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首页> 外文期刊>Journal of earth system science >GPS satellite and receiver instrumental biases estimation using least squares method for accurate ionosphere modelling
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GPS satellite and receiver instrumental biases estimation using least squares method for accurate ionosphere modelling

机译:GPS卫星和接收机的仪器偏差估计,采用最小二乘法进行精确的电离层建模

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摘要

The positional accuracy of the Global Positioning System (GPS)is limited due to several error sources.The major error is ionosphere.By augmenting the GPS,the Category I (CAT I)Precision Approach (PA)requirements can be achieved.The Space-Based Augmentation System (SBAS)in India is known as GPS Aided Geo Augmented Navigation (GAGAN).One of the prominent errors in GAGAN that limits the positional accuracy is instrumental biases.Calibration of these biases is particularly important in achieving the CAT I PA landings.In this paper,a new algorithm is proposed to estimate the instrumental biases by modelling the TEC using 4th order polynomial.The algorithm uses values corresponding to a single station for one month period and the results con???rm the validity of the algorithm.The experimental results indicate that the estimation precision of the satellite-plus-receiver instrumental bias is of the order of ?± 0.17 nsec.The observed mean bias error is of the order a?’ 3.638 nsec and a?’ 4.71 nsec for satellite 1 and 31 respectively.It is found that results are consistent over the period.
机译:全球定位系统(GPS)的定位精度由于多种误差源而受到限制。主要误差是电离层。通过增加GPS,可以达到I类(CAT I)精密进近(PA)的要求。印度的基础增强系统(SBAS)被称为GPS辅助地理增强导航(GAGAN).GAGAN中限制位置精度的主要错误之一是仪器偏差,这些偏差的校准对于实现CAT I PA着陆特别重要本文提出了一种新的算法,通过使用四阶多项式对TEC进行建模来估计仪器偏差。该算法使用一个月对应于单个站点的值,结果证明了该算法的有效性实验结果表明,卫星加接收机的仪器偏差的估计精度约为±0.17纳秒,观测到的平均偏差误差约为a''3.638纳秒和a?'4.71 n等级。卫星1和31分别以秒为单位,发现该期间的结果是一致的。

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