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Erschienen in: Energy Systems 4/2023

21.03.2022 | Original Paper

Microgrid resilience: a holistic and context-aware resilience metric

verfasst von: Sakshi Mishra, Ted Kwasnik, Kate Anderson

Erschienen in: Energy Systems | Ausgabe 4/2023

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Abstract

Microgrids present an effective solution for the coordinated deployment of various distributed energy resources and furthermore provide myriad additional benefits such as resilience, decreased carbon footprint, and reliability to energy consumers and the energy system as a whole. Boosting the resilience of distribution systems is another major benefit of microgrids. This is because they can also serve as a backup power source when the utility grid’s operations are interrupted due to either high-probability low-impact events like a component failure or low-probability high-impact events—be it a natural disaster or a planned cyberattack. However, the degree to which any particular system can defend, adapt, and restore normal operation depends on various factors including the type and severity of events to which a microgrid is subjected. These factors, in turn, are dependent on the geographical location of the deployed microgrid as well as the cyber risk profile of the site where the microgrid is operating. Therefore, in this work, we attempt to capture this multi-dimensional interplay of various factors in quantifying the ability of the microgrid to be resilient in these varying aspects. This paper, thus, proposes a customized site-specific quantification of the resilience strength for the individual microgrid’s capability to absorb, restore, and adapt to the changing circumstances for sustaining the critical load when a low-probability high-impact event occurs—termed as—context-aware resilience metric. We also present a case study to illustrate the key elements of our integrated analytical approach.

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Fußnoten
1
Critical loads are those loads to which power supply has to be maintained under any circumstances. They are usually specified as the percentage of the total site load.
 
