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Validating the Variability of Snow Accumulation and Melting From GPS-Reflected Signals: Forward Modeling

机译:从GPS反射信号验证积雪和融雪的变异性:正向建模

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摘要

The variability of snow accumulation and melting is one of the most important interactions of the Earth’s surface with atmosphere through energy transmission and mass balance. In this paper, the effects of snow accumulation and melting together with bare soil and fixed snow depth on the reflected global positioning system (GPS) signals are investigated using GPS antenna gains and multipath signal. The reflected GPS signals are modeled and employed to analyze the interactions of snow accumulation, snow melting, bare soil, and fixed snow depth at BAKE and KUUJ GPS stations in Northern Canada. The results show the clear independency of the snow accumulation and melting variations with bare soil and fixed snow depth, which are validated from GPS-reflected signals as well. The modeled reflected GPS signals indicate the higher frequency of snow accumulation and snow melting than that of bare soil and fixed snow depth, while the estimated power spectral density of the GPS-reflected signals shows the higher signal power of coherence function difference. Furthermore, the GPS observations at BAKE and KUUJ sites confirm such variations with a good agreement during the snow accumulation, melting, bare soil, and fixed snow depth on the ground.
机译:积雪和融雪的可变性是地球表面通过能量传输和质量平衡与大气之间最重要的相互作用之一。本文利用GPS天线增益和多径信号研究了积雪和融雪以及裸露的土壤和固定的积雪深度对反射的全球定位系统(GPS)信号的影响。对反射的GPS信号进行建模并用于分析加拿大北部BAKE和KUUJ GPS站的积雪,融雪,裸露的土壤和固定的积雪深度之间的相互作用。结果表明,积雪和融化变化与裸露土壤和固定积雪深度具有明显的独立性,这也从GPS反射信号得到了验证。建模的反射GPS信号表明积雪和融雪的频率比裸土和固定雪深的频率高,而GPS反射信号的估计功率谱密度显示相干函数差的信号功率较高。此外,在BAKE和KUUJ站点的GPS观测结果证实了这种变化,并且在积雪,融化,裸露的土壤和固定的地面积雪深度方面具有很好的一致性。

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