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Performance evaluation of an optimized intersegment handover procedure for hybrid constellation satellite systems

机译:混合星座卫星系统优化段间切换过程的性能评估

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Satellite system architectures based on geostationary or Low Earth Orbit (LEO)/Medium Earth Orbit (MEO) constellation suffer from their intrinsic limitations in terms of coverage or flexibility. Traffic requirements concerning broadband services are expected to be very uneven both in time and space. To match this requirement and to improve coverage an innovative satellite system architecture, composed of a LEO/MEO segment to complement a Geostationary Earth Orbit (CEO) segment, has been proposed. In this scenario, to achieve interworking and to make it possible to hold the call while switching between the two segments, efficient intersegment handover (ISHO) procedures must be identified. The paper, after introducing the classical ISHO schemes, aims at defining and analysing an ISHO procedure developed to perform handover in case of hybrid constellations based on the use of both CEO and LEO/MEO orbits. Performance evaluation will be carried out for different system configurations utilizing a dynamic satellite constellation simulator in the time domain. The execution delay and its complementary cumulative distribution have been evaluated for different constellation geometry at different distances from the gateway.
机译:基于对地静止或低地球轨道(LEO)/中地球轨道(MEO)星座的卫星系统架构在覆盖范围或灵活性方面都存在固有的局限性。预计有关宽带服务的流量需求在时间和空间上都将非常不平衡。为了满足这一要求并提高覆盖范围,已经提出了一种创新的卫星系统架构,该架构由LEO / MEO段组成,以补充对地静止地球轨道(CEO)段。在这种情况下,为了实现互通并在两个网段之间切换时保持呼叫成为可能,必须确定有效的网段间切换(ISHO)过程。在介绍了经典的ISHO方案之后,本文旨在基于CEO和LEO / MEO轨道的使用,定义和分析为混合星座而执行切换的ISHO程序。将使用时域中的动态卫星星座模拟器对不同的系统配置进行性能评估。对于离网关不同距离的不同星座几何,已经评估了执行延迟及其互补的累积分布。

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