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Evaluating economy-wide impacts of complex regulations: A hybrid linking approach for detailed sector and CGE models

Andrew Schreiber, David Evans, Alex Marten, Ann Wolverton and Wade Davis

Energy Economics, 2025, vol. 145, issue C

Abstract: We develop a novel methodology for linking a detailed sector model with a computable general equilibrium (CGE) model to estimate the economy-wide social costs and distributional impacts of a complex environmental regulation when an iterative linkage between models is not possible. We demonstrate the linking approach using stylized compliance choices and costs that are consistent with the types of model outputs typically available from a technology-rich sector model. We use this stylized information to calibrate parameters that produce an identical equilibrium response in a corresponding partial equilibrium sub-model of the CGE model. The calibrated parameters, which represent the regulatory requirements, are then passed to the full CGE model to estimate general equilibrium impacts. This methodology allows us to translate partial equilibrium impacts into economy-wide impacts while retaining consistency with the projected compliance behavior from the sector model. We provide a worked example for an illustrative electricity sector regulation using U.S. EPA’s CGE model, SAGE, and also discuss the challenges of operationalizing this methodology in a real-world setting.

Keywords: Computable general equilibrium; Social opportunity cost; Electricity sector; Aggregate energy consumption; Environmental regulation; SAGE; Integrated planning model (search for similar items in EconPapers)
JEL-codes: C68 D58 D61 L94 Q43 Q58 (search for similar items in EconPapers)
Date: 2025
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Persistent link: https://EconPapers.repec.org/RePEc:eee:eneeco:v:145:y:2025:i:c:s0140988325002828

DOI: 10.1016/j.eneco.2025.108458

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Energy Economics is currently edited by R. S. J. Tol, Beng Ang, Lance Bachmeier, Perry Sadorsky, Ugur Soytas and J. P. Weyant

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