Institutional interdependence and infrastructure resilience
Tài liệu tham khảo
Wilbanks, 2013
Alderson, 2010, Contrasting views of complexity and their implications for network-centric infrastructures, IEEE Trans Syst Man Cybern Syst, 40, 839, 10.1109/TSMCA.2010.2048027
Hunt, 2011, Climate change impacts and adaptation in cities: a review of the literature, Clim Change, 104, 13, 10.1007/s10584-010-9975-6
Mohebbi, 2020, Cyber-physical-social interdependencies and organizational resilience: a review of water, transportation, and cyber infrastructure systems and processes, Sustain Cities Soc, 62, 10.1016/j.scs.2020.102327
Pescaroli, 2016, Critical infrastructure, panarchies and the vulnerability paths of cascading disaster, Nat Hazard, 82, 175, 10.1007/s11069-016-2186-3
2009
Colten, 2007, Environmental justice in a landscape of tragedy, Technol Soc, 29, 173, 10.1016/j.techsoc.2007.01.006
O’Rourke, 2007, Critical infrastructure, interdependencies, and resilience, Bridge, 37, 22
Petit, 2015
Rinaldi, 2001, Critical infrastructure interdependencies, IEEE Control Syst Manag, 21, 11, 10.1109/37.969131
IPCC, 2022, Summary for policymakers, 7
Tellman, 2018, Adaptive pathways and coupled infrastructure: seven centuries of adaptation to water risk and the production of vulnerability in Mexico City, Ecol Soc, 23, 1, 10.5751/ES-09712-230101
Ernstson, 2010, Urban transitions: on urban resilience and human-dominated ecosystems, AMBIO, 39, 531, 10.1007/s13280-010-0081-9
Grabowski, 2017, Infrastructures as socio-eco-technical systems: five considerations for interdisciplinary dialogue, J Infrastruct Syst, 23, 10.1061/(ASCE)IS.1943-555X.0000383
Grimm, 2017, Does the ecological concept of disturbance have utility in urban social–ecological–technological systems?, Ecosyst Health Sustain, 3, 10.1002/ehs2.1255
Hale, 2015, iSAW: integrating structure, actors, and water to study socio‐hydro‐ecological systems, Earth’s Future, 3, 110, 10.1002/2014EF000295
Krumme, 2016, Sustainable development and social-ecological-technological systems (SETS): resilience as a guiding principle in the urban-industrial nexus, Renew Energy Sustain Dev, 2, 70, 10.21622/resd.2016.02.2.070
Markolf, 2018, Interdependent infrastructure as linked social, ecological, and technological systems (SETSs) to address lock‐in and enhance resilience, Earth's Future, 6, 1638, 10.1029/2018EF000926
McPhearson, 2016, Advancing understanding of the complex nature of urban systems, Ecol Indic, 70, 566, 10.1016/j.ecolind.2016.03.054
Meerow, 2019, Urban resilience for whom, what, when, where, and why?, Urban Geogr, 40, 309, 10.1080/02723638.2016.1206395
Ramaswami, 2012, A social‐ecological‐infrastructural systems framework for interdisciplinary study of sustainable city systems: an integrative curriculum across seven major disciplines, J Indus Ecol, 16, 801, 10.1111/j.1530-9290.2012.00566.x
Choi, 2021, Managing extended supply chains, J Bus Logist, 42, 200, 10.1111/jbl.12276
Farrell, 2021, The shared challenges of institutional theories: rational choice, historical institutionalism, and sociological institutionalism
Forsyth, 2014, Elinor Ostrom’s legacy: governing the commons and the rational choice controversy, Dev Change, 45, 1093, 10.1111/dech.12110
Hall, 1996, Political science and the three new institutionalisms, Polit Stud, XLIV, 936, 10.1111/j.1467-9248.1996.tb00343.x
Ostrom, 2010, Beyond markets and states: polycentric governance of complex economic systems, Am Econ Rev, 100, 641, 10.1257/aer.100.3.641
Scott, 1995
Gim, 2019, The resilience work of institutions, Environ Sci Policy, 97, 36, 10.1016/j.envsci.2019.03.004
Kunneke, 2009, Challenges for readjusting the governance of network industries, 1
Corvellec, 2013, Infrastructures, lock-in, and sustainable urban development: the case of waste incineration in the Göteborg Metropolitan Area, J Clean Prod, 50, 32, 10.1016/j.jclepro.2012.12.009
Helmrich, 2021, Centralization and decentralization for resilient infrastructure and complexity, Environ Res Infrastruct Sustain, 1, 10.1088/2634-4505/ac0a4f
Layzer, 2019
McPhearson T. Wicked problems, social-ecological systems, and the utility of systems thinking.
