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- W1971330493 abstract "In this paper the robust pole assignment problem using combined velocity and acceleration feedback for second-order linear systems with singular mass matrix is illustrated. This is promising for better applicability in several practical applications where the acceleration signals are easier to obtain than the proportional ones. First, the explicit parametric expressions of both the feedback gain controller and the eigenvector matrix are derived. The parametric solution involves manipulations only on the original second-order model. The available degrees of freedom offered by the velocity-acceleration feedback in selecting the associated eigenvectors are utilized to improve robustness of the closed-loop system. Straight-forward computational algorithms are introduced to demonstrate the effectiveness of the proposed approach. These algorithms are applicable for a dynamical system with mass matrices that can be either singular or nonsingular. Numerical examples are provided to illustrate the application of the proposed procedure." @default.
- W1971330493 created "2016-06-24" @default.
- W1971330493 creator A5016900230 @default.
- W1971330493 date "2015-07-01" @default.
- W1971330493 modified "2023-09-26" @default.
- W1971330493 title "Robust pole assignment using velocity–acceleration feedback for second-order dynamical systems with singular mass matrix" @default.
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- W1971330493 doi "https://doi.org/10.1016/j.isatra.2014.11.015" @default.
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