Fault Behavior of Power Distribution Networks with Distributed Generation and Uncertainties
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This paper assesses the fault behavior of power
distribution networks with distributed energy resources and
uncertainties related with the representation of different grid
components and parameters. The algorithm is based upon an
impedance representation of the grid, relying on information
about the network topology and electrical parameters of the
feeders. In addition, distinct types of loads and distributed energy
resources are represented as non-deterministic parameters, as
well as the fault impedance and fault distance parameters and
errors in the phasor quantities. As an outcome, the implementation
of the proposed method shall provide a comprehensive, but
accurate estimation of the points of fault by considering a range
of possible fault scenarios. Furthermore, the methodology is
demonstrated in a small overhead distribution network simulated
under different operating conditions. For a given short-circuit
current, the results indicate a range of possible fault distances –
and vice versa
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