Improved Whale Optimization Algorithm and Low-Energy Consumption Design of Circuit Breaker

Author:

Li Guodong1,Tian Yunhe2ORCID,Xie Min2

Affiliation:

1. School of Computer and Information Technology, Tianjin Chengjian University, Tianjin 300384, China

2. School of Electronics and Information Engineering, Hebei University of Technology, Tianjin 300401, China

Abstract

In the transmission and distribution system, the high-energy consumption of the low-voltage circuit breaker easily leads to the decrease of the distribution efficiency of the system. Therefore, on the basis of calculating the internal power consumption of circuit breakers, combining with several factors affecting the energy consumption of circuit breakers, the low-energy consumption mathematical model of circuit breakers is built, and an improved whale optimization algorithm (LA-WOA) is proposed for optimization. The Lévy flight mechanism and the adaptive weight factor are introduced into the traditional whale algorithm to enhance the global and local search ability of the algorithm and also improve the convergence speed and accuracy of the algorithm. The test function simulation experiment proves that the improved algorithm has better performance than other algorithms. Furthermore, the improved LA-WOA algorithm is used to iteratively solve the low-energy consumption mathematical model of the circuit breaker. The experimental results show that the improved algorithm obtains a lower-energy consumption value, which can effectively improve the design efficiency and accuracy of the circuit breaker.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Reference28 articles.

1. Microgrid architectures for low voltage distributed generation

2. Solid-State Circuit Breaker Snubber Design for Transient Overvoltage Suppression at Bus Fault Interruption in Low-Voltage DC Microgrid

3. Parameter designing of current limiting DC hybrid circuit breaker based on combinatorial electronic switch;D. Yi;Automation of Electric Power Systems,2015

4. Hybrid DC Circuit Breaker Feasibility Study

5. Medium-voltage arcless DC circuit breaker based on arc suppression;X. Xiang;Automation of Electric Power Systems,2017

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