Title :
Fuzzy logic based load frequency control of grid connected distributed generators
Author :
Karun, Deepthi ; Sindhu, T.K.
Author_Institution :
N.I.T. Calicut, Calicut, India
Abstract :
With the ever increasing demand for power, conventional energy sources alone cannot be depended upon for power generation. Distributed renewable energy systems are identified as a suitable alternative. However the intermittent nature of these sources increases the frequency deviations which further add to the deviations caused by load variations. Hence it is a prerequisite to keep the system frequency constant. By implementing Load-frequency control (LFC), the frequency deviations can be limited. The main aim of the LFC in an interconnected power system is to keep the frequency deviations in the control areas within the pre-specified limits and to maintain tie-line power flows within the allowable limits while accommodating fluctuating load demands. Here a control strategy for frequency regulation of the distributed PV and Electric Vehicles (EVs) along with the conventional generators is designed using fuzzy logic controller.
Keywords :
demand side management; distributed power generation; electric vehicles; frequency control; fuzzy control; load flow control; load regulation; power generation control; power grids; power system interconnection; solar cells; EV frequency regulation; LFC; distributed PV frequency regulation; distributed renewable energy system; electric vehicle frequency regulation; frequency deviation; fuzzy logic based load frequency control; grid connected distributed generator; interconnected power system; load demand fluctuation; load variation; tie-line power flow maintainance; Frequency control; Niobium; Software packages; EV; Fuzzy control; LFC; PV; V2G;
Conference_Titel :
Advancements in Power and Energy (TAP Energy), 2015 International Conference on
Conference_Location :
Kollam
DOI :
10.1109/TAPENERGY.2015.7229658