The paper presents the Quasi Newton model of Artificial Neural Network for design of circular microstrip antenna (MSA). In this model, a closed form expression is used for accurate determination of the resonant frequency of circular microstrip patch antenna. The calculated resonant frequency results are in good agreement with the experimental re-sults reported elsewhere. The results show better agreement with the trained and tested data of ANN models. The re-sults are verified by the experimental results to produce accurate ANN models. This presents ANN model practically as an alternative method to the detailed electromagnetic design of circular microstrip antenna
Artificial Neural Network (ANNs) techniques are recently indicating a lot of promises in the applica...
An application of artificial neural network (ANN) based on multilayer perceptrons (MLP) to compute t...
An application of artificial neural network (ANN) based on multilayer perceptrons (MLP) to compute t...
A new method based on artificial neural networks for calculating the resonant frequency of circular ...
AbstractNeurocomputational models eliminates the complex, lengthy and time consuming mathematical pr...
A new method based on artificial neural networks for calculating the resonant frequency of circular ...
A method based on artificial neural networks (ANA's) for calculating the input resistance of circula...
A computer-aided design model based on the artificial neural network (ANN) is proposed to directly o...
The resonant frequency of the circular microstrip antenna is studied by moment method and enhanced c...
A hybrid model based on ANN is offered to calculate simultaneously the resonant frequencies of vario...
Artificial neural networks (ANNs) are one of the popular intelligent techniques in solving engineeri...
In this paper a new technique is proposed to calculate design parameters of Elliptical micro-strip p...
This paper uses artificial neural networks (ANN) to compute the resonance frequencies of rectangular...
The microstrip patch antenna can also be designed using an artificial neural network (ANN) modeling ...
This paper presents models that can be used in the design of microstrip antennas for mobile communic...
Artificial Neural Network (ANNs) techniques are recently indicating a lot of promises in the applica...
An application of artificial neural network (ANN) based on multilayer perceptrons (MLP) to compute t...
An application of artificial neural network (ANN) based on multilayer perceptrons (MLP) to compute t...
A new method based on artificial neural networks for calculating the resonant frequency of circular ...
AbstractNeurocomputational models eliminates the complex, lengthy and time consuming mathematical pr...
A new method based on artificial neural networks for calculating the resonant frequency of circular ...
A method based on artificial neural networks (ANA's) for calculating the input resistance of circula...
A computer-aided design model based on the artificial neural network (ANN) is proposed to directly o...
The resonant frequency of the circular microstrip antenna is studied by moment method and enhanced c...
A hybrid model based on ANN is offered to calculate simultaneously the resonant frequencies of vario...
Artificial neural networks (ANNs) are one of the popular intelligent techniques in solving engineeri...
In this paper a new technique is proposed to calculate design parameters of Elliptical micro-strip p...
This paper uses artificial neural networks (ANN) to compute the resonance frequencies of rectangular...
The microstrip patch antenna can also be designed using an artificial neural network (ANN) modeling ...
This paper presents models that can be used in the design of microstrip antennas for mobile communic...
Artificial Neural Network (ANNs) techniques are recently indicating a lot of promises in the applica...
An application of artificial neural network (ANN) based on multilayer perceptrons (MLP) to compute t...
An application of artificial neural network (ANN) based on multilayer perceptrons (MLP) to compute t...