Low-frequency switching voltage regulators for terrestrial photovoltaic systems

  • 1.76 MB
  • English
National Aeronautics and Space Administration, Lewis Research Center , Cleveland, Ohio
Voltage regulators, Photovoltaic power gener
StatementRichard DeLombard ; work performed for U.S. Department of Energy, Conservation and Renewable Energy, Division of Photovoltaic Energy Technology under interagency agreement DE-AI01-79ET20485 and U.S. Agency for International Development, Bureau of Science and Technology, Office of Energy under interagency agreement PASA-NASA/DSB-5710-2-79
SeriesNASA TM -- 83625, NASA technical memorandum -- 83625
ContributionsUnited States. Division of Photovoltaic Energy Technology, United States. Agency for International Development. Office of Energy, Lewis Research Center
The Physical Object
Pagination1 v.
ID Numbers
Open LibraryOL17977283M

Low-frequency switching voltage regulators for terrestrial photovoltaic systems Article (PDF Available) in NASA Technical Memorandum · June with 25 Reads How we measure 'reads'.

Get this from a library. Low-frequency switching voltage regulators for terrestrial photovoltaic systems. [Richard DeLombard; United States. Division of Photovoltaic Energy Technology.; United States.

Agency for International Development. Office of Energy.; Lewis Research Center.]. Low-frequency switching voltage regulators for terrestrial photovoltaic systems. Technical Report DeLombard, R.

The NASA Lewis Research Center (LeRC) is managing both the Photovoltaic Technology Project for the Agency for International Development and the Stand-Alone Applications Project for the Department of Energy.

Under these projects. This study deals with the regulation of the output voltage of photovoltaic (PV) arrays. As a case study, the DC-DC buck converter is used as an interface between the PV array and the load, but.

Performance, efficiency, cost of the power converters and their associated control, are important considerations for the commercialization of renewable power sources. In view of this, this paper proposes a reliable and low cost power electronics interface for photovoltaic energy systems, using a Cited by: 3.

Detailed schematic diagram of the low frequency voltage clamp. The reference voltage u ref is set using the potentiometer P1 shown on the left.

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