Adaptive Tropospheric Delay Modelling in GPS/INS/Pseudolite Integration for Airborne Surveying

J. Wang, Jinling Wang
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引用次数: 2

Abstract

Integrated GPS/INS systems have been used for geo-referencing airborne surveying and mapping platforms. However, due to the limited constellation of GPS satellites and their geometric distribution, the accuracy of such integrated systems cannot meet the requirements of precise airborne surveying. This problem can be addressed by including additional GPS-like ranging signals transmitted from the ground-based pseudolites (PLs). As GPS measurement geometry could be strengthened dramatically by the PL augmentation, the accuracy and reliability of an integrated system can be improved, especially in the vertical component. Nevertheless, some modelling challenges exist in PLs augmentation. As PLs are relatively close to receivers, the unit vectors from a PL to he reference and rover receivers can be significantly different. PL tropospheric delay modelling errors cannot be effectively mitigated in a differencing procedure. Furthermore, PL signals propagate through the lower troposphere, where it is very difficult to accurately model the signal delay due to temporal and spatial variations of meteorological parameters. In this paper, an adaptive PL tropospheric delay modelling method is developed to reduce such modelling errors by estimating meteorological parameters in a model. The performance of this adaptive method isevaluated with field test data. The testing results haveshown that the PL tropospheric delay modelling error can be effectively mitigated by the proposed method.
航空测量GPS/INS/伪卫星集成中的自适应对流层延迟建模
综合GPS/INS系统已用于地理参考航空测绘平台。然而,由于GPS卫星的星座和几何分布的限制,这种集成系统的精度不能满足精密航空测量的要求。这个问题可以通过包括从地面伪卫星(PLs)传输的附加的类似gps的测距信号来解决。由于GPS测量几何形状可以通过PL增强而大大增强,因此可以提高集成系统的精度和可靠性,特别是在垂直组件方面。然而,在PLs增强中存在一些建模挑战。由于PL相对靠近接收器,从PL到参考和漫游者接收器的单位矢量可能显着不同。PL对流层延迟建模误差不能在差分过程中有效减轻。此外,PL信号通过对流层低层传播,由于气象参数的时空变化,很难准确地模拟信号延迟。本文提出了一种自适应PL对流层延迟建模方法,通过估计模型中的气象参数来减小这种建模误差。用现场试验数据对该自适应方法的性能进行了评价。测试结果表明,该方法可以有效地减小对流层时延建模误差。
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