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With the growing integration of distributed generation, distribution networks have evolved toward the concept of microgrids.
With the current increase of distributed generation in distribution networks, line congestions and PQ issues are expected to increase.
Two different objective functions are considered as follows: benefit maximization of distribution company (DisCo); benefit maximization of distributed generation owner (DGO).
The penetration of distributed generation (DG) units in electric distribution systems is continually increasing.
Murty and Kumar (2014) uses mesh distribution system analysis for the placement of distributed generation with time varying load model.
The mature structure of distribution systems is evolving due to the high penetration of distributed generation (DG) sources.
Integration of distributed generation also requires the capacity assessment of a distribution network incorporating uncertainties [9].
Due to the increasing penetration of distributed generation, large voltage fluctuations are becoming a problem to the distribution network operators.
An increasing amount of distributed generation (DG) can cause an increase or a decrease on distribution network costs.
As a generalization of demand response, transactive energy exploits the flexibility of distributed generation and load resources to balance supply and demand.
This paper reports achievements of a research in the context of distributed generation possibilities.
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