This report will explain how microgrids operate, the ways in which they can support the reliability and resilience of the power grid and the policies state legislatures have adopted to support
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a meaningful solution for the operational needs of the state electric grid and the fundamental architecture of the grid supports robust contributions from distrib-uted energy resources and microgrids.
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Think Microgrid has prepared this initial analytic framework and assessment of state microgrid activities to provide a foundation for state-specific conversations and to share information across jurisdictional
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Think Microgrid (2022) ranked microgrid state policies based on microgrid deployment, policy environment, resilience effort, grid services, and equity initiatives.
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“[M]icrogrid solutions could improve grid resiliency, especially for customers in wildfire prone areas or on a utility''s worst performing feeder, and would thus benefit Kansas ratepayers.”
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Smart grid technologies promote the modernization of the electric grid, including the use of renewable and distributed energy resources, fewer greenhouse gas emissions, and lower operating costs.
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The National Association of Regulatory Utility Commissioners (NARUC) and the National Association of State Energy Officials (NASEO) have released a framework for public utility commissions (PUCs)
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This framework provides relevant background information for State Energy Offices and PUC consideration, regardless of their state''s microgrid landscape, through examples from peers as states
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When the main electric grid loses power, the microgrid goes into island mode (i.e., operates independently of the main electric grid) and serves its own customers with the generation and other
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In 2023, SEPA sought to supplement that research by highlighting state-level policy actions – which include legislative and regulatory proposals — related to resilience and microgrids.
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