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Two-Stage Stochastic Market Clearing of Energy and Reserve in the Presence of Coupled Fuel Cell-Based Hydrogen Storage System with Renewable Resources
The enhancing influence level of renewable energy sources (RESs), particularly wind energy sources (WESs), leads to technical challenges in power system operation procedures, such as changing the traditional operation scheduling. Due to maintaining the power balance among generation and utilization, the outstanding facility to tackle the intermittency essence of WES is a fuel cell-based hydrogen storage system (HSS). Furthermore, providing more operational flexibility has been obtained from taking into account both energy and reserve markets. For this purpose, the current chapter presents a two-stage stochastic network-constrained market-clearing approach with the integration of fuel cell-based HSS and WES to obtain optimal scheduling of conventional units and provide energy and reserve services. The introduced structure is applied to a six-bus system to specify the applicability and implementation of the model. Numerical results denoted that the integrated fuel cell-based HSS and WES decrease the whole operating expenditure, load shedding, and wind power curtailment.
Two-Stage Stochastic Market Clearing of Energy and Reserve in the Presence of Coupled Fuel Cell-Based Hydrogen Storage System with Renewable Resources
The enhancing influence level of renewable energy sources (RESs), particularly wind energy sources (WESs), leads to technical challenges in power system operation procedures, such as changing the traditional operation scheduling. Due to maintaining the power balance among generation and utilization, the outstanding facility to tackle the intermittency essence of WES is a fuel cell-based hydrogen storage system (HSS). Furthermore, providing more operational flexibility has been obtained from taking into account both energy and reserve markets. For this purpose, the current chapter presents a two-stage stochastic network-constrained market-clearing approach with the integration of fuel cell-based HSS and WES to obtain optimal scheduling of conventional units and provide energy and reserve services. The introduced structure is applied to a six-bus system to specify the applicability and implementation of the model. Numerical results denoted that the integrated fuel cell-based HSS and WES decrease the whole operating expenditure, load shedding, and wind power curtailment.
Two-Stage Stochastic Market Clearing of Energy and Reserve in the Presence of Coupled Fuel Cell-Based Hydrogen Storage System with Renewable Resources
Agabalaye-Rahvar, Masoud (Autor:in) / Mansour-Saatloo, Amin (Autor:in) / Mirazaei, Mohammad Amin (Autor:in) / Mohammadi-Ivatloo, Behnam (Autor:in) / Zare, Kazem (Autor:in) / Anvari-Moghaddam, Amjad (Autor:in)
01.01.2022
Agabalaye-Rahvar , M , Mansour-Saatloo , A , Mirazaei , M A , Mohammadi-Ivatloo , B , Zare , K & Anvari-Moghaddam , A 2022 , Two-Stage Stochastic Market Clearing of Energy and Reserve in the Presence of Coupled Fuel Cell-Based Hydrogen Storage System with Renewable Resources . in Power Systems : Bridging the Gap via Vector-Coupling Technologies . 1 edn , Springer , pp. 267-292 . https://doi.org/10.1007/978-3-030-87653-1_11
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Monte Carlo simulation , /dk/atira/pure/sustainabledevelopmentgoals/affordable_and_clean_energy , SDG 17 - Partnerships for the Goals , Network-constrained scheduling , Load shedding , Fuel cell-based hydrogen storage system , Uncertainty management , /dk/atira/pure/sustainabledevelopmentgoals/partnerships , Renewable energy sources , Flexible providing sources , SDG 7 - Affordable and Clean Energy , Wind power curtailment , Coordinated operation , Local marginal prices , Congested system , SCENRED tool , Generalized algebraic modeling system software , Two-stage stochastic programming , Mixed-integer linear programming-based model , Energy and reserve market clearing
DDC:
690
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