Research on Improved BP Neural Network Prediction Based on Niche Particle Swarm Optimization Algorithm
DOI:
https://doi.org/10.54097/jceim.v10i1.5764Keywords:
Data prediction, BP neural network, Niche, Particle swarm optimizationAbstract
As for data prediction, a prediction model is proposed based on BP neural network. This method is based on the traditional BP neural network algorithm to improve the problems of slow convergence speed and easy to fall into local optimum. The idea of niche is introduced into the particle swarm optimization algorithm to improve the global search ability and convergence speed, find the global optimum value, and then use LMBP neural network to continue to optimize the parameters to improve the prediction effect.
References
Wang S , Zhu H , Wu M , et al. Active Disturbance Rejection Decoupling Control for Three-Degree-of- Freedom Six-Pole Active Magnetic Bearing Based on BP Neural Network[J]. IEEE Transactions on Applied Superconductivity, 30.
Liu X , Zhou Y , Wang Z , et al. A BP Neural Network-based Communication Blind Signal Detection Mefthod with Cyber-Physical-Social Systems[J]. IEEE Access, 2018:1-1.
Yang A , Zhuansun Y , Liu C , et al. Design of Intrusion Detection System for Internet of Things Based on Improved BP Neural Network[J]. IEEE Access, 2019, 7:106043-106052.
Xu L , Wang H , Lin W , et al. GWO-BP Neural Network Based OP Performance Prediction for Mobile Multiuser Communication Networks[J]. IEEE Access, 2019, 7:1-1.
Pan X , Zhou W , Lu Y , et al. Prediction of Network Traffic of Smart Cities Based on DE-BP Neural Network[J]. IEEE Access, 2019, 7:55807-55816.
Liu F , Huo W , Han Y , et al. Study on Network Security Based on PCA and BP Neural Network under Green Communication[J]. IEEE Access, 2020, PP(99):1-1.
Li H X , Zhao X H , Chi H Y , et al. Prediction and analysis of land subsidence based on improved BP neural network model[J]. Journal of Tianjin University, 2009, 42(1):60-64.
Zhang Y , Bing C , Yuan Z , et al. Wind Speed Prediction of IPSO-BP Neural Network Based on Lorenz Disturbance[J]. IEEE Access, 2018, PP(99):1-1.