Title :
Voltage-Source Control of PV Inverter in a CERTS Microgrid
Author :
Wei Du ; Qirong Jiang ; Erickson, M.J. ; Lasseter, R.H.
Author_Institution :
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Abstract :
Microgrids are highly compatible with photovoltaic (PV) sources because of their ability to internally aggregate and balance multiple renewable sources. Traditional grid-connected PV inverter control configurations are basically current sourced and cannot easily control ac voltage or frequency. The PV inverter using the Consortium for Electric Reliability Technology Solutions (CERTS) concepts can control ac voltage and frequency but have a major problem with load transients. During a load transient, the PV microsource becomes overloaded with the possibility of collapsing the dc bus voltage resulting in an ac voltage drop. This paper presents a PV inverter control strategy which enables PV to behave as a voltage source and is capable of maintaining dc bus voltage stability during load transient. With this PV inverter control configuration, it is shown that the PV microsource can operate as a voltage source in the CERTS microgrid.
Keywords :
DC-AC power convertors; distributed power generation; frequency control; power system reliability; power system transient stability; renewable energy sources; solar cells; voltage control; CERTS microgrid; PV inverter; PV microsource; ac frequency; ac voltage drop; consortium for electric reliability technology solution concepts; dc bus voltage stability; grid-connected PV inverter control configurations; load transients; photovoltaic sources; renewable sources; voltage-source control; Frequency control; Inverters; Microgrids; Oscillators; Power system stability; Transient analysis; Voltage control; Consortium for Electric Reliability Technology Solutions (CERTS); controller; intentional islanding; microgrid; photovoltaic (PV);
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2014.2302313