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Scannable Leaky-Wave Antenna Based on Ferrite-Blade Waveguide Operated Below the Cutoff Frequency

机译:基于铁氧体 - 刀片波导的可扫描泄漏波天线在截止频率下方操作

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摘要

This article proposes a scannable leaky-wave antenna (LWA). The antenna consists of a ferrite-blade waveguide with a longitudinal slot on the upper wall, which has a tunable composite right-/left-handed (CRLH) property. The left-handed (LH) behavior of this structure is based on the negative effective permeability of the ferrite material and the negative effective permittivity of the waveguide excited below its cutoff frequency. First, based on the modal analysis and calculated dispersion relation, the unbalanced CRLH response of the ferrite-blade waveguide is investigated. Second, an LWA is presented by using a longitudinal slot on the upper wall of the proposed ferrite-blade waveguide, where the tunable balance CRLH response is achieved and analyzed by the transverse resonance method (TRM). The proposed LWA can provide backward, broadside, and forward radiations by a change in the operation frequency or the magnetic bias, independently. The given results show a +59 degrees to -57 degrees sweep in the radiation beam when the magnetic bias of the ferrite changed from 1400 to 1600 Oe at the sampling frequency of 6.4 GHz. Moreover, the results show that the frequency tuning range is more than 600 MHz (6.2-6.8 GHz). The peak gain and efficiency of the proposed antenna are 7.1 dBi and 78.5% at 6.6 GHz, respectively.
机译:本文提出了一种可扫描的漏洞波天线(LWA)。天线由具有在上壁上的具有纵向槽的铁氧体叶片波导,其具有可调谐的复合右/左手(CRLH)特性。该结构的左手(LH)行为是基于铁氧体材料的负有效渗透性以及在其截止频率下方激发的波导的负有效介电常数。首先,基于模态分析和计算的色散关系,研究了铁氧体叶片波导的不平衡CRLH响应。其次,通过在所提出的铁氧体 - 叶片波导的上壁上使用纵向槽来提出LWA,其中通过横向共振方法(TRM)实现和分析可调谐平衡CRLH响应。所提出的LWA可以通过操作频率或磁偏差的变化来提供向后,宽边和正向辐射。当铁氧体的磁偏压在6.4GHz的采样频率下,给定的结果显示辐射束中的+59度至-57度扫描。此外,结果表明,频率调谐范围大于600 MHz(6.2-6.8 GHz)。所提出的天线的峰值增益和效率分别为7.1dBi,分别为78.5%,为78.5%。

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