On the use Pontryagin's maximum principle in the reactor profiling problem
Description
The optimal given power profile approximation problem in nuclear reactors is posed as one of physical profiling problems in terms of the theory of optimal processes. It is necessary to distribute the concentration of the profiling substance in a certain nuclear reactor in such a way that the power profile obtained in the core would be as near as possible to the given profile. It is suggested that the original system of differential equations describing the behaviour of neutrons in a reactor and some applied requirements may be written in the form of usual differential equations of the first order. The integral quadratic criterion evaluating a deviation of the power profile obtained in a reactor from the given one is used as a purpose function. The initial state is given, the control aim is determined as the necessity of transfer of a control object from the initial state to the given set of finite states known as a purpose set. A class of permissible controls consists of measurable functions in the given range. On solving the formulated problem Pontryagin's maximum principle is used. As an example, the power profile flattening problem is considered, for which a program in Fortran-4 for the 'Minsk-32' computer has been written. The optimal reactor parameters calculated by this program at various boundary values of the control are presented. It is noticed that a type of the optimal reactor configuration depends on boundary values of the control
Additional details
Additional titles
- Original title (Russian)
- K ispol'zovaniyu printsipa maksimuma L.S. Pontryagina v zadache fizicheskogo profilirovaniya yadernykh reaktorov
Publishing Information
- Journal Title
- Vestsi Akad. Navuk BSSR, Ser. Fiz.-Ehnerg. Navuk
- Journal Issue
- no.3
- Series
- Vestsi Akad. Navuk BSSR, Ser. Fiz.-Ehnerg. Navuk.
INIS
- Country of Publication
- USSR
- Country of Input or Organization
- USSR
- INIS RN
- 8340990
- Subject category
- S22: GENERAL STUDIES OF NUCLEAR REACTORS;
- Descriptors DEI
- BOUNDARY CONDITIONS; DIFFERENTIAL EQUATIONS; FORTRAN; FUNCTIONS; MATHEMATICAL MODELS; OPTIMIZATION; POWER DENSITY; REACTOR CONTROL SYSTEMS; REACTOR CORES
- Descriptors DEC
- CONTROL SYSTEMS; EQUATIONS; PROGRAMMING LANGUAGES; REACTOR COMPONENTS