Miller, 2018, Rethinking infrastructure in an era of unprecedented weather events, Issues Sci Technol Winter, 45
Payo, 2016, Experiential lock-in: characterizing avoidable maladaptation in infrastructure systems, J Infrastruct Syst, 22, 10.1061/(ASCE)IS.1943-555X.0000268
Stokols, 2018
Anderies, 2013, Robustness of social-ecological systems: implications for public policy, Policy Stud J, 41, 513, 10.1111/psj.12027
Edwards, 2003, Infrastructure and modernity: force, time and social organization in the history of sociotechnical systems, 187
Hollnagel, 2011
Hollangel, 2021, The necessity of muddling through, 9
Kurokawa, 2018, Examining regulatory capture: looking back at the Fukushima Nuclear Power Plant disaster, seven years later, Univ Pa Asian Law Rev, 13, 47
McDaniels, 2008, Fostering resilience to extreme events within infrastructure systems: characterizing decision contexts for mitigation and adaptation, Glob Environ Change, 18, 310, 10.1016/j.gloenvcha.2008.03.001
Perrow, 1984
Perrow, 2011, Fukushima and the inevitability of accidents, Bull Atomic Sci, 67, 44, 10.1177/0096340211426395
Rochlin, 1987, The self-designing high-reliability organization: aircraft carrier flight operations at sea, Naval War Coll Rev, 40, 76
Linnenluecke, 2015
Lubell, 2021, Institutional navigation for polycentric sustainability governance, Nat Sustain, 4, 664, 10.1038/s41893-021-00707-5
Miller, 2017, Engaging with societal challenges, 909
Shove, 2016, ‘Infrastructures and practices: networks beyond the city’, 242
Slota, 2017, How infrastructures matter, 529
Star, 1999, The ethnography of infrastructure, Am Behav Sci, 43, 377, 10.1177/00027649921955326
Busch, 2011
Ostrom, 2011, Background on the institutional analysis and development framework, Policy Stud J, 39, 7, 10.1111/j.1541-0072.2010.00394.x
Arthur, 1989, Competing technologies, increasing returns, and lock-in by historical events, Econ J, 99, 116, 10.2307/2234208
Helmrich, 2022, Navigating exploitative and explorative leadership in support of infrastructure resilience, Front Sustain Cities, 17, 1
Thompson, 1967
Chester, 2020, Keeping infrastructure reliable under climate uncertainty, Nat Clim Change, 10, 488, 10.1038/s41558-020-0741-0
Centeno, 2015, The emergence of global systemic risk, Annu Rev Sociol, 41, 65, 10.1146/annurev-soc-073014-112317
Chappin, 2014, Adaptation of interconnected infrastructures to climate change: a socio-technical systems perspective, Util Policy, 31, 10, 10.1016/j.jup.2014.07.003
Eakin, 2018, Critical lines of action for vulnerability and resilience research and practice: lessons from the 2017 Hurricane Season, J Extreme Events, 5, 10.1142/S234573761850015X
Silva, 2012, A systems approach to meeting the challenges of urban climate change, Int J Urban Sustain Dev, 4, 125, 10.1080/19463138.2012.718279
Nanto, 2011, Japan’s 2011 Earthquake and Tsunami: economic effects and implica-tions for the United States
Dai, 2022, Ukraine war and anti-Russia sanctions on top of COVID-19 mean even worse trouble lies ahead of global supply chains, Conversation
Shih, 2020, Global supply chains in a post-pandemic world
Mims, 2022: Christopher Mims, (Mar. 26th 2022) How Sanctions on Russia, War in Ukraine and Covid in China Are Transforming Global Supply Chains. The Wall Street Journal. (https://www.wsj.com/articles/how-sanctions-on-russia-war-in-ukraine-and-covid-in-china-are-transforming-global-supply-chains-11648267248).
