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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Multifunctional Filtering Leaky-Wave Antenna Exhibiting Simultaneous Rapid Beam-Scanning and Frequency-Selective Characteristics Based on Radiative Bandpass Filter Concept
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Multifunctional Filtering Leaky-Wave Antenna Exhibiting Simultaneous Rapid Beam-Scanning and Frequency-Selective Characteristics Based on Radiative Bandpass Filter Concept

机译:基于辐射带通滤波器概念的多功能滤波漏漏 - 波天线展示同时快速光束扫描和频率选择特性

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摘要

In this article, the concept of radiative bandpass filter (RBPF) is proposed and investigated for developing a class of multifunctional filtering leaky-wave antennas (LWAs) which exhibit the simultaneous rapid frequency-dependent beam-scanning and frequency-selective characteristics. A substrate-integrated waveguide (SIW) is periodically loaded with closed (nonradiative) discontinuities acting as a bandpass filter, where the lower and higher stopbands are, respectively, stemmed from the SIW natural cutoff and the Bragg effect bandgap or bandstop caused by periodic discontinuities. By adequately adjusting the periodicity of filter unit cells and loading effects of closed discontinuities, filtering and dispersion behaviors of the periodic SIW can be flexibly engineered. Open (radiative) discontinuities are then deliberately introduced into the bandpass filter to generate a controllable radiation leakage, thereby accomplishing the design of the RBPF, i.e., the proposed LWA. With this concept, both filtering/dispersion and radiation tasks can be independently managed by different modules for LWAs. For demonstration purposes, two kinds of closed discontinuities, namely nonradiative longitudinal slot-pair (capacitive) and iris (inductive), are separately exploited for periodic SIWs with bandpass and high dispersion characteristics, whereas transverse slot (open discontinuity) is mainly aimed for radiation leakage. Two RBPF-based LWAs are simulated, fabricated, and measured. The simulated and measured results are in a reasonable agreement, and both demonstrate the rapid beam-scanning and filtering behaviors, thereby validating the proposed concept.
机译:在本文中,提出并研究了辐射带通滤波器(RBPF)的概念,用于开发一类多功能滤波泄漏波天线(LWA),其表现出同时快速频率依赖的光束扫描和频率选择性特性。基板集成的波导(SiW)周期性地装载用作带通滤波器的闭合(非散网)不连续性,其中较低且较高的阻带分别源于SiW自然截止和由周期性的不连续引起的Bragg效果带隙或带状电视效果。通过充分调整过滤器单元电池的周期性,可以灵活地设计周期性SiW的闭合不连续的封闭不连续性的加载效果。然后将开放(辐射)不连续性被刻录地引入带通滤波器以产生可控辐射泄漏,从而完成RBPF的设计,即,所提出的LWA。利用这种概念,滤波/色散和辐射任务都可以由LWA的不同模块独立管理。出于演示目的,分别利用两种封闭的不连续性,即非地区纵向槽对(电容性)和虹膜(电感),用于具有带通和高分散特性的周期性SiW,而横向槽(开放不连续)主要旨在辐射泄漏。模拟,制造和测量两个基于RBPF的LWA。模拟和测量结果处于合理的协议,两者都展示了快速的光束扫描和过滤行为,从而验证了所提出的概念。

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