Title :
Small-signal modelling and parametric sensitivity of a Virtual Synchronous Machine
Author :
D´Arco, Salvatore ; Suul, Jon Are ; Fosso, Olav B.
Author_Institution :
SINTEF Energy Res., Trondheim, Norway
Abstract :
The Virtual Synchronous Machine (VSM) concept is emerging as a flexible approach for controlling power electronic converters in grid-connected as well as stand-alone or microgrid applications. Several VSM implementations have been proposed, with the emulation of inertia and damping of a traditional Synchronous Machine (SM) as their common feature. This paper investigates a VSM implementation based on a Voltage Source Converter (VSC), where a virtual swing equation provides the phase reference for cascaded voltage and current control in a synchronous reference frame. The control system includes also a virtual impedance and an outer loop frequency droop controller which is functionally equivalent to the governor of a traditional SM. A linearized small-signal model of the VSM including the converter and its grid side filter, the control system and a simple grid equivalent, is developed and verified by time-domain simulations of a nonlinear system model. The small-signal model is used to identify the critical modes of the system and to investigate their parametric sensitivity.
Keywords :
electric current control; frequency control; power convertors; synchronous machines; time-domain analysis; voltage control; VSC; VSM concept; cascaded voltage control; current control; grid side filter; grid-connected applications; linearized small-signal model; microgrid applications; nonlinear system model; outer loop frequency droop controller; parametric sensitivity; power electronic converters; stand-alone applications; synchronous reference frame; time-domain simulations; virtual impedance; virtual swing equation; virtual synchronous machine concept; voltage source converter; Damping; Equations; Mathematical model; Phase locked loops; Synchronous machines; Voltage control; Power Electronic Control; Small-signal Stability; Virtual Synchronous Machine;
Conference_Titel :
Power Systems Computation Conference (PSCC), 2014
Conference_Location :
Wroclaw
DOI :
10.1109/PSCC.2014.7038410