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A Parallel Processing Strategy of Large GNSS Data Based on Precise Point Positioning Model

机译:基于精确点定位模型的大型GNSS数据并行处理策略

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With continuous increasing of the data scale of GNSS observations network, the computing pressure of data processing is growing. The undifferenced precise point positioning (PPP) model is one of the main strategies of GNSS network data processing. With the increasing of stations' scale, the processing time of PPP pattern also increases linearly, the traditional serial processing pattern need to consume a large amount of computing time. As the PPP model is not related, this model has good characteristics of parallel processing between stations. This paper established a distributed parallel processing strategy based on the PPP model, which can not only improve the efficiency of data processing, but also enhance the efficiency of hardware performance. However, due to the high concurrency of data access and processing, the parallel programming is faced with great challenges which can cause immeasurable results. In this paper, by analyzing the flow characteristics of the PPP method, a parallel GNSS data process model at multi-core and multi node level was set up, and a lightweight parallel programming model was adopted to realize the parallel model. Through a large number of data tests and experiments, high efficiency of parallel processing of GNSS data based on the PPP model was achieved. The experiment shows that, under the environment of four multi-core nodes, the parallel processing is at least six times faster than the traditional serial processing.
机译:随着GNSS观测网络数据规模的不断增加,数据处理的计算压力越来越大。无差异精确点定位(PPP)模型是GNSS网络数据处理的主要策略之一。随着站点规模的增加,PPP模式的处理时间也线性增加,传统的串行处理模式需要消耗大量的计算时间。由于PPP模型不相关,因此该模型具有站点间并行处理的良好特性。本文建立了基于PPP模型的分布式并行处理策略,不仅可以提高数据处理效率,而且可以提高硬件性能。但是,由于数据访问和处理的高度并行性,并行编程面临着巨大的挑战,这些挑战可能导致无法估量的结果。本文通过分析PPP方法的流程特性,建立了多核,多节点级别的并行GNSS数据处理模型,并采用了轻量级的并行编程模型来实现并行模型。通过大量的数据测试和实验,基于PPP模型实现了GNSS数据的并行高效处理。实验表明,在四个多核节点的环境下,并行处理至少比传统的串行处理快六倍。

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