Scalable Transmission Expansion Under Uncertainty Using Three-stage Stochastic Optimization
The intermittent nature of renewable energy poses new challenges for power grids due to its variable and uncertain power output. These features of renewable generation are becoming more relevant to transmission planning as grids reach higher penetration levels of renewable energy. In this paper we p...
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| Published in: | Innovative Smart Grid Technologies pp. 1 - 5 |
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| Main Authors: | , , , , |
| Format: | Conference Proceeding |
| Language: | English |
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01.02.2020
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| ISSN: | 2472-8152 |
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| Abstract | The intermittent nature of renewable energy poses new challenges for power grids due to its variable and uncertain power output. These features of renewable generation are becoming more relevant to transmission planning as grids reach higher penetration levels of renewable energy. In this paper we present an approach for transmission planning based on scalable computational approaches which enable the explicit consideration of operational uncertainties in the planning process. Using three-stage stochastic programming and the progressive hedging algorithm, we compute transmission expansion decisions on a modified RTS-GMLC test system. We augment the grid with large amounts of wind generation and consider many operational scenarios subject to wind uncertainty. |
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| AbstractList | The intermittent nature of renewable energy poses new challenges for power grids due to its variable and uncertain power output. These features of renewable generation are becoming more relevant to transmission planning as grids reach higher penetration levels of renewable energy. In this paper we present an approach for transmission planning based on scalable computational approaches which enable the explicit consideration of operational uncertainties in the planning process. Using three-stage stochastic programming and the progressive hedging algorithm, we compute transmission expansion decisions on a modified RTS-GMLC test system. We augment the grid with large amounts of wind generation and consider many operational scenarios subject to wind uncertainty. |
| Author | Sigler, Devon Satkauskas, Ignas Reynolds, Matthew Maack, Jonathan Jones, Wesley |
| Author_xml | – sequence: 1 givenname: Devon surname: Sigler fullname: Sigler, Devon organization: National Renewable Energy Laboratory,Golden,Colorado – sequence: 2 givenname: Jonathan surname: Maack fullname: Maack, Jonathan organization: National Renewable Energy Laboratory,Golden,Colorado – sequence: 3 givenname: Ignas surname: Satkauskas fullname: Satkauskas, Ignas organization: National Renewable Energy Laboratory,Golden,Colorado – sequence: 4 givenname: Matthew surname: Reynolds fullname: Reynolds, Matthew organization: National Renewable Energy Laboratory,Golden,Colorado – sequence: 5 givenname: Wesley surname: Jones fullname: Jones, Wesley organization: National Renewable Energy Laboratory,Golden,Colorado |
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| Snippet | The intermittent nature of renewable energy poses new challenges for power grids due to its variable and uncertain power output. These features of renewable... |
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| SubjectTerms | Costs Load modeling Planning Programming Propagation losses Renewable energy sources Smart grids Stochastic processes Transmission line measurements Uncertainty |
| Title | Scalable Transmission Expansion Under Uncertainty Using Three-stage Stochastic Optimization |
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