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Research Article

Measuring the economic and societal value of reliability/resilience investments: case studies of islanded communities

ORCID Icon, , &
Pages 207-222 | Received 27 Sep 2022, Accepted 10 Oct 2023, Published online: 20 Nov 2023

References

  • Anderson, K., Li, X., Dalvi, S., Ericson, E., Barrows, C., Murphy, C., & Hotchkiss, E. (2020). Integrating the value of electricity resilience in energy planning and operations decisions. IEEE Systems Journal, 15(1), 204–214. https://doi.org/10.1109/JSYST.2019.2961298
  • Apt, J., Morgan, G., Hines, P., King, D., McCullar, N., Meisterling, K. … Talukdar, S. (2004). Critical electric power issues in Pennsylvania: Transmission, distributed generation, and continuing services when the grid fails. Report for the Pennsylvania Office of environmental Protection,
  • Arrow, K., Solow, R., Portney, P. R., Leamer, E. E., Radner, R., & Schuman, H. (1993). Report of the NOAA panel on contingent valuation. Federal Register, 58(10), 4601–4614.
  • Baik, S., Davis, A. L., & Morgan, M. G. (2018). Assessing the cost of large-scale power outages to residential customers. Risk Analysis, 38(2), 283–296. https://doi.org/10.1111/risa.12842
  • Baik, S., Davis, A. L., Park, J. W., Sirinterlikci, S., & Morgan, M. G. (2020). Estimating what US residential customers are willing to pay for resilience to large electricity outages of long duration. Nature Energy, 5(3), 250–258. https://doi.org/10.1038/s41560-020-0581-1
  • Bundhoo, Z. M., Shah, K. U., & Surroop, D. (2018). Climate proofing island energy infrastructure systems: Framing resilience based policy interventions. Utilities Policy, 55, 41–51. https://doi.org/10.1016/j.jup.2018.09.005
  • Bureau of Economic Analysis. (2013). An essential tool for regional developers and planners. https://www.bea.gov/sites/default/files/methodologies/RIMSII_User_Guide.pdf
  • Bureau of Economic Analysis. (2020). News release: Gross domestic produce by industry, third quarter 2019. Available at: https://www.bea.gov/system/files/2020-01/gdpind319.pdf
  • Carvallo, J. P., Frick, N. M., & Schwartz, L. (2022). A review of examples and opportunities to quantify the grid reliability and resilience impacts of energy efficiency. Energy Policy, 169, 113185. https://doi.org/10.1016/j.enpol.2022.113185
  • Carvallo, J. P., Sanstad, A. H., & Larsen, P. H. (2019). Exploring the relationship between planning and procurement in western U.S. electric utilities. Energy, 183, 4–15. https://doi.org/10.1016/j.energy.2019.06.122
  • Dormady, N. C., Rose, A., Roa-Henriquez, A., & Morin, C. B. (2022). The cost-effectiveness of economic resilience. International Journal of Production Economics, 244, 108371. https://doi.org/10.1016/j.ijpe.2021.108371
  • Ehlen, M. A., Vargas, V. N., Loose, V. W., Starks, S. J., & Ellebracht, L. A. (2011). Regional Economic Accounting (REAcct). A software tool for rapidly approximating economic impacts(Report No. SAND2009-6552). Sandia National Lab.(SNL-NM),
  • Ericson, S., & Lisell, L. (2018). A flexible framework for modeling customer damage functions for power outages. Energy Systems, 11(1), 95–111. https://doi.org/10.1007/s12667-018-0314-8
  • FEMA. (1991). Seismic vulnerability and impact of disruption of lifelines in the conterminous United States. In Earthquake hazard reduction series 58. Applied Technology Council (ATC). https://permanent.fdlp.gov/lps117748/fema_224%5b1%5d.pdf.
  • FEMA. (2020, June 30). Benefit-cost analysis sustainment and enhancements. “Standard economic value methodology report – version 9.0.
  • Hanna, R., Disfani, V. R., Haghi, H. V., Victor, D. G., & Kleissl, J. (2019). Improving estimates for reliability and cost in microgrid investment planning models. Journal of Renewable and Sustainable Energy, 11(4), 045302. https://doi.org/10.1063/1.5094426
  • Industrial Economics, Incorporated. (2018). Estimating the regional economic resiliency benefits of community microgrids. Prepared for New York State Energy Research and Development Authority, 18–32. https://www.nyserda.ny.gov/-/media/Files/Publications/Research/Electic-Power-Delivery/18-32-Estimating-the-Regional-Economic.pdf.