Literatur
1.
Zurück zum Zitat P. P. D.: Critical Infrastructure Security and Resilienc. The While House-Office of the Press secretary, Washington DC (2013) P. P. D.: Critical Infrastructure Security and Resilienc. The While House-Office of the Press secretary, Washington DC (2013)
2.
Zurück zum Zitat Bajwa, A.A., Mokhlis, H., Mekhilef, S., Mubin, M.: Enhancing power system resilience leveraging microgrids: a review. J. Renew. Sustain. Energy 11, 25 (2019)CrossRef Bajwa, A.A., Mokhlis, H., Mekhilef, S., Mubin, M.: Enhancing power system resilience leveraging microgrids: a review. J. Renew. Sustain. Energy 11, 25 (2019)CrossRef
3.
Zurück zum Zitat Mishra, S., Anderson, K., Miller, B., Boyer, K., Adam, W.: Microgrid resilience: a holistic approach for assessing threats, identifying vulnerabilities, and designing corresponding mitigation strategies. Appl. Energy 264, 25 (2020)CrossRef Mishra, S., Anderson, K., Miller, B., Boyer, K., Adam, W.: Microgrid resilience: a holistic approach for assessing threats, identifying vulnerabilities, and designing corresponding mitigation strategies. Appl. Energy 264, 25 (2020)CrossRef
4.
Zurück zum Zitat N. I. A. Council: Critical Infrastructure Resilience Final Report And Recommendations (2009) N. I. A. Council: Critical Infrastructure Resilience Final Report And Recommendations (2009)
5.
Zurück zum Zitat Wang, Y., Chen, C., Wang, J., Baldick, R.: Research on resilience of power systems under natural disasters—a review. IEEE Trans. Power Syst. 31(2), 1604–1613 (2015)CrossRef Wang, Y., Chen, C., Wang, J., Baldick, R.: Research on resilience of power systems under natural disasters—a review. IEEE Trans. Power Syst. 31(2), 1604–1613 (2015)CrossRef
6.
Zurück zum Zitat Jufri, F.H., Widiputra, V., Jung, J.: State-of-the-art review on power grid resilience to extreme weather events: definitions, frameworks, quantitative assessment methodologies, and enhancement strategies. Appl. Energy 239, 1049–1065 (2019)CrossRef Jufri, F.H., Widiputra, V., Jung, J.: State-of-the-art review on power grid resilience to extreme weather events: definitions, frameworks, quantitative assessment methodologies, and enhancement strategies. Appl. Energy 239, 1049–1065 (2019)CrossRef
7.
Zurück zum Zitat Lin, Y., Bie, Z., Qiu, A.: A review of key strategies in realizing power system resilience. Glob. Energy Interconnect. 1(1), 70–78 (2018) Lin, Y., Bie, Z., Qiu, A.: A review of key strategies in realizing power system resilience. Glob. Energy Interconnect. 1(1), 70–78 (2018)
8.
Zurück zum Zitat Vugrin, E.D., Baca, M.J., Mitchell, M.D., Stamber, K.L.: Evaluating the effect of resource constraints on resilience of bulk power system with an electric power restoration model. Int. J. Syst. Syst. Eng. 5, 1 (2014) Vugrin, E.D., Baca, M.J., Mitchell, M.D., Stamber, K.L.: Evaluating the effect of resource constraints on resilience of bulk power system with an electric power restoration model. Int. J. Syst. Syst. Eng. 5, 1 (2014)
9.
Zurück zum Zitat Ouyang, M., Duenas-Osorio, L.: Multi-dimensional hurricane resilience assessment of electric power systems. Struct. Saf. 48, 15–24 (2014)CrossRef Ouyang, M., Duenas-Osorio, L.: Multi-dimensional hurricane resilience assessment of electric power systems. Struct. Saf. 48, 15–24 (2014)CrossRef
10.
Zurück zum Zitat Fang, Y., Sansavini, G.: Optimizing power system investments and resilience against attacks. Reliab. Eng. Syst. Saf. 159, 161–173 (2017)CrossRef Fang, Y., Sansavini, G.: Optimizing power system investments and resilience against attacks. Reliab. Eng. Syst. Saf. 159, 161–173 (2017)CrossRef
11.
Zurück zum Zitat Wang, J., Zuo, W., Rhode-Barbarigos, L., Lu, X., Wang, J., Lin, Y.: Literature review on modeling and simulation of energy infrastructures from a resilience perspective. Reliab. Eng. Syst. Saf. 183, 360–373 (2018)CrossRef Wang, J., Zuo, W., Rhode-Barbarigos, L., Lu, X., Wang, J., Lin, Y.: Literature review on modeling and simulation of energy infrastructures from a resilience perspective. Reliab. Eng. Syst. Saf. 183, 360–373 (2018)CrossRef
12.
Zurück zum Zitat Bie, Z., Lin, Y., Li, G., Li, F.: Battling the extreme: a study on the power system resilience. Proc. IEEE 105, 7 (2017)CrossRef Bie, Z., Lin, Y., Li, G., Li, F.: Battling the extreme: a study on the power system resilience. Proc. IEEE 105, 7 (2017)CrossRef
13.
Zurück zum Zitat Zhou, Y., Panteli, M., Moreno, R., Mancarella, P.: System-level assessment of reliability and resilience provision from microgrids. Appl. Energy 230, 374–392 (2018)CrossRef Zhou, Y., Panteli, M., Moreno, R., Mancarella, P.: System-level assessment of reliability and resilience provision from microgrids. Appl. Energy 230, 374–392 (2018)CrossRef
