Optimal Operation of Integrated Multi-Energy Systems Under Uncertainty
Autor Qiuwei Wu, Jin Tan, Menglin Zhang, Xiaolong Jin, Ana Turken Limba Engleză Paperback – 13 sep 2021
- Reviews advanced modeling approaches relevant to the integration of electricity, heat and gas systems in operation studies
- Covers stochastic and robust optimal operation of integrated multi-energy systems
- Evaluates MPC based, real-time dispatch of integrated multi-energy systems
- Considers uncertainty modeling for stochastic and robust optimization
- Assesses optimal operation and real-time dispatch for multi-energy building complexes
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Specificații
ISBN-13: 9780128241141
ISBN-10: 0128241144
Pagini: 370
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128241144
Pagini: 370
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE
Public țintă
Primary: Early career researchers interested in the optimal operation of integrated multi-energy energy system. Masters students studying electrical engineering or sustainable energy systems.Secondary: Research and development engineers in the power and energy sector including TSO, DSO, utility companies, energy technology providers.
Cuprins
1. Introduction of integrated multi-energy systems
2. Modeling of integrated multi-energy systems
3. Uncertainty modelling of wind power for stochastic and robust optimization
4. Optimal operation of multi-energy building complex
5. MPC based real-time dispatch of multi-energy building complex
6. Adaptive robust two-stage optimal operation of integrated electricity and heat system
7. Decentralized robust optimal operation of multiple integrated electricity and heat systems
8. Chance constrained energy and reserve scheduling for integrated electricity and heating systems considering wind spatio-temporal correlations
9. Day-ahead stochastic optimal operation of integrated electricity and heat systems considering reserve of flexible devices
10. Two-stage stochastic optimal operation of integrated energy systems
11. MPC based real-time operation of integrated energy systems
2. Modeling of integrated multi-energy systems
3. Uncertainty modelling of wind power for stochastic and robust optimization
4. Optimal operation of multi-energy building complex
5. MPC based real-time dispatch of multi-energy building complex
6. Adaptive robust two-stage optimal operation of integrated electricity and heat system
7. Decentralized robust optimal operation of multiple integrated electricity and heat systems
8. Chance constrained energy and reserve scheduling for integrated electricity and heating systems considering wind spatio-temporal correlations
9. Day-ahead stochastic optimal operation of integrated electricity and heat systems considering reserve of flexible devices
10. Two-stage stochastic optimal operation of integrated energy systems
11. MPC based real-time operation of integrated energy systems