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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >Near-field approach towards enhanced suppression of cross-polarised radiation across different elevation planes using novel epsilon-shaped clusters of shorting pins
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Near-field approach towards enhanced suppression of cross-polarised radiation across different elevation planes using novel epsilon-shaped clusters of shorting pins

机译:使用新型短针形ε形簇的近场方法,可以增强抑制跨不同仰角平面的交叉极化辐射的能力

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摘要

A circular microstrip patch antenna with novel epsilon (${m epsilon }$epsilon)-shaped clusters of shorting pins (ECSP) is proposed in this paper to emphasise the improvement of cross-polarisation (XP) suppression across different elevation planes of radiation at $phi = 0<^>circ $phi=0 degrees, 45 degrees, 90 degrees, and 135 degrees rather than considering only the principal radiation planes. The near-field approach has been adopted to understand the basic of XP radiation from the antenna. The placement of two ECSP structures symmetrically along the H-plane of the conventional circular microstrip patch antenna (CMPA) effectively suppresses its XP radiation not only across the principal radiation planes by 57 dB at the boresight and 26 dB over the tracking angle +/- 45 degrees but also across the diagonal radiation planes by 58 dB at the boresight and 2 dB over the tracking angle +/- 45 degrees. A detailed analysis on the evolution of ECSP structures from arc-shaped clusters of shorting pins (ACSP) is presented. Symmetric distribution of antenna fields in the near-field region results in better XP suppression in the far-field region. The proposed design offers a considerably high gain of 8 dBi at the boresight. The fabricated prototype of the proposed design shows satisfactory agreement with the simulated results.
机译:本文提出了一种具有新型epsilon($ { rm epsilon} $ epsilon)形短针簇(ECSP)的圆形微带贴片天线,着重强调了跨不同仰角的交叉极化(XP)抑制的改进$ phi = 0时的辐射平面$ phi = 0度,45度,90度和135度,而不是仅考虑主辐射平面。已采用近场方法来了解天线XP辐射的基本原理。沿传统圆形微带贴片天线(CMPA)的H平面对称放置两个ECSP结构,不仅在视轴上穿过主辐射平面的XP辐射在视轴上有效抑制了57 dB,在跟踪角+/-上有效抑制了XP辐射26 dB在视轴上为45度,但在对角辐射平面上也为58 dB,在跟踪角+/- 45度上为2 dB。给出了对ECSP结构从短路销的弧形簇(ACSP)演变的详细分析。天线场在近场区域中的对称分布导致在远场区域中更好的XP抑制。拟议的设计在视轴上可提供很高的8 dBi增益。拟议设计的预制原型与模拟结果显示出令人满意的一致性。

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