  • Kintner-Meyer, M. C., Homer, J. S., Balducci, P. J., & Weimar, M. R. (2017). Valuation of electric power system services and technologies(Report No. PNNL-25633). Pacific Northwest National Lab.(PNNL),
  • Klise, K., Moglen, R., Hogge, J., Eisenberg, D., & Haxton, T. (2022). Resilience analysis of Potable water service after power outages in the U.S. Virgin Islands. Journal of Water Resources Planning and Management, 148(12), 05022010. https://doi.org/10.1061/(ASCE)WR.1943-5452.0001607
  • Larsen, P. H. (2016). Severe weather, power outages, and a decision to improve electric utility reliability [ Doctoral Dissertation]. Stanford University. http://purl.stanford.edu/sc466vy9575
  • Larsen, P. H., Goldsmith, S., Smith, O., Wilson, M. L., Strzepek, K., Chinowsky, P., & Saylor, B. (2008). Estimating future costs for Alaska public infrastructure at risk from climate change. Global Environmental Change, 18(3), 442–457. https://doi.org/10.1016/j.gloenvcha.2008.03.005
  • Lawton, L., Sullivan, M., Van Liere, K., Katz, A., & Eto, J. (2003). A framework and review of customer outage costs: Integration and analysis of electric utility outage cost surveys. Lawrence Berkeley National Laboratory Report No. LBNL-54365.
  • Leibowicz, B. D., Sanstad, A. H., Zhu, Q., Larsen, P. H., & Eto, J. H. (2022). Electric utility valuations of investments to reduce the risks of long-duration, widespread power interruptions, part II: Case studies. Sustainable and Resilient Infrastructure, 8(sup1), 1–20. https://doi.org/10.1080/23789689.2022.2138163
  • Mahzarnia, M., Moghaddam, M. P., Baboli, P. T., & Siano, P. (2020). A review of the measures to enhance power systems resilience. IEEE Systems Journal, 14(3), 4059–4070. https://doi.org/10.1109/JSYST.2020.2965993
  • Melvin, A., Larsen, P., Boehlert, B., Neumann, J., Chinowsky, P., Espinet, X., Martinich, J., Baumann, M., Rennels, L., Bothner, A., Nicolsky, D., & Marchenko, S. (2017). Climate change risks to Alaska public infrastructure: Improved estimates of damages and the economics of proactive adaptation. Proceedings of the National Academy of Sciences of the United States of America, 114(2), E122–E131. https://doi.org/10.1073/pnas.1611056113
  • National Academies of Sciences, Engineering, and Medicine. (2017) . Enhancing the resilience of the nation’s electricity system. National Academies Press.
  • North American Electric Reliability Corporation (NERC). (2020). 2020-2021 Winter reliability assessment. https://www.nerc.com/pa/RAPA/ra/Reliability%20Assessments%20DL/NERC_WRA_2020_2021.pdf
  • Peterson, C., Xu, L., & Florence, C. (2021). Average medical cost of fatal and non-fatal injuries by type in the USA. Injury Prevention, 27(1), 1–10.
  • Pörtner, H. O., Roberts, D. C., Adams, H., Adler, C., Aldunce, P., Ali, & E. Birkmann, J. (2022). Climate change 2022: Impacts, adaptation and vulnerability. IPCC Sixth Assessment Report
  • Santos, J., Roquel, K. I. D. Z., Lamberte, A., Tan, R. R., Aviso, K. B., Tapia, J. F. D., & Yu, K. D. S. (2022). Assessing the economic ripple effects of critical infrastructure failures using the dynamic inoperability input-output model: A case study of the taal volcano eruption. Sustainable and Resilient Infrastructure, 8(sup1), 1–17. https://doi.org/10.1080/23789689.2022.2127999
  • Shah, K. U., Blechinger, P., Furlong, H., Philippidis, G., Surroop, D., & Singh, A. (2016). Special issue on energy policy for the future of small island developing states (SIDS). Energy Policy, 100(98), 650–652. https://doi.org/10.1016/j.enpol.2016.09.007
  • Sheridan, S. C., Zhang, W., Deng, X., & Lin, S. (2021). The individual and synergistic impacts of windstorms and power outages on injury ED visits in New York State. Science of the Total Environment, 797, 149199. https://doi.org/10.1016/j.scitotenv.2021.149199
  • Shuai, M., Chengzhi, W., Shiwen, Y., Hao, G., Jufang, Y., & Hui, H. (2018). Review on economic loss assessment of power outages. Procedia Computer Science, 130, 1158–1163. Singh, P., Amekudzi-Kennedy, A., Ashuri, B., Chester, M., Labi, S., & Wall, T. A. (2022). Developing adaptive resilience in infrastructure systems: an approach to quantify long-term benefits. Sustainable and Resilient Infrastructure, 1-22. https://doi.org/10.1016/j.procs.2018.04.151
  • The state of Alaska, Department of labor and workforce development. 2020 census data for redistricting. https://live.laborstats.alaska.gov/cen/2020-census-data.html?geotype_check%5B49%5D=49
  • Stout, S. R., Lee, N., Cox, S. L., Elsworth, J., & Leisch, J. (2019). Power sector resilience planning Guidebook: A self-guided reference for practitioners(Report no. NREL/TP-7A40-73489). National Renewable Energy Lab.(NREL).
