Increasing the EIRP by using FPA-fed reflector antennas

A. Al-Rawi, A. Dubok, S. J. Geluk, B. D. de Hon, M. Herben, A. B. Smolders
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引用次数: 8

Abstract

The wireless communication range of E-Band point-to-point antenna systems can be extended by increasing the effective isotropic radiated power (EIRP). By employing a focal plane arrays (FPA), the reflector antenna can generate a high EIRP with electronic beam steering. By axially displacing the FPA towards the reflector, the field pattern across the FPA will be broader. Therefore the number of active elements in the array is increased, resulting in a higher EIRP. An in-house developed FPA model based on the physical optics (PO) surface current method is used in this analysis. It is found that 8 dB can be gained if the FPA with 9 × 9 active array elements is axially displaced by 2.3 λ (Frequency 71 GHz) towards the reflector. For this axial displacement the tapering and spillover efficiency are maximally reduced by 3 %. A higher EIRP can be achieved by increasing the axial displacements, but in this case, the FPA size must be increased in order to meet efficiency criterion of 80 %.
采用fpa馈电反射天线提高EIRP
通过提高e波段点对点天线系统的有效各向同性辐射功率(EIRP),可以扩大e波段点对点天线系统的无线通信范围。通过采用焦平面阵列(FPA),反射面天线可以产生具有电子波束导向的高EIRP。通过向反射器轴向移动FPA, FPA上的场图将会更宽。因此,阵列中有效元素的数量增加,导致更高的EIRP。本文采用了基于物理光学表面电流法的FPA模型。结果表明,将具有9 × 9有源阵元的FPA向反射器轴向位移2.3 λ(频率为71 GHz),可获得8db增益。对于这个轴向位移,锥度和溢出效率最大降低了3%。通过增加轴向位移可以获得更高的EIRP,但在这种情况下,为了达到80%的效率标准,必须增加FPA尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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