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Analyzing GPS signals to investigate path diversity effects of non-geostationary orbit satellite communication systems

机译:分析GPS信号以研究非对地静止轨道卫星通信系统的路径分集效应

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摘要

The concept behind path diversity is that a user who can access several satellites simultaneously will be able to communicate more effectively than a user who could only access one. The success of this method depends on the environment, the satellite constellation, and diversity combining technology. This paper explores the path diversity effects of non-geostationary orbit (NGO) satellite personal communication services, for different degrees of user mobility, under various scenarios, using the constellation of the global positioning system (GPS). Measurements are taken near downtown Taipei. Three types of mobilities (fixed-point, pedestrian, and vehicular) are examined, and the switch diversity and maximum ratio combining method are applied to determine the path diversity gain and calculate bit error probability. The error probability performance of applying diversity schemes in coherent binary phase shift keying (BPSK) and non-coherent differential phase shift keying (DPSK) modulations over Rician fading channels are also analysed and evaluated by using the characteristic function method. The results show that fading can be significantly reduced and diversity greatly increased. A significant diversity gain and improvement in bit error rate (BER) can be expected in all cases by simply applying switch diversity scheme. Besides, for the maximum ratio combining method, the results imply that summing two satellite signals suffices to increase diversity and improve the bit error rate performance.
机译:路径分集背后的概念是,可以同时访问多颗卫星的用户比只能访问一颗卫星的用户能够更有效地进行通信。这种方法的成功取决于环境,卫星星座和分集组合技术。本文使用全球定位系统(GPS)星座图,探讨了在不同情况下,对于不同程度的用户移动性,非对地静止轨道(NGO)卫星个人通信服务的路径分集效应。在台北市中心附近进行测量。检查了三种类型的移动性(定点,行人和车辆),并应用了开关分集和最大比率合并方法来确定路径分集增益并计算误码率。还使用特征函数方法分析和评估了在利西亚衰落信道上在相干二进制相移键控(BPSK)和非相干差分相移键控(DPSK)调制中应用分集方案的错误概率性能。结果表明,可以显着减少衰落,并大大增加分集。只需应用开关分集方案,就可以在所有情况下获得显着的分集增益并改善误码率(BER)。此外,对于最大比率合并方法,结果暗示两个卫星信号的求和足以增加分集并改善误码率性能。

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