Automatic Optimization Method of Reactive Power Compensation of Low-Voltage Distribution Network Based on Improved Genetic Algorithm
Due to the lack of multi-stage constraints for low-voltage distribution networks,the current method has poor optimization results for reactive power compensation.Based on this,this paper proposes an automatic optimization method for reactive power compensation in low-voltage distribution networks based on an improved genetic algorithm.Firstly,select the reactive power compensation point,then set the multi-level constraint conditions for the low-voltage distribution network based on the improved genetic algorithm.Finally,use the set constraint conditions and the improved genetic algorithm to construct an optimization model for reactive power compensation,achieving the function of reactive power compensation.The results show that this method can reduce the efficiency of power grid transmission loss in low-voltage transmission environments,and the optimization effect is good.
improved genetic algorithmlow-voltage distribution networkreactive power compensationautomatic optimization