DocumentCode :
3406476
Title :
A global linearization approach to control and state estimation of a VSC-HVDC system
Author :
Rigatos, Gerasimos ; Siano, Pierluigi ; Wira, Patrice ; Cecati, Carlo
Author_Institution :
Unit of Ind. Autom., Ind. Syst. Inst., Rion Patras, Greece
fYear :
2015
fDate :
16-18 June 2015
Firstpage :
454
Lastpage :
459
Abstract :
The paper proposes a new control method for the VSC-HVDC system, that is for an AC to DC voltage source converter connected to the electricity grid through a high voltage DC transmission line terminating at an inverter. By proving that the VSC-HVDC system is a differentially flat one, its transformation to the linear canonical form becomes possible. This is a global input-output linearization procedure that results into an equivalent dynamic model of the VSC-HVDC system for which the design of a state feedback controller becomes possible. Furthermore, to estimate and compensate for modeling uncertainty terms and perturbation inputs exerted on the VSC-HVDC model it is proposed to include in the control loop a disturbance observer that is based on the Derivative-free nonlinear Kalman Filter. This filtering method makes use of the linearized equivalent model of the VSC-HVDC system and of an inverse transformation which is based on differential flatness theory and which finally provides estimates of the state variables of the initial nonlinear model. The performance of the proposed VSC-HVDC control scheme is tested through simulation experiments.
Keywords :
HVDC power convertors; HVDC power transmission; Kalman filters; nonlinear filters; power filters; power system state estimation; state feedback; VSC-HVDC system; control loop; derivative-free nonlinear Kalman filter; differential flatness theory; equivalent dynamic model; global input-output linearization procedure; global linearization approach; high voltage DC transmission line; linear canonical form; state estimation; state feedback controller; HVDC transmission; Inverters; Kalman filters; Mathematical model; Power conversion; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Clean Electrical Power (ICCEP), 2015 International Conference on
Conference_Location :
Taormina
Type :
conf
DOI :
10.1109/ICCEP.2015.7177556
Filename :
7177556
Link To Document :
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