Singular perturbations and singular arcs--Part I
Robert E. O’Malley, A. Jameson
Abstract
Robert E. O’Malley, A. Jameson
Abstract
Singular perturbation theory is applied to obtain the asymptotic solution for the nearly singular optimal control of a constant linear system on a finite time interval In the limit as the control cost is reduced to zero, the initial control is found to have an impulse-like behavior, while the outer solution agrees asymptotically with the familiar solution for a singular arc. The detailed structure of the impulse is provided by the asymptotic solution.
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Singular perturbation theory is applied to obtain the asymptotic solution for the nearly singular optimal control of a constant linear system on a finite time interval In the limit as the control cost is reduced to zero, the initial control is found to have an impulse-like behavior, while the outer solution agrees asymptotically with the familiar solution for a singular arc. The detailed structure of the impulse is provided by the asymptotic solution.
Key concepts: Singular perturbation, Singular solution, Mathematics, Impulse (physics), Mathematical analysis, Exponential stability, Singular control, Control theory (sociology)