Lohr, 2011
Baxter, 2011, Socio-technical systems: from design methods to systems engineering, Interact Comput, 23, 4, 10.1016/j.intcom.2010.07.003
Mumford, 2006, The story of sociotechnical design: reflections on its successes, failures and potential, Inf Syst J, 16, 317, 10.1111/j.1365-2575.2006.00221.x
Park, 2013, Integrating risk and resilience approaches to catastrophe management in engineering systems, Risk Anal, 33, 356, 10.1111/j.1539-6924.2012.01885.x
U.S. Department of Interior, 2010
ASCE, 2007
Eakin, 2017, Opinion: urban resilience efforts must consider social and political forces, Proc Natl Acad Sci U S A, 114, 186, 10.1073/pnas.1620081114
Lafferty, 2003, Environmental policy integration: towards an analytical framework, Environ Polit, 12, 1, 10.1080/09644010412331308254
Nyssen, 2011, From myopic coordination to resilience in sociotechnical systems. A case study in a hospital
Kim, 2006, Networks, network governance and networked networks, Int Rev Public Admin, 11, 19
Simon, 1962, The architecture of complexity, Proc Am Philos Soc, 106, 467
Tasic, 2019, Modelling multilevel interdependencies for resilience in complex organisation, Complexity, 2019, 10.1155/2019/3946356
FERC, NERC and Regional Entity Staff Report: The February 2021 Cold Weather Outages in Texas and the South Central United States. (November 2021). Federal Energy Regulatory Commission, North American Electric Reliability Coporation, and Regional Entities: Midwest Reliability Organization, Northeast Power Coordinating Council, ReliabilityFirst Corporation, SERC Corporation, Texas Reliability Entity and Western Electricity Coordinating Council.
Busby, 2021, Cascading risks: understanding the 2021 winter blackout in Texas, Energy Res Soc Sci, 77, 10.1016/j.erss.2021.102106
Miller, 2004, Resisting empire: globalism, relocalization, and the politics of knowledge
Miller, 2008, Civic epistemologies: constituting knowledge and order in political communities, Sociol Compass, 2, 1896, 10.1111/j.1751-9020.2008.00175.x
Miller, 2020, Co-production in global sustainability: histories and theories, Environ Sci Policy, 113, 88, 10.1016/j.envsci.2018.01.016
Muñoz-Erickson, 2017, How cities think: knowledge co-production for urban sustainability and resilience, Forests, 8, 1, 10.3390/f8060203
Emery, 1960, Socio-technical systems, Manag Sci, 2, 83
Chester, 2021, Infrastructure resilience to navigate increasingly uncertain and complex conditions in the Anthropocene, NPJ Urban Sustain, 1, 10.1038/s42949-021-00016-y
Cedergren, 2018, Challenges to critical infrastructure resilience in an institutionally fragmented setting, Saf Sci, 110, 51, 10.1016/j.ssci.2017.12.025
Monstadt, 2019, Urban resilience in the making? The governance of critical infrastructures in German cities, Urban Stud, 56, 2353, 10.1177/0042098018808483
Zimmerman, 2001, Social implications of infrastructure network interactions, J Urban Technol, 8, 97, 10.1080/106307301753430764
Hommels, 2020, STS and the city: techno-politics, obduracy and globalization, Sci Cult, 29, 410, 10.1080/09505431.2019.1710740
Jasanoff, S. (2015). Future Imperfect: science, technology, and the imaginations of modernity. In Dreamscapes of Modernity (Eds.) {C}S. Jasanoff & S. Kim{C}, pp. 1-33.
