Computation of Optimal Inputs and Trajectories in Linear Regulators with Energy Constraints by Using Warners Algorithm

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In solving a linear regulator problem subjected to the integral type of energy constraint, the classical method requires that the proper magnitude of Lagrangian multiplier should be determined by a trial-and-error procedure. In this work, the Lagrangian multiplier is introduced as a state variable and a method to solve the isoperimetric problem is formulated by using Warners algorithm. The new method essentially leads to evaluation of a two-point boundary value problem, requiring a far smaller number of differential equations to be solved than the Newton-Raphson-Kan torovich method and ensuring a faster convergence rate by adopting Warners algorithm It also features the simultaneous computation of optimal inputs and trajectories. The optimal inputs and trajectories subjected to integral constraint are illustrated using a first-order linear dynamic system as an example.
Publisher
Sage Publications Ltd
Issue Date
1984
Language
English
Citation

TRANSACTIONS OF THE INSTITUTE OF MEASUREMENT AND CONTROL, v.6, no.6, pp.317 - 322

ISSN
0142-3312
URI
http://hdl.handle.net/10203/58963
Appears in Collection
ME-Journal Papers(저널논문)
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