaa/asce/ahs/asc structures, structural dynamics, and materials conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2015-0694
Subject(s) - transfer matrix , computer science , lattice (music) , matrix algebra , transfer function , distributed computing , control (management) , control theory (sociology) , engineering , physics , artificial intelligence , acoustics , electrical engineering , computer vision , eigenvalues and eigenvectors , quantum mechanics
This paper presents a modeling and control of aerostructure developed by lattice-based cellular materials/components. The proposed aerostructure concept leverages a building block strategy for lattice-based components which provide great adaptability to varying ight scenarios, the needs of which are essential for in- ight wing shaping control. A decentralized structural control design is proposed that utilizes discrete-time lumped mass transfer matrix method (DT-LM-TMM). The objective is to develop an e ective reduced order model through DT-LM-TMM that can be used to design a decentralized controller for the structural control of a wing. The proposed approach developed in this paper shows that, as far as the performance of overall structural system is concerned, the reduced order model can be as e ective as the full order model in designing an optimal stabilizing controller.
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