Title :
A Generalized Power Control Approach in ABC Frame for Modular Multilevel Converter HVDC Links Based on Mathematical Optimization
Author :
Bergna, Gilbert ; Garces, Alejandro ; Berne, E. ; Egrot, P. ; Arzande, A. ; Vannier, J.-C. ; Molinas, Marta
Author_Institution :
Electricite de France (EDF) R&D, Moret-sur-Loing, France
Abstract :
This paper presents a generalized and versatile control approach using Lagrange multipliers in the ABC frame for a modular multilevel converter-based HVDC system. The methodology is capable of analytically obtaining desired operative conditions by calculating the differential current references previously established by the constraints in the optimization formulation, while obtaining the result with minimum: 1) differential current oscillations (Δidiffk) or 2) capacitive phase-energy oscillations (ΔωΣk). Furthermore, the energy distribution inside the MMC (i.e., the capacitive phase average energy sum (ω̅Σk) and difference (ω̅Δk)) is being regulated by means of the constraint definitions. The optimization yields a differential current reference in “abc” coordinates with a similar structure to instantaneous power theories: as the addition of the product between varying conductances and the MMC internal dynamics input voltages (i.e., the dc bus voltage (vdc) and the MMC load electromotice force (emf) (evk) on the one hand; and a contribution proportional to the ac load power (evkivk) on the other. Both the objective function minimization and the energy constraints are achieved with one single current reference resulting from the optimization process, without the application of linear superposition techniques.
Keywords :
HVDC power convertors; power control; ABC frame; HVDC links; MMC; capacitive phase-energy oscillations; differential current oscillations; differential current references; emf; energy distribution; generalized power control approach; instantaneous power theories; linear superposition techniques; load electromotice force; mathematical optimization; modular multilevel converter; optimization formulation; Capacitors; Equations; HVDC transmission; Linear programming; Mathematical model; Optimization; Power control; Control; Lagrange multipliers; high voltage direct current (HVDC); instantaneous power; modular multilevel converter (MMC); optimization;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2013.2279300