电离层闪烁引起的GPS信号强度:沙捞越上空的初步模型

V. P. Bong, W. A. Wan Zainal Abidin, M. Abdullah, K. H. Ping, T. Masri, S. Bahari, I. Abba
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引用次数: 2

摘要

众所周知,空间天气的影响是在电离层传播的无线电信号振幅的波动,特别是在赤道地区。这种波动也被称为闪烁,它会加剧,降低信号质量,减少信息含量,或导致信号接收失败。天基无线电导航系统,如全球定位系统(GPS),将为我们提供一个独特的机会来描述信号从卫星传播到GPS接收器时电离层闪烁效应的特征。沙捞越,这是位于赤道地区附近,已被选定为本研究的目的。利用GPS电离层闪烁与TEC监测仪(gism)记录的振幅闪烁数据,研究了电离层沿路径的不规则性及其与信号强度性能的关系。给出了研究和分析振幅闪烁数据的方法和步骤。此外,为了模拟该区域的GPS卫星信号强度,将振幅闪烁参数与信噪比(SNR)联系起来。初步建立的信噪比经验模型是参考站路径到卫星的振幅闪烁的函数。这些有助于了解接收到的卫星信号在电离层振幅闪烁方面的强度表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GPS signal strength due to ionospheric scintillation: Preliminary models over Sarawak
The renowned effect of space weather is fluctuation in the amplitude of the radio signal that propagates in the ionosphere especially in the equatorial region. This fluctuation is also referred to as scintillation that will intense, degrades the signal quality, reduce the information content, or cause failure of the signal reception. Space-based radio navigation systems such as the Global Positioning System (GPS) will provide us with a unique opportunity to characterize the ionospheric scintillation effect as the signals propagate from the satellites to the GPS receiver. Sarawak, which is located near to the equatorial region, has been selected for the aim of this research. By using amplitude scintillation data recorded by the GPS Ionospheric Scintillation & TEC Monitor (GISTM), ionospheric irregularities along the path was examined and related to the signal strength performance. Methods and procedures to study and analyze the amplitude scintillation data are presented. Furthermore, the amplitude scintillation parameter is related to signal-to-noise ratio (SNR) in order to model the GPS satellite signal strength in this region. The preliminary developed SNR empirical models are a function of amplitude scintillation from the reference station path to the satellites. These contribute to the knowledge of received satellite signals strength performance in terms of ionospheric amplitude scintillation.
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