DocumentCode :
1708273
Title :
Optimal coordination of directional overcurrent relays in a microgrid system using a hybrid particle swarm optimization
Author :
Damchi, Yaser ; Mashhadi, Habib Rajabi ; Sadeh, Javad ; Bashir, Mohsen
Author_Institution :
Electr. Eng. Dept., Ferdowsi Univ. of Mashhad, Mashhad, Iran
Volume :
2
fYear :
2011
Firstpage :
1135
Lastpage :
1138
Abstract :
Recently, microgrid operation increased significantly with increasing distributed renewable energy resources in the power system. Microgrids can operate with and without utility. Fault currents are significantly different in island and utility connected operation modes. Therefore, microgrid protection is one of the important subjects in microgrid operation. In this paper, a hybrid particle swarm optimization (HPSO) approach has been developed for coordination of directional overcurrent relays (DOCRs) in a microgrid system. The coordination constraints include the utility connected and an autonomous condition of the microgrid operation. In the optimization procedure, the current setting (Iset) of relays is considered as discrete parameters and time multiplier settings (TMS) is assumed as continues parameter. The proposed algorithm has two parts, in the first part, PSO is used to calculate the Iset and in the second part, linear programming is applied to calculate the TMS of each relay. In the case study, loads connected to the network are divided into critical and noncritical ones. In normal operation of the system, distributed generators (DGs) operate in parallel with the utility. When a fault occurs on the utility side, noncritical loads are disconnected from the network and DGs are operated in microgrid as islanded mode. Regarding to simulation results, DOCRs have a suitable and reliable operation in both conditions of microgrid operations. In addition, overall operating time of the primary relays is properly minimized.
Keywords :
distributed power generation; electricity supply industry; fault currents; linear programming; load (electric); overcurrent protection; particle swarm optimisation; power generation protection; power generation reliability; power grids; relay protection; renewable energy sources; DG; HPSO; TMS; current setting parameter; directional overcurrent relay coordination; discrete parameter; distributed generator; distributed renewable energy resource; fault current; hybrid particle swarm optimization; linear programming; microgrid protection; noncritical load; power system; reliability; time multiplier settings; utility connected operation mode; Equations; Fault currents; Linear programming; Mathematical model; Particle swarm optimization; Power systems; Relays; HPSO; linear programming; microgrid; overcurrent relay; relay coordination;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Power System Automation and Protection (APAP), 2011 International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-9622-8
Type :
conf
DOI :
10.1109/APAP.2011.6180976
Filename :
6180976
Link To Document :
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