Title :
Innovative AC photovoltaic module system using series connection and universal low-voltage micro inverters
Author :
Nuotio, Mika ; Ilic, Marija ; Yang Liu ; Bonanno, Jon ; Verlinden, Pierre J.
Author_Institution :
Empower Micro Syst. Inc., Santa Clara, CA, USA
Abstract :
Photovoltaic micro inverters and AC photovoltaic module concepts were first commercially introduced in the 1990s. AC photovoltaic modules, also known as AC modules, combine a photovoltaic module with a micro inverter in a single integrated assembly. AC modules promise simpler system design, faster installation, improved safety, improved system reliability, and better energy harvest compared with photovoltaic systems using centralized sting inverters. Performance, cost, and output voltage range of conventional micro inverter technologies lag behind centralized string inverter technologies. A novel series connected, universal low-voltage micro inverter architecture for universal AC photovoltaic modules is proposed. The universal low-voltage micro inverter architecture provides micro inverter benefits at a cost and performance of string inverters enabling mainstream use of universal AC modules for distributed generation photovoltaic rooftop applications.
Keywords :
distributed power generation; energy harvesting; invertors; photovoltaic power systems; power generation reliability; roofs; distributed generation; energy harvest; faster installation; improved safety; improved system reliability; innovative AC photovoltaic module system; photovoltaic microinverters; photovoltaic rooftop applications; series connection; simpler system design; string inverters; universal low-voltage microinverters; Immune system; Inverters; MOSFET; Photovoltaic systems; AC module; AC photovoltaic module; MPPT; micro-inverter; photovoltaic systems; power electronics;
Conference_Titel :
Photovoltaic Specialist Conference (PVSC), 2014 IEEE 40th
Conference_Location :
Denver, CO
DOI :
10.1109/PVSC.2014.6925172