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SPACE OUTREACH INITIATIVES THROUGH ONLINE AND REAL-TIME SPACE OPERATIONS USING VIRTUAL GROUND STATION

机译:通过虚拟地面站通过在线和实时空间操作进行空间扩展计划

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The ground-satellite communications are expensive yet highly significant for the success of a space mission and to envisage its end-of-life by continuously monitoring its health and all sub-systems. One cost-effective possibility for honing skills is to use amateur satellite service and an online internet-to-orbit gateway. The gateway has a maximum range of tracking and detection of 22000 km and sensitivity down to 0.1 watts, capable enough to receive the faint satellites in even omni directional reception scenario. The gateway allows the connectivity of remote users involving in the processes like orbital control, communication control, real time simulations and data/ image processing and analysis. This paper details all above processes along with experimental results obtained by controlling it remotely, online reception of audio frequency signals of telemetry, housekeeping data and half-duplex communication through amateur satellites and images from NOAA weather satellites. We have involved post-grad students studying at Japan, USA, Austria and Australia. We analyzed the received data through a suite of free softwares and the results are enhanced with real-time Satellite Toolkit simulations. The exclusive ability of the gateway to act as a gateway between remote users (internet) and satellites (in orbit) makes the virtual ground station at user end more feasible for the long-term real-time nano/ cubesats space operations and space outreach. The only requirement is broadband internet at user end. After the successful satellite tracking remotely, monitoring and downloading online and real-time data from many operational satellites, the gateway has proved reliable and capable enough to be used as a potential ground station for current and future university missions and a training platform for individuals pursuing space operations.
机译:卫星地面通信价格昂贵,但对于成功执行太空任务以及通过持续监控其健康状况和所有子系统来设想其寿命终止而言,意义重大。磨练技能的一种具有成本效益的可能性是使用业余卫星服务和在线互联网到轨道网关。该网关的最大跟踪和检测范围为22000公里,灵敏度低至0.1瓦,即使在全向接收情况下也足以接收微弱的卫星。网关允许远程用户进行连接,这些用户涉及轨道控制,通信控制,实时仿真以及数据/图像处理和分析等过程。本文详细介绍了上述所有过程,以及通过对其进行远程控制,通过遥测卫星在线接收遥测音频信号,内部数据和半双工通信(通过业余卫星和来自NOAA气象卫星的图像)获得的实验结果。我们吸引了在日本,美国,奥地利和澳大利亚学习的研究生。我们通过一套免费软件分析了接收到的数据,并通过实时Satellite Toolkit仿真增强了结果。网关具有充当远程用户(互联网)和人造卫星(在轨)之间的网关的独特功能,这使得用户端虚拟地面站对于长期实时的nano / cubeats空间操作和空间扩展更加可行。唯一的要求是在用户端使用宽带互联网。成功地进行了卫星远程跟踪,监视和下载了许多运行中的卫星的在线实时数据之后,该网关被证明是可靠且有足够的能力,可以用作当前和将来的大学任务的潜在地面站,以及为个人追求的培训平台太空作战。

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