Noise analysis of common mode error in CMONOC GPS coordinate time series

Zhaohan Zhu, Xiaohui Zhou, Jingyu Liu
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引用次数: 2

Abstract

Common mode errors (CMEs) commonly exist in GPS coordinate time series, and it would affect the accuracy and reliability of the position and velocity of a reference station. The reduction of CME decreases the amplitude of seasonal variation and colored noise. This paper analyzes the noise of CME of 27 reference stations in the Crustal Movement Observation Network of China (CMONOC) using maximum likelihood estimation (MLE) method. The mean spectral index of CME is approximately −1 in N, E and U components, indicating that flicker noise may be the main colored noise in CME. Further analysis of optimal noise model shows that the main noise model of CME in CMONOC is white noise plus flicker noise and white noise plus power law noise. In horizontal component, the proportions of these two models are similar. In vertical component, over 60% of stations are behaved as white noise plus power law noise model.
CMONOC GPS坐标时间序列共模误差噪声分析
GPS坐标时间序列中普遍存在共模误差(CMEs),它会影响基准站位置和速度的精度和可靠性。日冕物质抛射的减少降低了季节变化幅度和彩色噪声。本文利用极大似然估计(MLE)方法对中国地壳运动观测网(CMONOC) 27个参考站的CME噪声进行了分析。CME的N、E和U分量的平均光谱指数近似为−1,表明闪烁噪声可能是CME的主要彩色噪声。进一步的优化噪声模型分析表明,CMONOC中CME的主要噪声模型是白噪声加闪烁噪声和白噪声加幂律噪声。在水平分量上,两种模型的比例相似。在垂直分量上,60%以上的台站表现为白噪声+幂律噪声模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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