4.8 Article

Converter Rating Analysis for Photovoltaic Differential Power Processing Systems

期刊

IEEE TRANSACTIONS ON POWER ELECTRONICS
卷 30, 期 4, 页码 1987-1997

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPEL.2014.2326045

关键词

Dc power optimization; differential power processing (DPP); photovoltaic (PV); solar cell degradation; solar cell variation

资金

  1. Grainger Center for Electric Machinery and Electromechanics at the University of Illinois at Urbana-Champaign
  2. U.S. National Science Foundation through the Graduate Research Fellowship program

向作者/读者索取更多资源

When photovoltaic (PV) cells are connected in series, they experience internal and external mismatch that reduces output power. Differential power processing (DPP) architectures achieve high system efficiency by processing a fraction of the total power while maintaining distributed local maximum power point operation. This paper details the computational methods and analysis used to determine the operation of PV-to-bus and PV-to-PV DPP architectures with rating-limited converters. Simulations for both DPP architectures are used to evaluate system performance over 25 years of operation. Based on data from field studies, a PV power coefficient of variation can be estimated as 0.086 after 25 years. An improvement figure of merit reflecting the ratio of energy produced to that delivered in a conventional system is introduced to evaluate comparative performance. Converter ratings of 15-17% for PV-to-bus and 23-33% for PV-to-PV architectures are identified as appropriate ratings for a 15-submodule system (five PV panels in series). Both DPP architectures with these ratings are shown to deliver up to 2.8% more power compared to a conventional series-string architecture based on the expected panel variation over 25 years of operation. DPP converters also outperform dc optimizers in terms of lifetime performance.

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