With the rapid increase of renewable energy integration, more serious power fluctuations are introduced in distribution systems. To mitigate power fluctuations caused by renewables, a...
This paper discusses the enhancements made to the basic interconnection flow controller (IFC) design recommended for microgrids for managing active power flow on the interconnection
In this article, a robust H∞ controller is proposed for the synchronization process of multiple MGs as very weak grids to cope with these fluctuations and to obtain a smooth interconnection.
The results demonstrate the effectiveness of the interconnected microgrid scheme in mitigating power fluctuation and optimizing storage capacity, while at the expense of slightly
The developed tool was then validated on a case study microgrid and results show that the length of the interconnecting transmission line and the fault severity directly impact the microgrid
Multiple microgrid (MG) distribution systems are facing challenges owing to variations in the operational statuses of the individual MGs, which experience voltage and current fluctuations
The results demonstrate the effectiveness of the interconnected microgrid scheme in mitigating power fluctuation and optimizing storage capacity, while at the expense of slightly
The aim of this section is to investigate the disturbances that a MG can cause in the distribution network, with a particular focus on fluctuations in the power exchanged with the external
By introducing electrical ties and energy exchanges among AC microgrids, a novel flexible multi-microgrid interconnection scheme is proposed in this work to provide a better solution for mitigating
We address power quality issues, including harmonics, voltage unbalance, and voltage violations resulting from the presence of DERs on microgrids and the distribution grid.
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