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Performance analysis of LEO satellites based communication systems for remote monitoring and protection of power components

机译:基于Leo卫星的远程监控和保护电力组件的通信系统性能分析

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In the paper the main performances of TCP/DP communication services based on Low Earth Orbit (LEO) satellites technologies have been analyzed in order to evaluate their suitability with a typical set of power monitoring functionalities. As experimental test bed, a microcontroller based unit for remote monitoring and protection of power components has been equipped with a bi-directional satellite communication system based on the LEO satellites of the Globalstar? consortium. Thanks to the adoption of this facility several figure of merits characterizing the main performances of the satellite data services have been evaluated. They comprise in particular the connection times, the degradation of services and the effective throughput for both packet and asynchronous data connections. The obtained experimental results show as the application of LEO satellite based communication technologies, compared to geo-stationary (GEO) satellites data links, exhibits a set of intrinsic advantages that could be particularly gainful in power system monitoring.
机译:本文已经分析了基于低地球轨道(LEO)卫星技术的TCP / DP通信服务的主要性能,以便使用典型的电力监测功能进行评估它们的适用性。作为实验试验床,基于微控制器的用于远程监控和保护电力部件的单元已经配备了基于Globalstar的Leo卫星的双向卫星通信系统?财团。由于采用该设施,已经评估了若干典型卫星数据服务的主要性能的优点。它们特别包括连接时间,服务的劣化以及分组和异步数据连接的有效吞吐量。获得的实验结果表明,与地理静止(Geo)卫星数据链路相比,基于Leo卫星的通信技术的应用,展示了一组内在的优点,可以特别有效地在电力系统监测中。

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