Pricing and Allocation of Spinning Reserve and Energy in Restructured Power Systems via Memetic Algorithm
In competitive electricity markets, procurement of spinning reserve (SR) as one of the most important ancillary services (AS); is the duty of transmission system operator (TSO). SR capacity allocated for satisfying reliability requirements and desired level of security in power systems causes replac...
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Published in | 2007 Large Engineering Systems Conference on Electric Power Engineering pp. 234 - 238 |
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Main Authors | , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.10.2007
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Subjects | |
Online Access | Get full text |
ISBN | 9781424415823 1424415829 |
DOI | 10.1109/LESCPE.2007.4437384 |
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Abstract | In competitive electricity markets, procurement of spinning reserve (SR) as one of the most important ancillary services (AS); is the duty of transmission system operator (TSO). SR capacity allocated for satisfying reliability requirements and desired level of security in power systems causes replacing a part of deliverable energy capacity of units that must not be traded in the energy market. This paper presents SR allocation method considering ramp-rate constraints (RRC) and investigates the impact of these constraints on allocation strategy associated with clearing prices. The proposed method determines the optimal spinning reserve allocation and energy dispatched with the minimum costs via memetic algorithm (MA). A competitive day-ahead market is assumed where suppliers can offer active power for both energy supply and AS through a single-part bid scheme. The proposed method is implemented to an IEEE 57-Bus test system, while the significant results show the effectiveness of the proposed methodology. |
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AbstractList | In competitive electricity markets, procurement of spinning reserve (SR) as one of the most important ancillary services (AS); is the duty of transmission system operator (TSO). SR capacity allocated for satisfying reliability requirements and desired level of security in power systems causes replacing a part of deliverable energy capacity of units that must not be traded in the energy market. This paper presents SR allocation method considering ramp-rate constraints (RRC) and investigates the impact of these constraints on allocation strategy associated with clearing prices. The proposed method determines the optimal spinning reserve allocation and energy dispatched with the minimum costs via memetic algorithm (MA). A competitive day-ahead market is assumed where suppliers can offer active power for both energy supply and AS through a single-part bid scheme. The proposed method is implemented to an IEEE 57-Bus test system, while the significant results show the effectiveness of the proposed methodology. |
Author | Hazrati, N. Rashidi-Nejad, M. Gharaveisi, A.-A. |
Author_xml | – sequence: 1 givenname: N. surname: Hazrati fullname: Hazrati, N. organization: Shahid Bahonar Univ. of Kerman (SBUK), Kerman – sequence: 2 givenname: M. surname: Rashidi-Nejad fullname: Rashidi-Nejad, M. organization: Shahid Bahonar Univ. of Kerman (SBUK), Kerman – sequence: 3 givenname: A.-A. surname: Gharaveisi fullname: Gharaveisi, A.-A. organization: Shahid Bahonar Univ. of Kerman (SBUK), Kerman |
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Snippet | In competitive electricity markets, procurement of spinning reserve (SR) as one of the most important ancillary services (AS); is the duty of transmission... |
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StartPage | 234 |
SubjectTerms | Cost function Deregulation Electricity supply industry memetic algorithm opportunity costs Power system reliability Power system security Power systems Pricing Procurement ramp-rate Spinning spinning reserve allocation Strontium System testing |
Title | Pricing and Allocation of Spinning Reserve and Energy in Restructured Power Systems via Memetic Algorithm |
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