Title :
Advanced Vector Control for Voltage Source Converters Connected to Weak Grids
Author :
Egea-Alvarez, Agusti ; Fekriasl, Sajjad ; Hassan, Fainan ; Gomis-Bellmunt, Oriol
Author_Institution :
Dept. d´Eng. Electr., Univ. Politec. de Catalunya. ETS d´Eng. Ind. de Barcelona, Barcelona, Spain
Abstract :
This paper addresses an advanced vector current control for a voltage source converter (VSC) connected to a weak grid. The proposed control methodology permits high-performance regulation of the active power and the voltage for the feasible VSC range of operation. First, the steady state characteristics for a power converter connected to a very weak system with a short circuit ratio (SCR) of 1 are discussed in order to identify the system limits. Then, the conventional vector control (inner loop) and the conventional power/voltage control (outer loop) stability and frequency responses are analyzed. From the analysis of the classic structure, an enhanced outer loop based on a decoupled and gain-scheduling controller is presented and its stability is analyzed. The proposed control is validated by means of dynamic simulations and it is compared with classic vector current control. Simulation results illustrate that the proposed control system could provide a promising approach to tackle the challenging problem of VSC in connection with weak AC grids.
Keywords :
electric current control; power control; power convertors; power generation scheduling; power grids; power system stability; voltage control; SCR; VSC; active power; advanced vector current control; gain-scheduling control; power control stability; power converter; short circuit ratio; voltage control stability; voltage source converters; weak grids; Current control; Power conversion; Power system stability; Stability analysis; Vectors; Voltage control; Gain-scheduling control; VSC-HVDC; stability; vector current control; weak grid;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2014.2384596