Title :
Phasor-measurement-based voltage stability margin calculation for a power transfer interface with multiple injections and transfer paths
Author :
Ghiocel, Scott G. ; Chow, Joe H. ; Stefopoulos, George ; Fardanesh, Bruce ; Maragal, Deepak ; Bertagnolli, David B. ; Swider, Michael ; Razanousky, Michael ; Sobajic, Dejan J.
Author_Institution :
Rensselaer Polytech. Inst., Troy, NY, USA
Abstract :
For complex power transfer interfaces or load areas with multiple in-feeds, we present a method for phasor-measurement-based calculation of voltage stability margins. In the case of complex transfer paths with multiple injections, a radial system approach may not be sufficient for voltage stability analysis. Our approach provides voltage stability margins considering the full fidelity of the transfer paths. In this paper, we extend a previously proposed phasor-measurement-based approach [1] and apply it to a voltage stability-limited power transfer interface using synchronized phasor measurements from loss-of-generation disturbance events. Previous work employed a simple radial system [2] or modeled a power transfer interface using only one generator [1]. In our approach, we use the PMU data to model multiple external injections that share the power transfer increase, and we employ a modified AQ-bus power flow method to compute the steady-state voltage stability margins [3]. We demonstrate the method using real PMU data from disturbance events in the US Eastern Interconnection.
Keywords :
phasor measurement; power system stability; US eastern interconnection; phasor measurement; power transfer interface; radial system; voltage stability analysis; voltage stability margin calculation; Computational modeling; Data models; Generators; Phasor measurement units; Stability analysis; Static VAr compensators; Voltage measurement; phasor measurements; stability margins; voltage stability;
Conference_Titel :
Power Systems Computation Conference (PSCC), 2014
Conference_Location :
Wroclaw
DOI :
10.1109/PSCC.2014.7038431