Title :
Distributed Reactive Power Feedback Control for Voltage Regulation and Loss Minimization
Author :
Bolognani, Saverio ; Carli, Ruggero ; Cavraro, Guido ; Zampieri, Sandro
Author_Institution :
Lab. for Inf. & Decision Syst., Massachusetts Inst. of Technol., Cambridge, MA, USA
Abstract :
We consider the problem of exploiting the microgenerators dispersed in the power distribution network in order to provide distributed reactive power compensation for power losses minimization and voltage regulation. In the proposed strategy, microgenerators are smart agents that can measure their phasorial voltage, share these data with the other agents on a cyber layer, and adjust the amount of reactive power injected into the grid, according to a feedback control law that descends from duality-based methods applied to the optimal reactive power flow problem. Convergence to the configuration of minimum losses and feasible voltages is proved analytically for both a synchronous and an asynchronous version of the algorithm, where agents update their state independently one from the other. Simulations are provided in order to illustrate the performance and the robustness of the algorithm, and the innovative feedback nature of such strategy is discussed.
Keywords :
compensation; distributed power generation; duality (mathematics); load flow control; minimisation; phasor measurement; power distribution control; reactive power control; voltage control; voltage measurement; asynchronous version algorithm; distributed reactive power compensation; distributed reactive power feedback control; duality-based method; microgenerator dispersion; optimal reactive power flow problem; phasorial voltage measurement; power distribution network; power loss minimization; smart agent; synchronous version algorithm; voltage regulation; Algorithm design and analysis; Generators; Load modeling; Power distribution; Power measurement; Reactive power; Voltage measurement; Distributed control; networked control systems; reactive power control; smart grids; voltage control;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2014.2363931