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Strategy of Data Processing for GPS Rover and Reference Receivers Using Different Sampling Rates

机译:GPS流动站和参考接收机使用不同采样率的数据处理策略

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摘要

In Global Positioning System (GPS) applications, the double-difference (DD) model is often employed, which requires that the reference station and the rover receivers adopt the same sampling rate. On the premise of the need fulfillment, could the existing static receivers of Global Navigation Satellite System networks with a low sampling rate be used as the references for the rover with a high sampling rate? If feasible, how to process such data? In this paper, an integrated processing scheme is presented to deal with such data in the posterior mode, i.e., after initialization, both the single-difference (SD) and the DD models will be employed when synchronous data are available, while only the SD model will be used when only the rover receiver data are obtained. The deviations of the results obtained with the SD model from those with the DD model at the synchronous epoch might be considered as the accumulated systematical errors, which could be linearly interpolated into individual nonsynchronous epochs of that interval. This strategy takes full advantage of all available observations, rather than discarding the nonsynchronous GPS data, and it provides a promising application for the precise kinematic point positioning. The total expense of the surveying mission will be greatly reduced by adopting the low-sampling-rate receivers of the Continuously Operating Reference Station or the other similar GPS network as the reference stations. A data set of an airplane flight experiment was processed to verify the new algorithm, and the results revealed that the positioning accuracy could reach a centimeter level.
机译:在全球定位系统(GPS)应用中,经常使用双差(DD)模型,这要求参考站和流动站接收器采用相同的采样率。在满足需求的前提下,是否可以将现有的低采样率的全球导航卫星系统网络的静态接收机用作高采样率的流动站的参考?如果可行,如何处理此类数据?在本文中,提出了一种综合处理方案以后验模式处理此类数据,即,在初始化后,当同步数据可用时将同时使用单差(SD)模型和DD模型,而只有SD当仅获得流动站接收器数据时,将使用模型。 SD模型获得的结果与DD模型获得的结果在同步时期的偏差可以被视为累积的系统误差,可以将其线性插值到该间隔的各个非同步时期。这种策略充分利用了所有可用的观测数据,而不是丢弃非同步GPS数据,并且为精确的运动学点定位提供了有希望的应用程序。通过采用连续运行参考站或其他类似GPS网络的低采样率接收器作为参考站,将大大减少测量任务的总费用。处理飞机飞行实验的数据集以验证新算法,结果表明定位精度可以达到厘米级。

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