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- Type of Document: Ph.D. Dissertation
- Language: Farsi
- Document No: 58802 (05)
- University: Sharif University of Technology
- Department: Electrical Engineering
- Advisor(s): Fotuhi Firuzabad, Mahmud
- Abstract:
- The paradigm shift towards sustainable energy in response to escalating environmental concerns from fossil fuel usage necessitates a reevaluation of current practices in electricity generation. The increasing contribution of renewable energy sources in future power systems underscores the urgency for a more integrated approach to network planning and operation. In this context, the deployment of microgrids emerges as a promising solution, offering a controlled and communicative platform to accommodate a diverse range of renewable energy assets and decentralized generation units within distribution grids. However, the seamless integration of volatile and decentralized generation sources with the imperative need for reliable power supply presents notable challenges for effective network planning and management. To address these complexities, a novel approach focusing on a multi-microgrid structure has gained traction in research circles. This innovative strategy involves the partitioning of the distribution network into distinct microgrids, enabling distributed management practices to mitigate operational constraints and enhance system performance. This paper aims to introduce a comprehensive planning framework for multi-microgrid distribution networks, emphasizing the importance of considering the autonomous behavior of microgrids in decision-making processes, network topology, and other influential factors. Key considerations such as budget limitations during planning phases, uncertainties in renewable generation and load capacities, integration of energy storage systems, adaptive load response programs, feeder reconfiguration, reliability constraints, and environmental considerations are systematically addressed to ensure the holistic integrity of the proposed model. Furthermore, the operational responsibility of the distribution system operator in overseeing network performance, coupled with individual microgrid owners' strategic planning and management practices aimed at maximizing profitability, are integral components of the proposed framework. The comprehensive model presented in this study has been numerically evaluated, demonstrating its efficacy in enhancing the resilience and sustainability of multi-microgrid distribution networks
- Keywords:
- Microgrid ; Distribution Networks Planning ; Multi-Microgrid (MMG)System ; Distributed Generation ; Reliability ; Adversarial Environment ; Demand Response Programs ; Storage Units
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