Manuscript details
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Release date:2022-11-21 Number of views:2000 Amount of downloads:1055 DOI:10.19457/j.1001-2095.dqcd23710
Abstract: An optimization method was proposed to layout electric vehicle charging facilities considering
power quality constraints. A comprehensive power quality index model considering the average value of nodal
three-phase unbalance degree and the maximum value of nodal voltage deviation was established. Meanwhile,the
mathematical model considering the first and second static voltage stability indexes was established. Then,the
comprehensive power quality index,network loss index and static voltage stability index were taken as the
optimization objectives,the improved multi-objective cuckoo search algorithm was utilized to solve the proposed
model. The IEEE 33 bus distribution system was taken as an example,and the distribution optimization scheme of
charging facilities was given. The simulation results show that the nodal three-phase unbalance is significantly
reduced after the charging facilities were connected,and the voltage deviation keep within the allowable range. At
the same time,the influence of different optimization objectives and optimization methods were compared to verify the effectiveness,rationality and superiority of the proposed optimization method.
Key words: distribution network;power quality;charging facilities;placement optimization;multi-objective
cuckoo search algorithm(MOCS)
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