A Nearly Decentralized Voltage Regulation Algorithm for Loss Minimization in Radial MV Networks With High DG Penetration

by G. C. Kryonidis, C. S. Demoulias and G. K. Papagiannis
Reference:
G. C. Kryonidis, C. S. Demoulias and G. K. Papagiannis, "A Nearly Decentralized Voltage Regulation Algorithm for Loss Minimization in Radial MV Networks With High DG Penetration", IEEE Trans. Sustain. Energy, vol. 7, no. 4, Oct 2016, pp. 1430-1439.
Bibtex Entry:
@ARTICLE{J1,
author={G. C. Kryonidis and C. S. Demoulias and G. K. Papagiannis},
journal={IEEE Trans. Sustain. Energy},
title={A Nearly Decentralized Voltage Regulation Algorithm for Loss Minimization in Radial {MV} Networks With High {DG} Penetration},
year={2016},
volume={7},
number={4},
pages={1430-1439},
keywords={decentralised control;distributed power generation;load flow control;on load tap changers;power consumption;power generation control;reactive power;time series;time-domain analysis;voltage control;nearly decentralized voltage regulation algorithm;radial MV network;high DG penetration;distributed generation;active power loss minimization;reactive power consumption;medium-voltage network;radial topology;minimum communication infrastructure;cooperative on-load tap changer control;time-domain simulation;time-series quasistatic simulationsimulation;optimal power flow method;decentralized control scheme;Voltage control;Reactive power;Reactive power control;Minimization;Decentralized control;Sensitivity;Network topology;Distributed generation;loss minimization;on-load tap changer;reactive power control;voltage regulation},
doi={10.1109/TSTE.2016.2556009},
ISSN={1949-3029},
month={Oct},
url={http://power.ee.auth.gr/wp-content/uploads/2019/09/J1_kryonidis.pdf},
}