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Efficient integration of distributed generation for meeting the increased load demand
Authors:Nasser GA Hemdan  Michael Kurrat[Author vitae]
Affiliation:Institute of High Voltage Technology and Electric Power Systems, Technische Universität Braunschweig, Schleinitzstarsse 23, D-38106 Braunschweig, Germany
Abstract:Distributed generation (DG) can be integrated into distribution systems to meet the increasing load demand while expansion and reinforcement of these systems are faced by economical and environmental difficulties. This paper presents an efficient methodology for integration of DG power into distribution systems, in order to maximize the voltage limit loadability (i.e. the maximum loading which can be supplied by the power distribution system while the voltages at all nodes are kept within the limits). The proposed methodology is based on continuation power flow (CPF). The effectiveness of the presented methodology is demonstrated in a test distribution system that consists of 85 nodes with integration of different penetration levels of DG power. The proposed method yields efficiency in obtaining more benefits from the same amount of DG power, decreasing the losses and improving the voltage profile.
Keywords:Continuation power flow  Distributed generation  Loadability  Voltage limits  Voltage stability
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