  • Strayer, H., Blake, I., Stevens, I., & Provost, E. (2020). Alaska Native Injury Atlas. Third. Alaska Native Tribal Health Consortium Injury Prevention Program and Alaska Native Epidemiology Center. Available athttp://anthctoday.org/epicenter/publications/InjuryAtlas2020/2020_AlaskaNative_InjuryAtlas_FullReport.pdf.
  • Sullivan, M., Collins, M. T., Schellenberg, J., Larsen, P. H., Hanemann, M., Morgan, M. G., Davis, A. L., Baik, S., & Vishnav, P. (2019). Elicitation of electric utility customer power interruption costs: A Roadmap for conducting a National survey. https://icecalculator.com/assets/documents/National-Study-Roadmap.pdf
  • Sullivan, M. J., Mercurio, M. G., Schellenberg, J. A., & Eto, J. H. (2010). How to estimate the value of service reliability improvements. In IEEE PES General Meeting, Minneapolis, Minnesota (pp. 1–5). IEEE.
  • Sullivan, M., & Schellenberg, J. (2013, March 27). Downtown San Francisco long duration outage cost study. Prepared for Pacific Gas & Electric Company.
  • Sullivan, M., Schellenberg, J., & Blundell, M. (2015). Updated value of service reliability estimates for electric utility customers in the United States(Report No. LBNL-6941E). Lawrence Berkeley National Lab.(LBNL).
  • To, L. S., Bruce, A., Munro, P., Santagata, E., MacGill, I., Rawali, M., & Raturi, A. (2021). A research and innovation agenda for energy resilience in Pacific island countries and territories. Nature Energy, 6(12), 1098–1103. https://doi.org/10.1038/s41560-021-00935-1
  • U.S. Census Bureau. (2020). U.S. And world population clock. Available at: http://www.census.gov/popclock
  • U.S. Department of Energy. (2013). US Energy Sector Vulnerabilities to Climate Change and Extreme Weather. Department of Energy Washington DC. https://www.energy.gov/downloads/us-energy-sector-vulnerabilities-climate-change-and-extreme-weather#:~:text=US%20Energy%20Sector%20Vulnerabilities%20to%20Climate%20Change
  • U.S. Department of Energy. (2015). Climate Change and the U.S. Energy Sector: Regional Vulnerabilities and Resilience Solutions. Department of Energy Washington DC. https://www.energy.gov/sites/prod/files/2015/10/f27/Regional_Climate_Vulnerabilities_and_Resilience_Solutions_0.pdf
  • U.S. Department of Transportation. (2021). Guidance on the treatment of the economic value of a statistical life (VSL) in U.S. Department of transportation analyses - 2021 update. https://www.transportation.gov/sites/dot.gov/files/2021-03/VSL%20Update%202021%20-%20Transmittal%20Memo.pdf
  • U.S. Global Change Research Program. (2018). Impacts, risks, and adaptation in the United States: Fourth National climate assessment (Vol. II). https://doi.org/10.7930/NCA4.2018
  • Vugrin, E. D., Castillo, A. R., & Silva-Monroy, C. A. (2017). Resilience metrics for the electric power system: A performance-based approach. (report no. SAND2017-1493). Sandia National Lab.(SNL-NM).
  • Zamuda, C. D., Larsen, P. H., Collins, M. T., Bieler, S., Schellenberg, J., & Hees, S. (2019). Monetization methods for evaluating investments in electricity system resilience to extreme weather and climate change. Electricity Journal, 32(9), 106641. https://doi.org/10.1016/j.tej.2019.106641