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A Method of Decreasing Cross-Polarization in Dual-Polarized Patch Antennas

机译:减少双极化贴片天线交叉极化的一种方法

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In this paper, we propose a method for decreasing cross-polarization in the tilt plane by optimizing the dielectric substrates of dual-polarized patch antennas. At the same time, we clarify the limit values for the cross-polarization level. First, we use a cavity model of the patch antenna to find cross-polarization dielectric characteristics in the tilt plane. We learn from this that the direction of cross-polarization increase or decrease in relation to the dielectric is reversed during horizontal polarized excitation and vertical polarized excitation. Therefore, if the cross-polarization level during horizontal polarized excitation and vertical polarized excitation is the same dielectric, the lowest cross-polarization level can be obtained in conditions where both horizontal polarization and vertical polarization are decreasing cross-polarization. Next, we investigate the case where parasitic elements are mounted on the patch antenna, and use the FDTD method and test to show that our method is valid. In addition, if the patch is positioned perpendicularly to the horizontal plane, we show that the optimum dielectric remains virtually unchanged in the tilt plane up to about 15° from the horizontal plane.
机译:在本文中,我们提出了一种通过优化双极化贴片天线的电介质基板来减少倾斜平面中的交叉极化的方法。同时,我们阐明了交叉极化水平的极限值。首先,我们使用贴片天线的腔模型来查找倾斜平面中的交叉极化介电特性。我们由此得知,在水平极化激发和垂直极化激发期间,相对于电介质的交叉极化增加或减少的方向是相反的。因此,如果水平极化激发和垂直极化激发期间的交叉极化能级是相同的电介质,则在水平极化和垂直极化都减小了交叉极化的条件下可以获得最低的交叉极化能级。接下来,我们研究将寄生元件安装在贴片天线上的情况,并使用FDTD方法进行测试,以证明我们的方法有效。此外,如果将贴片垂直于水平面放置,我们将显示最佳电介质在与水平面成15度左右的倾斜平面内几乎保持不变。

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