Title :
4-Phase Interleaved Boost Converter With IC Controller for Distributed Photovoltaic Systems
Author :
Pulvirenti, Fabio ; La Scala, Amedeo ; Ragonese, D. ; D´Souza, Karen ; Tina, Giuseppe Marco ; Pennisi, Salvatore
Author_Institution :
ST-Microelectron., Catania, Italy
Abstract :
We present a DC-DC converter for photovoltaic (PV) applications that is suitable for distributed power conversion obtained by transferring part of the electronics from the inverter to the module. The proposed circuit implements a high-efficiency four-phase interleaved boost converter employing relatively low-valued inductive and capacitive components. Its compact realization is made possible thanks to the innovative design of a dedicated integrated circuit (IC) embedding the power MOS switches and performing the converter control section as well as the Maximum Power Point Tracking (MPPT) algorithm. The solution is designed for a maximum delivered power of 300 W and to work with an MPPT voltage between 9 V and 36 V, with maximum allowed panel current of 9 A. The area of the complete printed-circuit board is 4 cm × 7 cm. Experimental measurements show that the average power conversion efficiency is between 93% and 99% and that the MPPT efficiency is always greater than 99.7%.
Keywords :
MOS integrated circuits; integrated circuit design; maximum power point trackers; photovoltaic cells; switching convertors; 4-phase interleaved boost converter; DC-DC converter; IC controller; MPPT algorithm; converter control section; current 9 A; distributed photovoltaic systems; distributed power conversion; integrated circuit; low valued capacitive component; low valued inductive component; maximum power point tracking algorithm; power 300 W; power MOS switches; power conversion efficiency; printed circuit board; size 4 cm; size 7 cm; voltage 36 V; voltage 9 V; Capacitors; Inductors; Integrated circuits; Inverters; Maximum power point trackers; Power conversion; Switches; Boost converter; MPPT; interleaved converter; photovoltaic; power conversion efficiency; switching DC-DC converter;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2013.2256235