Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm

With the daily rise in power demand, the penetration of dispersed generations (DG) such as wind turbines, the operation of series reactive compensator devices, and the progress of reconfiguration in power system management, there is a dire need for optimally planning the expansion of transmission ne...

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Main Authors: Yuying Zhang, Lei Xu, Ji Li, Long Zhang, Zhi Yuan
Format: Article
Language:English
Published: Bilijipub publisher 2022-07-01
Series:Advances in Engineering and Intelligence Systems
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Online Access:https://aeis.bilijipub.com/article_153092_7ba294bbd83fcb31b9c06a39900539a9.pdf
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author Yuying Zhang
Lei Xu
Ji Li
Long Zhang
Zhi Yuan
author_facet Yuying Zhang
Lei Xu
Ji Li
Long Zhang
Zhi Yuan
author_sort Yuying Zhang
collection DOAJ
description With the daily rise in power demand, the penetration of dispersed generations (DG) such as wind turbines, the operation of series reactive compensator devices, and the progress of reconfiguration in power system management, there is a dire need for optimally planning the expansion of transmission network lines. Transmission network expansion planning (TEP) is a major part of power system expansion planning that determines the type, location, and time of installing new lines for the adequacy of power supply. Therefore, the TEP problem is a dynamic optimization problem with mixed and integer variables. In traditional systems, consumption management programs were used to overcome some problems of the power system. Meanwhile, demand response (DR) programs were discussed as a part of these programs. However, after the reconfiguration of power systems, these programs were gradually discarded due to incompatibilities with the nature of the market. Soon, due to problems such as price instability, the re-implementation of consumption management programs once again gained momentum. This time, these programs were altered to be compatible with the reconfigured power system management structure. This is widely accepted: increasing the presence and participation of consumers in DR programs in the electricity market will benefit not only individual consumers but also the whole consumer community. In this paper, a dynamic multi-objective TEP is performed under reliability constraints in the market setting based on demand sales programs and pricedependent bids in the day-ahead market. The proposed algorithm was implemented on an IEEE 24-bus grid to display its benefits, including reduction of investment costs, mitigation of congestion, and promotion of reliability.
format Article
id doaj-art-e7845379e05c4bd088beb04da2ba53d9
institution Kabale University
issn 2821-0263
language English
publishDate 2022-07-01
publisher Bilijipub publisher
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spelling doaj-art-e7845379e05c4bd088beb04da2ba53d92025-02-12T08:46:21ZengBilijipub publisherAdvances in Engineering and Intelligence Systems2821-02632022-07-0100102576810.22034/aeis.2022.345229.1024153092Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization AlgorithmYuying Zhang0Lei Xu1Ji Li2Long Zhang3Zhi Yuan4Electric Power Research Institute of State Grid Xinjiang Electric Power Co., Ltd., Urumqi, Xinjiang, 830011, ChinaElectric Power Research Institute of State Grid Xinjiang Electric Power Co., Ltd., Urumqi, Xinjiang, 830011, ChinaElectric Power Research Institute of State Grid Xinjiang Electric Power Co., Ltd., Urumqi, Xinjiang, 830011, ChinaElectric Power Research Institute of State Grid Xinjiang Electric Power Co., Ltd., Urumqi, Xinjiang, 830011, ChinaEngineering Research Center of Renewable Energy Power Generation and Grid-connected Control, Ministry of Education, Xinjiang University, Urumqi, Xinjiang, 830017, ChinaWith the daily rise in power demand, the penetration of dispersed generations (DG) such as wind turbines, the operation of series reactive compensator devices, and the progress of reconfiguration in power system management, there is a dire need for optimally planning the expansion of transmission network lines. Transmission network expansion planning (TEP) is a major part of power system expansion planning that determines the type, location, and time of installing new lines for the adequacy of power supply. Therefore, the TEP problem is a dynamic optimization problem with mixed and integer variables. In traditional systems, consumption management programs were used to overcome some problems of the power system. Meanwhile, demand response (DR) programs were discussed as a part of these programs. However, after the reconfiguration of power systems, these programs were gradually discarded due to incompatibilities with the nature of the market. Soon, due to problems such as price instability, the re-implementation of consumption management programs once again gained momentum. This time, these programs were altered to be compatible with the reconfigured power system management structure. This is widely accepted: increasing the presence and participation of consumers in DR programs in the electricity market will benefit not only individual consumers but also the whole consumer community. In this paper, a dynamic multi-objective TEP is performed under reliability constraints in the market setting based on demand sales programs and pricedependent bids in the day-ahead market. The proposed algorithm was implemented on an IEEE 24-bus grid to display its benefits, including reduction of investment costs, mitigation of congestion, and promotion of reliability.https://aeis.bilijipub.com/article_153092_7ba294bbd83fcb31b9c06a39900539a9.pdfmulti-objective optimizationtransmission network expansion planningdemand response
spellingShingle Yuying Zhang
Lei Xu
Ji Li
Long Zhang
Zhi Yuan
Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm
Advances in Engineering and Intelligence Systems
multi-objective optimization
transmission network expansion planning
demand response
title Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm
title_full Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm
title_fullStr Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm
title_full_unstemmed Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm
title_short Modeling and Planning a Transmission Network Expansion System in a Regulated Electricity Market by Considering Demand-Side Management via a Developed Fuzzy-Salp Optimization Algorithm
title_sort modeling and planning a transmission network expansion system in a regulated electricity market by considering demand side management via a developed fuzzy salp optimization algorithm
topic multi-objective optimization
transmission network expansion planning
demand response
url https://aeis.bilijipub.com/article_153092_7ba294bbd83fcb31b9c06a39900539a9.pdf
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