DocumentCode :
37858
Title :
Coordinated Control of Multiterminal DC Grid Power Injections for Improved Rotor-Angle Stability Based on Lyapunov Theory
Author :
Eriksson, Robert
Author_Institution :
Dept. of Electr. Power Syst., KTH R. Inst. of Technol., Stockholm, Sweden
Volume :
29
Issue :
4
fYear :
2014
fDate :
Aug. 2014
Firstpage :
1789
Lastpage :
1797
Abstract :
The stability of an interconnected ac/dc system is affected by disturbances occurring in the system. Disturbances, such as three-phase faults, may jeopardize the rotor-angle stability and, thus, the generators fall out of synchronism. The possibility of fast change of the injected powers by the multiterminal dc grid can, by proper control action, enhance this stability. This paper proposes a new time optimal control strategy for the injected power of multiterminal dc grids to enhance the rotor-angle stability. The controller is time optimal, since it reduces the impact of a disturbance as fast as possible, and is based on Lyapunov theory considering the nonlinear behavior. The time optimal controller is of a bang-bang type and uses wide-area measurements as feedback signals. Nonlinear simulations are run in the Nordic32 test system implemented in PowerFactory/DIgSILENT with an interface to Matlab where the controller is implemented.
Keywords :
Lyapunov methods; bang-bang control; optimal control; power grids; power system transient stability; rotors; DIgSILENT; Lyapunov theory; Matlab; Nordic32 test system; PowerFactory; bang-bang control; coordinated control; feedback signals; improved rotor-angle stability; interconnected AC/DC system stability; multiterminal DC grid power injections; nonlinear behavior; nonlinear simulations; three-phase faults; time optimal control strategy; time optimal controller; wide-area measurements; HVDC transmission; Lyapunov methods; Power system stability; Stability criteria; Trajectory; Transient analysis; Control Lyapunov function; coordinated control; energy function; high-voltage direct current (HVDC); multiterminal dc (MTDC); small-signal stability; transient stability;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2013.2293198
Filename :
6692901
Link To Document :
بازگشت