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Nassif, A.B.; Ericson, S.; Abbey, C.; Jeffers, R.; Hotchkiss, E.; Bahramirad, S. Valuing Resilience Benefits of Microgrids for an Interconnected Island Distribution System. Electronics 2022, 11, 4206. https://doi /10.3390/electronics11244206
Nassif AB, Ericson S, Abbey C, Jeffers R, Hotchkiss E, Bahramirad S. Valuing Resilience Benefits of Microgrids for an Interconnected Island Distribution System. Electronics. 2022; 11(24):4206. https://doi /10.3390/electronics11244206
Nassif, Alexandre B., Sean Ericson, Chad Abbey, Robert Jeffers, Eliza Hotchkiss, and Shay Bahramirad. 2022. "Valuing Resilience Benefits of Microgrids for an Interconnected Island Distribution System" Electronics 11, no. 24: 4206. https://doi /10.3390/electronics11244206
Nassif, A. B., Ericson, S., Abbey, C., Jeffers, R., Hotchkiss, E., & Bahramirad, S. (2022). Valuing Resilience Benefits of Microgrids for an Interconnected Island Distribution System. Electronics, 11(24), 4206. https://doi /10.3390/electronics11244206
Full Title: Renewable Microgrids: Profiles From Islands and Remote Communities Across the GlobeAuthor(s): Kaitlyn Bunker, Stephen Doig, Kate Hawley, and Jesse MorrisPublisher(s): Rocky Mountain Institute and Carbon War RoomPublication Date: November 1, 2015Full Text: Download ResourceDescription (excerpt):
Relying solely on oil for electricity generation has left island and remote communities exposed to several risks and drawbacks. Oil-based electricity generation is often more expensive and subject to price volatility, which can result in the use of risky fuel-hedging strategies that can lock in prices for years to come. Importing oil puts these communities at risk of supply interruption, reducing energy security. Furthermore, small-scale electricity systems that aren''t connected to a larger electricity grid tend to be more expensive and difficult to maintain.
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