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Publication data
Type Paper
Title Using Investments in Solar Photovoltaics as Inflation Hedges
Authors Seyyed Ali Sadat
Year 2025
Language English (en)
Location San Diego, California; Boston, Massachusetts; Santiago, Chile; and Buenos Aires, Argentina
License CC-BY-SA-4.0
Cite as Sadat, S.A.; Mittal, K.; Pearce, J.M. Using Investments in Solar Photovoltaics as Inflation Hedges. Energies 2025, 18, 890. https://doi.org/10.3390/en18040890.Academia OA

Mainstream strategies for protecting wealth from inflation involve diversification into traditional assets like common stocks, gold, fixed-income securities, and real estate. However, a significant contributor to inflation has been the rising energy prices, which have been the main underlying cause of several past recessions and high inflation periods. Investments in distributed generation with solar photovoltaics (PV) present a promising opportunity to hedge against inflation, considering non-taxed profits from PV energy generation. To investigate that potential, this study quantifies the return on investment (ROI), internal rate of return (IRR), payback period, net present cost, and levelized cost of energy of PV by running Solar Alone Multi-Objective Advisor (SAMA) simulations on grid-connected PV systems across different regions with varying inflation scenarios. The case studies are San Diego, California; Boston, Massachusetts; Santiago, Chile; and Buenos Aires, Argentina. Historical inflation data are also imposed on San Diego to assess PV system potential in dynamic inflammatory conditions, while Boston and Santiago additionally analyze hybrid PV-battery systems to understand battery impacts under increasing inflation rates. Net metering credits vary by location. The results showed that PV could be used as an effective inflation hedge in any region where PV started economically and provided increasingly attractive returns as inflation increased, particularly when taxes were considered. The varying values of the ROI and IRR underscore the importance of region-specific financial planning and the need to consider inflation when evaluating the long-term viability of PV systems. Finally, more capital-intensive PV systems with battery storage can become profitable in an inflationary economy.


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Part of FAST Completed
Keywords Renewable energy, Photovoltaics, Hybrid energy systems, sizing, Cost/emission optimization, self-sufficient, renewable electricity, Solar energy, FAST completed projects and publications, Solar photovoltaic, Photovoltaic, Levelized cost of electricity, Battery, Storage, Clean energy analysis, Energy access and productive services, Energy system model, Sustainable development, Renewable energy, hybrid mini-grids, Distributed generation, inflation hedge, investing, inflation, energy economics
SDG SDG07 Affordable and clean energy
Authors Seyyed Ali Sadat, Kashish Mittal, Joshua M. Pearce
License CC-BY-SA-4.0
Language English ()
Related 0 subpages, 0 pages link here
Views 18 page views (analytics)
Created February 13, 2025 by Joshua M. Pearce
Last edit September 16, 2026 by Felipe Schenone