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Effects on noise properties of GPS time series caused by higher-order ionospheric corrections
Authors:Weiping Jiang  Liansheng Deng  Zhao Li  Xiaohui Zhou  Hongfei Liu
Institution:1. Research Center of GNSS, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;2. School of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;3. Faculté des Sciences, de la Technologieet de la Communication, University of Luxembourg, 6, rue Richard Coudenhove-Kalergi, L-1359, Luxembourg;4. Surveying, Mapping and Geoinformation Administration of Yunnan Province, 223 Xichang Road, Kunming 650034, China
Abstract:Higher-order ionospheric (HOI) effects are one of the principal technique-specific error sources in precise global positioning system (GPS) analysis. These effects also influence the non-linear characteristics of GPS coordinate time series. In this paper, we investigate these effects on coordinate time series in terms of seasonal variations and noise amplitudes. Both power spectral techniques and maximum likelihood estimators (MLE) are used to evaluate these effects quantitatively and qualitatively. Our results show an overall improvement for the analysis of global sites if HOI effects are considered. We note that the noise spectral index that is used for the determination of the optimal noise models in our analysis ranged between −1 and 0 both with and without HOI corrections, implying that the coloured noise cannot be removed by these corrections. However, the corrections were found to have improved noise properties for global sites. After the corrections were applied, the noise amplitudes at most sites decreased, among which the white noise amplitudes decreased remarkably. The white noise amplitudes of up to 81.8% of the selected sites decreased in the up component, and the flicker noise of 67.5% of the sites decreased in the north component. Stacked periodogram results show that, no matter whether the HOI effects are considered or not, a common fundamental period of 1.04 cycles per year (cpy), together with the expected annual and semi-annual signals, can explain all peaks of the north and up components well. For the east component, however, reasonable results can be obtained only based on HOI corrections. HOI corrections are useful for better detecting the periodic signals in GPS coordinate time series. Moreover, the corrections contributed partly to the seasonal variations of the selected sites, especially for the up component. Statistically, HOI corrections reduced more than 50% and more than 65% of the annual and semi-annual amplitudes respectively at the selected sites.
Keywords:Coordinate time series  Higher-order ionospheric effects  Periodic characteristics  Noise analysis
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