Design and performance evaluation of a switched-beam antenna array for 60 GHz WPAN applications

In this paper, the design and performance evaluation of a switched-beam antenna array to operate in the 60 GHz band for short-range WPAN applications is presented. In order to overcome the high path-loss attenuation at millimeter-wave frequencies and, moreover, to achieve high data rate wireless com...

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Main Authors: Imbert Villà, Marc, Papió Toda, Anna, de Flaviis, Franco, Jofre Roca, Lluís, Romeu Robert, Jordi
Format: Publication
Language:English
Published: Institute of Electrical and Electronics Engineers (IEEE) 2015
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Abstract In this paper, the design and performance evaluation of a switched-beam antenna array to operate in the 60 GHz band for short-range WPAN applications is presented. In order to overcome the high path-loss attenuation at millimeter-wave frequencies and, moreover, to achieve high data rate wireless communications, highly directive antennas are required. In addition, beam-steering capabilities are also needed to deal with the high user random mobility and human-body shadowing characteristic of indoor environments. For these reasons, we propose a design based on a five by five slot antenna array, in which each single element can be selected individually, and a dielectric inhomogeneous gradient-index flat lens to steer and enhance the radiation in a particular direction. A total of 25 fixed high-gain beams can be selected individually to scan in both theta and phi directions. Our measurement results show that we can achieve up to 17.25 dB of broadside gain, and beam-steering capabilities from +20° to -20° with more than 15 dB of gain, and up to ±52° with around 12.8 dB, with low-side lobe levels, in the entire frequency band of interest (from 57 to 64 GHz). Peer Reviewed
AbstractList In this paper, the design and performance evaluation of a switched-beam antenna array to operate in the 60 GHz band for short-range WPAN applications is presented. In order to overcome the high path-loss attenuation at millimeter-wave frequencies and, moreover, to achieve high data rate wireless communications, highly directive antennas are required. In addition, beam-steering capabilities are also needed to deal with the high user random mobility and human-body shadowing characteristic of indoor environments. For these reasons, we propose a design based on a five by five slot antenna array, in which each single element can be selected individually, and a dielectric inhomogeneous gradient-index flat lens to steer and enhance the radiation in a particular direction. A total of 25 fixed high-gain beams can be selected individually to scan in both theta and phi directions. Our measurement results show that we can achieve up to 17.25 dB of broadside gain, and beam-steering capabilities from +20° to -20° with more than 15 dB of gain, and up to ±52° with around 12.8 dB, with low-side lobe levels, in the entire frequency band of interest (from 57 to 64 GHz). Peer Reviewed
Author Papió Toda, Anna
Jofre Roca, Lluís
Imbert Villà, Marc
de Flaviis, Franco
Romeu Robert, Jordi
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  fullname: Romeu Robert, Jordi
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Universitat Politècnica de Catalunya. Departament de Teoria del Senyal i Comunicacions
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Snippet In this paper, the design and performance evaluation of a switched-beam antenna array to operate in the 60 GHz band for short-range WPAN applications is...
SourceID csuc
SourceType Open Access Repository
SubjectTerms 60 GHz
Antenes de microones
Antenes i agrupacions d'antenes
Beam-steering
Enginyeria de la telecomunicació
Flat lens
Microwave antennas
Millimeter-wave
Radiocomunicació i exploració electromagnètica
Reconfigureble antennas
Switched-beam array
WPAN
Àrees temàtiques de la UPC
Title Design and performance evaluation of a switched-beam antenna array for 60 GHz WPAN applications
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