Modeling power system operation with intermittent resources
Electricity generating companies and power system operators face the need to minimize total fuel cost and maximize total profit over a given time period. These issues become optimization problems subject to a large number of constraints that must be satisfied simultaneously. The grid updates due to...
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| Vydáno v: | 2013 IEEE PES Innovative Smart Grid Technologies (ISGT) s. 1 - 6 |
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| Hlavní autoři: | , , , |
| Médium: | Konferenční příspěvek |
| Jazyk: | angličtina |
| Vydáno: |
IEEE
01.02.2013
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| ISBN: | 9781467348942, 1467348945 |
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| Abstract | Electricity generating companies and power system operators face the need to minimize total fuel cost and maximize total profit over a given time period. These issues become optimization problems subject to a large number of constraints that must be satisfied simultaneously. The grid updates due to smart-grid technologies, plus the penetration of intermittent resources in electrical grid, introduce additional complexity to the optimization problem. The Renewable Integration Model (RIM) is a computer model of an interconnected power system. It is intended to provide insight and advice on complex power systems management, as well as answers to questions relating to the integration of renewable energy. This paper describes the RIM basic design concept, solution method, and the initial suite of modules that it supports. |
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| AbstractList | Electricity generating companies and power system operators face the need to minimize total fuel cost and maximize total profit over a given time period. These issues become optimization problems subject to a large number of constraints that must be satisfied simultaneously. The grid updates due to smart-grid technologies, plus the penetration of intermittent resources in electrical grid, introduce additional complexity to the optimization problem. The Renewable Integration Model (RIM) is a computer model of an interconnected power system. It is intended to provide insight and advice on complex power systems management, as well as answers to questions relating to the integration of renewable energy. This paper describes the RIM basic design concept, solution method, and the initial suite of modules that it supports. |
| Author | Marinovici, M. C. Carlsen, L. C. Glass, K. A. Kirkham, H. |
| Author_xml | – sequence: 1 givenname: M. C. surname: Marinovici fullname: Marinovici, M. C. email: cristina.marinovici@pnnl.gov organization: Pacific Northwest Nat. Lab., Richland, WA, USA – sequence: 2 givenname: H. surname: Kirkham fullname: Kirkham, H. email: harold.kirkham@pnnl.gov organization: Pacific Northwest Nat. Lab., Richland, WA, USA – sequence: 3 givenname: K. A. surname: Glass fullname: Glass, K. A. email: kevin.glass@pnnl.gov organization: Pacific Northwest Nat. Lab., Richland, WA, USA – sequence: 4 givenname: L. C. surname: Carlsen fullname: Carlsen, L. C. email: leif.carlsen@pnnl.gov organization: Pacific Northwest Nat. Lab., Richland, WA, USA |
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| Snippet | Electricity generating companies and power system operators face the need to minimize total fuel cost and maximize total profit over a given time period. These... |
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| SubjectTerms | economic dispatch Economics Generators load following Load modeling multi-objective optimization problem Optimization Power systems renewable energies Software unit commitment Wind forecasting |
| Title | Modeling power system operation with intermittent resources |
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