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Time Domain Finite Elements In Optimal Control With Application To Launch Vehicle Guidance by Robert R. Bless

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1NASA Technical Reports Server (NTRS) 19910015844: Time-domain Finite Elements In Optimal Control With Application To Launch-vehicle Guidance. PhD. Thesis

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A time-domain finite element method is developed for optimal control problems. The theory derived is general enough to handle a large class of problems including optimal control problems that are continuous in the states and controls, problems with discontinuities in the states and/or system equations, problems with control inequality constraints, problems with state inequality constraints, or problems involving any combination of the above. The theory is developed in such a way that no numerical quadrature is necessary regardless of the degree of nonlinearity in the equations. Also, the same shape functions may be employed for every problem because all strong boundary conditions are transformed into natural or weak boundary conditions. In addition, the resulting nonlinear algebraic equations are very sparse. Use of sparse matrix solvers allows for the rapid and accurate solution of very difficult optimization problems. The formulation is applied to launch-vehicle trajectory optimization problems, and results show that real-time optimal guidance is realizable with this method. Finally, a general problem solving environment is created for solving a large class of optimal control problems. The algorithm uses both FORTRAN and a symbolic computation program to solve problems with a minimum of user interaction. The use of symbolic computation eliminates the need for user-written subroutines which greatly reduces the setup time for solving problems.

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  • Title: ➤  NASA Technical Reports Server (NTRS) 19910015844: Time-domain Finite Elements In Optimal Control With Application To Launch-vehicle Guidance. PhD. Thesis
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  • Language: English

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