DocumentCode :
828231
Title :
Medium-term hydrothermal coordination by semidefinite programming
Author :
Fuentes-Loyola, Rodrigo ; Quintana, Victor H.
Author_Institution :
Univ. de Los Andes, Venezuela
Volume :
18
Issue :
4
fYear :
2003
Firstpage :
1515
Lastpage :
1522
Abstract :
Hydrothermal coordination (HTC) is a problem that has been solved using direct and decomposition solution methods. The latter has shown shorter solution times than the former. A direct solution method for the HTC problem that is based in semidefinite programming (SDP) is presented in this paper. SDP is a convex programming method with polynomial solution time. The variables of the problem are arranged in a vector, which is used to construct a positive-definite matrix; the optimal solution is then found in the cone defined by the set of positive-definite matrices. An HTC problem can be formulated as a convex optimization problem without explicitly stating the integer value requirements for the thermal-plants discrete variables. Thus, it is possible to replace the nonconvex integer-value constraints by convex quadratic constraints, and then use SDP. Due to its polynomial complexity, it is not necessary to use decomposition or other tools for discrete optimization, such as enumeration schemes or other exponential-time procedures. No initial relaxation is necessary when applying a SDP algorithm; the solution shows only minor mismatches in the integer variables, which are easily corrected by a heuristic method. Different size test cases are presented. The solution quality is assessed by comparing with that produced by a Lagrangian relaxation method.
Keywords :
hydrothermal power systems; mathematical programming; polynomials; power generation scheduling; relaxation; Lagrangian relaxation method; convex optimization problem; convex programming method; convex quadratic constraints; decomposition solution method; direct solution method; discrete optimization; enumeration schemes; exponential-time procedures; heuristic method; integer value requirements; integer variables; interior-point methods; medium-term hydrothermal coordination; nonconvex integer-value constraints; optimal solution; polynomial complexity; polynomial solution time; positive-definite matrices; positive-definite matrix; semidefinite programming; thermal-plants discrete variables; Acceleration; Equations; Helium; Lagrangian functions; Polynomials; Power systems; Relaxation methods; Spinning; Testing; Thermal decomposition;
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2003.811006
Filename :
1245578
Link To Document :
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