Bi-directional power flow control with improved power quality using intelligent controller for AC-DC coupled hybrid micro-grid system
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Date
2021
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Publisher
Inderscience Publishers
Abstract
Grid connected renewable sources are affected by harmonic distortion due to non-linear power electronics interfaces. Depending upon the nature of the load, many conversion stages are incorporated in the micro-grid which leads to increase in the losses. Therefore, in this paper, the AC-DC coupled hybrid micro-grid system is presented in which AC renewable sources and AC loads are connected to AC sub-grid and DC renewable sources and DC loads are connected to DC sub-grid. The shunt active power filter based 3? 4-leg bi-directional intermediate converter using d-q load current technique is proposed to achieve the power flow between AC and DC sub-grids. The MATLAB simulation is carried out, and the performance of the proposed system is analysed using the d-q load current technique based fuzzy logic and PI controller. The obtained results demonstrate that the overall system performance is improved with the d-q load current technique based fuzzy logic controller. © © 2021 Inderscience Enterprises Ltd.
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Keywords
Computer circuits, Controllers, Electric inverters, Electric load flow, Electric power transmission networks, Fuzzy logic, MATLAB, Microgrids, Rectifying circuits, Fuzzy logic controllers, Grid connected renewable sources, Intelligent controllers, Matlab simulations, Micro-grid systems, Power electronics interface, Power flow controls, Shunt active power filters, Electric power system control
Citation
International Journal of Power Electronics, 2021, 14, 2, pp. 156-179
