The present paper focuses on the evaluation of the electromagnetic field generated in the Fresnel region by sources characterized by a generic and non-uniform current distribution. The method has been recently presented and successfully applied to linear arrays. The generalization and improvement achieved by the approach proposed in this paper requires the introduction of a more accurate model of the antenna and a global update of the method itself. The method presented in this paper offers a reliable and simple approach that allows the estimation of the field generated by a generic radiator. The proposed technique is first analyzed from a theoretical point of view and then validated by means of simulations.
Advanced simplified algorithm for electromagnetic field computation in the radiating near field of BTS antennas2011 IEEE International Symposium on Electromagnetic Compatibility / Carta, Alessandra; Trinchero, Daniele. - (2011), pp. 361-366. (Intervento presentato al convegno 2011 IEEE International Symposium on Electromagnetic Compatibility tenutosi a Long Beach, CA, USA nel 14-19 Aug. 2011) [10.1109/ISEMC.2011.6038337].
Advanced simplified algorithm for electromagnetic field computation in the radiating near field of BTS antennas2011 IEEE International Symposium on Electromagnetic Compatibility
CARTA, ALESSANDRA;TRINCHERO, Daniele
2011
Abstract
The present paper focuses on the evaluation of the electromagnetic field generated in the Fresnel region by sources characterized by a generic and non-uniform current distribution. The method has been recently presented and successfully applied to linear arrays. The generalization and improvement achieved by the approach proposed in this paper requires the introduction of a more accurate model of the antenna and a global update of the method itself. The method presented in this paper offers a reliable and simple approach that allows the estimation of the field generated by a generic radiator. The proposed technique is first analyzed from a theoretical point of view and then validated by means of simulations.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2501485
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