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Upgrades to the Kharkiv V. N. Karazin National University MF radar antenna

机译:升级至哈尔科夫五世·卡拉赞国立大学中频雷达天线

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The Kharkiv V. N. Karazin National University MF radar has been widely employed to study mesospheric electrodynamics in the altitude range from 60 to 70 km where the electron density values remain below 100 cm−3. On the other hand, the technique developed at the University for investigating mesospheric electrodynamics demands signal-to-noise ratios greater than five. In addition, a major contribution to signal degradations makes radio interference, and consequently the radar has to operate in a frequency range at the upper end of the medium frequency band, and the antenna array cannot be designed to be resonant. The purpose of this paper is to report the upgrades to the MF radar antenna array to achieve maximum signal-to-noise ratio values. First, the replacement of a point resistive load by a resistor-capacitor load has provided the improvement in the impedance match of the existing antenna to the feeder. The voltage standing wave ratio in the 1.9–3 MHz frequency band could reach 3 before the replacement and does not exceed a value of 1.75 thereafter. Further, the upgrades put forward to the individual antenna arrangement resulted in converting three-lobe antenna pattern only into one-lobe symmetric antenna pattern and low levels of sidelobes over the entire 1.5–3.5 MHz frequency band.
机译:Kharkiv V. N. Karazin国立大学的MF雷达已被广泛用于研究60至70 km高度范围内的中层电动力学,其中电子密度值保持在100 cm −3 以下。另一方面,大学开发的用于研究中层电动力学的技术要求信噪比大于5。另外,对信号劣化的主要贡献是产生无线电干扰,因此雷达必须在中频带的上端的频率范围内操作,并且天线阵列不能被设计为谐振的。本文的目的是报告对中频雷达天线阵列的升级,以实现最大的信噪比值。首先,用电阻器-电容器负载代替点电阻性负载已经改善了现有天线与馈线的阻抗匹配。替换之前,1.9–3 MHz频带中的电压驻波比可以达到3,此后不超过1.75。此外,对单个天线布置的升级导致将三瓣天线方向图仅转换为单瓣对称天线方向图,并在整个1.5-3.5 MHz频带上将旁瓣水平降低。

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