he interest in global spectrum allocation techniques is growing with the always increasing spectrum demand for mobile communications. However, the best algorithms suffer from high computational times that reduce the possibility of a practical implementation. This paper deals with a dynamic channel allocation (DCA) technique based on an energy function whose minimization gives the optimal allocation. Due to the par- ticular formulation of such an energy function, the minimization can be performed by a Hopfield neural network for which a fast hardware implementation has been recently proposed in the literature. The performance of the proposed DCA technique is here derived by computer simulations. Comparisons with a classical fixed allocation technique (FCA) and a different DCA technique are shown to highlight the better performance of the proposed DCA technique.

"A dynamic channel allocation technique based on Hopfield neural networks" / E. Del Re; R. Fantacci; L. Ronga. - In: IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY. - ISSN 0018-9545. - STAMPA. - 45:(1996), pp. 26-32.

"A dynamic channel allocation technique based on Hopfield neural networks"

DEL RE, ENRICO;FANTACCI, ROMANO;RONGA, LUCA SIMONE
1996

Abstract

he interest in global spectrum allocation techniques is growing with the always increasing spectrum demand for mobile communications. However, the best algorithms suffer from high computational times that reduce the possibility of a practical implementation. This paper deals with a dynamic channel allocation (DCA) technique based on an energy function whose minimization gives the optimal allocation. Due to the par- ticular formulation of such an energy function, the minimization can be performed by a Hopfield neural network for which a fast hardware implementation has been recently proposed in the literature. The performance of the proposed DCA technique is here derived by computer simulations. Comparisons with a classical fixed allocation technique (FCA) and a different DCA technique are shown to highlight the better performance of the proposed DCA technique.
1996
45
26
32
E. Del Re; R. Fantacci; L. Ronga
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/348878
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