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  1. 1 Φεβ 2020 · The proposed model determines the optimal AC-DC network configuration that achieves two main objectives: (1) minimizing system costs, and (2) maximizing system reliability.

  2. 1 Αυγ 2024 · This section presents and discusses the general configuration, topological classification, and commonly used test systems for research and practical projects involving hybrid AC/DC distribution systems with examples.

  3. 16 Νοε 2021 · Hybrid AC/DC microgrids and distribution systems are emerging as an interesting alternative especially for integrating distributed AC/DC energy resources. Several parameters of the hybrid AC/DC systems require research and development for an expanded practical implementation.

  4. The proposed framework can be applied to quantitatively evaluate the cost and efficiency of hybrid AC and DC distribution grids and help comparing different planning options. Published in: 2020 IEEE Power & Energy Society Innovative Smart Grid Technologies Conference (ISGT)

  5. 26 Οκτ 2022 · This article presents the demonstrative development of the Towards Intelligent DC-based hybrid Grids Optimizing the Network performance (TIGON) project at the Centre for the Development of Renewable Energy - Centre for Energy, Environmental and Technological Research (CE.D.E.R.-CIEMAT), as well as the established objectives to be achieved with t...

  6. 11 Ιαν 2022 · A hybrid micro grid is developed and simulated using Matlab software. Steady state energy management performances as well as transient stability analysis have been analyzed for different case...

  7. 1 Οκτ 2024 · This paper investigates the challenges and potential of high renewable penetration in hybrid AC–DC MGs, analysing the role of demand response programs in system optimization. The microgrid's energy management is modelled using MILP, while a Stackelberg game represents the demand response program.

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