The paper presents a feasibility study on the design of a new metamaterial leaky-wave antenna (MTM-LWA) used in the construction of a 1 x 2 array which is implemented using substrate-integrated waveguide (SIW) technology for millimetre-wave beamforming applications. The proposed 1 x 2 array antenna consists of two LWAs with metamaterial unit-cells etched on the top surface of the SIW. The metamaterial unit-cell, which is an E-shaped transverse slot, causes leakage loss and interrupts current flow over SIW to enhance the array's performance. The dimensions of the LWA are 40 x 10 x 0.75 mm(3). Mutual-coupling between the array elements is suppressed by incorporating a metamaterial shield (MTM-shield) between the two antennas in the array. The LWA operates over a frequency range of 55-65 GHz, which is corresponding to 16.66% fractional bandwidth. The array is shown to exhibit beam-scanning of +/- 30 degrees over its operating frequency range. Radiation gain in the backward (-30 degrees), broadside (0 degrees), and forward (+30 degrees) directions are 8.5 dBi, 10.1 dBi, and 9.5 dBi, respectively. The decoupling slab is shown to have minimal effect on the array's performance in terms of impedance bandwidth and radiation specifications. The MTM-shield is shown to suppress the mutual coupling by similar to 25 dB and to improve the radiation gain and efficiency by similar to 1 dBi and similar to 13% on average, respectively.

Alibakhshikenari, M., Virdee, B.s., See, C.h., Abd-Alhameed, R.a., Falcone, F., Limiti, E. (2019). High-isolation leaky-wave array antenna based on CRLH-metamaterial implemented on siw with ±30o frequency beam-scanning capability at millimetre-waves. ELECTRONICS, 8(6), 642 [10.3390/electronics8060642].

High-isolation leaky-wave array antenna based on CRLH-metamaterial implemented on siw with ±30o frequency beam-scanning capability at millimetre-waves

Limiti E.
2019-01-01

Abstract

The paper presents a feasibility study on the design of a new metamaterial leaky-wave antenna (MTM-LWA) used in the construction of a 1 x 2 array which is implemented using substrate-integrated waveguide (SIW) technology for millimetre-wave beamforming applications. The proposed 1 x 2 array antenna consists of two LWAs with metamaterial unit-cells etched on the top surface of the SIW. The metamaterial unit-cell, which is an E-shaped transverse slot, causes leakage loss and interrupts current flow over SIW to enhance the array's performance. The dimensions of the LWA are 40 x 10 x 0.75 mm(3). Mutual-coupling between the array elements is suppressed by incorporating a metamaterial shield (MTM-shield) between the two antennas in the array. The LWA operates over a frequency range of 55-65 GHz, which is corresponding to 16.66% fractional bandwidth. The array is shown to exhibit beam-scanning of +/- 30 degrees over its operating frequency range. Radiation gain in the backward (-30 degrees), broadside (0 degrees), and forward (+30 degrees) directions are 8.5 dBi, 10.1 dBi, and 9.5 dBi, respectively. The decoupling slab is shown to have minimal effect on the array's performance in terms of impedance bandwidth and radiation specifications. The MTM-shield is shown to suppress the mutual coupling by similar to 25 dB and to improve the radiation gain and efficiency by similar to 1 dBi and similar to 13% on average, respectively.
2019
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-INF/01 - ELETTRONICA
English
Con Impact Factor ISI
Metamaterials (MTM); leaky-wave antenna (LWA); antenna arrays; substrate integrated waveguide (SIW); transverse slots; beam-scanning; mutual coupling isolation; millimetre-wave; composite right/left-handed transmission line (CRLH-TL)
Alibakhshikenari, M., Virdee, B.s., See, C.h., Abd-Alhameed, R.a., Falcone, F., Limiti, E. (2019). High-isolation leaky-wave array antenna based on CRLH-metamaterial implemented on siw with ±30o frequency beam-scanning capability at millimetre-waves. ELECTRONICS, 8(6), 642 [10.3390/electronics8060642].
Alibakhshikenari, M; Virdee, Bs; See, Ch; Abd-Alhameed, Ra; Falcone, F; Limiti, E
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/224379
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