Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation
As power systems increasingly rely on gas-fired power plants (GFPP), and as thermal cycling requirements increase due to larger penetrations of intermittent generation, the long-term service agreements (LTSAs) that define the conditions and costs for GFPP maintenance are exerting more economic influ...
Main Authors: | , , , |
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Format: | Working Paper |
Language: | en_US |
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Massachusetts Institute of Technology. Engineering Systems Division
2016
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Online Access: | http://hdl.handle.net/1721.1/103011 |
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author | Leung, Tommy Sanchez-Gonzalez, Miguel Rodilla, Pablo Batlle Lopez, Carlos |
author_facet | Leung, Tommy Sanchez-Gonzalez, Miguel Rodilla, Pablo Batlle Lopez, Carlos |
author_sort | Leung, Tommy |
collection | MIT |
description | As power systems increasingly rely on gas-fired power plants (GFPP), and as thermal cycling requirements increase due to larger penetrations of intermittent generation, the long-term service agreements (LTSAs) that define the conditions and costs for GFPP maintenance are exerting more economic influence over a power system’s short-term operations.
In a previous paper, the authors proposed a unit commitment formulation that explicitly represents LTSAs and showed that these operations and maintenance (O&M) contracts substantially impact the cost of economic dispatch when GFPPs are forced to intensively cycle. The authors also showed that properly modeling these contracts can substantially alter a power system’s short term optimal scheduling.
Traditional LTSAs were designed assuming that (especially) combined cycle gas turbines would operate in a base-loaded regime. In new operating regimes characterized by heavy cycling, GFPPs with traditional LTSAs can incur excessive cycling costs. It may be possible for owners of these GFPPs to renegotiate their existing LTSAs for more flexible conditions that will allow their GFPPs to cycle at lower costs, even if this renegotiation requires the owner to pay an upfront expense.
In this paper, we propose a formulation aimed at supporting the process of optimizing LTSAs contracts for a portfolio of GFPPs. |
first_indexed | 2024-09-23T13:05:02Z |
format | Working Paper |
id | mit-1721.1/103011 |
institution | Massachusetts Institute of Technology |
language | en_US |
last_indexed | 2024-09-23T13:05:02Z |
publishDate | 2016 |
publisher | Massachusetts Institute of Technology. Engineering Systems Division |
record_format | dspace |
spelling | mit-1721.1/1030112019-04-12T16:25:47Z Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation Leung, Tommy Sanchez-Gonzalez, Miguel Rodilla, Pablo Batlle Lopez, Carlos As power systems increasingly rely on gas-fired power plants (GFPP), and as thermal cycling requirements increase due to larger penetrations of intermittent generation, the long-term service agreements (LTSAs) that define the conditions and costs for GFPP maintenance are exerting more economic influence over a power system’s short-term operations. In a previous paper, the authors proposed a unit commitment formulation that explicitly represents LTSAs and showed that these operations and maintenance (O&M) contracts substantially impact the cost of economic dispatch when GFPPs are forced to intensively cycle. The authors also showed that properly modeling these contracts can substantially alter a power system’s short term optimal scheduling. Traditional LTSAs were designed assuming that (especially) combined cycle gas turbines would operate in a base-loaded regime. In new operating regimes characterized by heavy cycling, GFPPs with traditional LTSAs can incur excessive cycling costs. It may be possible for owners of these GFPPs to renegotiate their existing LTSAs for more flexible conditions that will allow their GFPPs to cycle at lower costs, even if this renegotiation requires the owner to pay an upfront expense. In this paper, we propose a formulation aimed at supporting the process of optimizing LTSAs contracts for a portfolio of GFPPs. 2016-06-06T21:52:42Z 2016-06-06T21:52:42Z 2014-06 Working Paper http://hdl.handle.net/1721.1/103011 en_US ESD Working Papers;ESD-WP-2014-18 application/pdf Massachusetts Institute of Technology. Engineering Systems Division |
spellingShingle | Leung, Tommy Sanchez-Gonzalez, Miguel Rodilla, Pablo Batlle Lopez, Carlos Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation |
title | Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation |
title_full | Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation |
title_fullStr | Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation |
title_full_unstemmed | Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation |
title_short | Optimizing Long-Term Service Agreements for gas-fired units in the context of increasing penetration of intermittent generation |
title_sort | optimizing long term service agreements for gas fired units in the context of increasing penetration of intermittent generation |
url | http://hdl.handle.net/1721.1/103011 |
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