14.
Zurück zum Zitat Ding, T., Lin, Y., Bie, Z., Chen, C.: A resilient microgrid formation strategy for load restoration considering master-slave distributed generators and topology reconfiguration. Appl. Energy 199, 205–216 (2017)CrossRef Ding, T., Lin, Y., Bie, Z., Chen, C.: A resilient microgrid formation strategy for load restoration considering master-slave distributed generators and topology reconfiguration. Appl. Energy 199, 205–216 (2017)CrossRef
15.
Zurück zum Zitat Schneider, K.P., Tuffner, F.K., Elizondo, M.A., Liu, C.-C., Xu, Y., Ton, D.: Evaluating the feasibility to use microgrids as a resiliency resource. IEEE Trans. Smart Grid 8(2), 687–696 (2017) Schneider, K.P., Tuffner, F.K., Elizondo, M.A., Liu, C.-C., Xu, Y., Ton, D.: Evaluating the feasibility to use microgrids as a resiliency resource. IEEE Trans. Smart Grid 8(2), 687–696 (2017)
16.
Zurück zum Zitat Bian, Y., Bie, Z.: Multi-microgrids for enhancing power system resilience in response to the increasingly frequent natural hazards. IFAC-PapersOnLine 51(28), 61–66 (2018)CrossRef Bian, Y., Bie, Z.: Multi-microgrids for enhancing power system resilience in response to the increasingly frequent natural hazards. IFAC-PapersOnLine 51(28), 61–66 (2018)CrossRef
17.
Zurück zum Zitat Hussain, A., Bui, V.-H., Kim, H.-M.: Microgrids as a resilience resource and strategies used by microgrids for enhancing resilience. Appl. Energy 240, 56–72 (2019)CrossRef Hussain, A., Bui, V.-H., Kim, H.-M.: Microgrids as a resilience resource and strategies used by microgrids for enhancing resilience. Appl. Energy 240, 56–72 (2019)CrossRef
18.
Zurück zum Zitat Amirioun, M., Aminifar, F., Lesani, H., Shahidehpour, M.: Metrics and quantitative framework for assessing microgrid resilience against windstorms. Electr. Power Energy Syst. 104, 716–723 (2019)CrossRef Amirioun, M., Aminifar, F., Lesani, H., Shahidehpour, M.: Metrics and quantitative framework for assessing microgrid resilience against windstorms. Electr. Power Energy Syst. 104, 716–723 (2019)CrossRef
19.
Zurück zum Zitat Jufria, F.H., Widiputrab, V., Jung, J.: State-of-the-art review on power grid resilience to extreme weather events: definitions, frameworks, quantitative assessment methodologies, and enhancement strategies. Appl. Energy 239, 1049–1065 (2019)CrossRef Jufria, F.H., Widiputrab, V., Jung, J.: State-of-the-art review on power grid resilience to extreme weather events: definitions, frameworks, quantitative assessment methodologies, and enhancement strategies. Appl. Energy 239, 1049–1065 (2019)CrossRef
20.
Zurück zum Zitat H. S. Council: The National Strategy For Homeland Security. Homeland Security (2007) H. S. Council: The National Strategy For Homeland Security. Homeland Security (2007)
21.
Zurück zum Zitat Bridam, A., Savoudi, A.: Hierarchical structure of microgrids control system. IEEE Trans. Smart Grid 3(4), 1963–1976 (2012)CrossRef Bridam, A., Savoudi, A.: Hierarchical structure of microgrids control system. IEEE Trans. Smart Grid 3(4), 1963–1976 (2012)CrossRef
22.
Zurück zum Zitat Palizban, O., Kauhaniemi, K.: Hierarchical control structure in microgrids with distributed generation: island and grid-connected mode. Renew. Sustain. Energy Rev. 44, 797–813 (2015)CrossRef Palizban, O., Kauhaniemi, K.: Hierarchical control structure in microgrids with distributed generation: island and grid-connected mode. Renew. Sustain. Energy Rev. 44, 797–813 (2015)CrossRef
23.
Zurück zum Zitat National Academies of Sciences: Engineering, and Medicine. Chapter 3: The Many Causes of Grid Failure. In: Enhancing the Resilience of the Nation’s Electricity System. The National Academies Press, Washington DC (2017) National Academies of Sciences: Engineering, and Medicine. Chapter 3: The Many Causes of Grid Failure. In: Enhancing the Resilience of the Nation’s Electricity System. The National Academies Press, Washington DC (2017)
24.
Zurück zum Zitat W. House: Presidential Policy Directive; Critical Infrastructure Security and Resilience. Wahington DC (2013) W. House: Presidential Policy Directive; Critical Infrastructure Security and Resilience. Wahington DC (2013)
Metadaten
Titel
Microgrid resilience: a holistic and context-aware resilience metric
verfasst von
Sakshi Mishra
Ted Kwasnik
Kate Anderson
Publikationsdatum
21.03.2022
Verlag
Springer Berlin Heidelberg
Erschienen in
Energy Systems / Ausgabe 4/2023
Print ISSN: 1868-3967
Elektronische ISSN: 1868-3975
DOI
https://doi.org/10.1007/s12667-022-00509-4

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