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      Application of the diagonal recurrent wavelet neural network to solar irradiation forecast assisted with fuzzy technique

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      Engineering Applications of Artificial Intelligence
      Elsevier BV

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          The average distribution of solar radiation-correlations between diffuse and hemispherical and between daily and hourly insolation values

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            Diagonal recurrent neural networks for dynamic systems control.

            A new neural paradigm called diagonal recurrent neural network (DRNN) is presented. The architecture of DRNN is a modified model of the fully connected recurrent neural network with one hidden layer, and the hidden layer comprises self-recurrent neurons. Two DRNN's are utilized in a control system, one as an identifier called diagonal recurrent neuroidentifier (DRNI) and the other as a controller called diagonal recurrent neurocontroller (DRNC). A controlled plant is identified by the DRNI, which then provides the sensitivity information of the plant to the DRNC. A generalized dynamic backpropagation algorithm (DBP) is developed and used to train both DRNC and DRNI. Due to the recurrence, the DRNN can capture the dynamic behavior of a system. To guarantee convergence and for faster learning, an approach that uses adaptive learning rates is developed by introducing a Lyapunov function. Convergence theorems for the adaptive backpropagation algorithms are developed for both DRNI and DRNC. The proposed DRNN paradigm is applied to numerical problems and the simulation results are included.
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              Estimation of global solar radiation using artificial neural networks

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                Author and article information

                Journal
                Engineering Applications of Artificial Intelligence
                Engineering Applications of Artificial Intelligence
                Elsevier BV
                09521976
                December 2008
                December 2008
                : 21
                : 8
                : 1255-1263
                Article
                10.1016/j.engappai.2008.02.003
                975cac6b-e37e-4b57-90e6-77a992ff9549
                © 2008

                http://www.elsevier.com/tdm/userlicense/1.0/

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