Title of article :
An approximate method for numerically solving fractional order optimal control problems of general form
Author/Authors :
Christophe Tricaud، نويسنده , , Yangquan Chen، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2010
Pages :
12
From page :
1644
To page :
1655
Abstract :
In this article, we discuss fractional order optimal control problems (FOCPs) and their solutions by means of rational approximation. The methodology developed here allows us to solve a very large class of FOCPs (linear/nonlinear, time-invariant/time-variant, SISO/MIMO, state/input constrained, free terminal conditions etc.) by converting them into a general, rational form of optimal control problem (OCP). The fractional differentiation operator used in the FOCP is approximated using Oustaloupʹs approximation into a statespace realization form. The original problem is then reformulated to fit the definition used in general-purpose optimal control problem (OCP) solvers such as RIOTS_95, a solver created as a Matlab toolbox. Illustrative examples from the literature are reproduced to demonstrate the effectiveness of the proposed methodology and a free final time OCP is also solved.
Keywords :
Optimal control , Time-optimal control , Fractional calculus , Fractional order optimal control , RIOTS_95 Optimal Control Toolbox , Fractional dynamic systems
Journal title :
Computers and Mathematics with Applications
Serial Year :
2010
Journal title :
Computers and Mathematics with Applications
Record number :
921293
Link To Document :
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