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Co-optimization of electricity transmission and generation resources for planning and policy analysis: review of concepts and modeling approaches

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SPRINGER HEIDELBERG
DOI: 10.1007/s12667-015-0158-4

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Co-optimization; Transmission expansion planning; Generation expansion planning; Model fidelity; Energy storage; Demand response; Integrated network uncertainty; Long-term planning; AC and DC power flow

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The recognition of transmission's interaction with other resources has motivated the development of co-optimization methods to optimize transmission investment while simultaneously considering tradeoffs with investments in electricity supply, demand, and storage resources. For a given set of constraints, co-optimized planning models provide solutions that have lower costs than solutions obtained from decoupled optimization (transmission-only, generation-only, or iterations between them). This paper describes co-optimization and provides an overview of approaches to co-optimizing transmission options, supply-side resources, demand-side resources, and natural gas pipelines. In particular, the paper provides an up-to-date assessment of the present and potential capabilities of existing co-optimization tools, and it discusses needs and challenges for developing advanced co-optimization models.

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