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Title: Investigation of Ground-Fault Protection Devices for Photovoltaic Power Systems Applications

Conference ·
OSTI ID:764900

Photovoltaic (PV) power systems, like other electrical systems, may be subject to unexpected ground faults. Installed PV systems always have invisible elements other than those indicated by their electrical schematics. Stray inductance, capacitance and resistance are distributed throughout the system. Leakage currents associated with the PV modules, the interconnected array, wires, surge protection devices and conduit add up and can become large enough to look like a ground-fault. PV systems are frequently connected to other sources of power or energy storage such as batteries, standby generators, and the utility grid. This complex arrangement of distributed power and energy sources, distributed impedance and proximity to other sources of power requires sensing of ground faults and proper reaction by the ground-fault protection devices. The different dc grounding requirements (country to country) often add more confusion to the situation. This paper discusses the ground-fault issues associated with both the dc and ac side of PV systems and presents test results and operational impacts of backfeeding commercially available ac ground-fault protection devices under various modes of operation. Further, the measured effects of backfeeding the tripped ground-fault devices for periods of time comparable to anti-islanding allowances for utility interconnection of PV inverters in the United States are reported.

Research Organization:
Sandia National Laboratories, Albuquerque, NM (US); Sandia National Laboratories, Livermore, CA (US)
Sponsoring Organization:
US Department of Energy (US)
DOE Contract Number:
AC04-94AL85000
OSTI ID:
764900
Report Number(s):
SAND2000-2437C; TRN: AH200102%%224
Resource Relation:
Conference: IEEE Photovoltaic Specialists Conference, Anchorage, AK (US), 09/16/2000--09/22/2000; Other Information: PBD: 3 Oct 2000
Country of Publication:
United States
Language:
English