Title :
Synchronization of Parallel Single-Phase Inverters With Virtual Oscillator Control
Author :
Johnson, Brian B. ; Dhople, Sairaj V. ; Hamadeh, Abdullah O. ; Krein, Philip T.
Author_Institution :
Power Syst. Eng. Center, Nat. Renewable Energy Lab., Golden, CO, USA
Abstract :
A method to synchronize and control a system of parallel single-phase inverters without communication is presented. Inspired by the phenomenon of synchronization in networks of coupled oscillators, we propose that each inverter be controlled to emulate the dynamics of a nonlinear dead-zone oscillator. As a consequence of the electrical coupling between inverters, they synchronize and share the load in proportion to their ratings. We outline a sufficient condition for global asymptotic synchronization and formulate a methodology for controller design such that the inverter terminal voltages oscillate at the desired frequency, and the load voltage is maintained within prescribed bounds. We also introduce a technique to facilitate the seamless addition of inverters controlled with the proposed approach into an energized system. Experimental results for a system of three inverters demonstrate power sharing in proportion to power ratings for both linear and nonlinear loads.
Keywords :
invertors; oscillators; synchronisation; controller design methodology; coupled oscillator network; electrical coupling; global asymptotic synchronization; inverter terminal voltage; nonlinear dead-zone oscillator; parallel single-phase inverter; power sharing; virtual oscillator control; Frequency control; Impedance; Inverters; Oscillators; Synchronization; Vectors; Voltage control; Distributed ac power systems; inverters; microgrids; nonlinear control; oscillators; synchronization; uninterruptible power supplies; voltage source inverters;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2013.2296292