On the Applicability of Exponential Recovery Models for the Simulation of Active Distribution Networks

by E. O. Kontis, T. A. Papadopoulos, A. I. Chrysochos and G. K. Papagiannis
Reference:
E. O. Kontis, T. A. Papadopoulos, A. I. Chrysochos and G. K. Papagiannis, "On the Applicability of Exponential Recovery Models for the Simulation of Active Distribution Networks", IEEE Transactions on Power Delivery, vol. 33, no. 6, Dec 2018, pp. 3220-3222.
Bibtex Entry:
@ARTICLE{JR5,
author={E. O. Kontis and T. A. Papadopoulos and A. I. Chrysochos and G. K. Papagiannis},
journal={IEEE Transactions on Power Delivery},
title={On the Applicability of Exponential Recovery Models for the Simulation of Active Distribution Networks},
year={2018},
volume={33},
number={6},
pages={3220-3222},
keywords={load flow;polynomials;power distribution faults;power system simulation;exponential recovery model;active distribution networks;dynamic simulation;conventional ERM;exponential functions;steady-state;transient characteristics;reverse power flow phenomena;ADN;Power system dynamics;Steady-state;Reactive power;Transient analysis;Power demand;Mathematical model;Active distribution networks;dynamic equivalencing;exponential recovery model;measurement-based approach;polynomial functions},
doi={10.1109/TPWRD.2017.2742404},
ISSN={},
month={Dec},}