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Triple-frequency GNSS models for PPP with float ambiguity estimation: performance comparison using GPS

机译:具有浮点模糊度估计的PPP三频GNSS模型:使用GPS的性能比较

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摘要

This contribution proposes two new precise point positioning (PPP) models that use triple-frequency data, designed to accelerate convergence of carrier-phase float ambiguities. The first model uses a triple-frequency ionosphere-free linear combination that has minimum noise propagation and geometry-preserving properties. The second model uses a mixed code and carrier-phase linear combination with the same properties. A third model was also implemented, which uses individual uncombined triple-frequency measurements. The three models were validated using triple-frequency GPS data and their performance was compared to the traditional dual-frequency model in terms of the convergence time taken to achieve and maintain a uniform three-dimensional accuracy of 5 cm. Testing includes PPP processing of 1-h measurement blocks using 1-8 days of data from three locations in Australia. It was shown that all the three triple-frequency models had improved solution convergence time compared to the traditional PPP dual-frequency model although they gave almost similar accuracy and precision. The convergence time, when using the triple-frequency ionosphere-free model improved, by 10%, the improvement was 9% when using the mixed code-phase model, whereas the individual uncombined model resulted in 8% improvement.
机译:该文稿提出了两个新的使用三频数据的精确点定位(PPP)模型,旨在加速载波相位浮点模糊度的收敛。第一个模型使用了三频无电离层线性组合,该组合具有最小的噪声传播和几何形状保留特性。第二个模型使用具有相同属性的混合代码和载波相位线性组合。还实现了第三个模型,该模型使用单独的未组合三频测量。使用三频G​​PS数据验证了这三个模型,并将它们的性能与传统双频模型进行了比较,以达到并保持5 cm的统一三维精度所需的收敛时间。测试包括使用来自澳大利亚三个位置的1-8天的数据进行PPP处理1小时测量块。结果表明,与传统的PPP双频模型相比,这三个三频模型均具有更快的求解收敛时间,尽管它们具有几乎相似的精度和精确度。使用三频无电离层模型时的收敛时间提高了10%,使用混合码相模型时的收敛时间提高了9%,而单独的非组合模型的收敛时间提高了8%。

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