Wind energy systems have become popular in recent years thanks to their power capacity and clean energy production. Most of the designed systems are collected in grid by combining them in AC busbars by using DC-AC, DC-DC and AC-DC converters. In the simulation study, it is aimed that wind energy systems ve battery systems with different powers will feed the loads according to certain scenarios. The response of the battery with a bi-directional buck-boost converter, which is expected to vary according to the scenarios, is also examined. In the study, scenarios are created according to the requirements of the grid and the designed multi-input multi-output converters are analyzed. In addition, the efficiency of the systems is increased by optimizing the MPPT algorithms with PSO and their responses are examined.
(2022). Multi Input-Multi Output (MIMO) converter system fed by Wind Energy . Retrieved from https://hdl.handle.net/10446/235193
Multi Input-Multi Output (MIMO) converter system fed by Wind Energy
Roscia, Mariacristina
2022-01-01
Abstract
Wind energy systems have become popular in recent years thanks to their power capacity and clean energy production. Most of the designed systems are collected in grid by combining them in AC busbars by using DC-AC, DC-DC and AC-DC converters. In the simulation study, it is aimed that wind energy systems ve battery systems with different powers will feed the loads according to certain scenarios. The response of the battery with a bi-directional buck-boost converter, which is expected to vary according to the scenarios, is also examined. In the study, scenarios are created according to the requirements of the grid and the designed multi-input multi-output converters are analyzed. In addition, the efficiency of the systems is increased by optimizing the MPPT algorithms with PSO and their responses are examined.File | Dimensione del file | Formato | |
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