Title :
Optimal operation solutions of power systems with transient stability constraints
Author :
Chen, Luonan ; Taka, Y. ; Okamoto, Hiroshi ; Tanabe, Ryuya ; Ono, Asako
Author_Institution :
Dept. of Electr. Eng. & Electron., Osaka Sangyo Univ., Daito, Japan
fDate :
3/1/2001 12:00:00 AM
Abstract :
The computation of an optimal operation point in power systems is a nonlinear optimization problem in functional space, which is not easy to deal with precisely, even for small-scale power systems. On the other hand, the emergence of competitive power markets makes optimal power flow (OPF) with transient stability constraints increasingly important because the conventionally heuristic evaluation for the operation point can produce a discrimination among market players in the deregulated power systems. Instead of directly tackling this tricky problem, in this paper, OPF with transient stability constraints (OTS) is equivalently converted into an optimization problem in the Euclidean space via a constraint transcription, which can be viewed as an initial value problem for all disturbances and solved by any standard nonlinear programming techniques adopted by OPF. The transformed OTS problem has the same variables as those of OPF in form, and is tractable even for the large-scale power systems with a large number of transient stability constraints. This paper also derives the Jacobian matrices of the transient stability constraints and gives two computation algorithms based on the relaxation scheme. The numerical simulation verified the effectiveness of the proposed approach
Keywords :
Jacobian matrices; constraint theory; initial value problems; nonlinear programming; power system transient stability; relaxation theory; Euclidean space; Jacobian matrix; computation algorithm; constraint transcription; deregulation; differential and algebraic equation; initial value problem; nonlinear optimization; nonlinear programming; numerical simulation; operation point; optimal power flow; power system; relaxation method; transient stability constraints; Constraint optimization; Differential algebraic equations; Load flow; Nonlinear dynamical systems; Nonlinear equations; Power generation; Power system dynamics; Power system simulation; Power system stability; Power system transients;
Journal_Title :
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on