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Design of a high-gain microstrip patch antenna array with stripline combiners for passive reflectometry

机译:具有用于被动反射测缝的带状线组合器的高增益微带贴片天线阵列的设计

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PRETTY (Passive Reflectometry and Dosimetry) is a 3U CubeSat mission dedicated to Earth observation. The mission goal is to measure the Earth's surface by the use of passive reflectometry. Direct and reflected Global Navigation Satellite System (GNSS) signals are correlated to perform height measurements of the Earth surface, especially in polar regions. In addition, a miniaturized dosimeter payload quantifies the total ionizing dose as well as the linear energy transfer in the corresponding to the position in the Low Earth Orbit (LEO). This paper presents the design of the microstrip patch antenna array for Global Navigation Satellite System Reflectometry (GNSS-R) passive reflectometry on the PRETTY CubeSat mission. The antenna allows the detection of both the direct signal and the reflected signal. Its antenna pattern is hence designed to have a high vertical aperture angle. To maximize the measurement performance, the perturbations and reflections outside the main lobe have to be kept as low as possible Given these constraints, a 2x4 patch antenna array is used The high gain of a patch array is required to provide sufficient amplification of the very weak GNSS-R signals, especially for the reflected ones. Based on the analysis results, a single element, as well as a 2x4 patch array, were designed with FEM simulation tools. Prototypes are manufactured and compared to the simulation results in terms of s-parameters, bandwidth, and gain. The results show a gain of over 13dB in the expected L1 frequency range and a bandwidth of about 10MHz.
机译:漂亮(被动反射测量和剂量测定)是一种专门针对地球观测的3U CubeSat任务。任务目标是通过使用被动反射测量来测量地球表面。直接和反射的全局导航卫星系统(GNSS)信号是相关的,以执行地面的高度测量,尤其是在极地区域中。此外,小型化剂量计有效载荷量化了总电离剂量以及对应于低地轨道(LEO)中的位置的线性能量转移。本文介绍了用于全球导航卫星系统反射仪(GNSS-R)被动反射仪的微带贴片天线阵列的设计。天线允许检测直接信号和反射信号。因此,其天线图案设计成具有高垂直孔径角。为了最大化测量性能,在主叶片外部的扰动和反射必须尽可能低,因为这些约束,使用2x4贴片天线阵列,需要贴片阵列的高增益来提供足够弱的放大GNSS-R信号,特别是对于反射的信号。基于分析结果,设计了单个元素,以及2x4贴片阵列,采用FEM仿真工具设计。原型是制造的,并与S参数,带宽和增益的仿真结果进行比较。结果显示了预期的L1频率范围内超过13dB的增益,以及约10MHz的带宽。

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