Perspective: Performance Loss Rate in Photovoltaic Systems

Author:

Deceglie Michael G.1ORCID,Anderson Kevin1ORCID,Fregosi Daniel2ORCID,Hobbs William B.3ORCID,Mikofski Mark A.4ORCID,Theristis Marios5ORCID,Meyers Bennet E.6ORCID

Affiliation:

1. National Renewable Energy Laboratory 80401 Golden CO USA

2. Electric Power Research Institute Palo Alto 94304 CA USA

3. Southern Company Birmingham 35203 AL USA

4. DNV Energy Oakland 94612 CA USA

5. Sandia National Laboratories Albuquerque 87185 NM USA

6. SLAC National Accelerator Laboratory Menlo Park 94025 CA USA

Abstract

Photovoltaic systems may underperform expectations for several reasons, including inaccurate initial estimates, suboptimal operations and maintenance, or component degradation. Accurate assessment of these loss factors aids in addressing root causes of underperformance and in realizing accurate expectations and models. The performance loss rate (PLR) is a commonly cited high‐level metric for the change in system output over time, but there is no precise, standard definition. Herein, an annualized definition of PLR that is inclusive of all loss factors and that can capture nonlinear changes to performance over time is proposed. The importance of distinguishing between recoverable and nonrecoverable losses which underly PLR is highlighted.

Funder

Solar Energy Technologies Office

U.S. Department of Energy

National Nuclear Security Administration

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference17 articles.

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3. Best practices for photovoltaic performance loss rate calculations

4. R. H.French L. S.Bruckman D.Moser S.Lindig M.van Iseghem B.Müller J. S.Stein M.Richter M.Herz W.van Sark F.Baumgartner Assessment of Performance Loss Rate of PV Power Systems 2021.

5. PVWatts Calculator https://pvwatts.nrel.gov/ (accessed: March 2023).

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