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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Passive Feed Network Designs for Microfluidic Beam-Scanning Focal Plane Arrays and Their Performance Evaluation
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Passive Feed Network Designs for Microfluidic Beam-Scanning Focal Plane Arrays and Their Performance Evaluation

机译:微流束扫描焦平面阵列的无源馈电网络设计及其性能评估

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Microfluidic focal plane arrays (MFPAs) have been recently introduced to implement compact high-gain beam-scanning antennas without resorting to active RF devices. This beam-scanning technique relies on a patch antenna element that can be microfluidically repositioned at the focal plane of a microwave lens. The feed network is strategically designed to be passive and accommodate the position variation in the antenna element. This paper, for the first time, considers the design details and performance evaluation of three different passive network layouts that can potentially be utilized to excite MFPAs. Specifically, resonant corporate, resonant straight, and nonresonant straight microstrip line feed networks are introduced and their loss/bandwidth performances are investigated using the transmission line theory. In addition, a method of moments and ray tracing-based hybrid analysis is utilized to demonstrate the impact of the proposed feed networks on the radiation properties of the MFPA in terms of realized gain and side lobe levels (SLLs). It is shown that the resonant and nonresonant straight microstrip line feed networks reduce the SLL by more than 10 dB relative to the resonant corporate feed network utilized in the prior work. The performance improvements are experimentally verified through an eight-element extended hemispherical dielectric lens-based MFPA prototype. Different than the recent work that relied on liquid metal, the antenna element of this MFPA is implemented from a metalized plate by carrying out flow characterizations on various microfluidic channel geometries. This metalized plate approach paves the way for reliable liquid-metal-free microfluidic reconfigurable devices with higher efficiency and power-handling capabilities.
机译:最近引入了微流体焦平面阵列(MFPA),以实现紧凑的高增益波束扫描天线,而无需借助有源RF设备。这种波束扫描技术依赖于贴片天线元件,该元件可以微流体地重新定位在微波透镜的焦平面上。馈电网络在策略上设计为无源,并适应天线元件中的位置变化。本文首次考虑了三种可能用于激发MFPA的无源网络布局的设计细节和性能评估。具体来说,介绍了共振的,共振的直线和非共振的直线微带线馈电网络,并使用传输线理论研究了它们的损耗/带宽性能。另外,利用矩和基于射线追踪的混合分析方法,从实现的增益和旁瓣电平(SLLs)的角度论证了拟议的馈电网络对MFPA辐射特性的影响。结果表明,相对于先前工作中使用的谐振公司馈电网络,谐振和非谐振直线微带线馈电网络将SLL降低了10dB以上。通过基于八元件扩展半球形介电透镜的MFPA原型,实验证明了性能的提高。与最近依靠液态金属的工作不同,此MFPA的天线元件是通过对各种微流体通道几何形状进行流动表征而由金属化板制成的。这种金属化板方法为具有更高效率和功率处理能力的可靠的无液态金属微流体可重构设备铺平了道路。

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