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Real time prediction, detection and co-existing with satellite interference at GMRT

机译:在GMRT的实时预测,检测和共存,卫星干扰

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Modern radio telescopes were designed for wider bandwidth to use the interference free bands for radio astronomy. Many intentional radiations are directional and line of site, pointing can be avoided to prevent receiver saturation. About 35000 Satellites are in space to provide voice and data service, navigation, GPS, weather, military and various space programs. These satellite footprints are larger to cover wide area and produce interference to radio telescopes. These satellites are geo stationary, geo synchronous, low, and medium orbiting satellites whose locations and orbits have been characterized with the precise servo system of GMRT antennas. The individual satellite signals have been characterized for its frequency, power level and beam width using GMRT antenna and receiver. The antenna control and monitoring system of GMRT observatory is programmed to produce an alarm whenever the antenna beam is nearing a satellite. The software tools provide prediction of these satellite cross over with any scheduled radio astronomy observation, real time location of the antenna beam with adjacent line of site satellites on the sky and tools to post process the old astronomical data for flagging the duration of satellite signal overlap or saturation. The soft tools will be used to apply digital filtering techniques to mitigate these satellite signals in real time or during post processing. The paper presents the detail characterization of satellite interference to GMRT and the software tools developed to co-exist with satellite interference with detail analysis of the loss of signal or data for any given astronomical observation.
机译:现代无线电望远镜被设计用于更宽的带宽来使用无线电天文的干扰空间。许多故意辐射是方向和线路的方向,可以避免指向以防止接收器饱和度。大约35000个卫星在太空中提供了语音和数据服务,导航,GPS,天气,军事和各种空间计划。这些卫星脚印覆盖范围覆盖范围,并对无线电望远镜产生干扰。这些卫星是Geo静止,Geo同步,低,中等轨道卫星,其位置和轨道的特征在于GMRT天线的精确伺服系统。各个卫星信号的特征在于使用GMRT天线和接收器的频率,功率水平和光束宽度。 GMRT天文台的天线控制和监测系统被编程为在天线梁接近卫星时产生警报。软件工具提供这些卫星交叉的预测,并在任何预定的无线天文学观察,天线波束的实时位置,在天空和工具上与邻近的网站卫星线路和工具进行后处理旧天文数据,用于标记卫星信号重叠的持续时间或饱和度。软工具将用于应用数字滤波技术,以实时或在后处理期间减轻这些卫星信号。本文提出了对GMRT的卫星干扰的详细描述,并且开发的软件工具与卫星干扰共存,详细分析了任何给定的天文观察的信号或数据的丢失。

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