首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Simultaneous resolving of frequency separated narrow band terrestrial radio sources by multi antenna spectrum monitoring systems assisting radio astronomy
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Simultaneous resolving of frequency separated narrow band terrestrial radio sources by multi antenna spectrum monitoring systems assisting radio astronomy

机译:通过协助射电天文学的多天线频谱监测系统同时解决频率分离的窄带地面无线电源

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摘要

Radio telescope sites require regular surveys of terrestrial radio information, viz. spectrum, flux density and radio direction. Terrestrial wireless radio sources may interfere in the radio telescope signals. Such signals received through wide band antennas in the VHF/UHF bands are amplified, integrated and spectrum-frame averaged. The radio direction of these sources can be resolved if they are steady over the time of observation, unique in frequency and if the system consists of two or more stationary antennas possessing low side-lobe levels, positioned on the perimeter of a circle parallel to but above the ground plane, with their major lobes directed opposite to the center of the circle. The maximum side-lobe level determines the maximum extent to which the antennas may be separated in angle in relation to the center of the circle. To resolve the sources, the signal is processed and then they are related to the radiation patterns with some algorithm. The overall observation angle can be made complete omni-directional by adding more number of antennas to the system, or by repositioning the two-antenna system on other sections of the arc. The generalized theory with mathematical modeling and error analysis are briefly described. Supporting experimental results obtained from a fully functional multi-antenna system with omni-directional coverage in the horizontal polarization are also presented.
机译:射电望远镜站点需要定期调查地面无线电信息,即。频谱,通量密度和无线电方向。地面无线电源可能会干扰射电望远镜的信号。通过VHF / UHF频带中的宽带天线接收到的此类信号被放大,积分并进行频谱帧平均。如果这些源在观察期间保持稳定,频率独特并且系统由两个或多个固定的,具有低旁瓣电平的固定天线组成,并且位于平行于但不固定于圆的圆周上,则可以解决这些源的无线电方向高于地平面,其主要裂片指向与圆心相反的方向。最大旁瓣电平确定天线相对于圆心的角度分离的最大程度。为了解析源,对信号进行处理,然后使用某种算法将其与辐射方向图相关。通过向系统中添加更多数量的天线,或者将两天线系统重新放置在弧的其他部分上,可以使整个观察角度完全全向。简要描述了具有数学建模和误差分析的广义理论。还提供了从功能全面的水平极化全向多天线系统获得的支持性实验结果。

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