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An Econometric Assessment of Electricity Demand in the United States Using Utility-specific Panel Data and the Impact of Retail Competition on Prices

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  • Agustin J. Ros

Abstract

This paper uses a panel data of 72 U.S. electricity distribution companies during the period 1972-2009 to estimate structural demand and reduced-form price models. I find the own-price and income elasticity of demand for residential, commercial, and industrial customers that are generally consistent with the published economics literature. While static models work well for residential demand, dynamic models are more appropriate for the larger customer classes who require more time to adjust. Conditioning on the regressors, I find that residential and commercial electricity demand has been increasing slowly while industrial electricity demand and deflated electricity prices have been decreasing. In all price models I find that total factor productivity is consistently the most significant explanatory factor with a 1% increase in total factor productivity resulting in a reduction in deflated electricity prices ranging between 0.05% and 0.30%, depending on the model. Lastly, I find that retail electricity competition is associated with lower deflated electricity prices with the mean total impact being -4.3%, -8.2% and -11.1% for residential, commercial and industrial customers, respectively and with the impact diminishing over the sample period for residential customers, remaining relatively constant for commercial customers and increasing for industrial customers.

Suggested Citation

  • Agustin J. Ros, 2017. "An Econometric Assessment of Electricity Demand in the United States Using Utility-specific Panel Data and the Impact of Retail Competition on Prices," The Energy Journal, International Association for Energy Economics, vol. 0(Number 4).
  • Handle: RePEc:aen:journl:ej38-4-ros
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    References listed on IDEAS

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    2. Agustin J. Ros, 2020. "Does electricity competition work for residential consumers? Evidence from demand models for default and competitive residential electricity services," Journal of Regulatory Economics, Springer, vol. 58(1), pages 1-32, August.
    3. Berger, Johannes & Strohner, Ludwig, 2022. "Extensions of the Energy PUblic Policy Model for Austria and other European countries E-(PuMA)," Research Papers 19, EcoAustria – Institute for Economic Research.
    4. Tsai, Chen-Hao & Tsai, Yi-Lin, 2018. "Competitive retail electricity market under continuous price regulation," Energy Policy, Elsevier, vol. 114(C), pages 274-287.
    5. Keighton R. Allen & Thomas M. Fullerton, 2019. "Metropolitan Evidence Regarding Small Commercial and Industrial Electricity Consumption," International Journal of Energy Economics and Policy, Econjournals, vol. 9(6), pages 1-11.
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    7. Farrell, Niall & Meles, Tensay Hadush, 2023. "The equity and efficiency of electricity network tariffs," Papers WP744, Economic and Social Research Institute (ESRI).
    8. Zarnikau, J. & Cao, K.H. & Qi, H.S. & Woo, C.K., 2023. "Has retail competition reduced residential electricity prices in Texas?," Utilities Policy, Elsevier, vol. 84(C).
    9. Gal Hochman & Chrysostomos Tabakis, 2020. "The Potential Implications of the Introduction of Bioelectricity in South Korea," Sustainability, MDPI, vol. 12(18), pages 1-21, September.
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    11. Cao, K.H. & Qi, H.S. & Li, R. & Woo, C.K. & Tishler, A. & Zarnikau, J., 2023. "An experiment in own-price elasticity estimation for non-residential electricity demand in the U.S," Utilities Policy, Elsevier, vol. 81(C).
    12. Ann Wolverton & Ronald Shadbegian & Wayne B. Gray, 2022. "The U.S. Manufacturing Sector’s Response to Higher Electricity Prices: Evidence from State-Level Renewable Portfolio Standards," NBER Working Papers 30502, National Bureau of Economic Research, Inc.
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    18. Hamed, Mohammad M. & Ali, Hesham & Abdelal, Qasem, 2022. "Forecasting annual electric power consumption using a random parameters model with heterogeneity in means and variances," Energy, Elsevier, vol. 255(C).
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