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Titlebook: Decarbonisation and Digitization of the Energy System; Proceedings of the 2 Ashwani Kumar,S. N. Singh,Pradeep Kumar Conference proceedings

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https://doi.org/10.1007/978-3-531-93388-7aper, DGs (distributed generation) in the radial distribution network have been optimally located and sized to minimize the line loss and enhance the voltage profile. This study aims to develop a multi-objective optimization model that considers various distribution load models while maximizing both
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Zusammenfassung: Transformationswissenty price slot, this may lead to blackout during that time period. By executing this optimization method, our proposed approach could gradually reduce both the electricity price and PAR, thereby, strengthening the stability of the entire Grid system. The optimization technique used to solve this prob
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Aufstellung 4: Attitude-Behaviour Gapation. The simulation results indicate that the proposed framework can enhance the system by ensuring energy balance accuracy, reducing energy and maintaining system security. By incorporating the VPP approach and optimal energy management strategies, the integration of renewable energy sources and
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https://doi.org/10.1007/978-3-662-26487-4a constraint. Feeder capacitor banks and OLTC’s are considered as control devices. The proposed algorithm is tested on 55 bus unbalanced Radial network and the results show that proper adjustments of OLTC transformers and Capacitor banks significantly reduce power losses while satisfying all the ope
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