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The rapid proliferation of distributed energy resources (DERs) leads to capacity challenges, i.e. network congestions, in the low-voltage (LV) distribution networks. A number of strategies are being widely studied to tackle the challenges with direct switching actions such as load shedding or power curtailment. On the other hand, various market-based demand response (DR) programs have been developed...
The integration of distributed energy resources (DERs) leads to several technical challenges including capacity limitation in the low-voltage (LV) distribution networks. Different control strategies are being widely developed to influence individual prosumers, i.e. small active consumers /producers, to facilitate demand response (DR) mechanisms. However, most of DR mechanisms focus only on employing...
This paper proposes a new method to manage the active power in the distribution systems, a function under the framework of the active network (AN) concept. An application of the graph theory is introduced to cope with the optimal power generation (DGs/Cells dispatch) and interarea power flows. The algorithm is implemented in a distributed way supported by the multi-agent system (MAS) technology. Simulations...
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