Title :
Subsynchronous oscillatory stability analysis of an AC/DC transmission system
Author :
Joseph, Tibin ; Ugalde-Loo, Carlos E. ; Liang, Jun
Author_Institution :
Institute of Energy, School of Engineering, Cardiff University, Wales, CF24 3AA, UK
fDate :
June 29 2015-July 2 2015
Abstract :
A formal analysis of torsional interactions -a form of subsynchronous resonance (SSR)- in series-compensated systems featuring voltage source converter (VSC) based high-voltage direct-current (HVDC) links are investigated in this paper. Two ac/dc systems are studied. The first one consists of the IEEE First Benchmark Model for SSR studies which has been upgraded with a point-to-point VSC-based HVDC link. The second system represents a simplified yet upgraded future Great Britain power system, where reinforcement is achieved through onshore series compensation and offshore submarine VSC-HVDC transmission. Simulation of the two systems has been carried out in PSCAD, with full dynamic system modelling being done in MATLAB. Detailed state-space representations of the systems under study have been constructed. Stability assessments have been carried out using eigenanalysis, with results agreeing well with those obtained through time-domain simulations.
Keywords :
HVDC transmission; Mathematical model; Oscillators; Power conversion; Rectifiers; Shafts; eigenanalysis; high-voltage direct-current; stability; subsynchronous resonance; time domain simulations; voltage source converter;
Conference_Titel :
PowerTech, 2015 IEEE Eindhoven
Conference_Location :
Eindhoven, Netherlands
DOI :
10.1109/PTC.2015.7232710