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SDP-Based Optimal Power Flow With Steady-State Voltage Stability Constraints | IEEE Journals & Magazine | IEEE Xplore

SDP-Based Optimal Power Flow With Steady-State Voltage Stability Constraints


Abstract:

This paper proposes a voltage stability-constrained optimal power flow (VSC-OPF) model based on semidefinite programming (SDP) relaxation. The minimum singular value of t...Show More

Abstract:

This paper proposes a voltage stability-constrained optimal power flow (VSC-OPF) model based on semidefinite programming (SDP) relaxation. The minimum singular value of the power flow Jacobian is used as a steady-state voltage stability index, which is incorporated into the SDP formulation. To model an ADP constraint for voltage stability, an auxiliary matrix based on the power flow Jacobian is constructed, and this auxiliary matrix can be reformulated as a function of the semidefinite variable matrix defined for SDP relaxation. The resulting SDP-based VSC-OPF model is formulated and solved via the solver SDPT3 and the toolbox YALMIP. Extensive simulations on IEEE test systems validate the effectiveness of the proposed model.
Published in: IEEE Transactions on Smart Grid ( Volume: 10, Issue: 4, July 2019)
Page(s): 4637 - 4647
Date of Publication: 17 August 2018

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