Bollinger, 2014, Climate adaptation of interconnected infrastructures: a framework for supporting governance, Reg Environ Change, 14, 919
Dong, 2020, Institutional connectedness in resilience planning and management of interdependent infrastructure systems, J Manag Eng, 36, 1, 10.1061/(ASCE)ME.1943-5479.0000839
Farahmand, 2019, Institutional congruence for resilience management in interdependent infrastructure systems, Int J Disaster Risk Reduct, 46
C40 Cities: Understading infrastructure interdependencies in cities (pp. 1-55); 2019. 〈https://www.c40knowledgehub.org/s/article/Understanding-infrastructure-interdependencies-in-cities?language=en_US〉 (Accessed: 17 April 2022).
Scott, 2011, Policy and institutional dimensions of the water–energy nexus, Energy Policy, 39, 6622, 10.1016/j.enpol.2011.08.013
Brown, 2001
Chelleri, 2015, Resilience trade-offs: addressing multiple scales and temporal aspects of urban resilience, Environ Urban, 27, 181, 10.1177/0956247814550780
Janssen, 2007, Robustness trade-offs in social-ecological systems, Int J Commons, 1, 43, 10.18352/ijc.12
Tempels, 2014, A co-evolving frontier between land and water: dilemmas of flexibility versus robustness in flood risk management, Water Int, 39, 872, 10.1080/02508060.2014.958797
Reisner, 1986
Hirt, 2017, Water and sustainability in Arizona: a tale of two cities, J Southwest, 59, 264, 10.1353/jsw.2017.0017
Arizona Water Banking Authority (AWBA), Arizona Department of Water Resource (ADWR), Central Arizona Project (CAP): Recovery of water stored by the Arizona water Banking Authority, Arizona water banking authority annual report, 2015; 2021. 〈https://new.azwater.gov/sites/default/files/media/2021_Update_Joint_Recovery_Plan.pdfpdf〉 (Accessed: 17 April 2022).
Bracken, 2015
Clark, 2019, The vulnerability of interdependent urban infrastructure systems to climate change: could Phoenix experience a Katrina of extreme heat?, Sustain Resilient Infrastruct, 4.1, 21, 10.1080/23789689.2018.1448668
Hill, 2021, The effects of climate change on interregional electricity market dynamics on the US West Coast, Earth’s Future, 9, 10.1029/2021EF002400
Thacker, 2019, Infrastructure for sustainable development, Nat Sustain, 2, 324, 10.1038/s41893-019-0256-8
Atkinson, 2011, Lindblom’s lament: incrementalism and the persistent pull of the status quo, Policy Soc, 30, 9, 10.1016/j.polsoc.2010.12.002
Duit, 2010, Governance, complexity, and resilience, Glob Environ Change, 20, 363, 10.1016/j.gloenvcha.2010.04.006
Lindblom, 1959, The science of muddling through, Public Admin Rev, 19, 79, 10.2307/973677
Peters, 2017, What is so wicked about wicked problems? A conceptual analysis and a research program, Policy Soc, 36, 385, 10.1080/14494035.2017.1361633
Rittel, 1973, Dilemmas in a general theory of planning, Policy Sci, 4, 155, 10.1007/BF01405730
Termeer, 2019, A critical assessment of the wicked problem concept: relevance and usefulness for policy science and practice, Policy Soc, 38, 167, 10.1080/14494035.2019.1617971
Fastiggi, 2021, Governing urban resilience: organisational structures and coordination strategies in 20 North American city governments, Urban Studies, 58, 1262, 10.1177/0042098020907277
Frantzeskaki, 2014, The dynamics of urban ecosystem governance in Rotterdam, the Netherlands, Ambio, 43, 542, 10.1007/s13280-014-0512-0
Martin, 2018