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- aggregation classification "A1".
- aggregation creator B435034.
- aggregation creator person.
- aggregation creator person.
- aggregation creator person.
- aggregation creator person.
- aggregation date "2012".
- aggregation format "application/pdf".
- aggregation hasFormat 2970120.bibtex.
- aggregation hasFormat 2970120.csv.
- aggregation hasFormat 2970120.dc.
- aggregation hasFormat 2970120.didl.
- aggregation hasFormat 2970120.doc.
- aggregation hasFormat 2970120.json.
- aggregation hasFormat 2970120.mets.
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- aggregation hasFormat 2970120.txt.
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- aggregation hasFormat 2970120.yaml.
- aggregation isPartOf urn:issn:0885-8977.
- aggregation language "eng".
- aggregation rights "I have transferred the copyright for this publication to the publisher".
- aggregation subject "Technology and Engineering".
- aggregation title "Automatic power sharing modification of P/V droop controllers in low-voltage resistive microgrids".
- aggregation abstract "Microgrids are receiving an increasing interest to integrate the growing share of distributed generation (DG) units in the electrical network. For the islanded operation of the microgrid, several control strategies for the primary control have been developed to ensure a stable microgrid operation. In lowvoltage microgrids, active power/voltage (P/V ) droop controllers are gaining attention as they take into account the resistive nature of the network lines and the lack of directly-coupled rotating inertia. However, a problem often cited with these droop controllers is that the grid voltage is not a global parameter. This can influence the power sharing between different units. In this paper, it is investigated whether this is actually a disadvantage of the control strategy. It is shown that with P/V droop control, the DG units that are located electrically far from the load centres automatically deliver a lower share of the power. This automatic power sharing modification can lead to decreased line losses, thus, an overall better efficiency compared to the methods that focus on perfect power sharing. In this paper, the P/V and P/f droop control strategies are compared with respect to this power sharing modification and the line losses.".
- aggregation authorList BK758041.
- aggregation endPage "2325".
- aggregation issue "4".
- aggregation startPage "2318".
- aggregation volume "27".
- aggregation aggregates 2970121.
- aggregation isDescribedBy 2970120.
- aggregation similarTo TPWRD.2012.2212919.
- aggregation similarTo LU-2970120.