2018Unpublished venueRequires access

Millimeter-wave Substrate-integrated Waveguide Based Leaky-wave Antenna with Broadbeam Radiation at Broadside

Miguel Poveda-García, S.K. Podilchak, George Goussetis, José Luis Gómez‐Tornero

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Abstract

A novel broadbeam, planar leaky-wave antenna with radiation at broadside in the millimeter-wave frequency range using substrate-integrated waveguide technology is proposed. By feeding the antenna at the middle point along its length and by working at the splitting condition, a bi-directional traveling leaky-wave gives rise to a beam at the broadside direction in the far-field. The design is validated with full-wave simulations showing that a half power beamwidth of 30° and 130°, in the H- and the E-planes, are respectively possible for a 375MHz bandwidth (1% fractional bandwidth) around 24GHz. In this frequency range, realized gain values are above 8dBi.

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What this paper is about

A novel broadbeam, planar leaky-wave antenna with radiation at broadside in the millimeter-wave frequency range using substrate-integrated waveguide technology is proposed. By feeding the antenna at the middle point along its length and by working at the splitting condition, a bi-directional traveling leaky-wave gives rise to a beam at the broadside direction in the far-field. The design is validated with full-wave simulations showing that a half power beamwidth of 30° and 130°, in the H- and the E-planes, are respectively possible for a 375MHz bandwidth (1% fractional bandwidth) around 24GHz. In this frequency range, realized gain values are above 8dBi.

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Available abstract

A novel broadbeam, planar leaky-wave antenna with radiation at broadside in the millimeter-wave frequency range using substrate-integrated waveguide technology is proposed. By feeding the antenna at the middle point along its length and by working at the splitting condition, a bi-directional traveling leaky-wave gives rise to a beam at the broadside direction in the far-field. The design is validated with full-wave simulations showing that a half power beamwidth of 30° and 130°, in the H- and the E-planes, are respectively possible for a 375MHz bandwidth (1% fractional bandwidth) around 24GHz. In this frequency range, realized gain values are above 8dBi.

Key concepts: Beamwidth, Broadside, Leaky wave antenna, Optics, Extremely high frequency, Bandwidth (computing), Radiation pattern, Planar

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Millimeter-wave Substrate-integrated Waveguide Based Leaky-wave Antenna with Broadbeam Radiation at Broadside — Research Paper | ScholarLens