Title :
Prediction to the Weak Electrical Signal in Chrysanthemum by RBF Neural Networks
Author :
Ding, Jinli ; Wang, Miao ; Wang, Lanzhou ; Li, Qiao
Author_Institution :
China Jiliang Univ., Hangzhou
Abstract :
Taking electrical signals in the chrysanthemum (Dendranthema morifolium) as the time series and using the Gaussian radial base function (RBF) and a delayed input window chosen at 50, an intelligent RBF forecast system is set up to forecast signals by the wavelet soft-threshold de-noised backward. It is obvious that the electrical signal in chrysanthemum is a sort of weak, unstable and low frequency signals. There is the maximum amplitude at 1093.44 muV, minimum -605.35 muV, average value -11.94 muV; and below 0.3 Hz at frequency in the chrysanthemum respectively. A result shows that it is feasible to forecast plant electrical signals for the timing by using of the RBF neural network. The forecast data can be used as the important preferences for the intelligent automatic control system based on the adaptive characteristic of plants to achieve the energy saving on the agricultural production in the greenhouse and/or the plastic lookum.
Keywords :
Gaussian processes; adaptive control; agriculture; forecasting theory; greenhouses; neurocontrollers; prediction theory; radial basis function networks; signal denoising; time series; Dendranthema morifolium; Gaussian radial base function neural network; adaptive characteristic; agricultural production; chrysanthemum; energy saving; greenhouse; intelligent automatic control system; intelligent radial base function forecast system; plant electrical signal forecasting; plastic lookum; time series; wavelet soft-threshold de-noising; weak electrical signal prediction; Automatic control; Delay effects; Frequency; Intelligent control; Intelligent systems; Load forecasting; Neural networks; Programmable control; Propagation delay; Timing; RBF neural network; chrysanthemum; intelligent automatic control; weak electrical signal;
Conference_Titel :
Natural Computation, 2007. ICNC 2007. Third International Conference on
Conference_Location :
Haikou
Print_ISBN :
978-0-7695-2875-5
DOI :
10.1109/ICNC.2007.565