DOE OSTI · 3023856
Pareto-optimal target definition for multi-axis random vibration testing
Abstract
In random vibration testing with multiple control channels, existing control laws require specification of a complete spectral density matrix at each control frequency. Spectral density matrices include autospectral densities on the diagonal and cross-spectral densities on the off-diagonal. In practice, the off-diagonal terms are often unknown, and recent vibration testing research has focused on fixing the diagonal and specifying the off-diagonal to minimize the required control energy, subject to a constraint that the target matrix is positive semidefinite. This paper shows that, even with a fixed diagonal, off-diagonal terms strongly affect control residuals. This overlooked effect occurs in both square and rectangular systems. By jointly considering input energy and control residuals, open-loop inputs are derived directly from the diagonal without specifying the off-diagonal terms. Vibration targets that can be used in closed-loop control are then derived using the optimal inputs, with positive semidefinite constraints applied during the derivation. The result is a set of Pareto-optimal control solutions. For each solution in the set, any other possible solution produces greater control error, greater input energy, or both. A balanced solution is selected automatically, though others can be chosen based on test needs. Simulations and experiments show that the proposed method outperforms state-of-the-art energy-minimizing approaches, achieving significant reductions in both control error and input energy.
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Coletti, Keaton Patrick [Univ. of Georgia, Athens, GA (United States)] (ORCID:0009000586950887), Davis, R. Benjamin [Univ. of Georgia, Athens, GA (United States)] (ORCID:000000034478302X), Schultz, Ryan [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)] (ORCID:0000000334287129). 2026-03-03. Pareto-optimal target definition for multi-axis random vibration testing. https://doi.org/10.1016/j.ymssp.2026.114075
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